AIR1168/11-2008

Spacecraft Boost and Entry Heat Transfer


说明:

  • 此图仅显示与当前标准最近的5级引用;
  • 鼠标放置在图上可以看到标题编号;
  • 此图可以通过鼠标滚轮放大或者缩小;
  • 表示标准的节点,可以拖动;
  • 绿色表示标准:AIR1168/11-2008 , 绿色、红色表示本平台存在此标准,您可以下载或者购买,灰色表示平台不存在此标准;
  • 箭头终点方向的标准引用了起点方向的标准。

 

 

非常抱歉,我们暂时无法提供预览,您可以试试: 免费下载 AIR1168/11-2008 前三页,或者稍后再访问。

点击下载后,生成下载文件时间比较长,请耐心等待......

 



标准号
AIR1168/11-2008
发布日期
2008年02月01日
实施日期
2011年07月27日
废止日期
中国标准分类号
/
国际标准分类号
/
发布单位
SAE - SAE International
引用标准
290
适用范围
The prediction of vehicle temperatures during ascent through the earth's atmosphere requires an accurate knowledge of the aerodynamic heating rates occurring at the vehicle surface. Flight parameters required in heating calculations include the local airstream velocity@ pressure@ and temperature at the boundary layer edge for the vehicle location in question. In addition@ thermodynamic and transport air properties are required at these conditions. Both laminar and turbulent boundary layers occur during the boost trajectory. Experience has shown that laminar and turbulent heating are of equivalent importance. Laminar heating predominates in importance in the stagnation areas@ but the large afterbody surfaces are most strongly affected by turbulent heating. Once the local flow conditions and corresponding air properties have been obtained@ the convective heating rate may be calculated for a particular wall temperature. This assumes that the boundary layer flow regime (that is@ turbulent@ laminar@ or transitory) has also been established@ so that a heating theory corresponding to the particular flow conditions may be selected. This section presents theoretical methods for computing boost vehicle surface aerodynamic heating rates. First@ procedures are given for computing the local flow distributions around the vehicle. Second@ methods are given for computing the convective heating rates@ using the flow parameters found previously.




Copyright ©2007-2022 ANTPEDIA, All Rights Reserved
京ICP备07018254号 京公网安备1101085018 电信与信息服务业务经营许可证:京ICP证110310号