Study and Application on Primary Frequency Modulation Capability by Using Comprehensive Energy Storage of a 660 MW Water Heat and Power Cogeneration Supercritical Unit

In this paper, the design parameters such as the heat balance diagram of a 660 MW water heat and power cogeneration supercritical unit are used to conduct the theoretical study based on the quantitative analysis of the primary frequency modulation capacity of condensate throttling and heat extractio...

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Main Authors: Shunqing CHEN, Jianping YAN, Yusheng ZHANG
Format: Article
Language:zho
Published: State Grid Energy Research Institute 2020-01-01
Series:Zhongguo dianli
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Online Access:https://www.electricpower.com.cn/CN/10.11930/j.issn.1004-9649.201904094
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author Shunqing CHEN
Jianping YAN
Yusheng ZHANG
author_facet Shunqing CHEN
Jianping YAN
Yusheng ZHANG
author_sort Shunqing CHEN
collection DOAJ
description In this paper, the design parameters such as the heat balance diagram of a 660 MW water heat and power cogeneration supercritical unit are used to conduct the theoretical study based on the quantitative analysis of the primary frequency modulation capacity of condensate throttling and heat extraction throttling of the unit. Then the theoretical gain and rule of each throttling change corresponding to the unit power change are obtained respectively under the working conditions of 100%, 75% and 50% THA. Within the scope of safety control, the experimental study on primary frequency modulation capability in terms of comprehensive energy storage of the unit is carried out, hence the actual gain and rule of each throttling change corresponding to the unit power change as well as the actual capacity of primary frequency modulation in terms of comprehensive energy storage are calculated under the working conditions of 350 MW, 450 MW and 600 MW respectively. Based on the original primary frequency modulation control logic of the unit and in combination with the experimental results, a comprehensive energy storage module is developed for the primary frequency modulation of the unit. The simulation application demonstrates satisfactory results. The primary frequency modulation capability has met the related requirements and therefore indirectly improved the economic efficiency of the unit.
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spelling doaj-art-4bb3f8a4cefe48ceb21ac3922cc84d3c2025-08-20T02:52:37ZzhoState Grid Energy Research InstituteZhongguo dianli1004-96492020-01-0153117718410.11930/j.issn.1004-9649.201904094zgdl-53-1-chenshunqingStudy and Application on Primary Frequency Modulation Capability by Using Comprehensive Energy Storage of a 660 MW Water Heat and Power Cogeneration Supercritical UnitShunqing CHEN0Jianping YAN1Yusheng ZHANG2Hebei Guohua Cangdong Power Generation Co., Ltd., Cangzhou 061003, ChinaHebei Guohua Cangdong Power Generation Co., Ltd., Cangzhou 061003, ChinaHebei Guohua Cangdong Power Generation Co., Ltd., Cangzhou 061003, ChinaIn this paper, the design parameters such as the heat balance diagram of a 660 MW water heat and power cogeneration supercritical unit are used to conduct the theoretical study based on the quantitative analysis of the primary frequency modulation capacity of condensate throttling and heat extraction throttling of the unit. Then the theoretical gain and rule of each throttling change corresponding to the unit power change are obtained respectively under the working conditions of 100%, 75% and 50% THA. Within the scope of safety control, the experimental study on primary frequency modulation capability in terms of comprehensive energy storage of the unit is carried out, hence the actual gain and rule of each throttling change corresponding to the unit power change as well as the actual capacity of primary frequency modulation in terms of comprehensive energy storage are calculated under the working conditions of 350 MW, 450 MW and 600 MW respectively. Based on the original primary frequency modulation control logic of the unit and in combination with the experimental results, a comprehensive energy storage module is developed for the primary frequency modulation of the unit. The simulation application demonstrates satisfactory results. The primary frequency modulation capability has met the related requirements and therefore indirectly improved the economic efficiency of the unit.https://www.electricpower.com.cn/CN/10.11930/j.issn.1004-9649.201904094water heat and power cogenerationsupercritical unitcomprehensive energy storageprimary frequency modulation capacitytheoretical studyexperimental studyapplication
spellingShingle Shunqing CHEN
Jianping YAN
Yusheng ZHANG
Study and Application on Primary Frequency Modulation Capability by Using Comprehensive Energy Storage of a 660 MW Water Heat and Power Cogeneration Supercritical Unit
Zhongguo dianli
water heat and power cogeneration
supercritical unit
comprehensive energy storage
primary frequency modulation capacity
theoretical study
experimental study
application
title Study and Application on Primary Frequency Modulation Capability by Using Comprehensive Energy Storage of a 660 MW Water Heat and Power Cogeneration Supercritical Unit
title_full Study and Application on Primary Frequency Modulation Capability by Using Comprehensive Energy Storage of a 660 MW Water Heat and Power Cogeneration Supercritical Unit
title_fullStr Study and Application on Primary Frequency Modulation Capability by Using Comprehensive Energy Storage of a 660 MW Water Heat and Power Cogeneration Supercritical Unit
title_full_unstemmed Study and Application on Primary Frequency Modulation Capability by Using Comprehensive Energy Storage of a 660 MW Water Heat and Power Cogeneration Supercritical Unit
title_short Study and Application on Primary Frequency Modulation Capability by Using Comprehensive Energy Storage of a 660 MW Water Heat and Power Cogeneration Supercritical Unit
title_sort study and application on primary frequency modulation capability by using comprehensive energy storage of a 660 mw water heat and power cogeneration supercritical unit
topic water heat and power cogeneration
supercritical unit
comprehensive energy storage
primary frequency modulation capacity
theoretical study
experimental study
application
url https://www.electricpower.com.cn/CN/10.11930/j.issn.1004-9649.201904094
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AT jianpingyan studyandapplicationonprimaryfrequencymodulationcapabilitybyusingcomprehensiveenergystorageofa660mwwaterheatandpowercogenerationsupercriticalunit
AT yushengzhang studyandapplicationonprimaryfrequencymodulationcapabilitybyusingcomprehensiveenergystorageofa660mwwaterheatandpowercogenerationsupercriticalunit