首页> 外文期刊>International Journal for Numerical Methods in Fluids >A hybrid DSMC/Navier-Stokes frame to solve mixed rarefiedonrarefied hypersonic flows over nano-plate and micro-cylinder
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A hybrid DSMC/Navier-Stokes frame to solve mixed rarefiedonrarefied hypersonic flows over nano-plate and micro-cylinder

机译:DSMC / Navier-Stokes混合框架可解决纳米板和微圆柱体上混合的稀有/未稀有高超声速流

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We extend a hybrid DSMC/Navier-Stokes (NS) approach to unify the DSMC and the NS simulators in one framework capable of solving the mixed non-equilibrium and near-equilibrium flow regions efficiently. Furthermore, we use a one-way state-based coupling (Dirichlet-Dirichlet boundary-condition coupling) to transfer the required information from the continuum region to the rarefied one. The current hybrid DSMC-NS frame is applied to the hypersonic flows over nanoflat plate and microcylinder cases. The achieved solutions are compared with the pure DSMC and NS solutions. The results show that the current hybrid approach predicts the surface heat transfer rate and shear stress magnitudes very accurately. Some important conclusions can be drawn from this study. For example, although the shock wave region would be a non-equilibrium region, it is not necessary to use a pure DSMC simulator to solve it entirely. This is important when the researchers wish to predict the surface properties such as velocity slip, temperature jump, wall heat flux rate, and friction drag magnitudes accurately. Our investigation showed that our hybrid solution time would be at least 40% (for the flat plate) and 35% (for the cylinder) of the time that must be spent by a pure DSMC solver to attain the same accuracy.
机译:我们扩展了DSMC / Navier-Stokes(NS)混合方法,以在能够有效解决混合的非平衡和近平衡流动区域的框架中统一DSMC和NS仿真器。此外,我们使用基于状态的单向耦合(Dirichlet-Dirichlet边界条件耦合)将所需信息从连续区域传递到稀疏区域。当前的混合DSMC-NS框架适用于超音速流在纳米平板和微圆柱壳上的流动。将获得的解决方案与纯DSMC和NS解决方案进行比较。结果表明,当前的混合方法可以非常准确地预测表面传热速率和切应力大小。从这项研究中可以得出一些重要的结论。例如,尽管冲击波区域将是一个非平衡区域,但不必使用纯DSMC仿真器来完全解决它。当研究人员希望准确预测速度,滑动,温度跳跃,壁热通量和摩擦阻力大小等表面特性时,这一点很重要。我们的研究表明,我们的混合求解时间至少是纯DSMC求解器为达到相同精度而必须花费的时间的40%(对于平板而言)和35%(对于圆柱体而言)。

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