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Performance analysis on free-piston Stirling cryocooler based on an idealized mathematical model

机译:基于理想数学模型的自由活塞斯特林斯特林干漠化的性能分析

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Free-piston Stirling cryocoolers have extensive applications for its simplicity in structure and decrease in mass. However, the elimination of the motor and the crankshaft has made its thermodynamic characteristic different from that of Stirling cryocoolers with displacer driving mechanism. Therefore, an idealized mathematical model has been established, and with this model, an attempt has been made to analyse the thermodynamic characteristic and the performance of free-piston Stirling cryocooler. To certify this mathematical model, a comparison has been made between the model and a numerical model. This study reveals that due to the displacer damping force necessary for the production of cooling capacity, the free-piston Stirling cryocooler is inherently less efficient than Stirling cryocooler with displacer driving mechanism. Viscous flow resistance and incomplete heat transfer in the regenerator are the two major causes of the discrepancy between the results of the idealized mathematical model and the numerical model.
机译:自由活塞斯特林冷冻室具有广泛的结构,可在结构中的简单性和质量下降。然而,消除电动机和曲轴已经使其热力学特性不同于斯特林冷冻机具有置换器驱动机构的热力学特性。因此,已经建立了理想化的数学模型,并且通过该模型,已经尝试分析热力学特性和自由活塞斯特林脱杯的性能。为了证明该数学模型,模型和数值模型之间已经进行了比较。本研究表明,由于制造冷却能力所需的置换器阻尼力,可自由活塞斯特林冷冻机与具有置换器驱动机制的斯特林冷冻机具有固有的效率。再生器中的粘性流动阻力和不完全传热是理想数学模型和数值模型的结果之间差异的两个主要原因。

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