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Simulations and Experimental Investigations on the Acoustic Characterization of Centrifugal Pumps of Different Specific Speed

机译:不同特定速度离心泵声学特征的模拟与实验研究

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Subject of discussion are simulations and experimental investigations on the acoustic characterization of three single stage centrifugal pumps of different specific speed. In operation, these pump-types generate pressure pulsation at blade passing frequency, primarily due to rotor-volute-interaction. In order to determine the acoustic excitation it is necessary to know about the pumps’ acoustic transmission parameters. In this paper, a one-dimensional numerical model for transient time-domain simulation is presented, which takes into account the pump geometry as well as the volutes’ structural behaviour by means of the local effective speed of sound. Numerical results for the transmission characteristics of the three different pumps are shown in terms of scattering matrices and evaluated against parameters calculated from measurement results. The experimental analyses are carried out using dynamic pressure sensors in both the suction and the discharge pipe. Assuming solely plane wave propagation, the complex acoustic field on each side is evaluated independently. The so called “two source” method is then used to determine the transmission parameters of the pumps in standstill for a range of frequencies experimentally. Subsequently, the acoustic excitation at varying rotational speed is evaluated by means of measurements at the pumps in operation and presented as monopole and dipole source types for cavitation-free conditions.
机译:讨论的主题是对不同特定速度的三个单级离心泵的声学表征的模拟和实验研究。在操作中,这些泵型在叶片通过频率下产生压力脉动,主要是由于转子蜗壳相互作用。为了确定声学激发,需要了解泵的声学传输参数。在本文中,提出了一种用于瞬态时间域模拟的一维数值模型,这考虑了泵几何形状,以及局部有效速度的泵几何形状以及蜗壳的结构行为。在散射矩阵方面示出了三种不同泵的传输特性的数值结果,并根据测量结果计算的参数评估。实验分析在抽吸和排放管中使用动态压力传感器进行。假设仅平面波传播,每侧上的复杂声场独立地评估。然后使用所谓的“两个源”方法来确定实验一系列频率的静止泵的传输参数。随后,通过在操作中的泵中的测量来评估以不同的转速以各种转速的声学激发,并呈现为无空化条件的单极和偶极源类型。

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