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Numerical Simulation of Newtonian Fluid Flow in a T-Channel with no Slip/Slip Boundary Conditions on a Solid Wall

机译:牛顿流体流动在T沟道中的数值模拟,在实体壁上没有滑动/滑动边界条件

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The planar flow of a Newtonian incompressible fluid in a T-shaped channel is investigated. Three fluid interaction models with solid walls are considered: no slip boundary condition, Navier slip boundary condition and slip boundary condition with slip yield stress. The fluid flow is provided by uniform pressure profiles at the boundary sections of the channel. The problem is numerically solved using a finite difference method based on the SIMPLE procedure. Characteristic flow regimes have been found for the described models of liquid interaction with solid walls. The estimation of the influence of the Reynolds number, pressure applied to the boundary sections and the parameters of these models on the flow pattern was performed. The criterial dependences describing main characteristics of the flow under conditions of the present work have been demonstrated.
机译:研究了T形通道中牛顿不可压缩流体的平面流。考虑了具有实心壁的三种流体相互作用模型:没有滑动边界条件,纳维亚滑动边界条件和滑动边界条件,具有滑动屈服应力。通过均匀的压力分布在通道的边界部分处提供流体流动。使用基于简单过程的有限差分方法进行数值求解问题。已经找到了具有固体壁的所描述的液体相互作用模型的特征流制度。估计雷诺数,施加到边界部的压力和这些模型的参数的估计。已经证明了描述在本作工作条件下流动的主要特征的标准依赖性。

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