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首页> 外文期刊>International journal of thermal & environmental engineering >Numerical Investigation of Working Fluid Effect on Stirling Engine Performance
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Numerical Investigation of Working Fluid Effect on Stirling Engine Performance

机译:工作流体对斯特林发动机性能影响的数值研究

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The Stirling engine is achieving great concern in the actual energy area since it has many advantages such as its cleanness and quietness. It is also considered a flexible prime mover for useful for several applications such as micro-cogeneration, solar thermal generation and other micro-distributed generation conditions. Theoretically, the Stirling cycle engine can efficiently convert heat into the mechanical work at the Carnot efficiency. The importance of the choice of working fluid is also demonstrated in the literature. In fact, the Stirling engine power can be increased ten times by changing the working fluid from air to hydrogen for example. This paper represents an evaluation of the on working fluid of a solar-dish Stirling heat engine. Thermal efficiency, exergetic efficiency and the rate of entropy generation corresponding to the optimum value of the output power are also evaluated. Numerical results demonstrate that the swept volume ratio is independent of the choice of working fluid.
机译:由于斯特林发动机具有许多优点,例如清洁和安静,因此在实际能源领域引起了极大的关注。它也被认为是一种灵活的原动机,可用于多种应用,例如微型热电联产,太阳热能发电和其他微型分布式发电条件。从理论上讲,斯特林循环发动机可以以卡诺效率将热量有效地转化为机械功。选择工作液的重要性也在文献中得到了证明。实际上,通过将工作流体从空气变成氢气,斯特林发动机的功率可以提高十倍。本文代表了对太阳能碟式斯特林热机工作流体的评估。还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。数值结果表明,扫掠体积比与工作流体的选择无关。

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