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首页> 外文期刊>Journal of Fluids Engineering: Transactions of the ASME >Dynamic Model and Numerical Simulation for Synchronal Rotary Compressor
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Dynamic Model and Numerical Simulation for Synchronal Rotary Compressor

机译:同步旋转压缩机的动力学模型和数值模拟

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The synchronal rotary compressor (SRC) has been developed to resolve high friction and severe wear that usually occur in conventional rotary compressors due to the high relative velocity between the key tribo-pairs. In this study, the working principle and structural characteristics of the SRC are presented first. Then, the kinematic and force models are established for the key components--cylinder, sliding vane, and rotor. The velocity, acceleration, and force equations with shaft rotation angle are derived for each component. Based on the established models, numerical simulations are performed for a SRC prototype. Moreover, experiments are conducted to verify the established models. The simulated results show that the average relative velocity between the rotor and the cylinder of the present compressor decreases by 80-82percent compared with that of the conventional rotary compressors with the same size and operating parameters. Moreover, the average relative velocity between the sliding contact tribo-pairs of the SRC decreases by 93-94.3percent compared with that of the conventional rotary compressors. In addition, the simulated results show that the stresses on the sliding vane are greater than those on the other components. The experimental results indicate that the wear of the side surface of the sliding vane is more severe than that of the other components. Therefore, special treatments are needed for the sliding vane in order to improve its reliability. These findings confirm that the new SRC has lower frictional losses and higher mechanical efficiency for its advanced structure and working principle.
机译:同步旋转压缩机(SRC)的开发旨在解决由于关键摩擦副之间较高的相对速度而在常规旋转压缩机中通常发生的高摩擦和严重磨损。在这项研究中,首先介绍了SRC的工作原理和结构特点。然后,建立关键部件的运动学模型和力模型-气缸,滑片和转子。对于每个组件,推导出带有轴旋转角度的速度,加速度和力方程。基于已建立的模型,对SRC原型进行了数值模拟。此外,进行实验以验证建立的模型。仿真结果表明,与具有相同尺寸和运行参数的传统旋转式压缩机相比,本压缩机的转子和气缸之间的平均相对速度降低了80-82%。而且,与传统的旋转式压缩机相比,SRC的滑动接触摩擦副之间的平均相对速度降低了93-94.3%。此外,仿真结果表明,滑片上的应力大于其他部件上的应力。实验结果表明,滑动叶片侧面的磨损比其他部件的磨损严重。因此,滑动叶片需要特殊处理以提高其可靠性。这些发现证实,新型SRC的先进结构和工作原理具有更低的摩擦损耗和更高的机械效率。

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