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Effect of the Volute Diffuser Shape on Pressure Pulsations and Radial Force in Centrifugal Pumps

机译:蜗壳漫射形状对离心泵压力脉动和径向力的影响

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Centrifugal pump is a major cause of pressure perturbations in hydraulic installations. The internal geometry of this turbomachine and its running conditions affect excessively the magnitude of these excitations. In the present study, a numerical investigation is conducted to analyze the influence of the volute diffuser type on flow characteristics in centrifugal pumps with the same impeller under wide range of flow rate. An unsteady numerical analysis was carried out in order to study the strong interaction between blade and tongue with two different geometries of the volute. The main objective is to analyze the characteristics of pressure and force fluctuations inside the pump. For tangential diffuser shape, the pressure fluctuation amplitudes are greater than that in the case of a radial diffuser. Based on the fast Fourier transform (FFT), the spectral analysis was performed on the pressure fluctuation signals in frequency domain under running condition for two volute at different monitoring points in the pump. The time frequency characteristics of these pressure fluctuations were affected greatly by both volute type and measurement locations in each diffuser. However, simulation results were compared with the available experimental data, and an acceptable agreement was obtained. The results obtained in this work can provide a useful reference for designing the type of volute diffuser in pump.
机译:离心泵是液压装置压力扰动的主要原因。该涡轮机的内部几何形状及其运行条件过度影响了这些激励的幅度。在本研究中,进行了数值调查,以分析蜗壳漫射器类型对具有相同叶轮在广泛的流速下具有相同叶轮中的离心泵流动特性的影响。进行了不稳定的数值分析,以研究叶片和舌头与蜗壳两种不同几何形状之间的强相互作用。主要目的是分析泵内部压力和力波动的特性。对于切向扩散形状,压力波动幅度大于径向扩散器的情况。基于快速傅里叶变换(FFT),在泵中不同监测点的运行条件下的频域的压力波动信号对频域的压力波动信号进行光谱分析。每个漫射器中的蜗壳类型和测量位置都大大影响了这些压力波动的时间频率特性。但是,将仿真结果与可用的实验数据进行了比较,并获得可接受的协议。在该工作中获得的结果可以为设计泵中的蜗壳扩散类型提供有用的参考。

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