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A numerical study on the flow control characteristic of a cavitating venturi with one- and two-stage diffusers

机译:一种具有单级扩散器的空化文丘里的流量控制特性的数值研究

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A cavitating venturi in the auxiliary feed water system of a nuclear power plant is a flow control device that limits the maximum flow rate in critical conditions. In this research, a numerical study was conducted to predict the characteristics of the cavitating flow in a venturi with various geometrical configurations. Assuming axisymmetric geometry and a steady state, equations of the flow field were solved numerically. The mixture model for the multi-phase flow and the standard k-epsilon turbulence model were adopted. The primary diffuser angle was varied to perform detailed parametric study. The flow and pressure variations, shape of the cavitation bubble, and corresponding flow control characteristics were summarized. Finally, the calculation results were analyzed to provide a physical basis for the design limits proposed in a previous patent. It is expected that the results of this study will be useful information for the future design of an optimized venturi.
机译:核电站辅助给水系统中的空化文丘里管是一种在临界条件下限制最大流量的流量控制装置。在这项研究中,进行了一项数值研究,以预测具有不同几何结构的文丘里管中的空化流动特性。在轴对称几何形状和稳态条件下,对流场方程进行了数值求解。采用多相流混合模型和标准k-ε湍流模型。改变主扩散器角度,以进行详细的参数研究。总结了空化泡的流量和压力变化、空化泡的形状以及相应的流量控制特性。最后,对计算结果进行了分析,为先前专利中提出的设计限制提供了物理依据。预计本研究结果将为优化文丘里管的未来设计提供有用的信息。

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