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Three-Dimensional Numerical Simulations of Turbulent Cavitating Flow in a Rectangular Channel

机译:矩形通道中湍流空化流动的三维数值模拟

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Cavitation is a phenomenon of formation of bubbles (cavities) in liquid as a result of pressure drop. Cavitation plays an important role in a wide range of applications. For example, cavitation is one of the key problems of design and manufacturing of pumps, hydraulic turbines, ship's propellers, etc. Special attention is paid to cavitation erosion and to performance degradation of hydraulic devices (noise, fluctuations of the mass flow rate, etc.) caused by the formation of a two-phase system with an increased compressibility. Therefore, development of a model to predict cavitation inception and collapse of cavities in high-speed turbulent flows is an important fundamental and applied task. To test the algorithm three-dimensional simulations of turbulent flow of a cavitating liquid in a rectangular channel have been conducted. The obtained results demonstrate the efficiency and robustness of the formulated model and the algorithm.
机译:空化是由于压降而形成液体中的气泡(空腔)的现象。 空化在广泛的应用中起着重要作用。 例如,空化是泵,液压涡轮机,船舶螺旋桨的设计和制造的关键问题之一。特别注意被支付空化腐蚀和液压装置的性能下降(噪音,质量流量的波动,等等 。)由形成一两相系统引起的压缩性增加。 因此,在高速湍流流动中预测空化初始化和腔塌陷的模型是一个重要的基础和应用任务。 为了测试算法,已经进行了矩形通道中的空化液体湍流的三维模拟。 所得结果证明了配制模型和算法的效率和稳健性。

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