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A computational model of blast loading on the human eye

机译:人眼爆炸载荷的计算模型

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Ocular injuries from blast have increased in recentwars, but the injurymechanism associated with the primary blastwave is unknown.We employ a three-dimensional fluid–structure interaction computational model to understand the stresses and deformations incurred by the globe due to blast overpressure. Our numerical results demonstrate that the blast wave reflections off the facial features around the eye increase the pressure loading on and around the eye. The blast wave produces asymmetric loading on the eye, which causes globe distortion. The deformation response of the globe under blast loading was evaluated, and regions of high stresses and strains inside the globe were identified. Our numerical results show that the blast loading results in globe distortion and large deviatoric stresses in the sclera. These large deviatoric stresses may be indicator for the risk of interfacial failure between the tissues of the sclera and the orbit.
机译:在最近的战争中,爆炸引起的眼外伤有所增加,但与原始爆炸波相关的损伤机制尚不清楚。我们采用三维流体-结构相互作用计算模型来了解爆炸超压引起的地球应力和变形。我们的数值结果表明,爆炸波从眼睛周围的面部特征反射会增加眼睛和周围的压力负荷。爆炸波会在眼睛上产生不对称的负载,从而导致球形失真。评估了爆炸载荷作用下球体的变形响应,并确定了球体内的高应力和高应变区域。我们的数值结果表明,爆炸载荷会导致巩膜的球形变形和较大的偏应力。这些较大的偏斜应力可能是巩膜组织和眼眶组织之间界面衰竭风险的指标。

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