首页> 外文期刊>Computer Methods in Applied Mechanics and Engineering >Topology-free immersed boundary method for incompressible turbulence flows: An aerodynamic simulation for 'dirty' CAD geometry
【24h】

Topology-free immersed boundary method for incompressible turbulence flows: An aerodynamic simulation for 'dirty' CAD geometry

机译:对不可压缩湍流流量的无拓扑浸没边界法:“脏”CAD几何的空气动力学模拟

获取原文
获取原文并翻译 | 示例

摘要

To design a method to solve the issues of handling & ldquo;dirty & rdquo; and highly complex geometries, the topology-free method combined with the immersed boundary method is presented for viscous and incompressible flows at a high Reynolds number. The method simultaneously employs a ghost-cell technique and distributed forcing technique to impose the boundary conditions. An axis-projected interpolation scheme is used to avoid searching failures during fluid and solid identification. This method yields a topology-free immersed boundary, which particularly suits flow simulations of highly complex geometries. Difficulties generally arise when generating the calculation grid for these scenarios. This method allows dirty data to be handled without any preparatory treatment work to simplify or clean-up the geometry. This method is also applicable to the coherent structural turbulence model employed in this study. The verification cases, used in conjunction with the second-order central-difference scheme, resulted in first-order accuracy at finer resolution, although the coarser resolution retained second-order accuracy. This method is fully parallelized for distributed memory platforms. In this study, the accuracy and fidelity of this method were examined by simulating the flow around the bluff body, past a flat plate, and past dirty spheres. These simulations were compared with experimental data and other established results. Finally, results from the simulation of practical applications demonstrate the ability of the method to model highly complex, non-canonical three-dimensional flows. The countermeasure based on the accurate classification of geometric features has provided a robust and reasonable solution. (C) 2021 Elsevier B.V. All rights reserved.commentSuperscript/Subscript Available/comment
机译:设计一种解决处理问题和LDQUO的方法;肮脏&rdquo;和高度复杂的几何形状,与浸没边界法相结合的无拓扑方法以高雷诺数的粘性和不可压缩的流动。该方法同时采用Ghost-Cell技术和分布式强制技术来施加边界条件。轴投影的插值方案用于避免在流体和实体识别期间搜索故障。该方法产生无拓扑浸没边界,其特别适用于高度复杂的几何形状的流量模拟。在为这些场景生成计算网格时,通常会出现困难。此方法允许在没有任何预备处理工作的情况下处理脏数据,以简化或清理几何形状。该方法也适用于本研究中采用的相干结构湍流模型。验证案例与二阶中心差分方案结合使用,使得精细分辨率的一阶精度,尽管较粗糙的分辨率保留了二阶精度。该方法完全并行化用于分布式存储器平台。在这项研究中,通过模拟虚空体周围的流动,通过平板和过脏球来检查该方法的准确性和保真度。将这些模拟与实验数据和其他既定结果进行了比较。最后,实际应用的模拟结果表明了该方法模拟高度复杂的非规范三维流动的能力。基于准确分类的几何特征的对策提供了一种坚固且合理的解决方案。 (c)2021 elestvier b.v.保留所有权利。<注释>上标/下标可用

著录项

获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号