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首页> 外文期刊>International journal of chemical engineering >Unsteady Mixed Convection Boundary Layer from a Circular Cylinder in a Micropolar Fluid
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Unsteady Mixed Convection Boundary Layer from a Circular Cylinder in a Micropolar Fluid

机译:微极性流体中圆柱体的非稳态混合对流边界层

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Most industrial fluids such as polymers, liquid crystals, and colloids contain suspensions of rigid particles that undergo rotation. However, the classical Navier-Stokes theory normally associated with Newtonian fluids is inadequate to describe such fluids as it does not take into account the effects of these microstructures. In this paper, the unsteady mixed convection boundary layer flow of a micropolar fluid past an isothermal horizontal circular cylinder is numerically studied, where the unsteadiness is due to an impulsive motion of the free stream. Both the assisting (heated cylinder) and opposing cases (cooled cylinder) are considered. Thus, both small and large time solutions as well as the occurrence of flow separation, followed by the flow reversal are studied. The flow along the entire surface of a cylinder is solved numerically using the Keller-box scheme. The obtained results are compared with the ones from the open literature, and it is shown that the agreement is very good.
机译:大多数工业流体,例如聚合物,液晶和胶体,都包含经过旋转的刚性颗粒的悬浮液。然而,通常与牛顿流体有关的经典纳维尔-斯托克斯理论不足以描述此类流体,因为它没有考虑这些微结构的影响。本文对流经等温水平圆柱体的微极性流体的非稳态混合对流边界层流进行了数值研究,其中非稳态是由于自由流的脉冲运动引起的。辅助(加热缸)和相对的情况(冷却缸)都被考虑。因此,无论是大时间解决方案还是小流解决方案,都研究了流分离和随后的逆流现象。沿圆柱体整个表面的流动使用Keller-box方案进行数值求解。将所获得的结果与公开文献中的结果进行比较,表明一致性非常好。

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