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Liquid spring damper for vertical landing Reusable Launch Vehicle under impact conditions

机译:冲击条件下用于垂直着陆可重复使用运载火箭的液体弹簧减震器

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This research presents the modelling, experimental validation and analysis of the liquid spring damper under impact conditions during the symmetric vertical soft landing of a Reusable Launch Vehicle. A new nonlinear lumped parameter hydraulic model of a liquid spring damper is first established including the variable liquid bulk modulus, entrapped air, flow inertial effects and cavitation phenomena. Then, a simplified nonlinear model of the scaled Reusable Launch Vehicle test prototype is proposed. This dynamic model, which consists of a three degree-of-freedom main body and a single landing leg assembly with one liquid spring damper, is studied under impact conditions. The experimental prototype with the four nominally identical landing legs is experimentally studied. First, the quasi-static spring damper tests are conducted to identify the compressibility and friction parameters. Then, the Reusable Launch Vehicle prototype drop tests are performed to identify the liquid flow parameters, to validate the damper impact response characteristics and to evaluate the full prototype model through its comparison with the experimental data. It is found that a very good match can be established between the predicted and measured quasi-static damper responses. The local damper predictions also indicate good correlation with the impact test results. The landing prototype simulations indicate qualitatively correct predictions with the main observed discrepancies attributed to the simplified and potentially excessively stiff nature of the prototype model. (C) 2018 Elsevier Ltd. All rights reserved.
机译:这项研究提出了在可重复使用运载火箭的对称垂直软着陆过程中,在冲击条件下液体弹簧阻尼器的建模,实验验证和分析。首先建立了液体弹簧阻尼器的新的非线性集总参数水力模型,该模型包括可变的液体体积模量,截留的空气,流动惯性效应和气蚀现象。然后,提出了可缩放的可重复使用运载火箭测试原型的简化非线性模型。在冲击条件下研究了该动力学模型,该模型由三个自由度的主体和一个带有一个液弹簧减震器的单个着陆腿组件组成。实验研究了具有四个名义上相同的着陆腿的实验原型。首先,进行准静态弹簧阻尼器测试,以确定可压缩性和摩擦参数。然后,进行可重复使用的运载工具原型跌落测试,以识别液体流动参数,验证减震器的冲击响应特性,并通过与实验数据进行比较来评估完整的原型模型。发现在预测和测量的准静态阻尼器响应之间可以建立很好的匹配。局部阻尼器的预测也表明与冲击试验结果具有良好的相关性。着陆原型仿真表明定性正确的预测,而主要观察到的差异归因于原型模型的简化和潜在的过硬特性。 (C)2018 Elsevier Ltd.保留所有权利。

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