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Optimization for a thermochemical energy storage-reactor based on entransy dissipation minimization

机译:基于Enteransy耗散最小化的热化学能量存储器的优化

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In this paper, a thermochemical energy storage-reactor (TESR) is optimized based on entransy theory to reduce the irreversibility of heat transfer and reaction. Two types of optimization problems including fixed chemical energy conversion and fixed total heat flux are discussed detail. Firstly, the formula of entransy dissipation for the process of TTES is derived based on the entransy balance equation, then a casing TTES with methane-water reforming is optimized for entransy dissipation minimization (EDM). The optimized results based on EDM are also compared with that based on entropy production minimization (EPM). The results show that: there are some similarities and differences between EDM and EPM for optimizing the TESR. The similarity is that the heating temperature along the reaction flow should be non-linear, to decrease the total irreversibility. The difference is that the EDM is focused on decreasing the irreversibility of heat transfer, and the EPM is focused on decreasing the irreversibility of reaction. The total heat consumption based on EDM is lower than that based on EPM when the chemical energy conversion is certain, and the chemical energy conversion based on EDM is higher than that based on EPM when the total heat flux is certain.
机译:本文基于Enransy理论优化了热化学能量储存反应器(TESR),以减少热传递和反应的不可逆转性。讨论了两种类型的优化问题,包括固定化学能量转换和固定总热通量。首先,基于Entransy平衡方程导出TTE的过程的进口耗散的公式,然后针对甲烷 - 水重整的壳体TTE针对塞兰耗散最小化(EDM)进行了优化。基于EDM的优化结果也与基于熵产生最小化(EPM)进行比较。结果表明:EDM和EPM之间存在一些相似之处和差异,以优化TESR。相似性是沿反应流的加热温度应该是非线性的,以降低总不可逆转性。差异是EDM集中于降低传热的不可逆性,并且EPM集中于降低反应的不可逆转性。基于EDM的总热量低于基于EPM,当化学能转换确定时,基于EDM的化学能转换高于当总热通量确定时的EPM。

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