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首页> 外文期刊>International journal of numerical analysis and modeling >The oblique water entry impact of a torpedo and its ballistic trajectory simulation
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The oblique water entry impact of a torpedo and its ballistic trajectory simulation

机译:鱼雷的斜入水影响及其弹道仿真。

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To study the water entry ballistic trajectory of a torpedo, the wind tunnel experiment has been done based on the similarity principle. Then the drag coefficient of the torpedo is got when it enters the water, which is amended by the introduction of continuous supercavitation factor and local cavity effect factor. The vertical plane motion equations are established to get the torpedo's trajectory. The large scale nonlinear transient finite element commercial software MSC. dytran is also used to simulate the initial water entry impact of the Disk-Ogive-Head[1] torpedo, including four special high-speed water entry attitude angles. Then the kinematics parameters as the tail of torpedo submerges in water are input into the motion equation as the initial conditions. Finally, two parts of the data are combined to get the whole kinematic and kinetic parameters. During the calculation, the ballistic modeling uses the cavitation number to determine the torpedo's moving status: in the supercavitation stage, in partial cavity stage or in full wet navigation stage. The simulation results will do reference use to the following traject orydesign. In addition, the water impact load and over load calculation of high-speed oblique water entry impact will help to design the intensity of torpedo's shell.
机译:为了研究鱼雷的入水弹道,基于相似原理进行了风洞实验。然后,获得鱼雷入水时的阻力系数,并通过引入连续的超空化因子和局部空腔效应因子对其进行修正。建立垂直平面运动方程以获得鱼雷的轨迹。大型非线性瞬态有限元商用软件MSC。 dytran还用于模拟Disk-Ogive-Head [1]鱼雷的初始入水冲击,包括四个特殊的高速入水姿态角。然后将作为鱼雷在水中的尾部的运动学参数作为初始条件输入到运动方程中。最后,将数据的两部分合并以获得完整的运动学和动力学参数。在计算过程中,弹道建模使用空化数确定鱼雷的运动状态:在超空化阶段,部分空腔阶段或在全湿航行阶段。仿真结果将参考以下轨迹设计。另外,水冲击载荷和高速斜入水冲击的超载计算将有助于设计鱼雷壳的强度。

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