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Experimental and Numerical Investigation of Tip Leakage Flows in a Roots Blower

机译:罗茨鼓风机叶尖泄漏流的实验与数值研究

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Computational fluid dynamics (CFD) can help in understanding the nature of leakage flow phenomena inside the rotary positive displacement machines (PDMs). However, due to the lack of experimental results, the analysis of leakage flows in rotary PDMs by CFD has not yet been fully validated. Particle image velocimetry (PIV) tests with a microscopic lens and phase-lock were conducted to obtain the velocity field around the tip gap in an optical Roots blower. The three-dimensional unsteady CFD model of the Roots blower with the dynamic grids generated by Screw Compressor Rotor Grid Generation (SCORG) was established to predict the gap flow under the same operating conditions. The images obtained by the PIV tests were analyzed and some factors which compromise the quality of test results in the gap flow were identified, such as reflections and transparency of the window. The flow fields obtained by CFD have the same flow pattern and velocity magnitude as the experimental results in the majority of observed regions but overestimate the leakage flow velocity. The CFD results show a vortex induced by the leakage flow in the downstream region of the gap. The flow losses in the tip gap mainly happen at the entrance upstream of the gap. Finally, some suggestions for future work are discussed.
机译:计算流体动力学(CFD)可以帮助理解旋转正排量机器(PDM)内部泄漏流现象的性质。但是,由于缺乏实验结果,通过CFD分析旋转PDM中的泄漏流的方法尚未得到充分验证。进行了使用显微镜透镜和锁相的粒子图像测速(PIV)测试,以获取光学罗茨鼓风机中尖端间隙周围的速度场。建立罗茨鼓风机的三维非定常CFD模型,该模型具有由螺杆压缩机转子格网生成(SCORG)生成的动态格网,以预测相同操作条件下的间隙流量。分析了通过PIV测试获得的图像,并确定了影响间隙流动中测试结果质量的一些因素,例如窗口的反射和透明度。在大多数观察到的区域中,通过CFD获得的流场具有与实验结果相同的流型和速度大小,但高估了泄漏流速。 CFD结果显示了由间隙下游区域中的泄漏流引起的涡流。尖端间隙中的流量损失主要发生在间隙上游的入口处。最后,讨论了对未来工作的一些建议。

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