Test rig of OJSC «Turboatom» for physical simulation of hydrodynamic process in water passages of model Kaplan hydroturbines

The description of the main and auxiliary equipment of the ЭКС-100 Power-cavitation test rig of OJSC Turboatom’s hydraulic turbine laboratory is given. The test rig is an installation with a closed circuit of water circulation. The selective tests as well as acceptance tests of hydraulic turbines, p...

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Дата:2014
Автори: Линник, А. В., Рябов, А. В.
Формат: Стаття
Мова:Russian
Опубліковано: Journal of Mechanical Engineering 2014
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Онлайн доступ:https://journals.uran.ua/jme/article/view/31401
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Назва журналу:Journal of Mechanical Engineering

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Journal of Mechanical Engineering
id journalsuranuajme-article-31401
record_format ojs
spelling journalsuranuajme-article-314012015-04-01T15:47:18Z Test rig of OJSC «Turboatom» for physical simulation of hydrodynamic process in water passages of model Kaplan hydroturbines Экспериментальный стенд ОАО «Турбоатом» для физического моделирования гидродинамических процессов в проточных частях моделей поворотно-лопастных гидротурбин Линник, А. В. Рябов, А. В. power-cavitation test rig hydraulic turbine model testing measurement error УДК 621.224 энергокавитационный стенд гидротурбина модельные испытания погрешность измерения УДК 621.224 енергокавітаційний стенд гідротурбіна модельні дослідження похибка вимірювання УДК 621.224 The description of the main and auxiliary equipment of the ЭКС-100 Power-cavitation test rig of OJSC Turboatom’s hydraulic turbine laboratory is given. The test rig is an installation with a closed circuit of water circulation. The selective tests as well as acceptance tests of hydraulic turbines, pumps and reversible hydraulic machines are performed at the test rig. During the testing the energy, cavitation, pulsation, power, erosion characteristics of water passages of model hydraulic machines are registered as well as the whole work package in the scope specified by the IEC 60193 Code of the model acceptance test of hydraulic turbines and reversible hydraulic machines. The broad operational capabilities of the test rig, steady operation, equipment with miscellaneous devices and means of their calibration, automated measuring system and mathematical treatment of results allow to obtain the hydraulic machine models’ characteristics with a high degree of reliability, provide adherence to the modeling criteria stipulated by the international IEC60193  Code and other requirements applicable to acceptance tests. It is demonstrated that the hydraulic characteristics of the test rig and applicable measuring equipment as well as used graduation procedures of primary detectors provide a precision of measurements corresponding to the requirements of IEC 60193 Code of the model acceptance test of hydraulic turbines and reversible hydraulic machines. The test rig has a calibration certificate and is officially accepted by means of comparison tests of the same hydraulic model turbines at the laboratories of NEL (Great Britain) and СКD Blansko (Czech Republic), during those tests a fine precision is obtained. Приведено описание основного и вспомогательного оборудования энергокавитационного стенда ЭКС-100 гидротурбинной лаборатории ОАО «Турбоатом». Показано, что гидравлические характеристики стенда и применяемых средств измерения, а также используемые процедуры градуировок первичных датчиков обеспечивают точность измерений, отвечающих требованиям кода модельных приемо-сдаточных испытаний гидротурбин и обратимых гидромашин IEC 60193. Наведено опис основного та допоміжного обладнання енергокавітаційного стенду ЭКС-100 гідротурбінної лабораторії ВАТ «Турбоатом». Показано, що гідравлічні стенди і засоби вимірювання, що застосовуються, а також застосовані процедури градуювання первинних датчиків забезпечують точність вимірювань, які відповідають вимогам коду модельних прийомо-здавальних випробувань гідротурбін та оборотних гідромашин IEC 60193. Journal of Mechanical Engineering Проблемы машиностроения Проблеми машинобудування 2014-11-28 Article Article application/pdf https://journals.uran.ua/jme/article/view/31401 Journal of Mechanical Engineering; Vol. 17 No. 3 (2014); 3-11 Проблемы машиностроения; Том 17 № 3 (2014); 3-11 Проблеми машинобудування; Том 17 № 3 (2014); 3-11 2709-2992 2709-2984 ru https://journals.uran.ua/jme/article/view/31401/36447 Copyright (c) 2015 А. В. Линник, А. В. Рябов https://creativecommons.org/licenses/by-nd/4.0
institution Journal of Mechanical Engineering
collection OJS
language Russian
topic power-cavitation test rig
hydraulic turbine
model testing
measurement error
УДК 621.224
энергокавитационный стенд
гидротурбина
модельные испытания
погрешность измерения
УДК 621.224
енергокавітаційний стенд
гідротурбіна
модельні дослідження
похибка вимірювання
УДК 621.224
spellingShingle power-cavitation test rig
hydraulic turbine
model testing
measurement error
УДК 621.224
энергокавитационный стенд
гидротурбина
модельные испытания
погрешность измерения
УДК 621.224
енергокавітаційний стенд
гідротурбіна
модельні дослідження
похибка вимірювання
УДК 621.224
Линник, А. В.
Рябов, А. В.
Test rig of OJSC «Turboatom» for physical simulation of hydrodynamic process in water passages of model Kaplan hydroturbines
topic_facet power-cavitation test rig
hydraulic turbine
model testing
measurement error
УДК 621.224
энергокавитационный стенд
гидротурбина
модельные испытания
погрешность измерения
УДК 621.224
енергокавітаційний стенд
гідротурбіна
модельні дослідження
похибка вимірювання
УДК 621.224
format Article
author Линник, А. В.
Рябов, А. В.
author_facet Линник, А. В.
Рябов, А. В.
author_sort Линник, А. В.
title Test rig of OJSC «Turboatom» for physical simulation of hydrodynamic process in water passages of model Kaplan hydroturbines
title_short Test rig of OJSC «Turboatom» for physical simulation of hydrodynamic process in water passages of model Kaplan hydroturbines
title_full Test rig of OJSC «Turboatom» for physical simulation of hydrodynamic process in water passages of model Kaplan hydroturbines
title_fullStr Test rig of OJSC «Turboatom» for physical simulation of hydrodynamic process in water passages of model Kaplan hydroturbines
title_full_unstemmed Test rig of OJSC «Turboatom» for physical simulation of hydrodynamic process in water passages of model Kaplan hydroturbines
title_sort test rig of ojsc «turboatom» for physical simulation of hydrodynamic process in water passages of model kaplan hydroturbines
title_alt Экспериментальный стенд ОАО «Турбоатом» для физического моделирования гидродинамических процессов в проточных частях моделей поворотно-лопастных гидротурбин
description The description of the main and auxiliary equipment of the ЭКС-100 Power-cavitation test rig of OJSC Turboatom’s hydraulic turbine laboratory is given. The test rig is an installation with a closed circuit of water circulation. The selective tests as well as acceptance tests of hydraulic turbines, pumps and reversible hydraulic machines are performed at the test rig. During the testing the energy, cavitation, pulsation, power, erosion characteristics of water passages of model hydraulic machines are registered as well as the whole work package in the scope specified by the IEC 60193 Code of the model acceptance test of hydraulic turbines and reversible hydraulic machines. The broad operational capabilities of the test rig, steady operation, equipment with miscellaneous devices and means of their calibration, automated measuring system and mathematical treatment of results allow to obtain the hydraulic machine models’ characteristics with a high degree of reliability, provide adherence to the modeling criteria stipulated by the international IEC60193  Code and other requirements applicable to acceptance tests. It is demonstrated that the hydraulic characteristics of the test rig and applicable measuring equipment as well as used graduation procedures of primary detectors provide a precision of measurements corresponding to the requirements of IEC 60193 Code of the model acceptance test of hydraulic turbines and reversible hydraulic machines. The test rig has a calibration certificate and is officially accepted by means of comparison tests of the same hydraulic model turbines at the laboratories of NEL (Great Britain) and СКD Blansko (Czech Republic), during those tests a fine precision is obtained.
publisher Journal of Mechanical Engineering
publishDate 2014
url https://journals.uran.ua/jme/article/view/31401
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first_indexed 2024-06-01T14:42:33Z
last_indexed 2024-06-01T14:42:33Z
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