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A formulation of PANS capable of mimicking IDDES

机译:一种能够模仿IDDES的平底锅的制定

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摘要

The partially averaged Navier-Stokes (PANS) model, proposed in Girimaji (2006), allows to simulate turbulent flows either in RANS, LES or DNS mode. The PANS model includes f(k) which denotes the ratio of modeled to total kinetic energy. In RANS, f(k) = 1 while in DNS it tends to zero. In the present study we propose an improved formulation for f(k) based on the H-equivalence introduced by Friess et al. (2015). In this formulation the expression of f(k) is derived to mimic Improved Delayed Detached Eddy Simulation (IDDES). This new formulation behaves in a very similar way as IDDES, even though the two formulations use different mechanisms to separate modeled and resolved scales. They show very similar performance in separated flows as well as in attached boundary layers. In particular, the novel formulation is able to (i) treat attached boundary layers as properly as IDDES, and (ii) "detect" laminar initial/boundary conditions, in which case it enforces RANS mode. Furthermore, it is found that the new formulation is numerically more stable than IDDES.
机译:在Girimaji(2006)中提出的部分平均的Navier-Stokes(PANS)模型允许在RAN,LES或DNS模式下模拟湍流流动。平底锅模型包括F(k),其表示模型与总动能的比率。在RAN中,F(k)= 1,而DNS趋于为零。在本研究中,我们提出了基于Friess等人引入的H-Decance的改进的F(k)制剂。 (2015)。在该制剂中,衍生F(k)的表达以模仿改进的延迟分离涡流模拟(Iddes)。这种新的配方的行为与IDDES非常相似,即使两种配方使用不同的机制来分隔建模和解决的尺度。它们在分离的流量以及附加的边界层中显示出非常相似的性能。特别地,新颖的配方能够(i)将附着的边界层视为IDDES的附加边界层,并且(ii)“检测”层层初级/边界条件,在这种情况下,它强制执行RAN模式。此外,发现新配方比IDDES数值更稳定。

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