Document details
![](https://conference.sdo.esoc.esa.int/sites/default/files/qrcodes/16132-C-qr.png)
Abstract
Aerodynamic interactions of objects in a continuum hypersonic and supersonic flow are numerically and analytically investigated for perfect and thermochemical equilibrium gas conditions. An innovative semi-analytical methodology has been developed and associated to the Laurence equations [4] in order to compute the aerodynamics coefficients of a sphere located downstream the shock wave issued from a primary object. The influence of the aerodynamic interactions on the trajectory of a debris cloud during atmospheric re-entry has also been assessed and compared to the trajectory of the same noninteracting objects. Finally, the influence of fragments interactions on heat flux and debris survivability during the re-entry has been investigated.
Preview
![](https://conference.sdo.esoc.esa.int/sites/default/files/styles/paper_preview_thumbnail/public/papers_preview/sdc6/146/page-1.png?itok=u7w542Yg)
![](https://conference.sdo.esoc.esa.int/sites/default/files/styles/paper_preview_thumbnail/public/papers_preview/sdc6/146/page-2.png?itok=mfkZEj3J)
![](https://conference.sdo.esoc.esa.int/sites/default/files/styles/paper_preview_thumbnail/public/papers_preview/sdc6/146/page-3.png?itok=HDH3yhY8)
![](https://conference.sdo.esoc.esa.int/sites/default/files/styles/paper_preview_thumbnail/public/papers_preview/sdc6/146/page-4.png?itok=H2jTjiRD)
![](https://conference.sdo.esoc.esa.int/sites/default/files/styles/paper_preview_thumbnail/public/papers_preview/sdc6/146/page-5.png?itok=87jPFEeQ)
![](https://conference.sdo.esoc.esa.int/sites/default/files/styles/paper_preview_thumbnail/public/papers_preview/sdc6/146/page-6.png?itok=5qJZ9XFx)
![](https://conference.sdo.esoc.esa.int/sites/default/files/styles/paper_preview_thumbnail/public/papers_preview/sdc6/146/page-7.png?itok=szNs7Uk-)
![](https://conference.sdo.esoc.esa.int/sites/default/files/styles/paper_preview_thumbnail/public/papers_preview/sdc6/146/page-8.png?itok=grrTaFak)