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Multi-objective thermodynamic optimization of a free piston Stirling engine using response surface methodology

机译:基于响应面法的自由活塞斯特林发动机多目标热力学优化

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摘要

In this study, response surface methodology (RSM) and the desirability approach are applied to study and optimize the performance of a free piston Stirling engine (FPSE). A regression model is presented to investigate the influences of operating and structural parameters of the FPSE on its performance. The analysis of variance (ANOVA) is conducted to describe the rationality of the regression model and examine the statistical significance of factors. Also, the relationship between output power, thermal and exergy efficiency and these parameters of Stirling engine is presented via 2D contour and 3D surface plots. Moreover, the operating and structural parameters of FPSE are optimized to achieve maximal output power, thermal and exergy efficiencies simultaneously. The multi-objective optimal results are confirmed by Sage software simulation results. It is found that the errors between the Sage modeling and RSM values for output power, thermal and exergy efficiency are 0.37%, 1.51% and 1.40%, respectively. Therefore, the model based on the RSM method is an efficient and fast way for the design and optimization of the FPSEs.
机译:在这项研究中,将响应面方法(RSM)和合意性方法应用于研究和优化自由活塞斯特林发动机(FPSE)的性能。提出了回归模型来研究FPSE的操作和结构参数对其性能的影响。进行方差分析(ANOVA)以描述回归模型的合理性并检查因素的统计意义。同样,通过2D等高线图和3D表面图来显示斯特林发动机的输出功率,热效率和火用效率与这些参数之间的关系。此外,FPSE的操作和结构参数经过优化,可同时实现最大输出功率,热效率和火用效率。 Sage软件仿真结果证实了多目标最优结果。发现在Sage建模和RSM值之间的输出功率,热效率和火用效率的误差分别为0.37%,1.51%和1.40%。因此,基于RSM方法的模型是FPSE的设计和优化的有效而快捷的方法。

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