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A numerical investigation of bubble dynamics based on the potential-flow theory

机译:基于势流理论的气泡动力学数值研究

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In this paper, the flow field is assumed to be inviscid, irrotational and incompressible, triangular elements are adopted to discretize the boundary of flow field, the boundary integral method is used to solve the flow field and the Mixed-Eulerian-Lagrangian method is applied to simulate the evolution of bubble. Three-dimensional smoothing method is used to smooth the bubble surface and the velocity potential to make the computing process more accurate and stable. In the analysis process, three-dimensional model simulates the dynamics of a bubble in the free field, gravitational field and near the rigid wall respectively, and the calculated results coincide well with the exact results and experimental data, which show that the algorithm and 3D model in this paper are of high accuracy. Calculation process indicates that bubble takes on strong non-linear under the combine effect of gravity and rigid wall.
机译:本文假设流场是不可见的,不可旋转且不可压缩的,采用三角单元离散流场的边界,采用边界积分法求解流场,并采用混合欧拉-拉格朗日方法模拟气泡的演变。使用三维平滑方法对气泡表面和速度势进行平滑处理,以使计算过程更加准确和稳定。在分析过程中,三维模型分别模拟了气泡在自由场,重力场和刚性壁附近的动力学,计算结果与精确结果和实验数据吻合良好,表明该算法和3D该模型具有较高的精度。计算过程表明,气泡在重力和刚性壁的共同作用下呈强非线性。

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