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Numerical solution of viscous and viscoelastic fluids flow through the branching channel by finite volume scheme

机译:粘性粘弹性流体通过有限体积方案流过分支通道的数值溶液

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This work deals with the numerical modelling of steady flows of incompressible viscous and viscoelastic fluids through the three dimensional channel with T-junction. The fundamental system of equations is the system of generalized Navier-Stokes equations for incompressible fluids. This system is based on the system of balance laws of mass and momentum for incompressible fluids. Two different mathematical models for the stress tensor are used for simulation of Newtonian and Oldroyd-B fluids flow. Numerical solution of the described models is based on cetral finite volume method using explicit Runge-Kutta time integration.
机译:这项工作涉及通过三维通道的不可压缩粘性和粘弹性流体的稳定流量的数值模拟。基本系统是用于不可压缩流体的广义Navier-Stokes方程的系统。该系统基于衡量质量和不可压缩液体势头的平衡规律。两个不同的压力张量数学模型用于牛顿和oldroyd-B流体的仿真。所描述模型的数值解决方案基于使用显式跳动-Kutta时间集成的封闭性有限体积方法。

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