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首页> 外文期刊>Journal of Fluids Engineering: Transactions of the ASME >Hydrodynamic Design of Pump Diffuser Using Inverse Design Method and CFD
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Hydrodynamic Design of Pump Diffuser Using Inverse Design Method and CFD

机译:基于逆向设计和CFD的泵扩散器流体力学设计

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摘要

A new approach to optimizing a pump diffuser is presented, based on a three-dimensional inverse design method and a Computational Fluid Dynamics (CFD) technique. The blade shape of the diffuser was designed for a specified distribution of circulation and a given meridional geometry at a low specific speed of 0.109 (non-dimensional) or 280 (m~(3)/min, m, rpm). To optimize the three-dimensional pressure fields and the secondary flow behavior inside the flow passage, the diffuser blade was more fore-loaded at the hub side as compared with the casing side. Numerical calculations, using a stage version of Dawes three-dimensional Navier-Stokes code, showed that such a loading distribution can suppress flow separation at the corner region between the hub and the blade suction surface, which was commonly observed with conventional designs having a compact bowl size (small outer diameter). The improvements in stage efficiency were confirmed experimentally over the corresponding conventional pump stage. The application of multi-color oil-film flow visualization confirmed that the large area of the corner separation was completely eliminated in the inverse design diffuser.
机译:提出了一种基于三维逆设计方法和计算流体力学(CFD)技术的优化泵扩散器的新方法。扩散器的叶片形状设计成可在低比速0.109(无量纲)或280(m〜(3)/ min,m,rpm)的低比转速下实现指定的循环分布和给定的子午线几何形状。为了优化三维压力场和流道内部的二次流动特性,与壳体侧相比,扩散器叶片在轮毂侧的载荷更大。使用Dawes三维Navier-Stokes代码的阶段版本进行的数值计算表明,这种载荷分布可以抑制轮毂和叶片吸力表面之间的拐角区域的流分离,这在具有紧凑型结构的常规设计中通常会见到碗尺寸(小外径)。实验证明了与相应的传统泵级相比,级效率的提高。多色油膜流动可视化的应用证实,在逆向设计的扩散器中,角分离的大面积被完全消除了。

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