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An effective method for modeling the load of bubble jet in underwater explosion near the wall

机译:一种有效的方法,用于在墙壁附近的水下爆炸中造型的泡沫喷射量

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摘要

Due to the nonlinear effects such as strong impact and complex movement of gas-water interface in the process of water jet in underwater explosion, there is no suitable method to calculate the load of water. This work presents a novel and efficient method for modeling underwater-explosion-induced bubble jet near the wall. In this method, compressible multiphase five-equation model with interface compression and density correction is solved by a finite volume method, while a fifth-order accuracy Weighted Essentially Non-Oscillation (WENO) reconstruction and HLLC approximate Riemann solver are employed to discretize the convective terms, and 3rd order TVD Runge-Kutta scheme is used to discretize the temporal term. This method is validated by conducting one-dimensional benchmarking problems and two-dimensional cases. It is found that the results predicted by our method agree well with those from different sources. Finally, the proposed method is applied to simulate underwater explosion bubble jet near the wall. It shows that the generation, development and collapse of the water jet can be well captured, confirming that the five-equation model is effective for modeling bubble jet load near the wall.
机译:由于非线性效应,如气液界面在水射流过程中的强烈冲击和复杂运动,没有合适的方法来计算水的负荷。这项工作提出了一种新颖有效的和有效的方法,用于在墙壁附近建模水下爆炸诱导的泡沫射流。在该方法中,通过有限体积法解决了具有界面压缩和密度校正的可压缩多相五等式模型,而采用基本上非振荡(Weno)重建和HLLC近似Riemann求解器的第五顺序精度加权来分散对流术语和第3级TVD Runge-Kutta方案用于离散时间项。通过进行一维基准测试问题和二维案例来验证该方法。结果发现,我们的方法预测的结果与来自不同来源的方法一致。最后,应用了所提出的方法来模拟墙壁附近的水下爆炸泡沫射流。它表明,水射流的产生,开发和崩溃可以很好地捕获,确认五等式模型对于在墙壁附近建模泡沫喷射负荷是有效的。

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