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Thermodynamic-dynamic analysis of gamma type free-piston Stirling engine charged with hydrogen gas as working fluid

机译:伽马型自由活塞斯特林发动机的热力学 - 动力学分析用氢气作为工作流体充电

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摘要

In this study, the combined thermodynamic and dynamic model of a new concept of gamma type free-piston Stirling engine is conducted. The engine consists of two identical displacer cylinders, a power cylinder, a linear alternator, and three-cushion pistons. Two displacer cylinders are symmetrically positioned on each side of the power cylinder for minimizing the rotational vibrations. Hydrogen is used as the working gas and the effect of gas temperature on the specific heat capacity is considered. The analysis carried out in this study involves the prediction of the thermodynamic-dynamic performance characteristics of the engine. In the thermodynamic section of the analysis, the working space of the engine is divided into 31 nodal volumes and the gas pressures in nodal volumes are assumed to be equal to each other. The conservation of mass and energy equations is obtained for each nodal volume. Instantaneous gas temperatures of nodal volumes are calculated by the first law of thermodynamics given for the unsteady open systems. The dynamic section of the analysis involves the motion equations of displacer, power and cushion pistons. The motion equations are derived using the Newton method. In the calculations done for variable specific heat capacity, it has been determined that there is 1% cyclic work reduction compared to the constant heat capacity. It is estimated that the maximum effective power that can be produced by the linear alternator will be around 1.6 kW. The working frequency range of the proposed engine is found to be suitable to generate electrical power.
机译:在本研究中,进行了伽马型自由活塞斯特林发动机新概念的组合热力学和动态模型。该发动机由两个相同的换挡汽缸,动力缸,线性交流发电机和三垫式活塞组成。两个置换圆柱体对称地位于动力缸的每一侧,以使旋转振动最小化。氢气用作工作气体,考虑气体温度对特定热容量的影响。本研究开展的分析涉及预测发动机的热力动态性能特征。在分析的热力学部分中,发动机的工作空间被分成31个节点体积,并且假设节点体积中的气体压力彼此相等。为每个节点体积获得质量和能量方程的保护。 Nodal卷的瞬时气体温度由不稳定的开放系统给出的第一热力学定律计算。分析的动态部分涉及置换器,动力和垫子活塞的运动方程。使用牛顿方法导出运动方程。在用于可变特定热容量的计算中,已经确定与恒定热容量相比有1%的循环工作降低。据估计,线性交流发电机可以生产的最大有效功率约为1.6千瓦。发现所提出的发动机的工作频率范围适用于产生电力。

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