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Fast and Accurate Prediction for Aerodynamic Forces and Moments Acting on Satellites Flying in Low-Earth Orbit

机译:对卫星在低地轨道飞行的空气动力和时刻的快速准确预测

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A fundamental prerequisite for satellites operating in a Low Earth Orbit (LEO) is the availability of fast and accurate prediction of non-gravitational aerodynamic forces, which is characterised by the free molecular flow regime. However, conventional computational methods like the analytical integral method and direct simulation Monte Carlo (DSMC) technique are found failing to deal with flow shadowing and multiple reflections or computationally expensive. This work develops a general computer program for the accurate calculation of aerodynamic forces in the free molecular flow regime using the test particle Monte Carlo (TPMC) method, and non-gravitational aerodynamic forces actiong on the Gravity field and steady-state Ocean Circulation Explorer (GOCE) satellite is calculated for different freestream conditions and gas-surface interaction models by the computer program.
机译:在低地轨道(LEO)中运行的卫星的基本先决条件是不快速准确地预测非重力空气动力,其特征在于自由分子流量。然而,发现像分析积分方法和直接仿真蒙特卡罗(DSMC)技术的传统计算方法未能处理流量阴影和多次反射或计算昂贵。这项工作开发了一种用于使用试验粒子蒙特卡罗(TPMC)方法的自由分子流动调节中的空气动力学的一般计算机程序,以及在重力场和稳态海洋循环探险器上的非重力空气动力动作( Goce)卫星用于计算机程序的不同自由流条件和气体表面交互模型。

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