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DYNAMIC SIMULATION OF A BETA-TYPE STIRLING ENGINE WITH CAM-DRIVE MECHANISM

机译:凸轮驱动机构的β式斯特林发动机的动态仿真

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Dynamic simulation of a beta-type Stirling engine with cam-drive mechanism has been performed. A dynamic model associated with the cam-drive mechanism has been developed. Upon obtaining the gas pressure inside the chambers, the derived dynamic model is used to evaluate the transient rotational speed of the engine before the steady-state regime is reached. The torque of the engine can be calculated as long as the gas force, the inertia torque, the friction torque, and the load torque are evaluated. In this study, the mass moment of inertia of the flywheel is firstly calculated. The friction torque is assumed to be proportional to the time-varied rotational speed which is obtained by experiments. The weight of the individual parts of the engine has also been considered. An extensive parametric study of the engine under different geometrical and operating conditions has been performed and results are presented.
机译:已经执行了具有凸轮驱动机构的β式斯特林发动机的动态模拟。已经开发了与凸轮驱动机构相关联的动态模型。在获得腔室内的气体压力时,导出的动态模型用于在达到稳态状态之前评估发动机的瞬态转速。可以计算发动机的扭矩,只要气力,惯性扭矩,摩擦扭矩和负载扭矩即可。在这项研究中,首先计算飞轮的惯性惯性矩。假设摩擦扭矩与通过实验获得的时间变化的旋转速度成比例。还考虑了发动机的各个部件的重量。已经执行了在不同几何和操作条件下发动机的广泛参数研究,并提出了结果。

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