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A THERMODYNAMIC STUDY OF THE THERMAL PERFORMANCE OF FREE PISTON STIRLING PRIME MOVERS

机译:自由活塞斯特林旋转式搬运工热性能的热力学研究

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Linear dynamics theory adequately describes the behavior of Free Piston Stirling Engines (FPSEs). The aim of this paper is to predict the conditions for stable operation of FPSEs and the modeling of FPSEs. The linearization technique of the dynamic balance equations proposed recently by F. de Monte and G. Benvenuto has been applied using RE-1000 of Sunpower Inc. for a typical well known FPSE. The equations of motion are solved analytically in terms of the stiffness and damping coefficients of the machine. Using the criterion of the stable engine cyclic steady operation a rigorous mathematical form is obtained for the main parameters of the engine. The proposed model gives results close to the data coming from the literature and can be used to predict the thermal performance, the piston stroke and the delivered power. Furthermore, using for reasons of simplicity Schmidt Analysis (Isothermal model) the indicated output power is obtained. In addition, a reference is given to some of the most important thermal losses in the engine decreasing the theoretical performance up to experimental level.
机译:线性动力学理论充分描述了自由活塞斯特林发动机(FPSES)的行为。本文的目的是预测FPSES稳定运行的条件和FPSES的建模。 F. de Monte和G.Benvenuto最近提出的动态平衡方程的线性化技术已使用Sunpower Inc.的Re-1000应用于典型的众所周知的FPSE。就机器的刚度和阻尼系数而言,分析运动方程。使用稳定发动机循环稳定操作的标准,获得了发动机的主要参数的严格数学形式。所提出的模型使结果接近来自文献的数据,可用于预测热性能,活塞行程和输送的电力。此外,使用简单性施密特分析(等温模型)的原因,获得了所示的输出功率。此外,给出了发动机中最重要的热损失的参考,从而降低了实验水平的理论性能。

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