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Design and engineering implementation of non-supplementary fired compressed air energy storage system: TICC-500

查看全文 作  者:MEI Sheng [1]Wei;WANG Jun [2]Jie;TIAN [3]Fang;CHEN Lai [1]Jun;XUE Xiao [2]Dai;LU [1]Qiang;ZHOU [2]Yuan;ZHOU Xiao [3]Xin 高影响力作者 机构地区:[1]State Key Laboratory of Control and Simulation of Power Systems and Generation Equipment, Department of Electrical Engineering,Tsinghua University;[2]Key Laboratory of Cryogenics, Technical Institute of Physics and Chemistry, Chinese Academy of Sciences;[3]Department of Power Systems,China Electric Power Research Institute高影响力机构 出  处:《Science China(Technological Sciences)》索引2015年第58卷第4期,共12页高影响力期刊 基  金:Science and Technology Fund of SGCC(Grant No.KJ-2012-627);The National Natural Science Foundation of China(Grant No.51321005) 摘  要:The integration and accommodation of the wind and solar energy pose great challenges on today’s power system operation due to the intermittent nature and volatility of the wind and solar resources.High efficient large-scale electrical energy storage is one of the most effective and economical solutions to those problems.After the comprehensive review of the existing storage technologies,this paper proposes an overall design scheme for the Non-supplementary Fired Compressed Air Energy Storage(NFCAES)system,including system design,modeling and efficiency assessment,as well as protection and control.Especially,the design principles of the multistage regenerative,i.e.heat recovery system which is used to fully recycle and utilize the waste heat from compression are provided,so as the overall system efficiency evaluation method.This paper theoretically ascertains the storage decoupling rules in the potential and internal energy of molecular compressed air and reveals the conversion mechanism of gas,heat,power,electricity and other forms of energy.On this basis,a 500-k W physical simulation system of CAES system(TICC-500,Tsinghua-IPCCAS-CEPRI-CAES)is built,which passed a system-wide 420-k W load power generation test with less pollution and zero carbon emissions.Besides,the multi-form energy conversion of multi-stage regenerative CAES and storage efficiency is verified,especially its incomparable superiority in solving the uncertainty problem in wind and solar power generation.Finally,the propaganda and application scenario of the CAES system in China is introduced. 关 键 词:储能系统 压缩空气 设计 工程实施 电力系统运行 太阳能资源 热回收系统 烧制
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