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Comparison of basic gas cycles under the restriction of constant heat addition

机译:恒定热量添加限制下基本气体循环的比较

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Theoretical thermal efficiencies and theoretical effectivenesses of six kinds of basic gas cycles, including the Carnot, Otto, Diesel, Takemura, Atkinson and Joule cycles, were compared with one another under the restriction of constant heat-addition. Relations between the available work content of heat added and the exergy change in several thermodynamic processes were also examined. It is concluded that the Atkinson cycle has the highest thermal efficiency and the second best effectiveness among the gas cycles examined. The exergy changes in an isochoric heating-process in closed systems and in an isobaric heating-process in open systems agree with the available work contents of heat added in these processes. Thus, the exergy increment in a heating process should not be generally adopted as the denominator for the theoretical effectiveness.
机译:在恒定热量添加的限制下,将卡诺,奥托,柴油,竹村,阿特金森和焦耳等六种基本气体循环的理论热效率和理论有效性进行了比较。还研究了在几个热力学过程中添加的热量的可用功含量与(火用)变化之间的关系。结论是,在所研究的气体循环中,阿特金森循环具有最高的热效率和第二好的效率。在封闭系统中的等容加热过程中和在开放系统中的等压加热过程中,本能变化与在这些过程中添加的热量的有效工作含量一致。因此,理论上不应将加热过程中的火用增量作为分母。

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