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Reduction of global effects on vehicles after IED detonations

机译:减少爆炸爆炸后对车辆的整体影响

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摘要

Global effects caused by the detonation of an IED near a military vehicle induce subsequent severe acceleration effects on the vehicle occupants. Two concepts to minimize these global effects were developed, with the help of a combined method based on a scaled experimental technology and numerical simulations. The first concept consists in the optimization of the vehicle shape to reduce the momentum transfer and thus the occupant loading. Three scaled V-shaped vehicles with different ground clearances were built and compared to a reference vehicle equipped with a flat floor. The second concept, called dynamic impulse compensation (DIC), is based on a momentum compensation technique. The principal possibility of this concept was demonstrated on a scaled vehicle. In addition, the numerical simulations have been performed with generic full size vehicles including dummy models, proving the capability of the DIC technology to reduce the occupant loading.
机译:由军用车辆附近的IED引起的全球效应诱导随后对车辆乘员的严重加速度影响。在基于缩放的实验技术和数值模拟的组合方法的帮助下,开发了两个最小化这些全球效果的两个概念。第一个概念在于在车辆形状的优化中组成以降低动量转移,从而减少乘员装载。建造三个具有不同地间隙的缩放V形车辆,并与配备有平板的参考车辆进行建造。第二个概念,称为动态脉冲补偿(DIC)基于动量补偿技术。在缩放的车辆上证明了这一概念的主要可能性。此外,已经用包括虚拟模型的通用全尺寸车辆进行了数值模拟,证明了DIC技术的能力来减少乘员装载。

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  • 来源
    《兵工学报(英文版)》 |2014年第2期|219-225|共7页
  • 作者单位

    Ernst-Mach-Institute, Eckerstr. 4, 79104 Freiburg, Germany;

    Ernst-Mach-Institute, Eckerstr. 4, 79104 Freiburg, Germany;

    Ernst-Mach-Institute, Am Christianswuhr 2, 79400 Kandern, Germany;

    Ernst-Mach-Institute, Am Christianswuhr 2, 79400 Kandern, Germany;

    Ernst-Mach-Institute, Am Christianswuhr 2, 79400 Kandern, Germany;

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  • 入库时间 2022-08-19 03:35:07
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