首页> 外文会议>ASME international mechanical engineering congress and exposition >VIRTUAL SIMULATION OF BLAST, BEHIND-ARMOR BLUNT TRAUMA, AND PROJECTILE PENETRATION LEADING TO INJURY OF LIFE-CRITICAL ORGANS IN THE HUMAN TORSO
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VIRTUAL SIMULATION OF BLAST, BEHIND-ARMOR BLUNT TRAUMA, AND PROJECTILE PENETRATION LEADING TO INJURY OF LIFE-CRITICAL ORGANS IN THE HUMAN TORSO

机译:爆炸,后装甲钝伤和弹丸穿透对人躯干中生命关键器官的伤害的虚拟模拟

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Light body armor development for the warfighter is based on trial-and-error testing of prototype designs against ballistic projectiles. Torso armor testing against blast is virtually nonexistent but necessary to ensure adequate mitigation against injury to the heart and lungs. In this paper, we discuss the development of a high-fidelity human torso model and the associated modeling & simulation (M&S) capabilities. Using this torso model, we demonstrate the advantage of virtual simulation in the investigation of wound injury as it relates to the warfighter experience. Here, we present the results of virtual simulations of blast loading and ballistic projectile impact to the torso with and without notional protective armor. Our intent here is to demonstrate the advantages of applying a modeling and simulation approach to the investigation of wound injury and relative merit assessments of protective body armor.
机译:战斗机的轻型防弹衣的开发基于针对弹道导弹的原型设计的反复试验。几乎没有针对爆炸的躯干装甲测试,但对于确保充分缓解对心脏和肺部的伤害而言,这是必要的。在本文中,我们讨论了高保真人体躯干模型的开发以及相关的建模与仿真(M&S)功能。使用这种躯干模型,我们证明了虚拟仿真在调查伤口伤害方面的优势,因为它与战士的经验有关。在这里,我们介绍了带有和不带有名义防护装甲的爆炸载荷和弹道对躯干的冲击的虚拟仿真结果。我们的目的是证明在建模和仿真方法研究伤口损伤和保护性防弹衣的相对价值评估中的优势。

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