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MHD flow in a rectangular duct with a perturbed boundary

机译:MHD在带有扰动边界的矩形管道中流动

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The unsteady magnetohydrodynamic (MHD) flow of a viscous, incompressible and electrically conducting fluid in a rectangular duct with a perturbed boundary, is investigated. A small boundary perturbation e is applied on the upper wall of the duct which is encountered in the visualization of the blood flow in constricted arteries. The MHD equations which are coupled in the velocity and the induced magnetic field are solved with no-slip velocity conditions and by taking the side walls as insulated and the Hartmann walls as perfectly conducting. Both the domain boundary element method (DBEM) and the dual reciprocity boundary element method (DRBEM) are used in spatial discretization with a backward finite difference scheme for the time integration. These MHD equations are decoupled first into two transient convection-diffusion equations, and then into two modified Helmholtz equations by using suitable transformations. Then, the DBEM or DRBEM is used to transform these equations into equivalent integral equations by employing the fundamental solution of either steady-state convection-diffusion or modified Helmholtz equations. The DBEM and DRBEM results are presented and compared by equi-velocity and current lines at steady-state for several values of Hartmann number and the boundary perturbation parameter. (C) 2018 Elsevier Ltd. All rights reserved.
机译:研究了具有扰动边界的矩形管道中粘性,不可压缩和导电流体的非稳态磁流体动力学(MHD)流动。小的边界扰动e施加在导管的上壁,这在狭窄动脉的血流可视化中会遇到。在无滑移速度条件下,以侧壁为绝缘层,以Hartmann壁为完美导体,求解了与速度和感应磁场耦合的MHD方程。领域边界元方法(DBEM)和对等互惠边界元方法(DRBEM)都在空间离散化中使用了反向有限差分方案进行时间积分。这些MHD方程首先解耦为两个瞬态对流扩散方程,然后通过使用适当的变换分解为两个修正的Helmholtz方程。然后,通过采用稳态对流扩散或修正的亥姆霍兹方程的基本解,使用DBEM或DRBEM将这些方程式转换为等效积分方程式。给出了DBEM和DRBEM结果,并通过稳态下的等速线和电流线对Hartmann数和边界摄动参数的几个值进行了比较。 (C)2018 Elsevier Ltd.保留所有权利。

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