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Calculation and analysis of added mass for an object during its vertical water exit

机译:其垂直水出口期间物体添加质量的计算与分析

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The vertical water-exit process of object involves the problem of the two-phase flow and fluid-structure coupling which is one of the key problems that need to be solved urgently in dynamic modeling and controller design of the water-exit stage of the object. Nowadays, added-mass is relatively mature and convenient method of decoupling. Because of the time-variant characteristic of the object's added-mass in water-exit process, the traditional calculation method for the added mass cannot be used directly. For this purpose, in the paper, from the dynamic equations, the computational formula of added-mass is deduced, and a new numerical strategy based on the numerical simulation is proposed to calculate the real-time changes of added mass in different stages of water-exit. On this basis, the added-mass of sphere under different velocity and acceleration conditions are computed by numerical model which is established based on FLUENT. The method is confirmed through the comparison between computational value and theoretical value of the sphere's added-mass in water-exit process. Then, the rules of added mass changes of a sphere and a cylinder during vertical water exit are studied. The results demonstrate that both vertical added mass horizontal added mass of the sphere and cylinder are decreasing in the process of vertical water exit, of which, the vertical added mass changes slowly at a submerged depth of 0.9-0.4 and the horizontal added mass changes approximately linearly. The added inertial moment changes slowly around the submerged depth of 0.5. Added static moment increases first then decreases, and reaches its peak value at the submerged length of 0.7-0.5. The new added mass calculation method is helpful to improve the accuracy of the water dynamics model of various submerged weapons. At the same time, the relevant conclusions also have some reference significance for the object of the water-exit process research, controller design and motion prediction.
机译:物体的垂直防水过程涉及两相流动和流体结构耦合的问题,这是在物体的水出口阶段的动态建模和控制器设计中紧急求解的关键问题之一。如今,添加质量是相对成熟,方便的去耦方法。由于对物体在水出口过程中的额外质量的时变特征,因此不能直接使用用于添加质量的传统计算方法。为此目的,在本文中,从动态方程,推导出添加质量的计算公式,并且提出了一种基于数值模拟的新的数值策略,以计算水的不同阶段的添加质量的实时变化-出口。在此基础上,根据不同速度和加速条件下的相应的球体由基于流利的数字模型计算。通过比较水出口过程中的球体附加块的计算值和理论值之间的比较来确认该方法。然后,研究了垂直水出口期间球体的额外质量变化和圆柱体的规则。结果表明,球体和圆柱体的垂直添加质量水平额外的质量均在垂直水出口过程中降低,其中垂直加压的质量在浸没深度为0.9-0.4的深度下变化,并且水平增加的质量变化大约线性。增加的惯性力矩在0.5的浸没深度周围缓慢变化。添加静电时刻首先增加然后降低,并在浸没的长度为0.7-0.5时达到其峰值。新的额外质量计算方法有助于提高各种淹没武器的水动力学模型的准确性。与此同时,相关结论也对水出口过程研究,控制器设计和运动预测的目的具有一些参考意义。

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