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Optimization of the phase angle in ideal Stirling engines using the concept of 'tidal' and 'ancillary' domains

机译:使用“潮汐”和“辅助”域的概念优化理想斯特林发动机的相角

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In a parallel publication (Finkelstein, 1996), a new analysis of the ideal loss-less Stirling cycle machine was presented based upon the concept of overlapping 'tidal' and 'ancillary' domains. This has led to the definition of the following two dimensionless parameters: the 'specific performance' for the unified measure of output for engines, refrigerators and heat pumps, and the 'tidal compression ratio', which is akin to the compression ratio in internal combustion machines and uniquely defines the operational characteristics of any Stirling cycle machine. An analysis to replace the alternative traditional Schmidt equation was presented and a new expression for the general performance of practical Stirling engines was derived from first principles. An analytical optimization of the volumes of the three internal heat exchangers was also included. In this present paper, which is an extension of the above analysis, these new equations for the performance are utilized for an analytical optimization of the phase angles. It is shown that the optimum phase lead of the expansion space and the optimum phase lag of the compression space for an ideal isothermal machine is precisely /spl pi//4 for all possible machines. This is independent of the previous conclusion that the pressure vector should have a zero phase lag or lead.
机译:在平行出版物中(Finkelstein,1996),基于重叠的“潮汐”域和“辅助”域的概念,对理想的无损斯特林循环机进行了新的分析。这导致了以下两个无量纲参数的定义:用于统一测量发动机,冰箱和热泵的输出的“特定性能”,以及类似于内燃机压缩比的“潮气压缩比”。机器,并唯一地定义了任何斯特林循环机器的操作特性。提出了替代传统Schmidt方程的分析方法,并从第一原理推导了实用斯特林发动机一般性能的新表达式。还包括对三个内部热交换器的体积的分析优化。在本文中,它是上述分析的扩展,这些新的性能方程式可用于相角的分析优化。结果表明,对于所有可能的机器,理想的等温机器的膨胀空间的最佳相位超前和压缩空间的最佳相位滞后精确为/ spl pi // 4。这与先前的结论无关,即压力矢量应具有零相位滞后或超前。

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