J Shanghai Jiaotong Univ Sci ›› 2022, Vol. 27 ›› Issue (3): 346-355.doi: 10.1007/s12204-022-2445-2
收稿日期:
2020-11-12
出版日期:
2022-05-28
发布日期:
2022-06-23
LIU Jiea (刘 洁), ZHANG Baojib∗ (张宝吉)
Received:
2020-11-12
Online:
2022-05-28
Published:
2022-06-23
中图分类号:
. [J]. J Shanghai Jiaotong Univ Sci, 2022, 27(3): 346-355.
LIU Jiea (刘 洁), ZHANG Baojib∗ (张宝吉). Multiobjective Optimization of Hull Form Based on Global Optimization Algorithm[J]. J Shanghai Jiaotong Univ Sci, 2022, 27(3): 346-355.
[1] | PERI D, CAMPANA E F. Multidisciplinary design optimization of a naval surface combatant [J]. Journal of Ship Research, 2003, 47(1): 1-12. |
[2] | PERI D, CAMPANA E F. High-fidelity models and multiobjective global optimization algorithms in simulation-based design [J]. Journal of Ship Research, 2005, 49(3): 159-175. |
[3] | CAMPANA E F, LIUZZI G, LUCIDI S, et al. New global optimization methods for ship design problems [J]. Optimization and Engineering, 2009, 10(4): 533555. |
[4] | PINTO A, PERI D, CAMPANA E F. Multiobjective optimization of a containership using deterministic particle swarm optimization [J]. Journal of Ship Research, 2007, 51(3): 217-228. |
[5] | TAHARA Y, TOHYAMA S, KATSUI T. CFD-based multi-objective optimization method for ship design [J]. International Journal for Numerical Methods in Fluids, 2006, 52(5): 499-527. |
[6] | BOULOUGOURIS E K, PAPANIKOLAOU A D. Multi-objective optimisation of a floating LNG terminal [J]. Ocean Engineering, 2008, 35(8/9): 787-811. |
[7] | KIM H, YANG C, L ?HNER R, et al. A practical hydrodynamic optimization tool for the design of a monohull ship [C]//8th International Offshore and Polar Engineering Conference. Vancouver: ISOPE, 2008: 98-107. |
[8] | KIM H. Multi-objective optimization for ship hull form design[D]. Fairfax, Virginia: George Mason University, 2009. |
[9] | KIM H, YANG C, JEONG S, et al. Hull form design exploration based on response surface method [C]//21st International Offshore and Polar Engineering Conference. Maui, Hawaii: ISOPE, 2011: 816-825. |
[10] | DIEZ M, CAMPANA E F, STERN F. Stochastic optimization methods for ship resistance and operational efficiency via CFD [J]. Structural and Multidisciplinary Optimization, 2018, 57(2): 735-758. |
[11] | WEI F Y, LI S Q. Hybrid genetic algorithm based multiobjective dynamic optimization [J]. Journal of Astronautics, 2004, 25(6): 609-615 (in Chinese). |
[12] | ZHOU Y L, YANG S L, WEI X, et al. Study on synthetical optimization of performance of ship dynamics b a s e d o n G A - c h a o s [ J ] . Ship Science and Technology, 2005, 27(4): 18-21 (in Chinese). |
[13] | ZHANG B J. Optimized lines of the full hull using the resistance in still water and added resistance in waves [J]. Journal of Huazhong University of Science and Technology (Nature Science Edition), 2011, 39(10): 32-35 (in Chinese). |
[14] | W ANG G C, MA N, GU X C. Research on the energy efficiency design index optimization of ultra large container ship [J]. Ship Science and Technology, 2017, 39(9): 60-64 (in Chinese). |
[15] | CHENG X D, FENG B W, CHANG H C, et al. Multiobjective optimisation of ship resistance performance b a s e d o n C F D [ J ] . Journal of Marine Science and Technology, 2019, 24(1): 152-165. |
[16] | ZHAO R J, XIE X L, WEI Z K. Comparative research on multiple-objective optimization and singleobjective optimization to semi-submersible repair vessels [J]. Ship Building of China, 2018, 59(2): 205-212 (in Chinese). |
[17] | ZHANG J F, YANG T N, MA W H. Ship speed optimization based on multi-objective particle swarm algorithm [J]. Journal of System Simulation, 2019, 31(4): 787-794 (in Chinese). |
[18] | W ANG X Q, W ANG X J. Algorithm of multidiscipline optimization design [J]. Missiles and Space Vehicles, 2007(1): 23-26 (in Chinese). |
[19] | ZHANG B J, MA K, JI Z S. The optimization of the hull form with the minimum wave making resistance based on Rankine source method [J]. Journal of Hydrodynamics, 2009, 21(2): 277-284. |
[20] | HUANG X L, LU X S. Marine engineering fluid mechanics and structural dynamic response [M]. Shanghai: Shanghai Jiao Tong University Press, 1992 (in Chinese). |
[21] | YU Y L, GAO W C, LIU W, et al. Simplified perturbation method for analyzing the mode jumping of close mode structure [J]. Engineering Mechanics, 2012, 29(3): 33-40(in Chinese). |
[22] | SKJELBREIA L, HENDRICKSON J. Fifth order gravity wave theory[J]. Coastal Engineering Proceedings, 1960, 1(7): 184-196. |
[23] | XU J Q. A survey of multiobjective optimization algorithms [J]. Science & Technology Information, 2010 (32): 115-116 (in Chinese). |
[24] | HOLLAND J H. Adaptation in natural and artificial systems [M]. Cambridge, Massachusets: MIT Press, 1992. |
[25] | SRINIVAS M, PATNAIK L M. Adaptive probabilities of crossover and mutation in genetic algorithms [J]. IEEE Transactions on Systems, Man, and Cybernetics, 1994, 24(4): 656-667. |
[26] | DEB K, AGRA W AL S, PRATAP A, et al. A fast elitist non-dominated sorting genetic algorithm for multiobjective optimization: NSGA-II [M]//Parallel problem solving from nature PPSN VI. Berlin, Heidelberg: Springer, 2000: 849-858. |
[27] | CHEN J P, XU J, GONG Y, et al. Research on the analytic hierarchy process model of ship optimization based on variable value method [J]. Ship Science and Technology, 2016, 38(9): 69-73, 78 (in Chinese). |
[28] | LI X P. A study of scaling method to obtain index weight by analytic hierarchy process [J]. Journal of Beijing University of Posts Telecommunications, 2001, 3(1): 25-27(in Chinese). |
[29] | ZHOU Z H, SHA S, RAO W T. Comprehensive evaluation method and application of LTE network structure based on ideal solution [J]. Wireless Internet Technology, 2017(20): 39-40 (in Chinese). |
[1] | HOU Yuanhang* (候远杭), YOU Yuan (游园), LIANG Xiao (梁霄). Minimum Resistance Ship Hull Uncertainty Optimization Design Based on Simulation-Based Design Method[J]. 上海交通大学学报(英文版), 2017, 22(6): 657-663. |
[2] | FENG Peiyuan1* (封培元), FAN Sheming1 (范佘明), MA Ning2 (马宁). Correction of Wave Surge Forces to Improve Surf-Riding/Broaching Vulnerability Criterion Check Accuracy[J]. 上海交通大学学报(英文版), 2017, 22(5): 549-554. |
[3] | RAO Zhiqiang (饶志强), YANG Chenjun* (杨晨俊). Lift Distribution Based Design of Two-Dimensional Sections[J]. 上海交通大学学报(英文版), 2017, 22(3): 265-273. |
[4] | . [J]. Journal of Shanghai Jiao Tong University(Science), 2015, 20(6): 703-712. |
[5] | LI Jun1* (李 俊), CHEN Gang1,2 (陈 刚), YANG Jian-min1 (杨建民), PENG Tao1 (彭 涛). Separation Method of Bi-directional Reflected Waves and Oblique Incident Regular Waves[J]. 上海交通大学学报(英文版), 2013, 18(6): 641-645. |
[6] | FENG Pei-yuana* (封培元), MA Ninga,b (马 宁), GU Xie-chonga,b (顾解忡). Long-Term Performance Prediction of Oscillating Wings for Assisting Ship Propulsion at Actual Seas[J]. 上海交通大学学报(英文版), 2013, 18(4): 486-492. |
[7] | FENG Pei-yuana* (封培元), MA Ninga,b (马宁), GU Xie-chonga,b (顾解仲). Application of Method of Fundamental Solutions in Solving Potential Flow Problems for Ship Motion Prediction[J]. 上海交通大学学报(英文版), 2013, 18(2): 153-158. |
阅读次数 | ||||||
全文 |
|
|||||
摘要 |
|
|||||