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Performance assessment of an irreversible nano Brayton cycle operating with Maxwell-Boltzmann gas

机译:用Maxwell-Boltzmann气体操作的不可逆纳米布雷顿循环的性能评估

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摘要

In the last decades, nano-technology has been developed very fast. According to this, nanocycle thermodynamics should improve with a similar rate. In this paper, a nano-scale irreversible Brayton cycle working with helium is evaluated for different thermodynamic criteria. These are maximum work output, ecological function, ecological coefficient of performance, exergetic performance criteria and energy efficiency. Thermodynamic analysis was performed for these criteria and results were submitted numerically. In addition, these criteria are compared with each other and the most convenient methods for the optimum conditions are suggested.
机译:在过去的几十年中,纳米技术发展非常迅速。据此,纳米周期的热力学应以相似的速度提高。在本文中,针对不同的热力学标准评估了使用氦的纳米级不可逆布雷顿循环。这些是最大的工作产出,生态功能,生态绩效系数,精力充沛的绩效标准和能源效率。对这些标准进行热力学分析,并以数字形式提交结果。另外,将这些标准相互比较,并建议了最适合最佳条件的方法。

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