Study on Thermodynamic Performance of Volume Expanding Evaporative Solar System Hybrid with Coal Fired Power Generation System under Varying Radiations

To avoid heat flux variations and non-uniform vapor-liquid distribution in parabolic collectors, the volume expanding evaporative solar steam generation system is proposed. Using actual solar radiation data from NASA SSE6.0 database, a 600 MW coal-fired power plant hybrid with a volume expanding eva...

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Main Author: Lei FENG
Format: Article
Language:zho
Published: State Grid Energy Research Institute 2019-02-01
Series:Zhongguo dianli
Subjects:
Online Access:https://www.electricpower.com.cn/CN/10.11930/j.issn.1004-9649.201804054
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author Lei FENG
author_facet Lei FENG
author_sort Lei FENG
collection DOAJ
description To avoid heat flux variations and non-uniform vapor-liquid distribution in parabolic collectors, the volume expanding evaporative solar steam generation system is proposed. Using actual solar radiation data from NASA SSE6.0 database, a 600 MW coal-fired power plant hybrid with a volume expanding evaporative steam generation system was established. Turbine stages at off-design condition were calculated with DNI data over a one-year period. And the daily, monthly and yearly thermodynamic performance of the hybrid system in Lhasa area was analyzed respectively. The results exhibit the same trends in steam mass flow, daily power generation and DNI with the monthly power generation reaching the maximum in June (2.95×108 kW·h of electric energy produced), while the solar collector efficiency shows the opposite tendency. Moreover, the cycle thermal efficiency of power generation is relatively higher in summer, which typically ranges from 32% to 35% throughout the whole year. Annual solar thermal efficiency is approximately 22.5% by average. The results may provide a novel direction toward the application of solar energy system hybrid with coal-fired power generation.
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spelling doaj-art-b2c77883f785412fa431fed4463c49b72025-08-20T02:06:30ZzhoState Grid Energy Research InstituteZhongguo dianli1004-96492019-02-0152214915710.11930/j.issn.1004-9649.201804054zgdl-51-12-fengleiStudy on Thermodynamic Performance of Volume Expanding Evaporative Solar System Hybrid with Coal Fired Power Generation System under Varying RadiationsLei FENG0Shenhua Guohua (Beijing) Electric Power Research Institute Co., Ltd., Beijing 100025, ChinaTo avoid heat flux variations and non-uniform vapor-liquid distribution in parabolic collectors, the volume expanding evaporative solar steam generation system is proposed. Using actual solar radiation data from NASA SSE6.0 database, a 600 MW coal-fired power plant hybrid with a volume expanding evaporative steam generation system was established. Turbine stages at off-design condition were calculated with DNI data over a one-year period. And the daily, monthly and yearly thermodynamic performance of the hybrid system in Lhasa area was analyzed respectively. The results exhibit the same trends in steam mass flow, daily power generation and DNI with the monthly power generation reaching the maximum in June (2.95×108 kW·h of electric energy produced), while the solar collector efficiency shows the opposite tendency. Moreover, the cycle thermal efficiency of power generation is relatively higher in summer, which typically ranges from 32% to 35% throughout the whole year. Annual solar thermal efficiency is approximately 22.5% by average. The results may provide a novel direction toward the application of solar energy system hybrid with coal-fired power generation.https://www.electricpower.com.cn/CN/10.11930/j.issn.1004-9649.201804054veesghybrid power generationvarying irradiationthermodynamic performance
spellingShingle Lei FENG
Study on Thermodynamic Performance of Volume Expanding Evaporative Solar System Hybrid with Coal Fired Power Generation System under Varying Radiations
Zhongguo dianli
veesg
hybrid power generation
varying irradiation
thermodynamic performance
title Study on Thermodynamic Performance of Volume Expanding Evaporative Solar System Hybrid with Coal Fired Power Generation System under Varying Radiations
title_full Study on Thermodynamic Performance of Volume Expanding Evaporative Solar System Hybrid with Coal Fired Power Generation System under Varying Radiations
title_fullStr Study on Thermodynamic Performance of Volume Expanding Evaporative Solar System Hybrid with Coal Fired Power Generation System under Varying Radiations
title_full_unstemmed Study on Thermodynamic Performance of Volume Expanding Evaporative Solar System Hybrid with Coal Fired Power Generation System under Varying Radiations
title_short Study on Thermodynamic Performance of Volume Expanding Evaporative Solar System Hybrid with Coal Fired Power Generation System under Varying Radiations
title_sort study on thermodynamic performance of volume expanding evaporative solar system hybrid with coal fired power generation system under varying radiations
topic veesg
hybrid power generation
varying irradiation
thermodynamic performance
url https://www.electricpower.com.cn/CN/10.11930/j.issn.1004-9649.201804054
work_keys_str_mv AT leifeng studyonthermodynamicperformanceofvolumeexpandingevaporativesolarsystemhybridwithcoalfiredpowergenerationsystemundervaryingradiations