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首页> 外文期刊>FDMP: Fluid Dynamics & Materials Processing >Optimization of a Centrifugal Pump Used as a Turbine Impeller By Means of an Orthogonal Test Approach
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Optimization of a Centrifugal Pump Used as a Turbine Impeller By Means of an Orthogonal Test Approach

机译:通过正交试验方法优化用作涡轮机叶轮的离心泵

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A prototype centrifugal pump with a specific speed of 110 is used to investigate and optimize the performances of a turbine for power generation. Particular attention is given to the design of the internal impeller. The internal flow field is simulated in the framework of a commercial computational fluid dynamics software (ANSYS). Four geometrical parameters of the impeller are considered, i.e., the inlet diameter, the inlet width, the blade number, and the blade angle. The optimization is carried out on the basis of a three-level approach relying on an orthogonal test method. The results of the numerical simulations show good agreement with the experimental tests under different flow conditions. In accordance with the L_9 (3~4) design table, the head and efficiency under the rated flow rate of the nine designed schemes are calculated and processed with the method of range analysis to obtain an optimized model.
机译:具有特定速度为110的原型离心泵用于研究和优化动力发电的涡轮机的性能。 特别注意内部叶轮的设计。 在商业计算流体动力学软件(ANSYS)的框架中模拟内部流场。 考虑了叶轮的四个几何参数,即入口直径,入口宽度,叶片数和叶片角度。 优化基于依赖于正交测试方法的三级方法进行。 数值模拟的结果显示出在不同流动条件下的实验测试良好的一致性。 根据L_9(3〜4)设计表,利用范围分析方法计算并处理下列九个设计方案的额定流量下的头部和效率,以获得优化的模型。

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