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Experimental hydrodynamics of spherical projectiles impacting on a free surface using high speed imaging techniques

机译:使用高速成像技术撞击自由表面的球形弹丸的实验流体动力学

摘要

This thesis looks at the hydrodynamics of spherical projectiles impacting the free surface using a unique experimental WebLab facility. Experiments were performed to determine the force impact coefficients of spheres and then compare obtained results to theories developed by Von-Karman [ 19] and Wagner [20]. It was found that experimental results matched a generalized Wagner approach developed by Touvia Miloh [12]. A critical impact speed for splash formation was determined before which no splash cavity would form. The cone angle formed behind an impacting object was also studied. The cone angle was found to be a function of depth and impact speed over the range of impact velocities tested. Steel spheres ranging in diameter from 0.64 cm (1/4 in) to 5.08 cm (2 in) were used at impact speeds from 0 to 6.9 m/s. Standard billiard balls of diameter 5.72 cm (2.25 in) were also used in this study. As part of this project, the WebLab facility was constructed. iMarine WebLab is an interactive teaching tool used to educate students in various aspects of marine hydrodynamics and experimental fluid mechanics.
机译:本文使用独特的实验WebLab工具研究了球形弹丸撞击自由表面的流体动力学。进行实验以确定球的力冲击系数,然后将获得的结果与Von-Karman [19]和Wagner [20]提出的理论进行比较。发现实验结果与Touvia Miloh开发的广义Wagner方法相匹配[12]。确定了飞溅形成的临界冲击速度,在此之前没有飞溅腔会形成。还研究了在撞击物体后面形成的锥角。发现在测试的冲击速度范围内,锥角是深度和冲击速度的函数。使用直径范围从0.64厘米(1/4英寸)到5.08厘米(2英寸)的钢球,冲击速度从0到6.9 m / s。本研究中还使用了直径为5.72厘米(2.25英寸)的标准台球。作为该项目的一部分,构建了WebLab工具。 iMarine WebLab是一种交互式教学工具,用于在海洋流体动力学和实验流体力学的各个方面对学生进行教育。

著录项

  • 作者

    Laverty Stephen Michael;

  • 作者单位
  • 年度 2005
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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