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Experimental and numerical investigation on the performance of small-sized cavitating venturis

机译:小型空化文丘里管性能的实验和数值研究

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Cavitating venturis (CVs) are simple devices which can be used in different industrial applications to passively control the flow rate of fluids. In this research the operation of small-sized CVs is characterized and their capabilities in regulating the mass flow rate were experimentally and numerically investigated. The effect of upstream and downstream pressures, as well as geometrical parameters such as the throat diameter, throat length, and diffuser angle on the mass flow rate and critical pressure ratio were studied. For experimental data acquisition, three CVs with throat diameters of 0.7, 1 and 1.5 mm were manufactured and tested. The fabricated CVs were tested at different upstream and downstream pressures in order to measure their output mass flow rate and to obtain their characteristic curves. The flow inside the CVs was also simulated by computational fluid dynamics. The numerical results showed agreement with the experimental data by a maximum deviation of 5-10% and confirmed that the numerical approach can be used to predict the critical pressure ratio and mass flow rate at cavitaing condition. It is found that despite the small size of venturis, they are capable of controlling the mass flow rate and exhibit the normal characteristics. By decreasing the throat diameter, their cavitating mode became more limited. Results also show that increasing the diffuser angle and throat length leads to a decrease in critical pressure ratio. (C) 2015 Elsevier Ltd. All rights reserved.
机译:空化文丘里管(CV)是简单的设备,可用于不同的工业应用中,以被动地控制流体的流速。在这项研究中,对小型CV的运行进行了表征,并通过实验和数值研究了它们在调节质量流量方面的能力。研究了上游和下游压力以及几何参数(如喉管直径,喉管长度和扩散角)对质量流量和临界压力比的影响。为了获得实验数据,制造并测试了三个喉径分别为0.7、1和1.5 mm的CV。在不同的上游和下游压力下对制成的CV进行测试,以测量其输出质量流量并获得其特性曲线。还通过计算流体动力学模拟了CV内部的流动。数值结果与实验数据吻合最大偏差为5-10%,并证实了数值方法可用于预测空化条件下的临界压力比和质量流量。已经发现,尽管文丘里管的尺寸很小,但是它们能够控制质量流量并表现出正常的特性。通过减小喉管直径,它们的空化模式变得更加有限。结果还表明,增加扩散器角度和喉管长度会导致临界压力比降低。 (C)2015 Elsevier Ltd.保留所有权利。

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