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Development length in planar channel flows of inelastic non-Newtonian fluids

机译:非弹性非牛顿流体平面通道流动的开发长度

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This work presents a numerical study on the development length (L = L/H) required to reach fully-developed flow conditions at the entrance of a planar channel for inelastic non-Newtonian fluids modeled by the Sisko model. The simulations were carried out for low Reynolds number flows in the range 0 Re = 100, for a power law index, n, in the range 1/3 = n = 1 and for a dimensionless infinite viscosity, (mu)over bar(infinity), varying in the range 0 = (mu) over bar (infinity) = 0.1. A new non-linear relationship between L and Re was derived, taking into account the different values of n and (mu) over bar (infinity) Moreover, new exact solutions are presented for the velocity profile under fully developed flow conditions (for specific values of n).
机译:该作品提出了对由Sisko模型建模的非弹性非牛顿流体的平面通道入口处达到完全发育的流动条件所需的显影长度(L = L / H)的数值研究。 在0°的范围内的低雷诺数流动进行模拟。 Re& = 100,用于电力法指数,n,在1/3 = n的范围内,并且对于无量纲的无限粘度,&(μ)在bar&(无限),在 范围0& =(mu)在条(无穷远)上方& = 0.1。 推导出L和RE之间的新的非线性关系,考虑到N和(Infinity)的不同值(Infinity),此外,在完全发育的流动条件下呈现了速度曲线的新精确解决方案(针对特定值 n)。

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