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A numerical model on thermodynamic analysis of free piston Stirling engines

机译:自由活塞斯特林发动机热力学分析的数值模型

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In this paper, a new numerical thermodynamic model which bases on the energy conservation law has been used to analyze the free piston Stirling engine. In the model all data was taken from a real free piston Stirling engine which has been built in our laboratory. The energy conservation equations have been applied to expansion space and compression space of the engine. The equation includes internal energy, input power, output power, enthalpy and the heat losses. The heat losses include regenerative heat conduction loss, shuttle heat loss, seal leakage loss and the cavity wall heat conduction loss. The numerical results show that the temperature of expansion space and the temperature of compression space vary with the time. The higher regeneration effectiveness, the higher efficiency and bigger output work. It is also found that under different initial pressures, the heat source temperature, phase angle and engine work frequency pose different effects on the engine's efficiency and power. As a result, the model is expected to be a useful tool for simulation, design and optimization of Stirling engines.
机译:本文采用了一种新的数值热力学模型,其基于节能法基于自由活塞斯特林发动机。在模型中,所有数据都是从我们实验室内建造的真正自由的活塞斯特林发动机。节能方程已经应用于发动机的膨胀空间和压缩空间。该等式包括内部能量,输入功率,输出功率,焓和热损失。热损失包括再生导热损耗,梭热损失,密封泄漏损耗和腔壁导热损失。数值结果表明,膨胀空间的温度和压缩空间的温度随时间而变化。更高的再生效率,效率更高,产量更大。还发现,在不同的初始压力下,热源温度,相位角和发动机工作频率对发动机的效率和功率产生不同的影响。因此,该模型预计是斯特林发动机的仿真,设计和优化的有用工具。

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