The results obtained here may provide theoretical basis for the design of a Brayton cycle working under quantum degeneracy conditions.
所得结论可对量子简并条件下工作的布雷顿热机的设计提供理论依据。
The performance of the Reverse-Brayton cryocooler is analyzed, the mathematic model of the components of the cryocooler is established.
对逆布雷顿循环空气制冷机进行了性能分析,建立了空气制冷机各部件的数学模型。
Numerical calculation indicates that the power output for Brayton reaches higher than 99% of that for Carnot as the factor equals to 1. 5.
数值计算显示,当布雷顿循环的工质热容率为高、 低温侧换热器的热导率总量的1.5倍时,布雷顿循环的功率已为卡诺循环功率的99%以上。
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