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首页> 外文期刊>Journal of Mechanical Science and Technology >Flow analysis in a return channel of a multi-stage centrifugal pump
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Flow analysis in a return channel of a multi-stage centrifugal pump

机译:多级离心泵回流通道中的流量分析

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摘要

Flow recirculation is an unpleasant and even hazardous phenomenon that can cause mechanical damage in turbomachinery and has to be prevented during their operations. We numerically studied the effects of return channel blade curvature on reducing the recirculation of flow inside the return channel vanes of a multi-stage centrifugal pump. Computational fluid dynamics (CFD) analyses were performed for a wide range of volumetric flow rates. The standard k-epsilon turbulence model was adopted as the turbulence model, and the impeller rotation simulated employing the Multiple reference frames (MRF) method. First, a baseline model together with five different modified geometries for return channel was studied and compared using a two-stage pump framework. The results reveal that decreasing the curvature of the return channel blade makes smooth streamlines and eliminates the flow recirculation inside the return channels. As the second part, two return channels with the highest pump performance were selected to be used in the simulation of a multistage pump. The simulations of the multi-stage pump show that the flow inside the baseline return channel includes considerable areas of flow recirculation, while the modified return channels again have attached flow stream. It is concluded that the return channels with the smooth curvatures and outlet blade angles above 90A degrees remove the flow recirculation inside the return channels, resulting in higher pump efficiencies.
机译:气流再循环是一种令人不愉快甚至危险的现象,会在涡轮机械中造成机械损坏,必须在其运行期间加以防止。我们通过数值研究了回流通道叶片曲率对减少多级离心泵回流通道叶片内部的流体再循环的影响。针对各种体积流量进行了计算流体动力学(CFD)分析。采用标准的kε湍流模型作为湍流模型,并使用多参考框架(MRF)方法模拟叶轮旋转。首先,研究了基线模型以及用于返回通道的五个不同的修改几何形状,并使用两级泵框架进行了比较。结果表明,减小回流通道叶片的曲率可使流线平滑,并消除回流通道内的流体再循环。作为第二部分,选择了具有最高泵性能的两个回流通道,用于多级泵的仿真。多级泵的模拟显示,基线回流通道内的流量包括相当大的回流面积,而修改后的回流通道再次具有附加的流量。结论是,具有平滑曲率和出口叶片角度大于90A度的回流通道消除了回流通道内的流体再循环,从而提高了泵的效率。

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