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首页> 外文期刊>Multiphase science and technology >EFFECT OF GAS CONTENT ON THE CAVITATING AND NON-CAVITATING PERFORMANCE OF AN AXIAL THREE-BLADED INDUCER
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EFFECT OF GAS CONTENT ON THE CAVITATING AND NON-CAVITATING PERFORMANCE OF AN AXIAL THREE-BLADED INDUCER

机译:气体含量对轴向三叶诱导剂的空化和非空分性能的影响

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摘要

In hydraulic systems, cavitation occurs in the liquid when its pressure locally drops below its vapor pressure. This can generate vibrations, noises, and instabilities in the flow that reduce the system performance. Cavitation has been the subject of many studies but the influence of dissolved gases in these operating conditions has remained unexplored. In the present work, an experimental study is conducted on a three-bladed axial inducer at partial flow rates in cavitating and non-cavitating regimes. A closed loop with a transparent test section and constant temperature water is used. In one of the tanks, a specific device is placed in order to inject CO2) and dissolve it in water. This device makes it possible to evaluate the dissolved CO2) rate effect on the performance of the inducer. A vacuum pump decreases the pressure in the loop. A high-speed camera filming the inducer suction in various conditions enables images to transmit at a sampling rate frequency of 1 kHz allowing comparison of the flow dynamics. Based on the pressure measurements, the flow rate, and the CO2) concentration, head versus net positive suction head (NPSH) curves are set for various Reynolds numbers. The results indicate that increasing the dissolved CO2) content decreases the inducer performance: the head breakdown occurs at higher NPSH, and it increases the cavitation intensity. In fact, as the degassing takes place small gas bubbles are noticed and the single-phase flow transforms into a two-phase homogeneous mixture.
机译:在液压系统中,当其压力局部下降到其蒸汽压力下方时,空化发生在液体中。这可以在减少系统性能的流程中产生振动,噪音和稳定性。空化是许多研究的主题,但溶解气体在这些操作条件下的影响仍未开发。在本作工作中,在空化和非空化制度的部分流速下在三叶轴向诱导器上进行实验研究。使用具有透明试验部分和恒温水的闭环。在其中一个罐中,放置特定装置以注射CO 2)并将其溶解在水中。该装置可以评估溶解的CO2)速率对诱导剂的性能的影响。真空泵降低了环中的压力。在各种条件下拍摄诱导器抽吸的高速摄像机使图像能够以1kHz的采样率频率传输,允许比较流动动态。基于压力测量,流速和CO2)浓度,头部与净正吸头(NPSH)曲线设置为各种雷诺数。结果表明,增加溶解的CO 2)含量降低了诱导剂性能:在较高的NPSH下发生头部击穿,并且它增加了空化强度。实际上,由于脱气发生小气泡,并且单相流变换成两相均匀的混合物。

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