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Crash Simulation of a Vertical Drop Test of a Commuter-Class Aircraft

机译:通勤级飞机垂直坠落试验的碰撞仿真

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摘要

A finite element model of an ATR42-300 commuter-class aircraft was developed and a crash simulation was executed. Analytical predictions were correlated with data obtained from a 30-ft/s (9.14-m/s) vertical drop test of the aircraft. The purpose of the test was to evaluate the structural response of the aircraft when subjected to a severe, but survivable, impact. The aircraft was configured with seats, dummies, luggage, and other ballast. The wings were filled with 8,700 lb. (3,946 kg) of water to represent the fuel. The finite element model, which consisted of 57,643 nodes and 62,979 elements, was developed from direct measurements of the airframe geometry. The seats, dummies, luggage, fuel, and other ballast were represented using concentrated masses. The model was executed in LS-DYNA, a commercial code for performing explicit transient dynamic simulations. Predictions of structural deformation and selected time-history responses were generated. The simulation was successfully validated through extensive test-analysis correlation.
机译:开发了ATR42-300通勤级飞机的有限元模型,并进行了碰撞仿真。分析预测与从飞机的30英尺/秒(9.14-m / s)垂直跌落试验获得的数据相关。该测试的目的是评估飞机在遭受严重但可幸存的撞击时的结构响应。飞机配置有座椅,假人,行李和其他压载物。机翼装满了8700磅(3946千克)的水以表示燃料。有限元模型由57,643个节点和62,979个元素组成,是通过直接测量机身几何形状而开发的。座椅,假人,行李,燃料和其他压载物使用集中质量表示。该模型在LS-DYNA中执行,这是用于执行显式瞬态动态仿真的商业代码。产生结构变形和选定的时程响应的预测。通过广泛的测试分析相关性,成功地验证了该仿真。

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