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Soil Deformations during Finless Torpedo Installation

机译:无翅鱼雷安装过程中的土壤变形

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Rapid penetration of torpedoes into the sea floor encompasses a host of complex phenomena. Determining the kinematics of soil-torpedo interactions, needed for development and validation of state-of-the-art numerical simulations, remains one of the major challenges in design and analysis of torpedo anchors. In this study, results of rapid penetration tests in reduced scale physical models of synthetic soils are presented. The granular media consists of saturated refractive-index-matched transparent quartz particles. High-speed imaging is used to capture images during the penetration event. Digital image correlation is then performed to investigate soil-torpedo interactions. Results of the analyses provide high fidelity data with regards to kinematics of soil-torpedo interaction at various stages of penetration. These data reveal a deviation of the soil response ahead of the torpedo from both cylindrical and spherical cavity expansion.
机译:鱼雷快速渗透到海床中包含了许多复杂的现象。确定开发和验证最新数值模拟所需的土壤-鱼雷相互作用的运动学,仍然是设计和分析鱼雷锚的主要挑战之一。在这项研究中,提出了在缩小规模的合成土壤物理模型中进行快速渗透测试的结果。粒状介质由饱和折射率匹配的透明石英颗粒组成。高速成像用于在穿透事件期间捕获图像。然后执行数字图像相关性研究土壤-鱼雷的相互作用。分析的结果提供了在渗透的各个阶段土壤-鱼雷相互作用的运动学方面的高保真度数据。这些数据揭示了鱼雷在圆柱和球形空腔膨胀方面对鱼雷响应的偏差。

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