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美国海军水面舰船的多学科设计优化(一) 被引量:6
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作者 郭小川 邓二年 《中外船舶科技》 2004年第1期1-6,共6页
尽管外形优化设计已经在许多工业生产中受到了相当的重视,但对自动优化程序在水动力船舶设计方面的应用还远没有达到相同的水平。与先进的计算流体动力学和优化方法结合在一起,数值计算工具能作为船舶设计的辅助工具,它可增强操纵性... 尽管外形优化设计已经在许多工业生产中受到了相当的重视,但对自动优化程序在水动力船舶设计方面的应用还远没有达到相同的水平。与先进的计算流体动力学和优化方法结合在一起,数值计算工具能作为船舶设计的辅助工具,它可增强操纵性能,减低开发和建造成本。本文尝试将一种多学科设计优化(MDO)程序应用于增强现有船舶的性能。现阶段的工作仅仅涉及到水动力优化算法的建模、开发和运算。对于海军水面舰船,本文根据大卫泰勒船模试验池(DTMB)的5415型船模提出并在MDO方法的框架内解决了两学科设计问题的三目标函数优化问题。采用一个很简单的决策系统来对Pareto最优解进行排序,并对所选的设计进行基于梯度的求精优化运算。 展开更多
关键词 美国海军 水面舰 计算流体动力学 多学科设计 舶设计 操纵性能 船模优化
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Numerical Study of Viscous Wave-Making Resistance of Ship Navigation in Still Water 被引量:5
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作者 Ruosi Zha Haixuan Ye Zhirong Shen Decheng Wan 《Journal of Marine Science and Application》 2014年第2期158-166,共9页
The prediction of a ship's resistance especially the viscous wave-making resistance is an important issue in CFD applications. In this paper, the resistances of six ships from hull 1 to hull 6 with different hull for... The prediction of a ship's resistance especially the viscous wave-making resistance is an important issue in CFD applications. In this paper, the resistances of six ships from hull 1 to hull 6 with different hull forms advancing in still water are numerically studied using the solver naoe-FOAM-SJTU, which was developed based on the open source code package OpenFOAM. Different components of the resistances are computed and compared while considering two speed conditions (12 kn and 16 kn). The resistance of hull 3 is the smallest while that of hull 5 is the largest at the same speed. The results show hull 3 is a good reference for the design of similar ships, which can provide some valuable guidelines for hull form optimization. 展开更多
关键词 ship navigation CFD wave-making resistance viscous flow HULL naoe-FOAM-SJTU solver OPENFOAM
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The Applicability of Hydrofoils as a Ship Control Device 被引量:1
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作者 Md. Shamim Mahmud 《Journal of Marine Science and Application》 CSCD 2015年第3期244-249,共6页
Centrifugal forces are commonly created when ships turn, which may cause a ship to capsize in a critical situation. A mathematical model has been developed to optimize the stability coefficients for ship, with the aim... Centrifugal forces are commonly created when ships turn, which may cause a ship to capsize in a critical situation. A mathematical model has been developed to optimize the stability coefficients for ship, with the aim to prevent capsizing and to increase ship maneuverability in high-speed water craft. This model can be used to develop algorithms for control system improvement. The mathematical model presented in this paper optimized the use of multipurpose hydrofoils to reduce heeling and the trimming moment, maintaining an upright ship’s position and lessening the resistance via transverse force. Conventionally, the trimming and heeling of a ship are controlled using ballast water;however, under variable sea conditions it is sometimes difficult to control a ship’s motion using ballast water. In this case, a hydrofoil would be more stable and maneuverable than a ballast tank controlled vessel. A movable hydrofoil could theoretically be adapted from moveable aerofoil technology. This study proves the merit of further investigation into this possibility. 展开更多
关键词 HYDROFOIL ship roll stabilization TRIM rudder-roll damping center of flotation NACA foil section ship capsize gear system instability capsizing moment
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Fault Reconfiguration of Shipboard Power System Based on Triple Quantum Differential Evolution Algorithm 被引量:5
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作者 王丛佼 王锡淮 +2 位作者 肖健梅 陈晶 张思全 《Journal of Shanghai Jiaotong university(Science)》 EI 2016年第4期433-442,共10页
Fault reconfiguration of shipboard power system is viewed as a typical nonlinear and multi-objective combinatorial optimization problem. A comprehensive reconfiguration model is presented in this paper, in which the r... Fault reconfiguration of shipboard power system is viewed as a typical nonlinear and multi-objective combinatorial optimization problem. A comprehensive reconfiguration model is presented in this paper, in which the restored loads, switch frequency and generator efficiency are taken into account. In this model, analytic hierarchy process(AHP) is proposed to determine the coefficients of these objective functions. Meanwhile, a quantum differential evolution algorithm with triple quantum bit code is proposed. This algorithm aiming at the characteristics of shipboard power system is different from the normal quantum bit representation. The individual polymorphic expression is realized, and the convergence performance can be further enhanced in combination with the global parallel search capacity of differential evolution algorithm and the superposition properties of quantum theory. The local optimum can be avoided by dynamic rotation gate. The validity of algorithm and model is verified by the simulation examples. 展开更多
关键词 quantum differential evolution algorithm ternary coding dynamic rotation gate shipboard power system fault reconfiguration
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