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首页> 外文期刊>Technical physics letters: Letters to the Russian journal of applied physics >Mathematical Modeling of the Inception and Development of Cavitation in Turbulent Liquid Flow in a Symmetric Channel
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Mathematical Modeling of the Inception and Development of Cavitation in Turbulent Liquid Flow in a Symmetric Channel

机译:对称通道中湍流液体流动初始与开发的数学建模

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摘要

The process of cavitation inception and development in turbulent flow of a hydrocarbon fuel in a square channel under the action of a large constant pressure difference has been studied. It is established that the flow in this system is substantially unsteady and, despite the fact that the channel possesses both vertical and horizontal symmetry, the structure of cavitating flow is significantly asymmetric. This circumstance plays an important role in analysis of the fundamental problem of cavitation inception and development in a wide range of practical problems. The mathematical modeling of turbulent cavitating flows was based on the Navier-Stokes equations supplemented by the equation of state of a barotropic medium. Simulations were performed using a modified algorithm of the open-source computational fluid dynamics toolbox OpenFOAM. Comparison of the results of test simulations to available experimental data showed the appropriateness and efficiency of the proposed algorithm.
机译:研究了在大恒压差的作用下的方沟道中烃燃料中烃燃料湍流的空化初始和开发过程。 确定该系统中的流动基本上是不稳定的,尽管通道具有垂直和水平对称的事实,但空化流动的结构显着不对称。 这种情况在分析了广泛的实际问题中的空化初始和发展的基本问题方面发挥着重要作用。 湍流空腔流动的数学建模基于压力学介质状态等式的Navier-Stokes方程。 使用开源计算流体动力学工具箱OpenFoam的修改算法进行仿真。 测试模拟结果对可用实验数据的比较显示了所提出的算法的适当性和效率。

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