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Optimization of Output Power and Thermal Efficiency of Solar-Dish Stirling Engine Using Finite Time Thermodynamic Analysis

机译:有限时间热力学分析优化太阳能碟式斯特林发动机的输出功率和热效率

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This paper presents an investigation on finite time thermodynamic (FTT) evaluation of a solar-dish Stirling heat engine. FTTs has been applied to determine the output power and the corresponding thermal efficiency, exergetic efficiency, and the rate of entropy generation of a solar Stirling system with a finite rate of heat transfer, regenerative heat loss, conductive thermal bridging loss, and finite regeneration process time. Further imperfect performance of the dish collector and convective/radiative heat transfer mechanisms in the hot end as well as the convective heat transfer in the heat sink of the engine are considered in the developed model. The output power of the engine is maximized while the highest temperature of the engine is considered as a design parameter. In addition, thermal efficiency, exergetic efficiency, and the rate of entropy generation corresponding to the optimum value of the output power is evaluated. Results imply that the optimized absorber temperature is some where between 850 K and 1000 K. Sensitivity of results against variations of the system parameters are studied in detail. The present analysis provides a good theoretical guidance for the designing of dish collectors and operating the Stirling heat engine system.
机译:本文提出了对太阳能碟式斯特林热机的有限时间热力学(FTT)评估的研究。 FTT已用于确定输出功率以及相应的热效率,能量效率以及具有有限传热速率,再生热损耗,传导性热桥联损耗和有限再生过程的太阳能斯特林系统的熵产生率时间。在开发的模型中,考虑了集热器和热端对流/辐射传热机制以及发动机散热器中对流传热的进一步不完美性能。发动机的输出功率最大化,而发动机的最高温度被视为设计参数。另外,评估了与输出功率的最佳值相对应的热效率,能效效率和熵产生率。结果表明,最佳的吸收器温度在850 K和1000 K之间的某个温度。详细研究了结果对系统参数变化的敏感性。本分析为碟式集热器的设计和斯特林热机系统的运行提供了良好的理论指导。

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