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首页> 外文期刊>Computer Methods in Applied Mechanics and Engineering >Algebraic-volume meshfree method for application in finite volume solver
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Algebraic-volume meshfree method for application in finite volume solver

机译:代数体无网格法在有限体积求解器中的应用

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摘要

Nowadays the finite volume (FV) method remains the most popular choice for Computational Fluid Dynamics (CFD). But few meshfree methods have been developed based on the framework of existing FV codes which can boost the development of the meshfree method. An algebraic volume (AV) concept for the meshfree method is proposed to mimic the geometric control volume (CV) of the FV method via a meshfree point cloud. Similar to the CV, each AV is closed by algebraic faces which are constructed via the weighted least-squares method. Only the bias fluxes are solved at the midpoint of the current point and its neighbor. The other flow variables of Navier-Stokes (NS) equations are solved in the same way as the traditional FV method. So it automatically solves the compressible flow with shock wave without additional treatment. The AV meshfree method only requires to modify the calculation method of volume and face area vector from a geometric way to an algebraic solution in pre-processing, therefore it is straightforward to implement in a traditional FV solver. The numerical methods of upwind schemes for convective flux, corrected central difference for viscous flux and implicit temporal discretization are identical for both the mesh-based FV method and AV meshfree method. The AV meshfree method has been integrated into an FV code and applied to high Reynolds number, transonic, viscous flow simulations. The accuracy and convergence of both the FV method and AV meshfree method are verified via 2D low-speed flow and transonic 3D flow. The results of AV meshfree method agree quite well with those of the FV method and experimental data. And the comparison shows good point size convergence. Furthermore, a demo of hybrid FV method and AV meshfree method is presented to investigate the potential of this new meshfree method. The trajectory results obtained by CFD and experimental data are in good agreement. (C) 2019 Elsevier B.V. All rights reserved.
机译:如今,有限体积(FV)方法仍然是计算流体动力学(CFD)的最流行选择。但是,基于现有FV代码框架开发的无网格方法很少,这可以促进无网格方法的发展。提出了一种无网格方法的代数体积(AV)概念,以通过无网格点云模拟FV方法的几何控制体积(CV)。与CV相似,每个AV均由通过加权最小二乘法构造的代数面封闭。在当前点及其相邻点的中点,只有偏通量被解算。 Navier-Stokes(NS)方程的其他流量变量的求解方法与传统FV方法相同。因此,它无需额外处理即可自动用冲击波解决可压缩流。 AV无网格方法只需要在预处理过程中将体积和表面积矢量的计算方法从几何方式修改为代数解决方案,因此在传统FV求解器中可以轻松实现。对于基于网格的FV方法和AV无网格方法,对流通量的迎风方案,粘性通量的校正中心差和隐式时间离散化的数值方法都是相同的。 AV无网格方法已集成到FV代码中,并已应用于高雷诺数,跨音速,粘性流模拟。通过2D低速流和跨音速3D流验证了FV方法和AV无网格方法的准确性和收敛性。 AV无网格方法的结果与FV方法和实验数据非常吻合。并且比较显示了良好的点大小收敛性。此外,提出了混合FV方法和AV无网格方法的演示,以研究这种新的无网格方法的潜力。 CFD得到的轨迹结果与实验数据吻合良好。 (C)2019 Elsevier B.V.保留所有权利。

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