ВИПРОБУВАННЯ ПІЛОТНОЇ УСТАНОВКИ ҐРУНТОВОГО РЕГЕНЕРАТОРА ДЛЯ ТЕПЛИЦЬ

The relevance of the development of ground regenerative heat exchangers is determined by the need to save energy resources for heating greenhouses at night and maintaining the required temperature level during the day. The aim of the work is to study working capacity of a ground regenerator for a gr...

Ausführliche Beschreibung

Gespeichert in:
Bibliographische Detailangaben
Datum:2021
Hauptverfasser: Boshkova, I.L., Volgusheva, N.V., Mukminov, I.I., Altman, E.I.
Format: Artikel
Sprache:Ukrainian
Veröffentlicht: Institute of Engineering Thermophysics of NAS of Ukraine 2021
Online Zugang:https://ihe.nas.gov.ua/index.php/journal/article/view/458
Tags: Tag hinzufügen
Keine Tags, Fügen Sie den ersten Tag hinzu!
Назва журналу:Thermophysics and Thermal Power Engineering

Institution

Thermophysics and Thermal Power Engineering
id oai:ojs2.ihenasgovua.s43.yourdomain.com.ua:article-458
record_format ojs
spelling oai:ojs2.ihenasgovua.s43.yourdomain.com.ua:article-4582021-12-08T08:17:52Z TEST OF A PILOT INSTALLATION OF A SOIL REGENERATOR FOR GREENHOUSES ИСПЫТАНИЕ ПИЛОТНОЙ УСТАНОВКИ ГРУНТОВОГО РЕГЕНЕРАТОРА ДЛЯ ТЕПЛИЦ ВИПРОБУВАННЯ ПІЛОТНОЇ УСТАНОВКИ ҐРУНТОВОГО РЕГЕНЕРАТОРА ДЛЯ ТЕПЛИЦЬ Boshkova, I.L. Volgusheva, N.V. Mukminov, I.I. Altman, E.I. The relevance of the development of ground regenerative heat exchangers is determined by the need to save energy resources for heating greenhouses at night and maintaining the required temperature level during the day. The aim of the work is to study working capacity of a ground regenerator for a greenhouse when testing a pilot plant in full-scale conditions. To achieve this goal the following main tasks were solved: experimental research of soil regenerator pilot plant operation was carried out, the heating period of nozzle and cooling period were determined by the obtained temperature curves, the coefficient of intercomponent heat exchange during the heating period was estimated, the rationality of material choice for granulated nozzle was proved, recommendations on improvement of soil regenerator design for industrial use were developed. The research was conducted on a pilot installation of a soil regenerator, which consists of a heat-exchange duct filled with granulated material and covered with a layer of insulation, and ducts with an exhaust duct fan installed at the outlet. Data on air and nozzle temperatures, which were taken during the day, were used to conduct thermal calculations and assess the efficiency of the ground regenerator. It was determined that the heating period at the selected loading mass of 15.5 kg is not long relative to the duration of the experiment and was 166 min. To increase the amount of accumulated heat it is recommended to increase the weight of the nozzle and air flow rate. It was determined that the coefficient of inter-component heat transfer during the heating period varied between 4 W/m2K and 9 W/m2K. In this case, the Bio number is in the range of 0.05 - 0.10, which allows us to conclude that the use of crushed stone as a nozzle material is rational. It is recommended to increase the thickness of insulation to 4.3 cm so that the heat loss from the heat exchange section does not exceed 5%, and to provide the installation of insulated plugs at the ends of the heat exchange section, closing after the end of the heating period. Проведен анализ экспериментальных зависимостей изменения температур воздуха и гранулированной насадки регенеративного грунтового теплообменника от времени в течение суток. Определены значения коэффициента межкомпонентного теплообмена и теплового потока в период нагрева. Сформулированы рекомендации по улучшению конструкции грунтового регенератора для теплиц. Проведено аналіз експериментальних залежностей зміни температур повітря і гранульованої насадки регенеративного ґрунтового теплообмінника від часу протягом доби. Визначені значення коефіцієнта міжкомпонентного теплообміну і теплового потоку в період нагріву. Сформульовано рекомендації щодо удосконалення конструкції ґрунтового регенератора для теплиць. Institute of Engineering Thermophysics of NAS of Ukraine 2021-10-08 Article Article application/pdf https://ihe.nas.gov.ua/index.php/journal/article/view/458 10.31472/ttpe.3.2021.11 Thermophysics and Thermal Power Engineering; Vol 43 No 3 (2021): Thermophysics and Thermal Power Engineering; 85-92 Теплофизика и Теплоэнергетика; Vol 43 No 3 (2021): Thermophysics and Thermal Power Engineering; 85-92 Теплофізика та Теплоенергетика; Vol 43 No 3 (2021): Thermophysics and Thermal Power Engineering; 85-92 2663-7235 uk https://ihe.nas.gov.ua/index.php/journal/article/view/458/387 https://creativecommons.org/licenses/by/4.0
institution Thermophysics and Thermal Power Engineering
baseUrl_str
datestamp_date 2021-12-08T08:17:52Z
collection OJS
language Ukrainian
format Article
author Boshkova, I.L.
Volgusheva, N.V.
Mukminov, I.I.
Altman, E.I.
spellingShingle Boshkova, I.L.
Volgusheva, N.V.
Mukminov, I.I.
Altman, E.I.
ВИПРОБУВАННЯ ПІЛОТНОЇ УСТАНОВКИ ҐРУНТОВОГО РЕГЕНЕРАТОРА ДЛЯ ТЕПЛИЦЬ
author_facet Boshkova, I.L.
Volgusheva, N.V.
Mukminov, I.I.
Altman, E.I.
author_sort Boshkova, I.L.
title ВИПРОБУВАННЯ ПІЛОТНОЇ УСТАНОВКИ ҐРУНТОВОГО РЕГЕНЕРАТОРА ДЛЯ ТЕПЛИЦЬ
title_short ВИПРОБУВАННЯ ПІЛОТНОЇ УСТАНОВКИ ҐРУНТОВОГО РЕГЕНЕРАТОРА ДЛЯ ТЕПЛИЦЬ
title_full ВИПРОБУВАННЯ ПІЛОТНОЇ УСТАНОВКИ ҐРУНТОВОГО РЕГЕНЕРАТОРА ДЛЯ ТЕПЛИЦЬ
title_fullStr ВИПРОБУВАННЯ ПІЛОТНОЇ УСТАНОВКИ ҐРУНТОВОГО РЕГЕНЕРАТОРА ДЛЯ ТЕПЛИЦЬ
title_full_unstemmed ВИПРОБУВАННЯ ПІЛОТНОЇ УСТАНОВКИ ҐРУНТОВОГО РЕГЕНЕРАТОРА ДЛЯ ТЕПЛИЦЬ
title_sort випробування пілотної установки ґрунтового регенератора для теплиць
title_alt TEST OF A PILOT INSTALLATION OF A SOIL REGENERATOR FOR GREENHOUSES
ИСПЫТАНИЕ ПИЛОТНОЙ УСТАНОВКИ ГРУНТОВОГО РЕГЕНЕРАТОРА ДЛЯ ТЕПЛИЦ
description The relevance of the development of ground regenerative heat exchangers is determined by the need to save energy resources for heating greenhouses at night and maintaining the required temperature level during the day. The aim of the work is to study working capacity of a ground regenerator for a greenhouse when testing a pilot plant in full-scale conditions. To achieve this goal the following main tasks were solved: experimental research of soil regenerator pilot plant operation was carried out, the heating period of nozzle and cooling period were determined by the obtained temperature curves, the coefficient of intercomponent heat exchange during the heating period was estimated, the rationality of material choice for granulated nozzle was proved, recommendations on improvement of soil regenerator design for industrial use were developed. The research was conducted on a pilot installation of a soil regenerator, which consists of a heat-exchange duct filled with granulated material and covered with a layer of insulation, and ducts with an exhaust duct fan installed at the outlet. Data on air and nozzle temperatures, which were taken during the day, were used to conduct thermal calculations and assess the efficiency of the ground regenerator. It was determined that the heating period at the selected loading mass of 15.5 kg is not long relative to the duration of the experiment and was 166 min. To increase the amount of accumulated heat it is recommended to increase the weight of the nozzle and air flow rate. It was determined that the coefficient of inter-component heat transfer during the heating period varied between 4 W/m2K and 9 W/m2K. In this case, the Bio number is in the range of 0.05 - 0.10, which allows us to conclude that the use of crushed stone as a nozzle material is rational. It is recommended to increase the thickness of insulation to 4.3 cm so that the heat loss from the heat exchange section does not exceed 5%, and to provide the installation of insulated plugs at the ends of the heat exchange section, closing after the end of the heating period.
publisher Institute of Engineering Thermophysics of NAS of Ukraine
publishDate 2021
url https://ihe.nas.gov.ua/index.php/journal/article/view/458
work_keys_str_mv AT boshkovail testofapilotinstallationofasoilregeneratorforgreenhouses
AT volgushevanv testofapilotinstallationofasoilregeneratorforgreenhouses
AT mukminovii testofapilotinstallationofasoilregeneratorforgreenhouses
AT altmanei testofapilotinstallationofasoilregeneratorforgreenhouses
AT boshkovail ispytaniepilotnojustanovkigruntovogoregeneratoradlâteplic
AT volgushevanv ispytaniepilotnojustanovkigruntovogoregeneratoradlâteplic
AT mukminovii ispytaniepilotnojustanovkigruntovogoregeneratoradlâteplic
AT altmanei ispytaniepilotnojustanovkigruntovogoregeneratoradlâteplic
AT boshkovail viprobuvannâpílotnoíustanovkigruntovogoregeneratoradlâteplicʹ
AT volgushevanv viprobuvannâpílotnoíustanovkigruntovogoregeneratoradlâteplicʹ
AT mukminovii viprobuvannâpílotnoíustanovkigruntovogoregeneratoradlâteplicʹ
AT altmanei viprobuvannâpílotnoíustanovkigruntovogoregeneratoradlâteplicʹ
first_indexed 2025-12-17T13:55:42Z
last_indexed 2025-12-17T13:55:42Z
_version_ 1851763974723338240