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Thermal and exergetic analysis of Metal Foam-enhanced Cascaded Thermal Energy Storage (MF-CTES)

机译:金属泡沫增强的级联热能存储(MF-CTES)的热能分析

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摘要

Metal Foam-enhanced Cascaded Thermal Energy Storage (MF-CTES) has been proposed to solve the problem of poor heat transfer during heat exchange process, which is caused by unavoidable decrease of temperature differences. This paper conducts a theoretical study examining the overall thermal performance of Single-stage Thermal Energy Storage (STES), Cascaded Thermal Energy Storage (CTES) and MF-CTES, with both heat exchange rate and exergy efficiency being considered. The main findings are: heat exchange rate of STES is improved by CTES (up to 30%), and is further improved by MF-CTES (by 2–7 times); exergy efficiency of STES cannot be significantly improved by CTES (−15% to +30%), nor by MF-CTES; exergy transfer rate of STES is increased by CTES (up to 23%), and is further increased by MF-CTES (by 2–7 times).
机译:提出了金属泡沫增强级联储热器(MF-CTES),以解决热交换过程中由于不可避免的温差减小而导致的传热差的问题。本文进行了理论研究,研究了单级热能存储(STES),级联热能存储(CTES)和MF-CTES的整体热性能,同时考虑了热交换率和火用效率。主要发现是:CTES提高了STES的热交换率(高达30%),而MF-CTES进一步提高了(2-7倍); CTES(-15%至+ 30%)或MF-CTES均不能显着提高STES的火用效率; STES的火用传递速率由CTES增加(高达23%),而由MF-CTES进一步提高(提高2-7倍)。

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