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Discussion on the applicability of entropy generation minimization to the analyses and optimizations of thermodynamic processes

机译:熵最小化在热力学过程分析与优化中的适用性探讨

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摘要

This work reports the analyses of some thermodynamic systems with the concepts of entropy generation, entropy generation numbers and revised entropy generation number, as well as exergy destruction number and exergy-work conversion efficiency that are proposed in this paper. The applicability of entropy generation minimization (EGM) is conditional if the optimization objective is the output power. The EGM leads to the maximum output power when the net exergy flow rate into the system is fixed, but it may not be appropriate if the net exergy flow rate into the system is not fixed. On the other hand, smaller exergy destruction number always corresponds to larger exergy-work conversion efficiency. The refrigeration cycle with the reverse Carnot engine is also analyzed in which mechanical work is input. The result shows that the EGM leads to the largest COP if the temperature of the high temperature heat source is fixed.
机译:这项工作报告了一些热力学系统的分析,包括熵产生,熵产生数和修正的熵产生数,以及本文提出的火用破坏数和火用功转换效率。如果优化目标是输出功率,则熵生成最小化(EGM)的适用性是有条件的。当固定到系统中的净火用流量固定时,EGM会导致最大输出功率,但如果不确定系统中的净火用流量,则EGM可能不合适。另一方面,较小的火用破坏数量总是与较大的火用功转换效率相对应。还分析了反向卡诺发动机的制冷循环,其中输入了机械功。结果表明,如果高温热源的温度固定,则EGM导致COP最大。

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