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A model for exergy analysis and thermodynamic bounds of Stirling refrigerators

机译:斯特林制冷机的火用分析和热力学界限的模型

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摘要

A thermodynamic model based on exergy flow through a Stirling Refrigerator is developed. Important irreversibilities of the refrigerator due to external heat transfer with the reservoirs, heat leak, flow and heat transfer in regenerator are included in the model. Expansion and compression efficiencies are introduced in the model to account for the losses in these processes. The effect of a control phase shift between the mass flow rate and pressure across regenerator on the performance of the refrigerator is presented. Analytical solutions representing important quantities in the design of Stirling refrigerators such as the load curve, cooling power and efficiency in terms of basic system input parameters are developed. Thermodynamic bounds for the performance of Stirling refrigerators are obtained. Results indicating a compromise between cooling power and efficiency that are dependent on the constraint of the system are presented and discussed.
机译:建立了基于通过斯特林冰箱的火用流的热力学模型。该模型包括由于与储罐之间的外部传热,冰箱中的热泄漏,流动和传热引起的冰箱的重要不可逆性。在模型中引入了膨胀和压缩效率,以解决这些过程中的损失。提出了质量流量和横穿蓄热室的压力之间的控制相移对冰箱性能的影响。根据基本系统输入参数,开发了代表斯特林制冷机设计中重要参数的分析解决方案,例如负荷曲线,冷却功率和效率。获得了斯特林制冷机性能的热力学界限。给出并讨论了表明冷却功率和效率之间折衷的结果,该折衷取决于系统的约束。

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