首页> 外文OA文献 >Blunt-Body Entry Vehicle Aerothermodynamics: Transition and Turbulence on the CEV and MSL Configurations
【2h】

Blunt-Body Entry Vehicle Aerothermodynamics: Transition and Turbulence on the CEV and MSL Configurations

机译:钝体进入车辆的空气热力学:CEV和MSL配置上的过渡和湍流

摘要

Recent, current, and planned NASA missions that employ blunt-body entry vehicles pose aerothermodynamic problems that challenge the state-of-the art of experimental and computational methods. The issues of boundary-layer transition and turbulent heating on the heat shield have become important in the designs of both the Mars Science Laboratory and Crew Exploration Vehicle. While considerable experience in these general areas exists, that experience is mainly derived from simple geometries; e.g. sharp-cones and flat-plates, or from lifting bodies such as the Space Shuttle Orbiter. For blunt-body vehicles, application of existing data, correlations, and comparisons is questionable because an all, or mostly, subsonic flow field is produced behind the bow shock, as compared to the supersonic (or even hypersonic) flow of other configurations. Because of the need for design and validation data for projects such as MSL and CEV, many new experimental studies have been conducted in the last decade to obtain detailed boundary-layer transition and turbulent heating data on this class of vehicle. In this paper, details of several of the test programs are reviewed. The laminar and turbulent data from these various test are shown to correlate in terms of edge-based Stanton and Reynolds number functions. Correlations are developed from the data for transition onset and turbulent heating augmentation as functions of momentum thickness Reynolds number. These correlation can be employed as engineering-level design and analysis tools.
机译:最近,当前和计划中的采用钝体进入飞行器的NASA任务都带来了空气动力学问题,这些问题挑战了实验和计算方法的最新水平。隔热板上边界层过渡和湍流加热的问题在火星科学实验室和乘员探索车的设计中都变得非常重要。尽管在这些一般领域中已有相当丰富的经验,但是这些经验主要来自简单的几何形状。例如尖锥和平板,或者来自航天飞机轨道飞行器之类的举升体。对于钝体车辆,现有数据,相关性和比较的应用是有问题的,因为与其他配置的超音速(甚至是超音速)流相比,在弓形冲击后会产生全部或大部分亚音速流场。由于需要MSL和CEV等项目的设计和验证数据,因此在过去十年中进行了许多新的实验研究,以获得此类车辆的详细边界层过渡和湍流加热数据。本文对几种测试程序的细节进行了回顾。这些来自各种测试的层流和湍流数据显示为基于边的Stanton和雷诺数函数相关。从过渡开始和湍流加热增加的数据得出相关性,作为动量厚度雷诺数的函数。这些相关性可以用作工程级别的设计和分析工具。

著录项

  • 作者

    Hollis Brian R.;

  • 作者单位
  • 年度 2010
  • 总页数
  • 原文格式 PDF
  • 正文语种
  • 中图分类

相似文献

  • 外文文献
  • 中文文献
  • 专利

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