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Development of an efficient general purpose cable model and simulation for marine applications

机译:开发高效通用电缆模型及船舶应用仿真

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This paper develops a general numerical model and efficient integration routine to predict the response of the underwater cable that connects the Lockheed Martin remote minehunting vehicle to its variable depth sensor. The general model is developed from continuous cable equations that are discretized using a finite element method with linear elements. The resulting discrete system of equations is nonlinear and stiff. Thus, we chose the implicit Generalized-α method to integrate these equations because it possesses numerical dissipation. This integration routine is coded into a PC based numerical simulation and the results and efficiency were compared with those from the Runge-Kutta method. Based on the validation test cases, the Generalized-α method proved to be an efficient and reliable integration method for stiff equations governing the motion of underwater cables.
机译:本文开发了一般数值模型和高效的集成程序,以预测水下电缆将洛克希德马丁远程雷保车辆连接到其可变深度传感器的响应。一般模型由连续的电缆方程开发,该连续电缆方程使用具有线性元件的有限元方法离散化。由此产生的离散系统是非线性和僵硬的。因此,我们选择了隐式的通用-α方法来集成这些方程,因为它具有数值耗散。该集成例程被编码为基于PC的数值模拟,并将结果和效率与来自跳动-Kutta方法的结果进行比较。基于验证测试案例,总而言之α方法证明是控制水下电缆运动的刚性方程的有效可靠的整合方法。

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