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Multiphase simulation of liquid jet breakup using smoothed particle hydrodynamics

机译:使用平滑粒子流体动力学的液体喷射分解的多相模拟

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This paper deals with numerical modeling of two-phase liquid jet breakup using the smoothed particle hydrodynamics (SPH) method. Simulation of multiphase flows involving fluids with a high-density ratio causes large pressure gradients at the interface and subsequently divergence of numerical solutions. A modied procedure extended by Monaghan and Rafiee is employed to stabilize the sharp interface between the fluids. Various test cases such as Rayleigh-Taylor instability, two-phase still water and air bubble rising in water have been conducted, by which the capability of accurately capturing the physics of multiphase flows is verified. The results of these simulations are in a good agreement with analytical and previous numerical solutions. Finally, the simulation of the breakup process of liquid jet into surrounding air is accomplished. The whole numerical solutions are accomplished for both Wendland and cubic spline kernel functions and Wendland kernel function gave more accurate results. Length of liquid breakup in Rayleigh regime is calculated for various flow conditions such as different Reynolds and Weber numbers. The results of breakup length demonstrate in satisfactory agreement with the experimental correlation. Finally, impinging distance and breakup length of a simple multijet setup are analyzed. The two-jet multijet has a longer breakup length than a three-jet one.
机译:本文涉及使用平滑粒子流体动力学(SPH)法的两相液喷射分解的数值模拟。涉及具有高密度比流体的多相流的模拟在界面处导致大的压力梯度以及随后发散数值溶液。由Monaghan和Rafiee延伸的修改程序用于稳定流体之间的尖锐界面。已经进行了各种测试用例,如瑞利 - 泰勒不稳定性,在水中上升两相静水和气泡,通过该试验,验证了准确地捕获多相流物理的能力。这些模拟的结果与分析和先前的数值解决方案良好。最后,完成了液体喷射到周围空气中的分解过程的模拟。为Wendland和Cubic样条核心函数而完成整个数值解决方案,并且Wendland内核功能提供了更准确的结果。为不同的流动条件(如不同的Reynolds和Weber号)计算Rayleigh制度中的液体分解的长度。分解长度的结果与实验相关性令人满意的协议。最后,分析了撞击距离和分解长度的简单多jet设置。双喷射多jet具有比三喷射器更长的分手长度。

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