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Comparative Study for the Prediction of Cavitating Flow inside a Square-Edged Orifice using Different Commercial CFD Software

机译:使用不同的商用CFD软件预测方孔内空化流的比较研究

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Nuclear power plant operators conduct in-service testing (IST) to verify the safety functions of safety–related pumps and valves and to monitor the degree of vulnerability over time during reactor operation. The system to which the pump and valve to be tested are installed has various sizes of orificesfor flow control and decompression. Rapid flow acceleration and accompanying pressure drop may cause cavitation inside the orifice, which may result in orifice degradation and structural damage. Though licensing applications supported by using Computational Fluid Dynamics (CFD) software are gradually increasing for IST–related problems, there is no CFD software which obtains a licensing from the domestic regulatory body until now. In this paper, to assess the prediction performance of different commercialCFD software for the analysis of cavitating flow inside a square–edged orifice, the simulation was conducted with ANSYS CFX and FLUENT R18.1. The results predicted were then compared with the measured data.
机译:核电厂运营商进行在役测试(IST),以验证与安全相关的泵和阀的安全功能,并监测反应堆运行期间随时间推移的脆弱程度。安装要测试的泵和阀的系统具有各种尺寸的孔,用于流量控制和减压。快速的流动加速和随之而来的压降可能会在孔内造成气蚀,从而导致孔退化和结构损坏。尽管针对与IST相关的问题,使用计算流体动力学(CFD)软件支持的许可申请正在逐渐增加,但是迄今为止,还没有CFD软件能够从国内监管机构获得许可。在本文中,为了评估不同的商用CFD软件对方形孔口内的空化流分析的预测性能,使用ANSYS CFX和FLUENT R18.1进行了仿真。然后将预测结果与测量数据进行比较。

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