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Steady Laminar Flow of Non-Newtonian Fluids in the Inlet Region of Rectangular Duct

机译:矩形管道入口区域中非牛顿流体的稳定层流

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A steady laminar flow of incompressible Non-Newtonian fluids (power law fluid and Sutterby fluid) in the inlet region of rectangular duct was analyzed by finite difference methods. The main results obtained are as follows. (1) The pressure drop of a Non-Newtonian fluid in the inlet region is smaller than that of a Newtonian fluid and its measure increases with an increase in Non-Newtonian property of the fluid. (2) The velocity in the duct center of a Non-Newtonian fluid in the inlet region is smaller than that of a Newtonian fluid and its measure increases with an increase in Non-Newtonian property of the fluid. (3) The velocity profile in a Non-Newtonian fluid becomes flatter than that in a Newtonian fluid, and the velocity in the inlet region develops retaining flatter profile. (4) The additional pressure loss in the inlet region is smaller in a Non-Newtonian fluid than in a Newtonian fluid and its measure increases with an increase in Non-Newtonian property of the fluid. (5) The inlet length of a Non-Newtonian fluid is larger than that of a Newtonian fluid. (6) The pressure drop and the velocity in the duct center of a Non-Newtonian fluid in the inlet region of a rectangular duct decrease with an increase in the aspect ratio of the duct as those of a Newtonian fluid.
机译:通过有限差异方法分析了矩形管道入口区域中的不可压缩非牛顿流体(电力法律流体和SuttyBy流体)的稳定层流。获得的主要结果如下。 (1)入口区域中的非牛顿流体的压降小于牛顿流体的压力,其测量随着流体的非牛顿性质的增加而增加。 (2)入口区域中非牛顿流体的管道中的速度小于牛顿流体的速度,并且其测量随着流体的非牛顿性质的增加而增加。 (3)非牛顿流体中的速度曲线变得比牛顿流体中的更平坦,并且入口区域的速度显影保持更平坦的轮廓。 (4)在非牛顿流体中的入口区域中的额外压力损失比在牛顿流体中的额外压力较小,并且其测量随着流体的非牛顿性质的增加而增加。 (5)非牛顿流体的入口长度大于牛顿流体的入口长度。 (6)矩形管道入口区域中的非牛顿流体的管道中的压降和速度随着导管的纵横比的增加而导致牛顿流体的纵横比。

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