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Structural optimal design of a swing vane compressor

机译:旋片式压缩机的结构优化设计

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In this paper, a novel swing vane rotary compressor (SVC) was introduced, which had significant advantages-simple mechanism, reduced frictional loss, reliable operation, and a comparatively higher compression ratio. Based on the swing vane compressor geometry model, thermodynamic model and kinetic model, the mathematical model of optimum design was established, and further theoretical and experimental studies were conducted. The length of the cylinder, radius of the rotor and cylinder were defined as design variables and the reciprocal of EER as objective function. The complex optimization method was adopted to study the structure of the swing vane compressor. The theoretical model could provide an effective method for predicting compressor performance, which would also contribute to structural optimization of the SVC. The study shows that the friction loss of the compressor are greatly reduced by optimized design in a given initial value, and the EER increased by 8.55%.
机译:本文介绍了一种新型的旋片式旋转压缩机(SVC),它具有显着的优点,即机构简单,摩擦损失减少,运行可靠以及压缩比相对较高。基于旋翼压缩机的几何模型,热力学模型和动力学模型,建立了优化设计的数学模型,并进行了理论和实验研究。汽缸的长度,转子和汽缸的半径定义为设计变量,EER的倒数定义为目标函数。采用复杂的优化方法研究旋翼式压缩机的结构。理论模型可以提供一种预测压缩机性能的有效方法,这也将有助于SVC的结构优化。研究表明,通过优化设计,在给定的初始值下,压缩机的摩擦损失会大大降低,并且EER增加8.55%。

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