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Firecracker eye exposure: experimental study and simulation

机译:鞭炮眼睛曝光:实验研究和仿真

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Understanding the mechanisms of traumatic ocular injury is helpful to make accurate diagnoses before the symptoms emerge and to develop specific eye protection. The comprehension of the dynamics of primary blast injury mechanisms is a challenging issue. The question is whether the pressure wave propagation and reflection alone could cause ocular damage. To date, there are dissenting opinions and no conclusive evidence thereupon. A previous numerical investigation of blast trauma highlighted the dynamic effect of pressure propagation and its amplification by the geometry of the bony orbit, inducing a resonance cavity effect and a standing wave hazardous for eye tissues. The objective of the current work is to find experimental evidence of the numerically identified phenomenon. Therefore, tests aimed at evaluating the response of porcine eyes to blast overpressure generated by firecrackers explosion were performed. The orbital cavity effect was considered mounting the enucleated eyes inside a dummy orbit. The experimental measurements obtained during the explosion tests presented in this paper corroborate the numerical evidence of a high-frequency pressure amplification, enhancing the loading on the ocular tissues, attributable to the orbital bony walls surrounding the eye.
机译:理解创伤眼损伤的机制有助于在症状出现并开发特定的眼睛保护之前进行准确诊断。对原发性爆炸伤害机制动态的理解是一个具有挑战性的问题。问题是,单独的压力波传播和反射是否可能导致眼部损坏。迄今为止,在那里有异议意见,没有确凿的证据。爆炸创伤的先前数值调查突出了骨轨道的几何形状的压力传播及其放大的动态效应,诱导了谐振腔效应和眼组织的常设波危险。目前工作的目的是找到数值鉴定的现象的实验证据。因此,进行了旨在评估猪眼响应爆竹爆炸产生的猪眼爆炸的响应的试验。轨道腔效应被认为是将Enucleated眼睛安装在虚设轨道内。本文提出的爆炸试验期间获得的实验测量证实了高频压力放大的数值证据,增强了眼部组织的负载,其归因于眼睛周围的轨道骨壁。

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