English

ADBSat: Verification and validation of a novel panel method for quick aerodynamic analysis of satellites

Space Physics 2022-03-09 v2 Instrumentation and Methods for Astrophysics

Abstract

We present the validation of ADBSat, a novel implementation of the panel method including a fast pseudo-shading algorithm, that can quickly and accurately determine the forces and torques on satellites in free-molecular flow. Our main method of validation is comparing test cases between ADBSat, the current de facto standard of direct simulation Monte Carlo (DSMC), and published literature. ADBSat exhibits a significantly shorter runtime than DSMC and performs well, except where deep concavities are present in the satellite models. The shading algorithm also experiences problems when a large proportion of the satellite surface area is oriented parallel to the flow, but this can be mitigated by examining the body at small angles to this configuration (±{\pm} 0.1{\deg}). We recommend that an error interval on ADBSat outputs of up to 3\% is adopted. Therefore, ADBSat is a suitable tool for quickly determining the aerodynamic characteristics of a wide range of satellite geometries in different environmental conditions in VLEO. It can also be used in a complementary manner to identify cases that warrant further investigation using other numerical-based methods.

Keywords

Cite

@article{arxiv.2110.06118,
  title  = {ADBSat: Verification and validation of a novel panel method for quick aerodynamic analysis of satellites},
  author = {Luciana Sinpetru and Nicholas H. Crisp and Peter C. E. Roberts and Valeria Sulliotti-Linner and Virginia Hanessian and Georg H. Herdrich and Francesco Romano and Daniel Garcia-Alminana and Silvia Rodriguez-Donaire and Simon Seminari},
  journal= {arXiv preprint arXiv:2110.06118},
  year   = {2022}
}

Comments

30 pages, 15 figures. Submitted to Computer Physics Communications