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首页> 外文期刊>Journal of Sound and Vibration >Experiments on the unsteady flow field and noise generation in a centrifugal pump impeller
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Experiments on the unsteady flow field and noise generation in a centrifugal pump impeller

机译:离心泵叶轮非定常流场和噪声产生的实验

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This paper reports on an experimental investigation of large-scale flowfield instabilities in a pump rotor and the process of noise generation by these instabilities. Measurements of the fluctuating components of velocity and surface pressure were made with hot-wire probes and surface mounted pressure transducers on a seven bladed back swept centrifugal water pump impeller operating with air as the working fluid. The impeller was operated without a volute or scroll diffuser, thereby eliminating any sound generation from pressure fluctuations on the volute cutoff. Thus the study focused on flow field and noise components other than the blade passage frequency (and its harmonics). The primary goal of the study was to provide fundamental information on the unsteady flow processes, particularly those associated with the noise generation in the device. It was further anticipated that detailed flow measurements would be useful for the validation of future computational simulations. The measured data at the discharge show a jet-wake type of flow pattern which results in a strong vorticity field. The flow with high velocity found on the pressure side of the impeller tends to move to the low-pressure region present at the suction side of the passage as a form of roll-up around the blade trailing edge. This motion causes an unsteady flow separation at the suction side of the blade and consequently disturbs the flow in the adjacent passage. By interacting with the impeller blades near the trailing edges, this instability flow causes a periodic pressure fluctuation on the blade surface and generates noise by a trailing edge generation mechanism. The spectrum of surface pressure measured at the trailing edge of each blade reveals a cluster of peaks which were identified with azimuthal mode numbers. The correlation between the acoustic farfield pressure and the surface pressure on the impeller blade has proven that the azimuthal modes synchronized with the number of impeller blades generate noise much more efficiently than the other modes. The paper also clarifies the correlation between unsteady flowfield measurements, in both impeller and laboratory co-ordinates, with the radiated noise properties. Thus some light is shed on the noise generation mechanisms of this particular device. (C) 2002 Elsevier Science Ltd. All rights reserved. [References: 24]
机译:本文对泵转子中大规模流场不稳定性以及由这些不稳定性引起的噪声产生过程进行了实验研究。使用热线探针和表面安装的压力传感器,在以空气为工作流体的七叶片后掠式离心水泵叶轮上,测量速度和表面压力的波动分量。叶轮在没有蜗壳或涡旋扩散器的情况下运行,从而消除了蜗壳截止处压力波动产生的任何声音。因此,研究的重点是除叶片通过频率(及其谐波)以外的流场和噪声成分。该研究的主要目的是提供有关非稳态流动过程的基本信息,尤其是与设备中产生噪声相关的过程。进一步预期详细的流量测量将对未来的计算模拟的验证有用。放电时的测量数据显示出喷射-尾流类型的流动模式,这导致了强烈的涡流场。在叶轮的压力侧发现的高速流动趋向于移动到通道吸入侧的低压区域,以绕叶片后缘的卷起形式出现。该运动在叶片的吸入侧引起不稳定的流动分离,并因此扰乱相邻通道中的流动。通过与后缘附近的叶轮叶片相互作用,这种不稳定性流在叶片表面上引起周期性的压力波动,并通过后缘产生机构产生噪声。在每个叶片后缘测得的表面压力频谱显示出一组峰,这些峰由方位角模数标识。叶轮叶片上的远场声压与表面压力之间的相关性已证明,与叶轮叶片数量同步的方位角模式比其他模式更有效地产生噪声。本文还阐明了叶轮和实验室坐标中非恒定流场测量值与辐射噪声特性之间的相关性。因此,一些光照射到该特定设备的噪声生成机制上。 (C)2002 Elsevier ScienceLtd。保留所有权利。 [参考:24]

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