Палеоландшафтний аналіз ранньослов’янського городища в Опішні

This article is dedicated to interdisciplinary research of the Opishnia settlement. Based on the integration of archaeological and paleogeographical data, a paleolandscape analysis of the early Slavic settlement is conducted. The study reconstructs the natural environment of the settlement in the&am...

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Veröffentlicht in:Археологія
Datum:2025
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Сторінки:77-90
ISSN:2616-499X
Автори та афіліації:
  • Yu. O. Puholovok  — PhD in Archaeology, Senior Research Fellow, SE “Scientific Research Centre ‘Protective Archaeological Service of Ukraine’”, the Institute of Archaeology, the National Academy of Sciences of Ukraine
  • A. S. Kushnir  — PhD in Geo-graphy, Senior Research Fellow, the Institute of Geography, the National Academy of Sciences of Ukraine, the Department of Geomorphology and Paleogeography
  • Zh. M. Matviishyna  — DSc in Geography, Professor, the Institute of Geography, the National Academy of Sciences of Ukraine, the Department of Geomorphology and Paleogeography
Hauptverfasser: Puholovok , Yu. O., Kushnir , A. S., Matviishyna , Zh. M.
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Sprache:Englisch
Veröffentlicht: Institute of Archaeology NAS of Ukraine 2025
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Chemistry, Physics and Technology of Surface
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author Puholovok , Yu. O.
Kushnir , A. S.
Matviishyna , Zh. M.
author_facet Puholovok , Yu. O.
Kushnir , A. S.
Matviishyna , Zh. M.
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description This article is dedicated to interdisciplinary research of the Opishnia settlement. Based on the integration of archaeological and paleogeographical data, a paleolandscape analysis of the early Slavic settlement is conducted. The study reconstructs the natural environment of the settlement in the Early Middle Ages, highlighting its landscape conditions, main principles of economic activity, and the formation structure.
doi_str_mv 10.15407/archaeologyua2025.04.077
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fulltext НАЦIОНАЛЬНА АКАДЕМIЯ НАУК УКРАЇНИ • IНСТИТУТ АРХЕОЛОГIЇ НАН УКРАЇНИ НАУКОВИЙ ЖУРНАЛ – ЗАСНОВАНИЙ У 1947 р. ВИДАЄТЬСЯ ЩОКВАРТАЛЬНО КИЇВ 4  2025 АРХЕОЛОГIЯ Головний редактор ЧАБАЙ В. П., член-кореспондент НАН України, Iнститут археологiї НАН України Редакцiйна колегiя БОЛТРИК Ю. В., кандидат iсторичних наук, Iнститут археологiї НАН України БУЙСЬКИХ А. В., член-кореспондент НАН України, Iнститут археологiї НАН України ГАРДІ С. Е., PhD, Університет ім. Рея Хуана Карлоса, Іспанія ДЖIНДЖАН Ф., професор, доктор хаб., почесний професор унiверситету Париж 1 Пантеон Сорбонна, Францiя ЗАЛIЗНЯК Л. Л., професор, доктор iсторичних наук, Нацiональний унiверситет «Києво-Могилянська академiя» КАЙЗЕР Е., професор, доктор хаб., Вiльний унiверситет Берлiну, Німеччина ОТРОЩЕНКО В. В., професор, доктор iсторичних наук, Iнститут археологiї НАН України ПЛАВІНСЬКИЙ М. О., кандидат історичних наук, Варшавський університет, Польща ПОТЄХIНА I. Д., кандидат iсторичних наук, Iнститут археологiї НАН України РАБІНОВІЦ А., PhD, Техаський університет в Остіні, Сполучені штати Америки ФОРНАСЬЄ Й., професор, доктор хаб., Галле-Віттенбергський університет імені Мартіна Лютера, Німеччина ШЕВЧЕНКО T. М., кандидат історичних наук, Інститут археології НАН України (вiдповiдальний секретар) NATIONAL ACADEMY OF SCIENCES OF UKRAINE • INSTITUTE OF ARCHAEOLOGY NAS OF UKRAINE SCIENTIFIC JOURNAL – FOUNDED IN 1947 FREQUENCY: QUARTERLY Editor-in-Chief CHABAI V. P., Corresponding Member of the NAS of Ukraine, Institute of Archaeology of the National Academy of Sciences of Ukraine Editorial Board BOLTRYK Yu. V., PhD in History, Institute of Archaeology of the NAS of Ukraine BUISKYKH A. V., Corresponding Member of the NAS of Ukraine, Institute of Archaeology of the NAS of Ukraine DJINDJIAN F., Professor, Dr. Hab., Professor of the University of Paris 1 Pantheon Sorbonne, France FORNASIER J., Professor, Dr. Hab., Martin Luther University Halle-Wittenberg, Germany HARDY S. A., PhD, Rey Juan Carlos University, Spain KAISER E., Professor, Dr. Hab., Free University of Berlin, Germany OTROSHCHENKO V. V., Professor, DSc in History, Institute of Archaeology of the NAS of Ukraine PLAVINSKI M. O., PhD in History, University of Warsaw, Poland POTEKHINA I. D., PhD in History, Institute of Archaeology of the NAS of Ukraine RABINOWITZ A., PhD in Classical Archaeology, University of Texas at Austin, the USA SHEVCHENKO T. M., PhD in History, Institute of Archaeology NAS of Ukraine (Executive Secretary) ZALIZNIAK L. L., Professor, DSc in History, National University of Kyiv-Mohyla Academy ARHEOLOGIA KYIV 4  2025 ЗМIСТ CONTENTS Articles СТЕПАНЧУК В. М., НАУМЕНКО О. О., ТИС- ЛЮК В. В. Вивчення зв’язку між залишками піг- менту та розтріскуванням ковпакоподібної форми: приклад із Заскельної V ПАЛМЕР  Р., ФОУЛЕР  М., ВАРД  В., КАРЯ- КА О. В. Ландшафтне археологічне обстеження 6600  км2 Черкаської обл. (Україна) з вико- ристанням супутникових знімків із відкритих джерел: другий звіт МОГИЛОВ О. Д. Поховальні споруди Cвітло- водського могильника скіфського часу на серед- ньому Дніпрі ПУГОЛОВОК  Ю.  О., КУШНІР  А.  С., МАТ- ВІЇШИНА  Ж.  М. Палеоландшафтний аналіз ранньослов’янського городища в Опішні Publications of Archaeological Materials KOVALENKO O. V., REIDA R. M. Alanian Buri- al of the Hun Period (Barrow no. 17 of the Cemetery near Storozhove Village) To the History of Ancient Crafts ПАВЛЕНКО С. В. Дослідження виробничого ре- гіону індустрії пірофілітового сланцю на півдні Словечансько-Овруцького кряжу Статтi STEPANCHUK V. M., NAUMENKO O. O., TY- SLIUK  V.  V. Examining the Association Between Pigment Residues and Potlid-like Cracking: a Case Study from Zaskelna V PALMER R., FOWLER M., WARD V., KARIA- KA O. V. An Archaeological Landscape Survey of 6600 km2 of Cherkasy Oblast, Ukraine, Using Open- Source Satellite Images: Second Report MOHYLOV O. D. Scythian Period Funerary Con- structions of the Svitlovodsk Cemetery in the Middle Dnipro Region PUHOLOVOK Yu. O., KUSHNIR A. S., MAT- VIISHYNA Zh. M. Paleolandscape Analysis of the Early Slavic Hillfort in Opishnia Публiкацiї археологiчних матерiалiв КОВАЛЕНКО  О.  В., РЕЙДА  Р.  М. Аланське поховання гунського часу (курган 17 могильника поблизу с. Сторожове) До iсторiї стародавнього виробництва PAVLENKO  S.  V. Study of the Industrial Region of the Pyrophyllite Slate Industry in the South of the Slovechno-Ovruch Ridge 5 23 53 77 91 114 Iсторiя науки БРОВЕНДЕР  Ю.  М. Становлення і розвиток східноукраїнського осередку наукової школи професора В. В. Отрощенка (до 80-річчя юві- ляра) Хронiка Пам’яті Олександра Петровича Моці Алфавiтний покажчик змiсту журналу «Археологiя» за 2025 рiк History of Science BROVENDER Yu. M. The Formation and Devel- opment of the Eastern Ukrainian Centre of Professor V. V. Otroshchenko’s Research School (on the Oc- casion of his 80th Anniversary) News Review To the Memory of Oleksandr Petrovych Motsia Index of Publications in Arheologia Journal in 2025 139 149 150 ISSN 0235-3490 (Print), ISSN 2616-499X (Online). Археологія, 2025, № 4 77 УДК: [551.8:904.4](477.53)”652” https://doi.org/10.15407/arheologiaua2025.04.077 ©  PUHOLOVOK Yuriy Oleksandrovych, 2025 — PhD in Archaeology, Senior Research Fellow, SE “Scientific Research Centre ‘Protective Archaeological Service of Ukraine’”, the Institute of Archaeology, the National Academy of Sciences of Ukraine, ORCID: 0000-0002-7610- 8005, yuriy.puholovok@gmail.com ©  KUSHNIR Anatolii Stepanovych, 2025 — PhD in Geo- graphy, Senior Research Fellow, the Institute of Geography, the National Academy of Sciences of Ukraine, the Department of Geomorphology and Paleogeography, ORCID: 0000-0001- 8995-1467, kushnir.paleogeo@gmail.com ©  MATVIISHYNA Zhanna Mykolaivna, 2025 — DSc in Geography, Professor, the Institute of Geography, the National Academy of Sciences of Ukraine, the Department of Geomorphology and Paleogeography, ORCID: 0000-0003- 1412-7232, kas05061988@ukr.net © Інститут археології НАН України, 2025 PALEOLANDSCAPE ANALYSIS OF THE EARLY SLAVIC HILLFORT IN OPISHNIA Yu. O. PUHOLOVOK, A. S. KUSHNIR, Zh. M. MATVIISHYNA fluenced the development of their societies. Pa- leolandscape analysis allows us to reconstruct the conditions in which the Slavs lived and understand how they adapted to changing ecological condi- tions. These studies play a crucial role in examining settlement structures, as they reveal how settlement sites changed depending on natural conditions, such as climatic shifts, water level decreases, or land- scape movements. This helps reconstruct the or- ganisation of space, relationships between different groups, and the preconditions for the emergence of complex social structures. Overall, the study of pa- leolandscapes is an important tool for understand- ing how early Slavs interacted with natural environ- ment, how it shaped their economic activities, cul- ture, and social structures, and how environmental changes influenced their development (Горбанен- ко 2005; Матвіїшина, Пархоменко 2016; Матвії- шина, Пархоменко, Скороход 2019; Горбаненко, Журавльов 2021; Матвіїшина та ін. 2021; Пуго- ловок, Кушнір 2022). For more detailed information on the results of paleo-soil research of Eneolithic-Early Modern sites as part of the general paleolandscape analy- sis, please refer to the web resource that includes the corresponding database: https://paleosoil-holo- cen.info/ (Leiberiuk, Kushnir, Shvaiko 2024) and summarizing works by the staff of the Paleogeog- raphy Department of the Institute of Geography of the National Academy of Sciences of Ukraine (Матвіїшина та ін. 2024). It is worth noting that such studies in settlement archaeology are not rare. The high mobility of the population, particularly during the Early Middle Ages, caused a reorganization of the natural land- scape. As a result, the remains of medieval settle- ments in Europe serve as indicators of human im- pact on both the natural and cultural landscapes (Herold 2016, p. 107-120; ed. Contreras 2017; Do- browolski et al. 2018; Marcinkowski, Szczepaniak 2019; Zamelska-Monczak et al. 2021). On a global scale, climate was one of the factors influencing mi- gration. In this publication, we present the impact of humans on the local landscape, using the example of an early Slavic settlement near Opishnia. This article is dedicated to interdisciplinary re- search of the Opishnia settlement. Based on the in- tegration of archaeological and paleogeographi- cal data, a paleolandscape analysis of the early Slavic settlement is conducted. The study recon- structs the natural environment of the settlement in the Early Middle Ages, highlighting its landscape conditions, main principles of economic activity, and the formation structure. K e y w o r d s : the  Early Middle Ages, Romny culture, the Slavs, hillfort, geoarchaeology, paleo- landscapes, soil, natural conditions. Paleolandscape analysis is a scientific approach to studying ancient natural landscapes, their struc- ture, dynamics, and evolution during various geo- logical epochs. This analysis allows for the recon- struction of past environmental conditions, includ- ing climate, flora, fauna, and human influence on the natural environment. The main methods of paleolandscape analy- sis include the study of geological, paleontologi- cal, archaeological, and geographical data, as well as the application of modern technologies such as geographic information systems  (GIS), isotope analysis, and other chemical markers. Studying paleolandscapes is important for un- derstanding the economy, culture, and life of ear- ly Slavs, as the natural environment directly in- This is an Open Access article under the CC BY-NC-ND 4.0 license https://creativecommons.org/licenses/by-nc-nd/4.0/legalcode.en ISSN 0235-3490 (Print), ISSN 2616-499X (Online). Археологія, 2025, № 478 In the second half of the 8th  century, fortified settlements emerged as a new type of settlement in the Dnipro Left Bank region (Пуголовок 2016, с. 13). Their emergence and functioning led to the creation of new anthropogenic landscapes that per- sisted for several centuries. (It is worth noting that an anthropogenic landscape is one that has been altered by human activity, while cultural land- scape represents a specific type of anthropogenic landscape). Fortified settlements, such as wooden- earthen forts with various functions — administra- tive, military, protective, or cultic — were a unique feature of the early medieval landscape in Slav- ic lands from the 6th to 13th centuries (Buko 2013; Šalkovský 2015; eds. Christie, Herold 2016). This also applies to the territory of Ukraine, where by the end of the 20th century, about 700 fortifications from the 8th to the 13th centuries were known (Ку- чера 1999). In the area of the Siverian settlement dating from the 8th to 11th  centuries, about 130 settlements are known, according to various es- timates (Сухобоков 1975b, с.  21; Енуков 2005, с. 63). One of the earliest sites for the Romensk culture area is the Opishnia settlement, located in the northeastern part of the town of Opishnia, on the right bank of the Vorskla River in the Horyd- ysche tract (fig. 1). The site has been well-known in professional literature since the early 20th cen- tury and is associated with a group of researchers of Slavic antiquities in the Dnipro Left Bank who carried out surveys or excavations there (Ляпуш- кин 1946, с. 117-127; Сухобоков 1975a; Пуголо- вок 2018, с. 53-55). To expand the research potential of the site, interdisciplinary geoarchaeological studies were conducted there in 2017–2018, one of which fo- cused on the study of ancient soils and relief. The interaction between humans and the landscape is one of the modern directions of both archaeolog- ical and paleogeographical research. Landscape analysis, understood as the examination of the complex of natural (physiographic) conditions for a particular time period, represents a unique object in such studies. In this context, soil serves as an important indicator of the landscape. Buried soils beneath various age archaeological objects make it possible to analyze the landscape characteristics of the time when the archaeological site was cre- ated. This study aims to apply the geoarchaeolog- ical approach based on integrated archaeological and paleogeographical data using the example of the Opishnia settlement and thus conduct a paleo- landscape analysis of the early Slavic settlement. General Landscape Characteristics of the Settle- ment Location According to its location, settlements of the Romny culture are divided into three types: those located on promontories, hook-like promontories, Fig. 1. Opishnia on the map of Ukraine 0 150 km ISSN 0235-3490 (Print), ISSN 2616-499X (Online). Археологія, 2025, № 4 79 and residuals. The Opishnia settlement is situated on a flat, slightly lowered eastern side of a hilltop, over 80 m above the water level of the Vorskla Riv- er, which is a remnant of the original bank, sepa- rated from the plateau by the Tatarpunka stream valley and ravines. Clay extraction by residents is evident along the northern and western slopes. A cemetery is located in the northwestern part, and remains of turf-covered excavations are found to the southeast and at the centre (fig. 2). The area of the settlement is defined by the spread of cultur- al remains on the surface, depressions from dwell- ings, remains of fortifications, and excavation re- sults on the site (fig. 3, 4). At the beginning of the 20th century, the settle- ment was larger; the northern part of the promon- tory was destroyed between the 1920s and 1940s, possibly due to the local population’s extraction of clay for pottery, the traces of which are still pres- ent on the site today. Its current dimensions are as follows: length along the east-west axis — 150– 160 m, shorter north-south axis — 40–50 m. The total area is 0.8 hectares. Remains of fortifications, consisting of a wooden-and-earthen rampart about 2.5–3.0 m high, a low escarpment approximately 1 m high, and a filled-in moat, are located on the eastern side (fig. 5). In terms of relief, the area selected for the for- tifications belongs to the elevated part of the Pol- tava Plain. The formation of modern landscapes is primarily influenced by the widespread distri- bution of loess deposits, which overlay the bright red-brown clays of the Pliocene, as well as the Pa- leogene sandy and clayey deposits. Floodplain ar- eas have formed in the valleys of the Vorskla River and its tributaries. According to the soil cover maps of Ukraine, this territory falls under the distribution of mod- erately weakly humus-accumulative podzolized chernozem soils in the forest-steppe humid sub- zone; in terms of granulometric composition, these are light and heavy clay soils (46–55 %). The content of heavy metals in the soils of this territory, according to the National Atlas of Ukraine is as follows: Copper  (Cu)  —  13–24  mg/kg; Zinc (Zn) — 0–40 mg/kg; Cobalt (Co) — 5–10 mg/ kg; Molybdenum (Mo) — 4.1–5.0 mg/kg; Chromi- um (Cr) — 30–40 mg/kg; Manganese (Mn) — 400– Fig. 2. Opishnia hillfort. Aerial survey, by Yu. O. Puholovok ISSN 0235-3490 (Print), ISSN 2616-499X (Online). Археологія, 2025, № 480 Fig. 3. The Southeastern Part. Depth of the Rampart and Ditch Cross-Section. Excavations by O. V. Sukhobokov, 1975. From the north-west, by Yu. O. Puholovok Fig. 4. Opishnia Hillfort. From the South-West, by Yu. O. Puholovok ISSN 0235-3490 (Print), ISSN 2616-499X (Online). Археологія, 2025, № 4 81 500 mg/kg; Lead (Pb) — 13.1–15.0 mg/kg; Nick- el (Ni) — 15–20 mg/kg (Канаш, Лактіонова, Мед- вєдєв 2007, pp. 188-189). Settlements on residuals are located at the very edge of the plateau, separated from it by a ravine or valley. The formation of residuals is mainly caused by accumulative-denudation processes, leading to the separation of part of the original bank from the plateau. The relief of this area can be consid- ered well-dissected. The relief dissection coeffi- cient according to the National Atlas of Ukraine is 1, which is an above-average indicator for the terri- tory of Ukraine (Карти України 2025). This relief configuration may have been one of the reasons for the placement of the early Slavic settlement at this location, as the hilltop area is surrounded by slopes on all sides, which made it particularly suitable for constructing fortifications with minimal labor costs. The development of the Slavic settlement can be divided into several phases. At the initial stage, the settlement did not have fortification elements such as a rampart and a ditch. Evidence supporting this hypothesis includes the discovery of ceramics found in the fill of the rampart, which likely origi- nated from the cultural layer of the settlement area (Сухобоков 1975a, с. 25-26). Subsequently, forti- fications were constructed. The fortification struc- tures themselves had at least two stages of exis- tence, as indicated by the remains of both charred wooden and burned elements (Сухобоков, Юрен- ко 1995, с.  11). The settlement’s abandonment likely occurred at the beginning of the 9th centu- ry, when its inhabitants left the fortification. How- ever, items from later periods were found in the cultural layer of the site. For example, fragments of moulded and early wheel-thrown pottery were discovered on the southern slope of the site (Ми- роненко 1998, с. 67, рис. 2). Additionally, frag- ments of a pendant in the shape of an axe, dating to the 11th century, were found during excavations in 2018 (Пуголовок 2020, с. 164). However, the re- lationship between these items and the excavated complexes of the settlement cannot be confirmed due to their chronological inconsistency. They are likely related to later populations in nearby settle- ments. Materials and Methods Paleogeographical studies of the Opishnia settlement were carried out in 2017 and 2018 by specialists from the Institute of Geography Fig. 5. Opishnia Hillfort. Plan of the Excavation Area, by Yu. O. Puholovok Marks of the year of research Investigated dwellings Investigated pits Sampling locations 0 10 20m ISSN 0235-3490 (Print), ISSN 2616-499X (Online). Археологія, 2025, № 482 of the NAS of Ukraine, Zh. M. Matviishyna and A. S. Kushnir. A series of soil samples were an- alyzed at different hypsometric levels  (catena) within a small area that has never been plowed or subjected to agricultural work, including soil ma- terial from the cultural layer of the archaeological site and a cross-section of the settlement’s protec- tive rampart (fig. 6). This allows for the tracking of natural conditions during the formation of the settlement, as well as elements of natural and an- thropogenic succession and the related changes in the physiogeographical characteristics of the territory. One of the most important components of field work is the selection of soil samples for further laboratory studies. Soil and sediment samples are selected separately by genetic and/or stratigraph- ic horizons. For each type of analysis, sampling is performed according to a different scheme. For example, for micromorphological analysis, soil samples are selected in monoliths, for physico- chemical analysis, mainly a small amount of ma- terial in crumbly form, etc. In this way, a paleope- dological method is formed in the study of buried and modern soils (Веклич та ін. 1979). Soils are considered indicators of past physiogeographical conditions, they reflect changes in vegetation and climate that occurred during their formation. The methodology for studying fossil soils is based on the principle of actualism, meaning that fossil soils should be studied using the same methods as modern soils. However, it is important to remem- ber that fossil soils are often altered by subse- quent diagenetic processes, which give them new structural features, complicating the recognition of their original structure (Матвіїшина, Кушнір 2018; Hildebrandt-Radke et al. 2019). Six samples were sent to the Spectral Analysis Laboratory of the Optical Spectroscopy and Lu- minescence Department of the M. P. Semenenko Institute of Geochemistry, Mineralogy, and Ore Formation of the NAS of Ukraine, for the deter- mination of chemical element concentrations in the genetic horizons of soils. Ten samples were sent to the Thin Section Laboratory of the Iso- tope and Mass Spectrometry Department of the same Institute for the preparation of thin sec- tions with undisturbed soil structure for further micromorphological analysis. Micromorphologi- cal analysis focuses on the study of soil structure (composition, texture, aggregate state, porosity) and the substance composition (humus, fine and coarse dispersive parts, neoformations, inclu- sions) (Матвіїшина 1982; Кармазиненко 2010). All collected data allow for the identification of elementary soil-forming processes and the genet- ic types of soils, such as chernozems, forest soils, podzols, solonchaks, etc. Detailed studies of bur- ied soils can identify not only their main genet- ic types but also subtypes (Kiosak, Matviishyna 2023). The genetic horizon indexing was con- ducted according to the classification of O. N. So- kolovskyi, which we use because it is based on the principles of genetic soil science. This is important for paleogeographic reconstructions. Micromorphological analysis generally involves laboratory confirmation or refutation of the mac- romorphological description of the soil and the study of soil-forming processes at the micro level. Fig. 6. A General View of the Research Site with Markings of the Soil Cross-Sections ISSN 0235-3490 (Print), ISSN 2616-499X (Online). Археологія, 2025, № 4 83 Research results Stratigraphic section  1. Excavation within the Hillfort (fig. 7). The cultural layer (a layer of soil containing material remains) is represented by a humus ho- rizon. This is a dark gray material, carbonate-free, with evidence of active faunal bioturbations and a large number of grass roots. The material is loose, poorly structured, and medium loam. A soil sample from the cultural layer was anal- ysed for the concentration of 16 chemical elements. Table 1 presents the content of chemical elements in the material from the cultural layer of the hill- fort territory (the background (standard) indicators for this area are presented above). The maximum permissible amount of chemical elements in soils (by basic elements) is Cr — 100, Ni — 80, Zn — 20, Pb — 30 (Жовинский, Кура- ева 2002). Thus, we state that the content of lead and chromium in the cultural layer of the early Slavic period is increased. The indicators of other elements are within normal limits. Stratigraphic section 2. The Defensive Ram- part of the Hillfort (fig. 8). Artificial Embankment of the Defensive Ram- part (0.0–0.7 m). From above, the embankment and the soil beneath it are represented by modern turf (thickness 0.1 m) and layered sediments (thickness 0.6 m), which are very poorly processed by soil for- mation. The material of the embankment is soil-form- ing rock from the moat in front of the embankment. This mixed material is mainly represented by loess- like loam and homogeneous loess. In the middle part of the embankment and above the buried soil, there are bands with spots of dark gray or light gray mate- rial. The soil above the embankment is in the initial stage of formation, it is not yet fully developed, but is evolving according to the sod type. Carbonates per- meate the mass, and in the lower part of the embank- ment, there are also concentrations of small carbon- ate nodules. Micellar forms of CaCO3 are clearly vis- ible above the buried soil. The structure of the embankment of the shaft is typical of such structures. In addition to loess de- posits, the embankment also contains layers of sod that were taken from the surface of the surround- ing soil and, to some extent, reinforced the struc- ture during construction. The carbonation of the embankment material is related to the carbonation of the loess rocks. The transition and the border with the buried soil are clearly visible; it is slightly wavy and horizontal, followed by a sharp change to gray colouration. Soil under the Rampart of the VIІI–IX Cen- tury (0.7–1.6 m). From top to bottom, genetic hori- zons are clearly visible: H + Pk (transition from the embankment), Hk, Hpi, P(h)ik, Pk. Before a depth of 1.05 m, the remains of two wooden trunks (up to 15–20 cm in diameter) used in the construction of the protective rampart are visible. The wooden ma- terial itself has not been preserved. Fig. 7. The Territory of the Hillfort. A Cross-Section of Soil no. 1 Table 1. Chemical Element Content in Material from the Cultural Layer of the Settlement Territory The name of of the element Mn Ni Co Ti V Cr Zr Nb Cu Pb Zn Sn Ga Se Y Ba Quantity, mg/kg 600 30 3 1000 40 50 400 3 40 50 50 2 5 10 50 200 ISSN 0235-3490 (Print), ISSN 2616-499X (Online). Археологія, 2025, № 484 Hk + Pk (transition from the embankment) — 0.7–0.8  m. — gray, loose, granular, dusty light loam. H(k) — 0.80–1.05 m. — brownish-dark gray to black, loose, lumpy-grained dusty light to medium loam. In the horizon, the material is the darkest in the profile, gradually lightening downwards, with a transition and boundary that are gradual according to the colour change and boiling with 10 % HCl. Hpi — 1.05–1.25 m. — brownish-gray heter- ogeneously coloured, weakly compacted, large- lumpy, and vaguely nutty dusty medium loam. The transition and boundary are gradual according to the color change and the increase in carbonation. P(h)ik  —  1.25–1.60  m. — pale-grayish-light brown to brown, weakly ferruginous, heteroge- neously coloured, with signs of vertical columnari- ty and some compaction, lumpy medium loam. The transition and boundary are gradual with a lighten- ing of colour and an increase in CaCO3 content. Pk — 1.6–2.0 m. — grayish-fawn, fairly homo- geneous, loess material, which is lumpy-crumbly light loam. Pk  +  bg (2.0–2.2  m.  (visible)) — light-fawn loess, hidden-layered, homogeneous, lumpy- crumbly dusty light loam. Based on the combination of characteristics — humus content, content and location of carbonates in the profile, granulometric composition — the soil can be defined as leached chernozem, of me- dium thickness, from light to medium loam, with signs of the primary hydromorphic stage of de- velopment, formed on loess. It reflects the forest- steppe conditions of formation. Stratigraphic section 3. Soil for Comparison with Soil Buried under the Embankment. It is located 100 m east of the rampart on a gen- tle slope towards the Vorskla River valley. This sec- tion with modern soil (fig. 9) is described for com- parison with the soil of the 8th– 9th  century under the rampart. In an open area with meadow-steppe vegetation. The following soil profile was observed. This soil is classified as gray forest, silty-me- dium loam, formed on loess. This classification is supported by the following features: a clear dif- ferentiation of the profile into genetic horizons; a humus-rich horizon containing SiO2  powder in combination with the brown ferruginous and more clayey illuvial horizons located below it; and a deep (1.6  m.) occurrence of carbonate illuvium with hard carbonate nodules. The conducted micromorphological study of soil samples (fig. 10) confirmed the morphologi- cal analysis. When examined under a microscope, washed areas in the humus-eluvial horizon and in- flows of collomorphic clays and their concentra- tion around pores in the illuvial horizon are traced, which is a sign of podzolized soil. Therefore, based on a comparison of the pro- files of the ancient (9th–10th century) and modern soils, we can conclude that at the time of the cre- ation of the defensive ramparts, open spaces with Fig. 8. A Cross-Section of Soil no. 2. The Protective Rampart of the Settlement. Field Colour Sketch with Stratigraphic Division of the Soil Profile Beneath the 8th Century Rampart, by Zh. M.Matviishyna Fig.  9. A Cross-Section of Soil no.  3. Field Colour Sketch Showing the Stratigraphic Structure of the Background (Modern) Soil, by Zh. M. Matviishyna ISSN 0235-3490 (Print), ISSN 2616-499X (Online). Археологія, 2025, № 4 85 meadow-steppe vegetation prevailed. A change in soil type within a given territory (i.e., transition from one type to another) is usually a very long process, that under natural conditions, may take from several hundred to several thousand years. In this case, we are talking about physical and geo- graphical conditions that existed at the time the embankment was constructed, which are record- ed in the soil buried under it. The boundaries of natural zones, compared to today, were probably shifted northward. The soils identified under the rampart are now characteristic of the flat spaces of the modern central forest-steppe. This is con- sistent with regional paleogeographic models for Ukraine (Матвіїшина, Кушнір 2018; Gera- simenko  et  al. 2022), Early Slavic time (Матві- їшина, Пархоменко, 2016; Матвіїшина, Пархо- менко, Скороход 2019; Матвіїшина та ін. 2021; Petr  et  al. 2025) and general paleogeographic reconstructions of the second half of the Holocene (Feurdean et al. 2021; Hájková et al. 2022). Over the 12 centuries since the construction of the rampart, the chernozem soil could have turned into a typical gray podzolized forest soil reflect- ing wetter formation conditions. The soil profile increased by 30 cm, and the differentiation of the profile with a clear illuvial horizon and a less hu- mus humus-eluvial horizon appeared. In addition, a soil sample from the humus-elu- vial horizon (0.1–0.4  m) of this section was an- alysed for the concentration of 16  chemical ele- ments. The results are presented in Table 2. Comparing the obtained data with the maxi- mum permissible concentrations of chemical ele- ments in soils and the general background for this territory, we conclude that the content of all an- alysed elements in the modern soil is within the normal range. In contrast, the cultural layer from the early Slavic time settlement (Stratigraphic sec- tion 1) shows elevated concentrations of lead (Pb), chromium (Cr), and zinc (Zn). These increases are interpreted as the result of active economic activi- ties carried out by the settlement’s inhabitants, par- ticularly related to everyday practices such as met- alworking (production or repair of tools and weap- ons), pottery production, and waste accumulation. Modern contamination is unlikely because the soil samples were collected directly from undisturbed cultural layers in areas unaffected by recent agri- cultural or construction activities. Furthermore, Fig.  10. A Cross-Section of Soil no.  3. Micromorphological Structure of the Soil: a–g  — Humus-Eluvial Horizon; e–h — Illuvial-Humus Horizon (a, f, h — Nicol Prism Crossed; b–d, g — Nicol Prism Parallel) Table 2. Content of Chemical Elements in the Humus-Eluvial Horizon of Soil Cross-Section no. 1 The name of the of the element Mn Ni Co Ti V Cr Zr Nb Cu Pb Zn Sn Ga Se Y Ba Quantity, mg/kg 800 20 4 2000 50 60 - 4 30 30 - 3 4 - 50 - ISSN 0235-3490 (Print), ISSN 2616-499X (Online). Археологія, 2025, № 486 macromorphological analysis confirms the integ- rity and preservation of the ancient soil structure, and comparison with nearby background soils sup- ports the natural historical origin of the elevated metal content. Conclusion In temperate climate conditions of the forest- steppe zone, depending on the relief, soil types can form along the catena from alluvial-podzolic soils (in floodplains) to chernozems (on watersheds and especially on low terraces) and grey forest podzol- ic soils. The type of vegetation under which these soils develop is also of great importance. There- fore, it is rational to compare soils of the same geo- morphological level, as we have attempted to do. At the same time, one must consider the fact that at the time of the construction of the defensive ram- part, there likely existed broadleaf forest areas on the slopes or along the valleys of small and large rivers, which diversified the landscapes and pro- vided the local population with construction mate- rial for establishing settlements (Пуголовок та ін. 2015, с.  120-122). Archaeological evidence sup- porting this hypothesis include remnants of wooden logs in the structure of the defensive wall (Сухобо- ков, Юренко 1995, с. 6), wooden structures in the pits of dwellings (Ляпушкин 1961, с. 276), and the results of charcoal analysis from pit filling and cul- tural layer which identified the tree species as oak1. Meadow landscapes near rivers served as pas- tures, and meadow-steppe areas were used as agri- cultural land, etc. (Горбаненко, Журавльов 2021, с. 101-108). In general, the temperate climate con- ditions, relatively varied landscape differentiation on a small territory, which included fertile lands, provided comfortable conditions for establishing settlements and further economic development (Горбаненко, Журавльов 2021, с. 143-159). This is supported by the findings of grain crops and the bones of domestic and wild animals (Ляпушкин 1961, с. 276; Пашкевич, Горбаненко 2003). Overall, the number of artefacts indicating the economic activity of the settlement’s inhabitants was relatively small. Undoubtedly, the presence of grain storage pits supports the hypothesis that ag- riculture and the cultivation of cereal crops were practiced at the settlement. The primary criterion for identifying these pits is their shape — they may be 1 The analysis was made by M. S. Serheieva, DSc, a senior researcher at the Institute of Archeology of the NAS of Ukraine. pear-shaped, bell-shaped, or jug-shaped. A charac- teristic feature of these pits is the presence of a rel- atively narrow neck and walls that expand towards the even bottom (Пуголовок 2016, с.  136-137). Other finds include imprints of cereal plants on the bottoms of pots. Ceramic analysis revealed imprints of millet, wheat, rye, barley, oats, and peas (Пашке- вич, Горбаненко 2003, с. 161-163). A small num- ber of finds related to grain harvesting and process- ing, such as fragments of sickles, grinding stones, and grain mills, were also discovered (Ляпушкин 1961, с.  273; Сухобоков, Юренко 1995, с.  37). Finds associated with animal husbandry include ar- tefacts indicating the use and care of domestic ani- mals, particularly horses for riding. These include a fragment of a bit showing signs of heavy wear (Су- хобоков, Юренко 1995, с. 58), fragments of iron bridle rings, and a massive buckle tongue (Пуголо- вок 2018, с. 58; 2020, с. 163). At the same time, it is noteworthy that there are no fishing-related tools. Fish bones and scales were found only in small quantities, and only in one of the storage pits (Ля- пушкин 1961, с. 301). The presence of both large and small cattle in the herd influenced the formation of anthropogen- ic landscapes around the settlement. Animal hus- bandry was an important factor shaping agricul- tural landscapes, as livestock was used not only for food products but also for land cultivation, trans- portation, and as a source of fertiliser. Large pas- tures for livestock significantly altered natural land- scapes. The increase in the number of cattle led to an expansion of grazing areas, thus increasing the resource zone of the settlement. Pastures were lo- cated in meadows of wide floodplains and low river terraces, providing easy access to water for the ani- mals. These processes likely altered the plant cover of the area and formed anthropogenic landscapes, including arable land and pasture territories. Thus, the conducted paleoelandscape analysis of the Opishnia settlement points to the key role of nat- ural resources in choosing the settlement’s location, which was characteristic of earlier periods. Howev- er, the choice of a high topography site and the con- struction of fortifications were new phenomena for the Left Bank of the Dnieper, and the factors that led to this development remain unclear. One theory suggests a threat from the Khazar Khaganate (Су- хобоков, Юренко 1995, с. 62). At the same time, considering the presence of several ethnic groups — Slavic and Alan-Bulgarian (Пуголовок 2018, pp.  165-176) — the version of a threat from the Khaganate can be considered as one of the possible ISSN 0235-3490 (Print), ISSN 2616-499X (Online). Археологія, 2025, № 4 87 reasons for the fortification of the Opishnia settle- ment. Given that the Khazar Khaganate had signifi- cant influence over the Left Bank of the Dnipro at that time, the presence of defensive structures may have been a response to the growing military threat posed by nomadic groups inclined toward aggres- sion and conquest in the region. However, external threats should not be the only explanation. Internal factors, such as social and economic changes in so- ciety, were also important. Perhaps the fortification of settlements became part of a broader process of strengthening local tribal alliances that sought to protect their territories and resources amid increas- ing social and political competition. Received 12.03.2025 Веклич, М. Ф., Матвиишина, Ж. Н., Медведев, В. В., Сиренко, Н. А., Федоров, К. Н. 1979. Методика палеопе- дологических исследований. Киев: Наукова думка. Горбаненко, С. А. 2005. Окружающая среда и славян- ские памятники второй половины І тыс. н.э. (по материа- лам Левобережья Днепра). Stratum plus, 5, с. 400-425. 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Отчет о работе Левобереж- ного отряда Раннеславянской экспедиции Института археологии АН УССР в 1975 году. Науковий архів Інсти- туту археології НАН України, ф. 64, 1975/26а. Сухобоков, О. В. 1975b. Славяне Днепровского Лево- бережья (роменская культура и ее предшественники). Киев: Наукова думка. Сухобоков, О. В., Юренко, С. П. 1995. Опошнянское городище (по материалам археологических исследований 1975 г.). Полтава: ВЦ «Археологія». Buko,  A. 2013. Fortified Medieval Sites in Central Eu- rope: Construction, Techniques, Functions, Regional Differ- entiations . Scienze dell’Antichita, 2–3, p. 651-667. Christie, N., Herold, H. (eds.). 2016. Fortified Settlements in Early Medieval Europe: Defended Communities of the 8th- 10th Centuries. Oxford: Oxbow. Contreras,  D.  A.  (еd.). 2017. The Archaeology of Hu- man–Environment Interactions: Strategies for Investigating Anthropogenic Landscapes, Dynamic Environments, and Cli- mate Change in the Human Past. New York, Routledge. Dobrowolski, R., Rodzik,  J., Mroczek, P., Zagórski, P., Bałaga, K., Wołoszyn, M., Dzieńkowski, T., Hajdas,  I., Fe- dorowicz,  S. 2018. Environmental Conditions of Settle- ment in the Vicinity of the Mediaeval Capital of the Cherven Towns (Czermno Site, Hrubieszów Basin, Eastern Poland). Quaternary International, 493, p. 258-273. Feurdean,  A., Grindean,  R., Florescu,  G., Tantau,  I., Niedermeyer,  E.  M., Diaconu,  A.-C., Hutchinson,  S.  M., Nielsen, A. B., Sava, T., Panait, A., Braun, M., Hickler, T. 2021. The Transformation of the Forest Steppe in the ISSN 0235-3490 (Print), ISSN 2616-499X (Online). Археологія, 2025, № 488 Lower Danube Plain of Southeastern Europe: 6000 Years of Vegetation and Land Use Dynamics. Biogeosciences, 18 (3), p. 1081–1103. https://doi.org/10.5194/bg-18-1081-2021 Gerasimenko,  N., Bezusko,  L.  G., Avdieienko,  Y., Yanevich, A. 2022. Late Glacial and Holocene Vegetational and Climate Changes and Their Impact on Material Cultures in the Crimean Mountains (Founded on Pollen Data from Cave Deposits). Quaternary International, 632, p. 139-153. https://doi.org/10.1016/j.quaint.2021.12.018 Hájková,  P., Petr,  L., Horsak,  M., Jamrichova,  E., Rolecek, J. 2022. Holocene History of the Landscape at the Biogeographical and Cultural Crossroads Between Central and Eastern Europe (Western Podillia, Ukraine). Quaternary Science Reviews, 288, p. 1-16. https://doi.org/10.1016/j. quascirev.2022.107610 Herold,  H. 2016. The Natural Environment, Anthropo- genic Influences and Supra-Regional Contacts at 9th to 10th Century Fortified Elite Settlements in Central Europe. In: Christie, N., Herold, H. (eds). Fortified Settlements in Early Medieval Europe. Oxford: Oxbow, p. 107-120. Hildebrandt-Radke, I., Makarovich, P., Matviishyna, Zh., Parhomenko,  A., Lysenko,  S., Kochkin,  I. 2019. Late Neolithic and Middle Bronze Age Barrows in Bukivnia, Western Ukraine as a Source to Understand Soil Evolution and Its Environmental Significance. Journal of Archaeological Science Reports, 27, p.  23-42. https://doi.org/10.1016/j. jasrep.2019.101972 Kiosak,  D., Matviishyna,  Z. 2023. The Soils of Early Farmers and Their Neighbors in the Southern Buh Catchment (Ukraine): Micromorphology and Archaeological Context. Land, 12 (2), p. 388-402. https://doi.org/10.3390/land12020388 Leiberiuk, O., Kushnir, A., Shvaiko, V. 2024. Develop- ment of a Mapping Web Application for Paleo-Soil Research of the Holocene Stage of the Plain Territory of Ukraine. In- ternational Conference of Young Professionals «GeoTer- race-2024». Lviv, Ukraine, 7–9 October 2024. European As- sociation of Geoscientists & Engineers, p.  1-5. https://doi. org/10.3997/2214-4609.2024510059 Marcinkowski, M, Szczepaniak, M. 2019. Geoarchaeolo- gy of the Early Medieval Stronghold Surroundings in Grzybo- wo Near Września, Greater Poland. Quaestiones Geographi- cae, 38, 3, p. 95-108. Petr,  L., Petřík,  J., Kočár,  P., Dresler,  D. 2025. Late Holocene Environmental Changes and Human Subsistence in an Alluvial Landscape: A Case Study from the Pohansko Site on the Dyje (Thaya) River in Czechia. Human Ecology, 53, p. 151-164. https://doi.org/10.1007/s10745-025-00584-y Šalkovský,  P. 2015. Hrady západných slovanov. Nitra: Archeologicky ústav Slovenskej akadémie vied. Zamelska-Monczak,  K., Piotrowski,  A., Sydor,  P., Żuk, T., Rzodkiewicz, M., Noryśkiewicz, A., Krzymińska, J. 2021. Geoarchaeological Studies in the Early Medieval San- tok Stronghold (North-Western Poland). Geoarchaeology, 36, p. 978-1008. Юрій О. Пуголовок1, Анатолій С. Кушнір2, Жанна М. Матвіїшина3 1Кандидат історичних наук, старший науковий співробітник ДП «Науково-дослідний центр «Охоронна археологічна служба України», Інститут археології НАН України, ORCID: 0000-0002-7610-8005, yuriy.puholovok@gmail.com 2Кандидат географічних наук, cтарший науковий співробітник відділу геоморфології та палеогеографії, Інститут гео- графії НАН України, ORCID: 0000-0001-8995-1467, kushnir.paleogeo@gmail.com 3Доктор географічних наук, професор, завідувач сектора палеогеографії, Інститут географії НАН України, ORCID: 0000-0003-1412-7232, kas05061988@ukr.net ПАЛЕОЛАНДШАФТНИЙ АНАЛІЗ РАННЬОСЛОВ’ЯНСЬКОГО ГОРОДИЩА В ОПІШНІ Cтаттю присвячено міждисциплінарним дослідженням Опішнянського городища. Його палеоландшафтний аналіз вказує на ключову роль природних ресурсів у виборі місця для розміщення поселення, що було характерним і для попередніх епох. Однак вибір місця з високою топографією і побудова укріплень були явищем новим для території Дніпровського Лівобережжя, і фактори, що викликали це явище, не до кінця зрозумілі. Серед них виказувалося припущення про загрозу з боку Хозарського каганату. У той же час, з огляду на наявність кількох етнічних груп населення — слов’янської та алано- болгарської, версію про загрозу від каганату можна розглядати як одну з можливих причин укріплення Опішнянського городища. Враховуючи, що в цей період Хозарський каганат мав значний вплив на Лівобережжя Дніпра, наявність оборонних споруд може бути реакцією на зростаючу військову загрозу з боку кочових народів, які мали тенденцію до агресії і завоювань у регіоні. Однак не можна зводити всі фактори лише до зовнішньої загрози. Важливими є і внутрішні аспекти, зокрема соціально-економічні зміни в суспільстві. Можливо, укріплення поселень стало частиною загального процесу зміцнення місцевих племінних союзів, що прагнули до захисту своїх територій і ресурсів у контексті підвищення соціальної та політичної конкуренції між ними. Результати палеландшафтного аналізу свідчать про те, що на момент спорудження оборонного валу в околицях городища на схилах або вздовж долин малих і великих річок існували ділянки широколистяних лісів. Вони урізноманітнювали ландшафти і забезпечували тогочасне населення будівельним матеріалом під час заснування городища. Лучні ландшафти біля річок слугували пасовищами, лучно-степові ділянки використовувалися як сільськогосподарські угіддя тощо. Загалом, помірні кліматичні умови та відносно різноманітна ландшафтна диференціація на невеликій території, зокрема родючі землі, забезпечували комфортні умови для заснування поселень і подальшого розвитку ремесел. 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ISSN 0235-3490 (Print), ISSN 2616-499X (Online). Археологія, 2025, № 490 Feurdean, A., Grindean, R., Florescu, G., Tantau, I., Niedermeyer, E. M., Diaconu, A.-C., Hutchinson, S. M., Nielsen, A. B., Sava, T., Panait, A., Braun, M., Hickler, T. 2021. The Transformation of the Forest Steppe in the Lower Danube Plain of Southeastern Europe: 6000 Years of Vegetation and Land Use Dynamics. Biogeosciences, 18 (3), p. 1081–1103. https:// doi.org/10.5194/bg-18-1081-2021 Gerasimenko, N., Bezusko, L. G., Avdieienko, Y., Yanevich, A. 2022. Late Glacial and Holocene Vegetational and Climate Changes and Their Impact on Material Cultures in the Crimean Mountains (Founded on Pollen Data from Cave Deposits). Quaternary International, 632, p. 139-153. https://doi.org/10.1016/j.quaint.2021.12.018 Hájková, P., Petr, L., Horsak, M., Jamrichova, E., Rolecek, J. 2022. 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The Soils of Early Farmers and Their Neighbors in the Southern Buh Catchment (Ukraine): Micromorphology and Archaeological Context. Land, 12 (2), p. 388-402. https://doi.org/10.3390/land12020388 Leiberiuk, O., Kushnir, A., Shvaiko, V. 2024. Development of a Mapping Web Application for Paleo-Soil Research of the Holo- cene Stage of the Plain Territory of Ukraine. International Conference of Young Professionals “GeoTerrace-2024”. Lviv, Ukraine, 7–9  October 2024. European Association of Geoscientists & Engineers, p.  1-5. https://doi.org/10.3997/2214- 4609.2024510059 Marcinkowski, M, Szczepaniak, M. 2019. Geoarchaeology of the Early Medieval Stronghold Surroundings in Grzybowo Near Września, Greater Poland. Quaestiones Geographicae, 38, 3, p. 95-108. Petr, L., Petřík, J., Kočár, P., Dresler, D. 2025. Late Holocene Environmental Changes and Human Subsistence in an Alluvial Landscape: A Case Study from the Pohansko Site on the Dyje (Thaya) River in Czechia. Human Ecology, 53, p. 151-164. https://doi.org/10.1007/s10745-025-00584-y Šalkovský, P. 2015. Hrady západných slovanov. Nitra: Archeologicky ústav Slovenskej akadémie vied. Zamelska-Monczak, K., Piotrowski, A., Sydor, P., Żuk, T., Rzodkiewicz, M., Noryśkiewicz, A., Krzymińska, J. 2021. Geoar- chaeological Studies in the Early Medieval Santok Stronghold (North-Western Poland). Geoarchaeology, 36, p. 978-1008.
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spelling arheologia-com-ua-article-4332025-12-08T01:02:24Z Paleolandscape Analysis of the Early Slavic Hillfort in Opishnia Палеоландшафтний аналіз ранньослов’янського городища в Опішні Puholovok , Yu. O. Kushnir , A. S. Matviishyna , Zh. M. the Early Middle Ages, Romny culture, the Slavs, hillfort, geoarchaeology, paleolandscapes, soil, natural conditions. раннє середньовіччя, роменська культура, слов’яни, городище, геоархеологія, палеоландшафти, ґрунт, природні умови. This article is dedicated to interdisciplinary research of the Opishnia settlement. Based on the integration of archaeological and paleogeographical data, a paleolandscape analysis of the early Slavic settlement is conducted. The study reconstructs the natural environment of the settlement in the Early Middle Ages, highlighting its landscape conditions, main principles of economic activity, and the formation structure. Cтаттю присвячено міждисциплінарним дослідженням Опішнянського городища. Його палеоландшафтний аналіз вказує на ключову роль природних ресурсів у виборі місця для розміщення поселення, що було характерним і для попередніх епох. Однак вибір місця з високою топографією і побудова укріплень були явищем новим для території Дніпровського Лівобережжя, і фактори, що викликали це явище, не до кінця зрозумілі. Серед них виказувалося припущення про загрозу з боку Хозарського каганату. У той же час, з огляду на наявність кількох етнічних груп населення — слов’янської та алано-болгарської, версію про загрозу від каганату можна розглядати як одну з можливих причин укріплення Опішнянського городища. Враховуючи, що в цей період Хозарський каганат мав значний вплив на Лівобережжя Дніпра, наявність оборонних споруд може бути реакцією на зростаючу військову загрозу з боку кочових народів, які мали тенденцію до агресії і завоювань у регіоні. Однак не можна зводити всі фактори лише до зовнішньої загрози. Важливими є і внутрішні аспекти, зокрема соціально-економічні зміни в суспільстві. Можливо, укріплення поселень стало частиною загального процесу зміцнення місцевих племінних союзів, що прагнули до захисту своїх територій і ресурсів у контексті підвищення соціальної та політичної конкуренції між ними. Результати палеландшафтного аналізу свідчать про те, що на момент спорудження оборонного валу в околицях городища на схилах або вздовж долин малих і великих річок існували ділянки широколистяних лісів. Вони урізноманітнювали ландшафти і забезпечували тогочасне населення будівельним матеріалом під час заснування городища. Лучні ландшафти біля річок слугували пасовищами, лучно-степові ділянки використовувалися як сільськогосподарські угіддя тощо. Загалом, помірні кліматичні умови та відносно різноманітна ландшафтна диференціація на невеликій території, зокрема родючі землі, забезпечували комфортні умови для заснування поселень і подальшого розвитку ремесел. Institute of Archaeology NAS of Ukraine 2025-12-02 Article Article application/pdf https://arheologia.com.ua/index.php/arheologia/article/view/433 10.15407/archaeologyua2025.04.077 Arheologia; No 4 (2025): Arheologia; 77-90 Археологія ; № 4 (2025): Археологія; 77-90 Археология; № 4 (2025): Arheologia; 77-90 2616-499X 0235-3490 en https://arheologia.com.ua/index.php/arheologia/article/view/433/440 Copyright (c) 2025 Arheologia https://creativecommons.org/licenses/by-nc-nd/4.0/legalcode.en
spellingShingle раннє середньовіччя
роменська культура
слов’яни
городище
геоархеологія
палеоландшафти
ґрунт
природні умови.
Puholovok , Yu. O.
Kushnir , A. S.
Matviishyna , Zh. M.
Палеоландшафтний аналіз ранньослов’янського городища в Опішні
title Палеоландшафтний аналіз ранньослов’янського городища в Опішні
title_alt Paleolandscape Analysis of the Early Slavic Hillfort in Opishnia
title_full Палеоландшафтний аналіз ранньослов’янського городища в Опішні
title_fullStr Палеоландшафтний аналіз ранньослов’янського городища в Опішні
title_full_unstemmed Палеоландшафтний аналіз ранньослов’янського городища в Опішні
title_short Палеоландшафтний аналіз ранньослов’янського городища в Опішні
title_sort палеоландшафтний аналіз ранньослов’янського городища в опішні
topic раннє середньовіччя
роменська культура
слов’яни
городище
геоархеологія
палеоландшафти
ґрунт
природні умови.
topic_facet the Early Middle Ages
Romny culture
the Slavs
hillfort
geoarchaeology
paleolandscapes
soil
natural conditions.
раннє середньовіччя
роменська культура
слов’яни
городище
геоархеологія
палеоландшафти
ґрунт
природні умови.
url https://arheologia.com.ua/index.php/arheologia/article/view/433
work_keys_str_mv AT puholovokyuo paleolandscapeanalysisoftheearlyslavichillfortinopishnia
AT kushniras paleolandscapeanalysisoftheearlyslavichillfortinopishnia
AT matviishynazhm paleolandscapeanalysisoftheearlyslavichillfortinopishnia
AT puholovokyuo paleolandšaftnijanalízrannʹoslovânsʹkogogorodiŝavopíšní
AT kushniras paleolandšaftnijanalízrannʹoslovânsʹkogogorodiŝavopíšní
AT matviishynazhm paleolandšaftnijanalízrannʹoslovânsʹkogogorodiŝavopíšní