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Latitudinally deforming rotating sphere

机译:LADITUTIDLY变形旋转球

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In this study, we consider a sphere with a surface that is fully covered by a stretchable elastic material, The radius of the sphere is fixed and it is also rotating about its radial axis. We investigate how the axisymmetric motion of a triggered fluid flow around the sphere is affected by the presence of both sphere rotation and latitudinal stretching. Considering that the deformation over the sphere commences at the pole, the problem is formulated such that the fluid flow near the pole is similar to the induced flow due to a linearly stretchable rotating disk, which has been described well in previous studies. When the rotation is omitted, the flow develops two-dimensionally under the action of pure stretching; otherwise, a three-dimensional axisymmetric fluid flow occurs, which is computed at each latitudinal angle both numerically and using a perturbation approach. The solution with wall deformation is different from the traditional character of the solution due to a solely rotating sphere. This solution is then used to compute the surface shears due to the physical drag and torque acting over the sphere. The contribution of wall stretching reduces the drag, whereas high rotation suppresses the effects of stretching to enhance the drag. More torque is required to rotate the sphere when both stretching and rotation mechanisms are in action. (C) 2019 Elsevier Inc. All rights reserved.
机译:在这项研究中,我们考虑一个带有完全被拉伸弹性材料覆盖的表面的球体,球体的半径固定,并且它也围绕其径向轴线旋转。我们研究了球体周围触发的流体流动的轴对称运动如何受到球体旋转和纬度拉伸的存在的影响。考虑到球体上的变形在杆处开始,配方出现问题使得杆附近的流体流类似于由于线性可拉伸的旋转盘而具有诱导的流量,这在先前的研究中已经很好地描述。当省略旋转时,流动在纯拉伸的作用下二维发展;否则,发生三维轴对称流体流动,其在数值上并使用扰动方法以每个纬度角度计算。由于单独旋转球体,具有壁变形的溶液与溶液的传统特征不同。然后使用该溶液来计算由于在球体上作用的物理拖动和扭矩而构成表面剪切。墙壁拉伸的贡献降低了阻力,而高旋转抑制拉伸以增强阻力的影响。当拉伸和旋转机构都处于动作时,需要更多的扭矩来旋转球体。 (c)2019 Elsevier Inc.保留所有权利。

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