首页> 外文会议>ASME international mechanical engineering congress and exposition >NUMERICAL MODELING OF PHAN-THIEN - TANNER VISCOELASTIC FLUID FLOW THROUGH A SQUARE CROSS-SECTION DUCT: HEAT TRANSFER ENHANCEMENT DUE TO SHEAR-THINNING EFFECTS
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NUMERICAL MODELING OF PHAN-THIEN - TANNER VISCOELASTIC FLUID FLOW THROUGH A SQUARE CROSS-SECTION DUCT: HEAT TRANSFER ENHANCEMENT DUE TO SHEAR-THINNING EFFECTS

机译:方形截面管道中潘恩-坦纳-粘弹性流体的数值模拟:由于剪切变稀效应而增强了传热

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Non-isothermal laminar flow of a viscoelastic fluid through a square cross-section duct is analyzed. Viscoelastic stresses are described by the Phan-Thien -Tanner model and the solvent shear stress is given by the linear Newtonian constitutive relationship. The solution of the set of governing equations spawns coupling between equations of elliptic-hyperbolic type. Our numerical approach is based on the finite-differences method. To treat the hyperbolic part, the system of equations are rewritten in a quasilinear form. The resulting pure advection terms are discretized using high-order upwind schemes when the hyper-bolicity condition is satisfied. The incompressibility condition is obtained by the semi-implicit projection method. Finally we investigate the evolution of velocity, shear stress, viscosity and heat transfer over a wide range of Weissenberg numbers.
机译:分析了通过方形截面管道的粘弹性流体的非等温层流。粘弹性应力由Phan-Thien-Tanner模型描述,溶剂剪切应力由线性牛顿本构关系给出。控制方程组的解产生椭圆-双曲型方程之间的耦合。我们的数值方法基于有限差分法。为了处理双曲部分,方程组以拟线性形式重写。当满足双曲率条件时,使用高阶迎风方案将所得的纯对流项离散化。通过半隐式投影法获得不可压缩条件。最后,我们研究了在广泛的魏森伯格数范围内的速度,切应力,粘度和热传递的演变。

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