首页> 外文会议>International Congress on Sound and Vibration >COMPARISON OF HIGHER-ORDER NUMERICAL SCHEMES AND SEVERAL FILTERING METHODS APPLIED TO NAVIERSTOKES EQUATIONS WITH APPLICATIONS TO COMPUTATIONAL ACOUSTICS
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COMPARISON OF HIGHER-ORDER NUMERICAL SCHEMES AND SEVERAL FILTERING METHODS APPLIED TO NAVIERSTOKES EQUATIONS WITH APPLICATIONS TO COMPUTATIONAL ACOUSTICS

机译:高阶数控的比较及应用于计算声学应用的NavierStokes方程的滤波方法

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In computational acoustics, fluid-acoustic coupling methods for the computation of sound have been widely used by researchers for the last five decades. In the first part of the coupling procedure, the fully unsteady incompressible or compressible flow equations for the near-field of the unsteady flow are solved by using a Computational Fluid Dynamics (CFD) technique, i.e., Direct Numerical Simulation (DNS), Large Eddy Simulation (LES) or unsteady Reynolds averaged Navier-Stokes equations (RANS); results of these simulations are then used to calculate sound sources using the acoustic analogy or by solving a set of acoustic perturbation equations (APE) leading to the solution of the acoustic field. It is possible to use a 2-D reduced problem to provide preliminary understanding of many acoustic problems. Unfortunately 2-D CFD simulations using a fine-mesh-small-time-step-LES-alike numerical method cannot be considered as LES which applies to 3-D simulations only. Therefore it is necessary to understand the similarities and the effect between filters applied to unsteady compressible Navier-Stokes equations and the combined effect of high-order schemes and mesh sizes. The aim of this study is to provide suitable LES-alike methods for 2-D simulations. An efficient software implementation of high order schemes is also proposed. Numerical examples are provided to illustrate these empirical similarities.
机译:在计算声学中,用于计算声音的流体声学耦合方法已被研究人员广泛使用过去五十年。在耦合过程的第一部分中,通过使用计算流体动力学(CFD)技术,即直接数值模拟(DNS),大涡流来解决用于非定常流量的完全不稳定的不可压缩或可压缩流动方程。仿真(LES)或不稳定的雷诺斯平均Navier-Stokes方程(RAN);然后,这些模拟的结果用于使用声学类比或通过求解一组声学扰动方程(APE)来计算声音源,导致声场的溶液。可以使用2-D减小问题来提供对许多声学问题的初步理解。遗憾的是,使用微网上 - 小型步骤LES-相同的数值方法的2-D CFD模拟不能被视为仅适用于3-D模拟的LES。因此,有必要了解应用于不稳定的可压缩Navier-Stokes方程的过滤器之间的相似性和效果以及高阶方案和网格尺寸的组合效果。本研究的目的是为2-D模拟提供合适的LES-Alike方法。还提出了一种有效的软件实现高阶方案。提供了数值例子以说明这些经验相似性。

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