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A Sensitivity Analysis of a Miniature-Scale Linear Compressor for Electronics Cooling using a Comprehensive Model

机译:使用综合模型对电子冷却微型线性压缩机的敏感性分析

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A comprehensive model of a linear compressor for electronics cooling was previously presented by Bradshaw et al. (2011). The current study expands upon this work by first developing methods for predicting the resonant frequency of a linear compressor and for controlling its piston stroke. Key parameters governing compressor performance - leakage gap, eccentricity, and piston geometry - are explored using a sensitivity analysis. It is demonstrated that for optimum performance, the leakage gap and eccentricity should be minimized. In addition, the ratio of piston stroke to diameter should not exceed a value of one to minimize friction and leakage losses, but should be large enough to preclude the need for an oversized motor.
机译:以Bradshaw等人提出了一种用于电子冷却的线性压缩机的综合模型。 (2011)。目前的研究通过第一开发用于预测线性压缩机的谐振频率并控制其活塞行程的方法来扩展这项工作。使用灵敏度分析探索压缩机性能 - 泄漏间隙,偏心和活塞几何的关键参数。证明,为了最佳性能,应最小化泄漏间隙和偏心率。此外,活塞行程与直径的比例不应超过一个值,以最小化摩擦和漏损耗,但应该足够大以排除对超大电机的需求。

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