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Modeling and Simulation of Lunar Lander Soft-Landing Using Transient Dynamics Approach

机译:月球着陆器软着陆的瞬态动力学建模与仿真

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Landing dynamics analysis is necessary for the success of the lunar lander soft-landing. Recent advances in computational speed have made lunar lander soft-landing modeling and simulation using a nonlinear, transient dynamics, finite element analysis code more feasible. A new approach to study the soft-landing of lunar lander has been described in this paper. The simulation of lunar lander soft-landing selected MSC. DYTRAN. By taking a certain type of lunar lander as the research object, the flexible models of the lander structure and the lunar regolith are established. The lander has four landing legs, and has corresponding shock absorbers using Al-honeycomb. Two specific nonlinear characteristics of the honeycomb and the lunar regolith of simulation model are preset, and the nonlinear frictions are considered. The results are then compared to and validated by test data. Simulation results are presented to investigate the performance of energy absorbing system in soft-landing. The time history of internal energy of the lander structure and the lunar regolith during the entire soft-landing event are obtained.
机译:着陆动力学分析对于成功完成月球着陆器软着陆是必不可少的。计算速度的最新进展使使用非线性,瞬态动力学,有限元分析代码的月球着陆器软着陆建模和仿真更加可行。本文介绍了一种研究月球着陆器软着陆的新方法。对月球着陆器软着陆的仿真选择了MSC。 DYTRAN。以某种类型的月球着陆器为研究对象,建立了着陆器结构和月球重新定位的柔性模型。着陆器具有四个着陆脚,并具有使用Al-Honeycomb的相应减震器。预设了蜂窝的两个特定的非线性特征和模拟模型的月球重石,并考虑了非线性摩擦。然后将结果与测试数据进行比较并验证。给出了仿真结果,以研究能量吸收系统在软着陆中的性能。获得了整个软着陆过程中着陆器结构和月球重石的内部能量的时程。

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