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Scrutinizing the sources of inefficiencies in the piston-cylinder clearance of an oil-free linear compressor

机译:在无油线性压缩机的活塞缸间隙中仔细检查低效率的源极

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The piston of linear compressors is subjected to low side loads and metal contact can be avoided by feeding high-pressure refrigerant gas from the discharge system into the piston-cylinder clearance. This paper reports a thorough study on the inefficiencies associated with leakage and viscous friction brought about by the transient compressible fluid flow in the piston-cylinder clearance of an oil-free linear compressor. The main objective is to understand the effect of design parameters, such as compressor speed, piston oscillation amplitude, pressure ratio and radial clearance, on the volumetric and isentropic efficiencies. The compressor efficiency was found to be mainly affected by the clearance and pressure ratio. A reduction of 2.5% in the volumetric efficiency and 4.2% in the isentropic efficiency, for instance, were predicted when the radial clearance was varied from 2.5 to 10.0 mu m. (C) 2019 Elsevier Ltd and IIR. All rights reserved.
机译:线性压缩机的活塞经受低侧载荷,并且可以通过将来自排放系统的高压制冷剂气体进入活塞 - 气缸间隙来避免金属接触。 本文报告了对无油线性压缩机的活塞 - 圆筒间隙中的瞬态可压缩流体流动带来的泄漏和粘性摩擦相关的渗透率的彻底研究。 主要目的是了解设计参数的影响,例如压缩机速度,活塞振荡幅度,压力比和径向间隙,在体积和熵效率上。 发现压缩机效率主要受清间和压力比的影响。 例如,当径向间隙从2.5到10.0μm变化时,预测,在体积效率中减少2.5%和4.2%的尺寸效率。 (c)2019年Elsevier Ltd和IIR。 版权所有。

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