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APS -70th Annual Meeting of the APS Division of Fluid Dynamics- Event - Fast pressure-correction method for incompressible Navier-Stokes equations in curvilinear coordinates

机译:APS-000TH曲线坐标内的流体动力学 - 事件 - 事件的APS分工年会 - 快速压力校正方法 - 曲线坐标中的不可压缩Navier-Stokes方程

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In order to perform direct numerical simulations (DNS) of turbulent flows over curved surfaces and axisymmetric bodies, we have developed the numerical methodology to solve the incompressible Navier-Stokes (NS) equations in curvilinear coordinates for orthogonal meshes. The orthogonal meshes are generated by solving a coupled system of non-linear Poisson equations. The NS equations in orthogonal curvilinear coordinates are discretized in space on a staggered mesh using second-order central-difference scheme and are solved with an FFT-based pressure-correction method. The momentum equation is integrated in time using the second-order Adams-Bashforth scheme. The velocity field is advanced in time by applying the pressure correction to the approximate velocity such that it satisfies the divergence free condition. The novelty of the method stands in solving the variable coefficient Poisson equation for pressure using an FFT-based Poisson solver rather than the slower multigrid methods. We present the verification and validation results of the new numerical method and the DNS results of transitional flow over a curved axisymmetric body.
机译:为了在弯曲表面和轴对称体上执行湍流的直接数值模拟(DNS),我们开发了数字方法,以解决正交网格的曲线坐标中的不可压缩Navier-Stokes(NS)方程。通过求解非线性泊松方程的耦合系统来产生正交网格。正交曲线坐标中的NS方程在使用二阶中心差方案的交错网格上的空间中离散化,并用基于FFT的压力校正方法解决。使用二阶ADAMS-Bashforth方案及时融入动量方程。通过将压力校正施加到近似速度,使得其满足偏差条件,速度场及时提前。该方法的新颖性探讨了使用基于FFT的泊松求解器而不是较慢的多级方法来解决变量系数泊松方程,而不是较慢的多级方法。我们介绍了新数值方法的验证和验证结果和曲线对称体过渡流动的DNS结果。

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