弗劳德数
海洋工程
雷诺平均Navier-Stokes方程
计算流体力学
船体
雷诺数
自由面
参数统计
流量(数学)
性能预测
耐波性
主管(地质)
工程类
地质学
航空航天工程
模拟
气象学
机械
物理
湍流
数学
地貌学
统计
摘要
This study analyzes the hydrodynamic performance of an advanced catamaran vehicle using computational fluid dynamics (CFD) simulations and experimental testing data in support of system identification and development of a physics-based control system for unmanned surface vehicle (USV) operations in coastal waters. A series of steps based on increasing complexity are considered sequentially in this study. First the steady flow past the static vehicle, then the vehicle with a fixed orientation advancing in calm water, and finally the vehicle moving with two degrees of freedom (DOF) in calm water as well as head seas.
The main objective of the study is to assess the role of general multiphase unsteady Reynolds Averaged Navier Stokes (RANS) as a predictive tool for the hydrodynamic performance of an USV. A parametric analysis of the vehicle performance at different Froude number and wave steepness in shallow waters is conducted. The characteristics of the wave resistance, heaving and pitching motion, wave-hull interactions, and free surface flow patterns are investigated. The study will aid in the design of a robust physics-based control system for the vehicle and provide a tool for prediction of its performance.%%%%2019%%%%%%%%Degree granted: Dissertation (Ph.D.) – Florida Atlantic University, 2019.%%%%Collection: FAU
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