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Numerical study of spherical Couette flows for certain zenith-angle-dependent rotations of boundary spheres at low Reynolds numbers

机译:低雷诺数下边界球的某些与天顶角有关的旋转的球面Couette流动的数值研究

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摘要

The numerical method with splitting of boundary conditions developed previously by the first and third authors for solving the stationary Dirichlet boundary value problem for the Navier-Stokes equations in spherical layers in the axisymmetric case at low Reynolds numbers and a corresponding software package were used to study viscous incompressible steady flows between two con-centric spheres. Flow regimes depending on the zenith angle θ of coaxially rotating boundary spheres (admitting discontinuities in their angular velocities) were investigated. The orders of accuracy with respect to the mesh size of the numerical solutions (for velocity, pressure, and stream function in a meridional plane) in the max and L _2 norms were studied in the case when the velocity boundary data have jump discontinuities and when some procedures are used to smooth the latter. The capabilities of the Richardson extrapolation procedure used to improve the order of accuracy of the method were investigated. Error estimates were obtained. Due to the high accuracy of the numerical solutions, flow features were carefully analyzed that were not studied previously. A number of interesting phenomena in viscous incompressible flows were discovered in the cases under study.
机译:第一和第三作者先前开发的求解边界条件分裂的数值方法,用于解决低雷诺数下轴对称情况下球形层中Navier-Stokes方程的稳态Dirichlet边值问题,并使用了相应的软件包进行研究。两个同心球之间的粘性不可压缩稳定流。研究了取决于同轴旋转边界球的天顶角θ(允许角速度不连续)的流态。在速度边界数据具有跳跃间断的情况下以及当速度边界数据不连续的情况下,研究了关于最大值和L _2范数中数值解的网格大小(子午平面中的速度,压力和流函数)的精度等级。一些程序用于使后者平滑。研究了Richardson外推程序用于提高方法精度的能力。获得了误差估计。由于数值解的高精度,因此对流动特性进行了仔细分析,而以前没有研究过。在所研究的案例中,发现了粘性不可压缩流中的许多有趣现象。

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