Multidisciplinary Design Optimization And Its Application In Deep Manned Submersible Design

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Multidisciplinary Design Optimization and Its Application in Deep Manned Submersible Design

This book investigates Reliability-based Multidisciplinary Design Optimization (RBMDO) theory and its application in the design of deep manned submersibles (DMSs). Multidisciplinary Design Optimization (MDO) is an effective design method for large engineering systems like aircraft, warships, and satellites, which require designers and engineers from various disciplines to cooperate with each other. MDO can be used to handle the conflicts that arise between these disciplines, and focuses on the optimal design of the system as a whole. However, it can also push designs to the brink of failure. In order to keep the system balanced, Reliability-based Design (RBD) must be incorporated into MDO. Consequently, new algorithms and methods have to be developed for RBMDO theory. This book provides an essential overview of MDO, RBD, and RBMDO and subsequently introduces key algorithms and methods by means of case analyses. In closing, it introduces readers to the design of DMSs and applies RBMDO methods to the design of the manned hull and the general concept design. The book is intended for all students and researchers who are interested in system design theory, and for engineers working on large, complex engineering systems.
Proceedings of 11th International Conference on Coastal and Ocean Engineering

This book includes original and peer-reviewed research papers presented at 11th International Conference on Coastal and Ocean Engineering, which was held during August 9–11, 2024. The conference is sponsored by China University of Petroleum (East China), Shandong, China, co-sponsored by Qingdao University of Technology, China, technically supported by Concordia University, Montreal, QC, Canada and Griffith University, Australia, which aims to bring together innovative academics and industrial experts in the field of coastal and ocean engineering to a common forum. This book is intended for researchers, engineers, and advanced postgraduate students in the fields of coastal and ocean engineering. Topics covered in the book include coastal infrastructure developments, marine and offshore wind energy, oil spill and environmental hazards, wastewater disposal, estuary coastal engineering, offshore engineering, port waterway, oil and gas gathering and transferring, hydrodynamics of off shore structures, etc.
Underwater Structures

Underwater Structures provides the necessary background theory of shell structures for the geometries encountered in submarine pressure hulls and deep-diving submersibles. Both analysis and design issues are considered, using analytical as well as numerical approaches. Classical thin-walled structures theory is implemented, and both elastic stability and collapse are considered for all types of structural geometries presented. These include ring-stiffened cylindrical shells, spheres, hemispherical shells, truncated cones, and torispherical end closures. This book also discusses structural design issues, including the selection of materials and the use of design codes. This book is suitable for university students at both the undergraduate and postgraduate level, and it also serves as a reference text for academic teachers, engineering professionals, and researchers. Key Features: Covers various types of submarines, both naval and civilian, and deep-diving submersibles Presents the latest in submersible structural design and includes both classical structures theory and finite element procedures Includes coverage of corrosion and fatigue in submarine structures