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Computational modeling of blast exposure associated with recoilless weapons combat training

机译:爆破曝光与重新武器作战培训相关的计算建模

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Military personnel are exposed to blast as part of routine combat training with shoulder-fired recoilless rifles. These weapons fire large-caliber ammunitions capable of disabling structures and uparmored vehicles (e.g., tanks). Scientific, medical, and military leaders are beginning to recognize the blast overpressure from these shoulder-fired weapons may result in acute and even long-term physiological effects to military personnel. However, the back blast generated from the Carl Gustav and Shoulder-launched Multipurpose Assault Weapon (SMAW) shoulder-fired weapons on the weapon operator has not been quantified. By quantifying and modeling the full-body blast exposure from these weapons, better injury correlations can be constructed. Blast exposure data from the Carl Gustav and SMAW were used to calibrate a propellant burn source term for computational simulations of blast exposure on operators of these shoulder-mounted weapon systems. A propellant burn model provided the source term for each weapon to capture blast effects. Blast data from personnel-mounted gauges during weapon firing were used to create initial, high-fidelity 3D computational fluid dynamic simulations using SHAMRC (Second-order Hydrodynamic Automatic Mesh Refinement Code). These models were then improved upon using data collected from static blast sensors positioned around the military personnel while weapons were utilized in actual combat training. The final simulation models for both the Carl Gustav and SMAW were in good agreement with the data collected from the personnel-mounted and static pressure gauges. Using the final simulation results, contour maps were created for peak overpressure and peak overpressure impulse experienced by military personnel firing the weapon as well as those assisting with firing of those weapons. Reconstruction of the full-body blast loading enables a more accurate assessment of the cause of potential mechanisms of injury due to air blast even for subjects not we
机译:作为与肩部循环步枪的常规作战训练的一部分,军事人员暴露于爆炸。这些武器消防大口径弹药,能够禁用结构和调节车辆(例如,坦克)。科学,医疗和军事领袖开始认识到这些肩部射击武器可能导致军事人员的急性甚至长期的生理效应。然而,从卡尔古斯塔夫和肩膀发射的多用途攻击武器(SMAW)武器运营商的肩扛武器产生的后爆尚未量化。通过量化和建模来自这些武器的全身爆炸暴露,可以建立更好的伤害相关性。来自Carl Gustav和Smaw的爆炸曝光数据用于校准这些肩部安装武器系统的操作员的爆破暴露的计算模拟的推进剂烧伤源。推进剂燃烧模型为每个武器提供了捕获爆炸效果的源术语。使用SHAMRC(二阶流动自动网格细化代码)使用武器射击期间的人员安装仪表的爆炸数据来创建初始,高保真3D计算流体动态模拟。然后,在使用从军事人员周围的静电传感器中收集的数据,在实际战斗训练中使用武器,这些模型改善了这些模型。 Carl Gustav和SMAW的最终仿真模型与从人员安装和静压仪收集的数据吻合良好。使用最终的仿真结果,为军事人员射击武器的峰值过压和峰值超压脉冲而创建了轮廓图,以及触发这些武器的人。全身爆炸载荷的重建使得能够更准确地评估由于由于受试者而不是我们

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