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Fast boundary-domain integral method for heat transfer simulations

机译:传热模拟的快速边界域积分法

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In this paper, we present a method to decrease the computational cost of the Boundary-Domain Integral Method. We focus on the solution of the velocity-vorticity formulation of the Navier-Stokes equation for incompressible 3D fluid flow. The objective is to accelerate the solution of the boundary vorticity values. In order to reduce the computational cost of the Boundary-Domain Integral Method, we employ the Adaptive Cross Approximation algorithm in combination with the hierarchical matrix structure. The hierarchical matrix structure enables higher compression rates when individual matrix parts are approximated by low-rank matrices. We use the fundamental solution of the modified Helmholtz equation to improve further the approximation accuracy when solving the boundary vorticity values.The developed algorithm is used to simulate natural convection in a closed cavity. By comparing the simulation results with a published benchmark, we are able to assess the influence of the approximation techniques and give a recommendation on parameter values that lead to optimal compression characteristics when simulating the heat and mass transfer processes.
机译:在本文中,我们提出了一种减少边界域积分法计算成本的方法。我们专注于不可压缩3D流体流的Navier-Stokes方程的速度涡度公式的求解。目的是加速边界涡度值的求解。为了减少边界域积分方法的计算成本,我们结合分层矩阵结构采用了自适应交叉近似算法。当各个矩阵部分由低秩矩阵近似时,分层矩阵结构可实现更高的压缩率。我们使用修正的Helmholtz方程的基本解在求解边界涡度值时进一步提高了近似精度。所开发的算法用于模拟封闭腔中的自然对流。通过将模拟结果与已发布的基准进行比较,我们能够评估近似技术的影响,并在模拟传热和传质过程时针​​对可导致最佳压缩特性的参数值提供建议。

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