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首页> 外文期刊>International Journal of Refrigeration >Second law based modeling to optimum design of high capacity pulse tube refrigerators
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Second law based modeling to optimum design of high capacity pulse tube refrigerators

机译:基于第二定律的建模对大容量脉冲管制冷机的优化设计

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The optimum design of a high capacity double inlet pulse tube refrigerator based on second law of thermodynamics has been presented in this paper. Second law is applied to calculate the work loss in the regenerator and to optimize the cryocooler performance. To investigate the behavior of the pulse tube refrigerator, mass and energy balance equations are applied to several control volumes of the cryocooler cycle. A complete system of conservation equations is employed to solve the regenerator analytically. The proposed model reports the cooling capacity of 110 W at 80 K cold end temperature at frequency of 50 Hz, orifice conductance of 0.4 and double inlet coefficient of 0.6, with 2.4 kW net power delivered to the gas. In this case, the entropy generation in the gas phase is dominant which is contributing more than 85% of the total lost work in the regenerator. The optimum thermal efficiency of 99.1% was achieved at a proper mesh number. However, the second law efficiency is reported to have an inverse behavior at this mesh number.
机译:提出了基于热力学第二定律的大容量双入口脉冲管制冷机的优化设计。第二定律适用于计算再生器中的功损耗并优化低温冷却器性能。为了研究脉冲管制冷机的性能,将质量和能量平衡方程式应用于低温冷却器循环的几个控制体积。一个完整的守恒方程组被用来解析再生器。提出的模型报告了在80 K冷端温度,频率为50 Hz,孔口电导为0.4,双入口系数为0.6时,冷却能力为110 W,向气体输送的净功率为2.4 kW。在这种情况下,气相中的熵产生占主导地位,占再生器总功损失的85%以上。在适当的目数下,可达到99.1%的最佳热效率。但是,据报道第二定律效率在该网格数下具有相反的行为。

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