首页> 外文会议>Proceedings of the 2002 ASME Joint U.S.-European Fluids Engineering Conference >COMPUTATIONAL HYDRODYNAMICS FOR AN AUTONOMOUS UNDERWATER VEHICLE WITH MOVING CONTROL SURFACES
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COMPUTATIONAL HYDRODYNAMICS FOR AN AUTONOMOUS UNDERWATER VEHICLE WITH MOVING CONTROL SURFACES

机译:具有控制面的自主水下车辆的计算水动力学

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The present study was undertaken to provide information for both design improvement and control system development during various stages of an autonomous underwater vehicle (AUV) development project. The need to establish a predictive capability for the hydrodynamic (control) coefficients for an AUV presented an opportunity to apply a multiblock incompressible Navier-Stokes flow solver which has evolved over many years. The solver utilizes a state-of-the-art implicit, upwind numerical scheme to solve the time-dependent Navier-Stokes equations in a generalized time-dependent curvilinear coordinate system. Domain decomposition is accomplished via a general unstructured multiblock approach. In addition, an efficient grid movement capability is incorporated in the code that will handle the relative motion of a multi-component configuration (e.g. oscillating control surfaces). Numerous simulations were conducted during the course of this work. The computations for vehicle and propulsor design consisted mainly of steady state axisymmetric computations, while for control system development both steady and unsteady (prescribed motion) simulations were conducted. The latter cases focus on the forces and moments on the vehicle that are needed for extraction of control information. A brief overview will be presented on the flow solver. This will be followed by a presentation of the numerical results.
机译:本研究旨在为自动水下航行器(AUV)开发项目各个阶段的设计改进和控制系统开发提供信息。建立AUV的流体动力学(控制)系数的预测能力的需求为应用已经发展了多年的多块不可压缩Navier-Stokes流量求解器提供了机会。求解器利用最新的隐式迎风数值方案在广义的时变曲线坐标系中求解时变的Navier-Stokes方程。域分解是通过一般的非结构化多块方法完成的。另外,代码中包含了有效的网格移动功能,该功能将处理多组件配置(例如,振荡的控制表面)的相对运动。在这项工作过程中进行了许多模拟。车辆和推进器设计的计算主要由稳态轴对称计算组成,而对于控制系统开发,进行了稳态和非稳态(规定运动)仿真。后一种情况集中于提取控制信息所需的车辆上的力和力矩。简短的概述将在流量求解器上进行介绍。随后将显示数值结果。

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