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Modified PSVL: A second order model for thermal simulation of Stirling engines based on convective-polytropic heat transfer of working spaces

机译:改进的PSVL:基于工作空间对流-多向热传递的斯特林发动机热仿真的二阶模型

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摘要

The new numerical second order thermal model for the simulation of Stirling engines was presented. In the new model, the previously developed model of the present authors called PSVL model (polytropic analysis of Stirling engine with various losses) was modified based on coupling the convective heat transfer mechanism to polytropic expansion/compression processes. Furthermore, an exponential temperature distribution of the gas along the regenerator length was assumed in the new model. Similar to the original PSVL model, effects of heat and mass leakages were implemented in basic differential equations and the ordinary differential equations (ODE) system was numerically solved by fourth order Runge-Kutta methods. Results of the numerical model were corrected to include various non-idealities. Finally, the new polytropic convective model called modified PSVL was implemented to simulate he GPU-3 Stirling engine and the obtained results were compared with those of the previous thermal models as well as experimental data. It was found that the correction of PSVL led to better accuracy compared with the original PSVL as well as other models. Further, coupling the heat transfer to model caused a slightly greater amount of polytropic indexes than the original PSVL model. (C) 2015 Elsevier Ltd. All rights reserved.
机译:提出了用于斯特林发动机仿真的新型数值二阶热模型。在新模型中,基于对流传热机制与多向膨胀/压缩过程的耦合,对本人先前开发的称为PSVL模型(具有各种损失的斯特林发动机进行多方分析)的模型进行了修改。此外,在新模型中假设了气体沿再生器长度的指数温度分布。与原始PSVL模型相似,在基本微分方程中实现了热量和质量泄漏的影响,并通过四阶Runge-Kutta方法数值求解了常微分方程(ODE)系统。数值模型的结果已得到纠正,以包括各种非理想情况。最后,实现了新的多变对流模型,即改进的PSVL,以模拟GPU-3斯特林发动机,并将获得的结果与以前的热模型以及实验数据进行了比较。发现与原始PSVL以及其他模型相比,PSVL的校正导致更好的准确性。此外,将热传递耦合到模型比原始PSVL模型引起的多变指数量稍大。 (C)2015 Elsevier Ltd.保留所有权利。

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