• 通过优化两个之间分配得循环性能

    The optimal performance can be obtained by optimizing the distribution of heat conductances or heat transfer surface areas among the two heat exchangers and the regenerator.

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  • 纳米流体对流系数随着颗粒导率增加、颗粒增加以及颗粒粒径的减小而增大。

    The heat transfer coefficient of nanofluids increases with increasing the thermal conductivity of nanoparticles and base fluid, and increases with an increase in the volume fraction of nanoparticles.

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  • 纳米流体对流系数随着颗粒导率增加、颗粒增加以及颗粒粒径的减小而增大。

    The heat transfer coefficient of nanofluids increases with increasing the thermal conductivity of nanoparticles and base fluid, and increases with an increase in the volume fraction of nanoparticles.

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