Conceptual design of a long-range autonomous underwater vehicle based on multidisciplinary optimization framework
Hu F(胡峰)1,3; Huang Y(黄琰)1,3; Xie ZB(谢宗伯)1,3; Yu JC(俞建成)1,3; Wang ZY(王振宇)1,3; Qiao JN(乔佳楠)1,2,3
刊名Ocean Engineering
2022
卷号248页码:1-16
关键词Conceptual design Long-range AUV Multidisciplinary optimization design Self-adaptive Surrogate Ensemble (SASE) method
ISSN号0029-8018
产权排序1
英文摘要

The endurance of a deep-sea AUV is closely related to its sailing resistance, the amount of carrying batteries and equipment load, which involves interactions among multiple disciplines. In this paper, in order to develop the conceptual design of a long-range AUV in the early stage, a multidisciplinary optimization design framework is presented for decision-makers to explore the given design space, which takes into account the coupling between the disciplines of hull form, structural design and energy use. A Self-adaptive Surrogate Ensemble (SASE) method is proposed to replace the expensive process of hydrodynamic analysis, a recommended approach by the China Classification Society (CCS) specification is applied to carry out the design of metallic pressure hulls, and the classical lamination theory and Tsai–Wu criteria are adopted in the design of composite pressure hulls. Finally, the evaluation model of AUV endurance is created from the perspective of energy capacity and consumption. The conceptual design of a 200 kg-class AUV is executed to maximize the endurance based on the proposed multidisciplinary optimization design framework. The results show that the most important factors that affect AUV endurance are the velocity and diameter, and the optimum velocity of the AUV increases with the load power. The Sea-Whale 2000 AUV was developed based on the optimal result and the excellent endurance performance in the sea trial validated the effectiveness of the proposed design method in the preliminary design process.

资助项目National Natural Science Founda-tion of China[61821005] ; National Natural Science Founda-tion of China[41976183] ; National Natural Science Founda-tion of China[51909257] ; State Key Laboratory of Robotics at Shenyang Institute of Automation[2015-Z09] ; LiaoNing Revitalization Talents Program[XLYC2007035]
WOS关键词COMPOSITE-MATERIAL SYSTEM ; COLLABORATIVE OPTIMIZATION ; PRESSURE HULL ; LAY-UP ; ENSEMBLE ; CFD
WOS研究方向Engineering ; Oceanography
语种英语
WOS记录号WOS:000778812300005
资助机构National Natural Science Foundation of China (Grant No. 61821005, No. 41976183, No. 51909257) ; State Key Laboratory of Robotics at Shenyang Institute of Automation (Grant No. 2015-Z09) ; LiaoNing Revitalization Talents Program (Grant No. XLYC2007035).
内容类型期刊论文
源URL[http://ir.sia.cn/handle/173321/30525]  
专题海洋机器人卓越创新中心
通讯作者Yu JC(俞建成)
作者单位1.State Key Laboratory of Robotics, Shenyang Institute of Automation, Chinese Academy of Sciences, 110016, Shenyang, China
2.University of Chinese Academy of Sciences, 100049, Beijing, China
3.Institutes for Robotics and Intelligent Manufacturing, Chinese Academy of Sciences, 110016, Shenyang, China
推荐引用方式
GB/T 7714
Hu F,Huang Y,Xie ZB,et al. Conceptual design of a long-range autonomous underwater vehicle based on multidisciplinary optimization framework[J]. Ocean Engineering,2022,248:1-16.
APA Hu F,Huang Y,Xie ZB,Yu JC,Wang ZY,&Qiao JN.(2022).Conceptual design of a long-range autonomous underwater vehicle based on multidisciplinary optimization framework.Ocean Engineering,248,1-16.
MLA Hu F,et al."Conceptual design of a long-range autonomous underwater vehicle based on multidisciplinary optimization framework".Ocean Engineering 248(2022):1-16.
个性服务
查看访问统计
相关权益政策
暂无数据
收藏/分享
所有评论 (0)
暂无评论
 

除非特别说明,本系统中所有内容都受版权保护,并保留所有权利。


©版权所有 ©2017 CSpace - Powered by CSpace