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Experimental and Numerical Investigation of Unforced unsteadiness in a Vaneless Radial Diffuser

机译:无叶片径向扩散器中非强迫不稳定的实验和数值研究

摘要

The paper reports combined experimental and numerical investigations of unforced un- steadiness in a vaneless radial diffuser. Experimental data were obtained within the diffuser using stereoscopic time resolved Particle Image Velocimetry (PIV) recording three velocity components in a plane (2D/3C), coupled with unsteady pressure transducers. To characterize the inception and the evolution of the unsteady phenomena, spectral analyses of the pressure signals were carried out both in frequency and time-frequency domains and the PIV results were post processed by an original averaging method. Two partial flow rates were investigated in detail in this paper. A single unforced unsteadiness was identified for the lowest flow rate, whereas, two competitive intermittent modes were recognized for the higher mass flow. Numerical analyses were carried out on the same pump by the commercial code CFX. All the computations were performed using the unsteady transient model and the turbulence was modelled by the Scale-Adaptive Simulation (SAS) model. Numerical pressure signals were compared with the experimental data to verify the development of the same pressure fluctua- tions.
机译:本文报道了无叶片径向扩压器中非强迫失稳的实验和数值研究的组合。使用立体时间分辨粒子图像测速(PIV)技术在扩散器内获得实验数据,该数据记录了平面(2D / 3C)中的三个速度分量,并结合了非稳态压力传感器。为了表征非稳态现象的发生和发展,在频域和时频域均进行了压力信号的频谱分析,并通过原始的平均方法对PIV结果进行了后处理。本文详细研究了两个分流率。对于最低的流量,确定了单个非强迫不稳定,而对于较高的质量流量,则确定了两个竞争性间歇模式。使用商品代码CFX在同一台泵上进行了数值分析。所有计算均使用非稳态瞬态模型进行,湍流通过尺度自适应仿真(SAS)模型进行建模。将数值压力信号与实验数据进行比较,以验证相同压力波动的发展。

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