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首页> 外文期刊>International journal of low carbon technologies >Investigation of the effect of design parameters on power output and thermal efficiency of a Stirling engine by thermodynamic analysis
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Investigation of the effect of design parameters on power output and thermal efficiency of a Stirling engine by thermodynamic analysis

机译:通过热力学分析研究设计参数对斯特林发动机输出功率和热效率的影响

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摘要

This article demonstrates a study on finite-time thermodynamic assessment and analysis of a Stirling heat engine. Finite-time thermodynamics is performed to specify the net thermal efficiency and power output of the Stirling system with finite-rate heat transfer, regenerative heat loss, conductive thermal bridging loss and finite regeneration process time. The model investigates effects of the inlet temperature of the heat source, the volumetric ratio of the engine, effectiveness of heat exchangers and heat capacitance rates on the net power output and thermal efficiency of the engine. Output power of the Stirling engine is maximized under two optimization scenarios. In the first scenario, the higher working temperature of the Stirling engine is considered as a decision design parameter (decision variable) while in the second scenario, in addition to the higher working temperature, the temperature ratio of the engine is also considered as a design parameter. Furthermore, the thermal efficiency of the cycle corresponding to the magnitude of the maximized power of the engine is evaluated. Finally, sensitivities of results towards shift in the thermal parameters of the engine are studied.
机译:本文演示了对斯特林热机的有限时间热力学评估和分析的研究。进行有限时间热力学来指定斯特林系统的净热效率和功率输出,包括有限速率的热传递,再生热损失,传导性热桥接损失和有限的再生过程时间。该模型研究了热源入口温度,发动机的容积比,热交换器的效率和热容率对净功​​率输出和发动机热效率的影响。在两种优化方案下,斯特林引擎的输出功率将最大化。在第一种情况下,斯特林发动机的较高工作温度被视为决策设计参数(决策变量),而在第二种情况下,除了较高的工作温度外,发动机的温度比也被视为一种设计。参数。此外,评估对应于发动机的最大功率的大小的循环的热效率。最后,研究了结果对发动机热参数变化的敏感性。

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