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Numerical Modeling of a Viscous Incompressible Unsteady Separated Flow Past a Rotating Cylinder

机译:旋转圆柱体的粘性不可压缩非定常分离流的数值模拟

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For studying unsteady flow past a rotating circular cylinder the Navier-Stokes equations are used. The numerical algorithm is based on an artificial-compressibility method, an implicit three-layer second-order scheme with subiterations with respect to time, a third-order scheme with splitting of the flux vectors for the convective terms, and a central-difference scheme for integrating the viscous terms. The calculated velocity profiles, the vorticity fields, the Strouhal numbers, the distribution of the pressure and friction coefficients over the cylinder surface, and the coefficients of the drag and lift forces for the laminar flow regime are analyzed.
机译:为了研究通过旋转圆柱体的非恒定流,使用了Navier-Stokes方程。数值算法基于人工可压缩性方法,关于时间具有子迭代的隐式三层二阶方案,对流项的通量矢量分裂的三阶方案和中心差分方案用于整合粘性术语。分析了计算出的速度分布,涡旋场,斯特劳哈尔数,圆柱表面上压力和摩擦系数的分布以及层流状态下的阻力和升力系数。

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