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Cavitation and Flow Instabilities in a 4-Bladed Axial Inducer Designed by Means of a Reduced Order Analytical Model

机译:利用降阶分析模型设计的四叶轴向诱导器中的空化和流动不稳定性

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The paper illustrates the results of an experimental campaign conducted at Alta S.p.A. in the CPRTF (Cavitating Pump Rotordynamic Test Facility). Tests have been carried out in water on the four-bladed DAPAMITO4 inducer, designed and manufactured by means of a reduced-order model developed at Alta S.p.A., at several values of the flow coefficient and the water temperature. Several non-synchronous instabilities have been observed on the inducer, including an axial surge, a backflow oscillation and, at higher temperatures, an incipient rotating cavitation and a backflow vortices instability. In addition, a synchronous rotating cavitation (also leading to the characteristic "one step" shape of the cavitating performance curve near to head breakdown conditions) has been detected at all the investigated flow conditions, and the amplitude of oscillations associated to this instability generally tends to decrease at higher water temperatures.
机译:该文件说明了在Alta S.p.A.在CPRTF(空化泵转子动力测试设备)中进行的一项实验活动的结果。已经在水中进行了四叶DAPAMITO4诱导剂的测试,该诱导剂是通过Alta S.p.A.开发的降阶模型在流量系数和水温的多个值下设计和制造的。在感应器上已观察到几种非同步的不稳定性,包括轴向波动,回流振荡,以及在较高的温度下,初期的旋转空化和回流涡旋不稳定性。另外,在所有研究的流动条件下都检测到了同步旋转空化(也导致空化性能曲线的特征“一步”形状靠近喷头击穿条件),并且与这种不稳定性相关的振荡幅度通常趋向于在较高的水温下降低。

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