This paper is concerned with the computational results of two-dimensional axisymmetric rigid and elastic wall formulation. In this paper, steady flow in a stenotic vessel is simulated and compared to available numeric...This paper is concerned with the computational results of two-dimensional axisymmetric rigid and elastic wall formulation. In this paper, steady flow in a stenotic vessel is simulated and compared to available numerical data with COMSOL Multiphysics software. Numerical results for a 2D axisymmetric vessel of 45% area reduction indicate that as the area is reduced with the decreasing of cross-section, the maximum axial velocity at post stenotic decreases until the end of the artery but the radial velocity increases upto 4 mm from the stenosis throat and then decreases. Overall, comparison is carried out on hemodynamics for elastic and rigid wall of steady flow. Our investigated findings may enable risk factor for patients with attacked cardiovascular diseases and can play an important role to detect a solution to such kinds of diseases.展开更多
针对液压滑阀在中高压系统中,粘性加热使油流温升显著,阀芯受热膨胀,发生磨损甚至卡紧的现象,该文建立了液压滑阀的计算机流体力学(Computational Fluid Dynamics,CFD)三维模型和稳态传热有限元模型(Finite Element Analysis,FEA),利用...针对液压滑阀在中高压系统中,粘性加热使油流温升显著,阀芯受热膨胀,发生磨损甚至卡紧的现象,该文建立了液压滑阀的计算机流体力学(Computational Fluid Dynamics,CFD)三维模型和稳态传热有限元模型(Finite Element Analysis,FEA),利用流固耦合(Fluid-Solid Interaction,FSI)计算了阀芯在不同开口度下的速度、阀芯温度和阀芯热变形量,分析阀芯在不同开口度下的最高温度和最大变形量的变化趋势,为液压滑阀的设计提供一定的参考意义。展开更多
文摘This paper is concerned with the computational results of two-dimensional axisymmetric rigid and elastic wall formulation. In this paper, steady flow in a stenotic vessel is simulated and compared to available numerical data with COMSOL Multiphysics software. Numerical results for a 2D axisymmetric vessel of 45% area reduction indicate that as the area is reduced with the decreasing of cross-section, the maximum axial velocity at post stenotic decreases until the end of the artery but the radial velocity increases upto 4 mm from the stenosis throat and then decreases. Overall, comparison is carried out on hemodynamics for elastic and rigid wall of steady flow. Our investigated findings may enable risk factor for patients with attacked cardiovascular diseases and can play an important role to detect a solution to such kinds of diseases.