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DSMC investigation of rarefied gas flow over a 2D forward-facing step: Effect of Knudsen number

机译:DSMC对稀土气体流动的DSMC调查,前瞻性步骤:Knudsen号的效果

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摘要

A Forward-Facing Step (FFS) can be approximated as a simplified geometry for modeling the irregularities around space vehicles, the flow around which is often rarefied. These irregularities lead to flow separation, circulation, and re-attachment. This study aims to examine one of the fundamental surface irregularities that can have a significant effect on the design of space vehicles. In this article, Direct Simulation Monte Carlo (DSMC), an effective method for studying rarefied flows, is used to investigate the role of rarefaction on the non-reacting hypersonic rarefied gas flow over a forward-facing step. A comprehensive analysis of the effects of Knudsen number on the on flow-field properties, i.e., velocity, pressure, temperature, density, and surface properties, i.e., pressure coefficient, skin friction coefficient, and heat transfer coefficient is performed. The selected Knudsen number range from 0.05 to 21.33, covering the various rarefaction regimes. The Mach number of the free-stream flow employed was 25. The sections in the vicinity and downstream of the step are examined in-depth, describing the predominant nonequilibrium aspects. The normalized flow properties increased with Knudsen number and are primarily affected by the interplay of compressibility and viscous dissipation effects. Flow recirculation occurred in the slip and transition regime, whereas it was absent in the free-molecular regime; moreover, the recirculation lengths decreased with rarefaction. The surface properties were found to increase with Knudsen number with peak magnitudes located on the upstream and frontal face of the step.
机译:面向前部步骤(FF)可以近似为简化的几何形状,用于对空间车辆周围的不规则建模,其流动通常是稀薄的。这些不规则性导致流动分离,循环和重新连接。本研究旨在研究一种对太空车辆设计产生重大影响的基本表面不规则之一。在本文中,直接仿真蒙特卡罗(DSMC),用于研究稀薄流动的有效方法,用于研究稀疏对前部步骤中的非反应过度的高效稀土气流的作用。综合分析了knudsen数对流域性质的影响,即速度,压力,温度,密度和表面特性,即压力系数,皮肤摩擦系数和传热系数。所选择的knudsen数字范围为0.05至21.33,覆盖各种稀疏制度。所采用的自由流流的马赫数为25.对步骤附近和下游的部分进行了深入地检查,描述了主要非核状方面。归一化流动性质随knudsen数而增加,主要受压缩性和粘性耗散效果的相互作用的影响。流动再循环发生在滑动和过渡方案中,而在自由分子制度中不存在;此外,再循环长度随稀疏而降低。发现表面性质与knudsen数增加,峰值幅度位于步骤的上游和正面上。

著录项

  • 来源
    《Acta astronautica》 |2021年第1期|89-109|共21页
  • 作者单位

    Birla Inst Technol & Sci Pilani Dept Mech Engn High Performance Comp HPC Lab Hyderabad Campus Hyderabad 500078 India;

    Birla Inst Technol & Sci Pilani Dept Mech Engn High Performance Comp HPC Lab Hyderabad Campus Hyderabad 500078 India;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    DSMC; Forward-facing step; Knudsen number; Rarefied gas flows;

    机译:DSMC;面对前进的步骤;knudsen号;稀土气流;

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