论文标题

跨源边界层的开源框架在Nektar ++中复杂几何形状上的自然转变分析

Open-source Framework for Transonic Boundary Layer Natural Transition Analysis over Complex Geometries in Nektar++

论文作者

Lyu, Ganlin, Chen, Chao, Du, Xi, Mughal, Shahid, Sherwin, Spencer J.

论文摘要

我们引入了一个开源和统一的框架,用于在跨多个条件和复杂几何形状上进行层状边界层自然转变的过渡分析,其中可能存在表面不规则。在框架中集成了不同的计算工具,因此在使用$ e^n $方法进行过渡分析时,克服了两个单独的且通常完全不同的过程的困难。为了生成带有所需压力分布的基流,需要开发和强制使用适当的压力兼容的流入边界条件。我们首先为边界条件得出1D数值稳定性分析的系统,并构建三种类型的压力兼容流入。我们证明,与其他选择不同,熵压兼容的流入量稳定。与稳定的基础流量计算相比,由于复杂的波反射,对于可压缩流的不稳定模拟对于可压缩的流动更具挑战性,这很容易污染结果。因此,我们介绍了波浪去污和相应的方法的两个主要来源,以获得清洁信号。然后,通过计算2D平板边界层中的干扰开发以MACH $ 0.8 $来验证框架内的工作流程。生成了干净的平板上的$ n $ factor,并产生了一个带有前向步骤的平板,并且与参考的结果非常吻合。在经过验证的工作流程后,我们分析了CRM-NLF模型机翼部分的干扰生长。生成并研究了2D模拟上的N因子。

We introduce an open-source and unified framework for transition analysis for laminar boundary layer natural transition at transonic conditions and over complex geometries, where surface irregularities may be present. Different computational tools are integrated in the framework, and therefore overcomes the difficulties of two separate and usually quite disparate processes when using $e^N$ method for transition analysis. To generate a baseflow with desired pressure distribution, appropriate pressure compatible inflow boundary condition needs to be developed and enforced. We first derive the system for 1D numerical stability analysis for boundary conditions, and construct three types of pressure compatible inflow. We demonstrate that the entropy-pressure compatible inflow is stable unlike other choices. Compared with the steady baseflow computation, the unsteady simulation for the disturbance field is more challenging for compressible flows because of complex wave reflections, which can easily contaminate the results. We therefore introduce the two main sources of wave decontamination and corresponding methods to obtain clean signal. The workflow within the framework is then verified by computing the disturbance development in 2D flat plate boundary layer flows at Mach $0.8$. The $N$-factors over a clean flat plate and a flat plate with a forward-facing step are generated, and agree well with the results from the reference. Following the verified workflow, We then analyze the disturbance growth on a wing section of the CRM-NLF model. The N-factor on a 2D simulation is generated and studied.

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