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A Weight-Averaged Interpolation Method for Coupling Time-Accurate Rarefied and Continuum Flows.

机译:一种加权平均插值方法,用于耦合时间精确的稀疏流和连续谱流。

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摘要

A novel approach to coupling rarefied and continuum flow regimes as a single, hybrid model is introduced. The method borrows from techniques used in the simulation of spray flows to interpolate Lagrangian point-particles onto an Eulerian grid in a weight-averaged sense. A brief overview of traditional methods for modeling both rarefied and continuum domains is given, and a review of the literature regarding rarefied/continuum flow coupling is presented. Details of the theoretical development of the method of weighted interpolation are then described. The method evaluates macroscopic properties at the nodes of a CFD grid via the weighted interpolation of all simulated molecules in a set surrounding the node. The weight factor applied to each simulated molecule is the inverse of the linear distance between it and the given node.;During development, the method was applied to several preliminary cases, including supersonic flow over an airfoil, subsonic flow over tandem airfoils, and supersonic flow over a backward facing step; all at low Knudsen numbers. The main thrust of the research centered on the time-accurate expansion of a rocket plume into a near-vacuum.;The method proves flexible enough to be used with various flow solvers, demonstrated by the use of Fluent as the continuum solver for the preliminary cases and a NASA-developed Large Eddy Simulation research code, WRLES, for the full lunar model. The method is applicable to a wide range of Mach numbers and is completely grid independent, allowing the rarefied and continuum solvers to be optimized for their respective domains without consideration of the other.;The work presented demonstrates the validity, and flexibility of the method of weighted interpolation as a novel concept in the field of hybrid flow coupling. The method marks a significant divergence from current practices in the coupling of rarefied and continuum flow domains and offers a kernel on which to base an ongoing field of research. It has the potential to significantly increase the flexibility of hybrid rarefied/continuum flow analyses.
机译:介绍了一种将稀疏流与连续流耦合为单个混合模型的新颖方法。该方法借鉴了用于模拟喷流的技术,以权重平均的方式将拉格朗日点粒子插值到欧拉网格上。简要概述了建模稀疏域和连续域的传统方法,并介绍了有关稀疏/连续流耦合的文献。然后描述加权插值方法的理论发展的细节。该方法通过对节点周围集合中所有模拟分子的加权插值来评估CFD网格节点处的宏观性能。应用于每个模拟分子的权重因子是其与给定节点之间的线性距离的倒数。;在开发过程中,该方法已应用于几种初步情况,包括机翼上的超音速流,串联翼型上的亚音速流以及超音速流过向后的台阶;所有这些都是低努数。该研究的主要重点是将火箭羽流及时准确地扩展到接近真空。该方法证明了足够的灵活性,可以与各种流动求解器一起使用,通过使用Fluent作为初步的连续求解器来证明。案例和NASA为整个月球模型开发的大型涡模拟研究代码WRLES。该方法适用于广泛的马赫数并且完全独立于网格,使稀有和连续介质求解器可以针对各自的域进行优化,而无需考虑其他问题。;提出的工作证明了该方法的有效性和灵活性加权插值是混合流耦合领域的一个新颖概念。该方法在稀疏流域和连续流域的耦合方面标志着与当前实践的显着差异,并提供了一个内核,可作为正在进行的研究领域的基础。它有可能显着提高混合稀有/连续流分析的灵活性。

著录项

  • 作者

    Diaz, Steven William.;

  • 作者单位

    Florida Institute of Technology.;

  • 授予单位 Florida Institute of Technology.;
  • 学科 Engineering Aerospace.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 137 p.
  • 总页数 137
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 农学(农艺学);
  • 关键词

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