Advances in Design, Simulation and Manufacturing III: Proceedings of the 3rd International Conference on Design, Simulation, Manufacturing: The Innova, Ivanov Vitalii, Pavlenko Ivan, Liaposhchenko Oleksandr
The capability modeling and simulation (M&S) supplies for managing systems complexity and investigating systems behaviors has made it a central activity in the development of new and existing systems. However, a handbook that provides established M&S practices has not been available. Until now. Modeling and Simulation-Based Systems Engineering Handbook details the M&S practices for supporting systems engineering in diverse domains. It discusses how you can identify systems engineering needs and adapt these practices to suit specific application domains, thus avoiding redefining practices from scratch.
Although M&S practices are used and embedded within individual disciplines, they are often developed in isolation. However, they address recurring problems common to all disciplines. The editors of this book tackled the challenge by recruiting key representatives from several communities, harmonizing the different perspectives derived from individual backgrounds, and lining them up with the book's vision. The result is a collection of M&S systems engineering examples that offer an initial means for cross-domain capitalization of the knowledge, methodologies, and technologies developed in several communities. These examples provide the pros and cons of the methods and techniques available, lessons learned, and pitfalls to avoid.
As our society moves further in the information era, knowledge and M&S capabilities become key enablers for the engineering of complex systems and systems of systems. Therefore, knowledge and M&S methodologies and technologies become valuable output in an engineering activity, and their cross-domain capitalization is key to further advance the future practices in systems engineering. This book collates information across disciplines to provide you with the tools to more efficiently design and manage complex systems that achieve their goals.
Автор: Lu Yongxiang, Pan Yunhe, Xu Zhilei Название: Innovative Design of Manufacturing ISBN: 9811535027 ISBN-13(EAN): 9789811535024 Издательство: Springer Рейтинг: Цена: 13974.00 р. Наличие на складе: Есть у поставщика Поставка под заказ.
Описание: The Necessity of Developing Innovation Design.- The Concept and connotation of Innovation Design.- Improving the Capability of Industrial Innovation as a Whole.- The Enterprise is the Main Part of the Innovation Design Development.- Implementing the Strategy of the Innovation Design.- Strengthening the Basic Research of Innovation Design and the Construction of Common Key Technology Platform.- The Safeguard Measures of Innovation Design.- Innovation Design Case.
Описание: This book contains the papers presented at the International Joint Conference on Mechanics, Design Engineering and Advanced Manufacturing (JCM 2018), held on 20-22 June 2018 in Cartagena, Spain. It reports on cutting-edge topics in product design and manufacturing, such as industrial methods for integrated product and process design;
Описание: This book gathers the best articles presented by researchers and industrial experts at the International Conference on "Innovative Design, Analysis and Development Practices in Aerospace and Automotive Engineering (I-DAD 2020)".
Описание: A printed collection of 44 full-length, peer-reviewed technical papers. Topics include 24th Design for Manufacturing and the Life Cycle Conference (DFMLC); 13th International Conference on Micro- and Nanosystems (MNS).
Автор: Edwin Zondervan, Cristhian Almeida-Rivera, Kyle Vincent Camarda Название: Product-Driven Process Design: From Molecule to Enterprise ISBN: 3110570114 ISBN-13(EAN): 9783110570113 Издательство: Walter de Gruyter Цена: 13379.00 р. Наличие на складе: Есть у поставщика Поставка под заказ.
Описание:
Product-driven process design – from molecule to enterprise provides process engineers and process engineering students with access to a modern and stimulating methodology to process and product design.
Throughout the book the links between product design and process design become evident while the reader is guided step-by-step through the different stages of the intertwining product and process design activities. Both molecular and enterprise-wide considerations in design are introduced and addressed in detail. Several examples and case studies in emerging areas such as bio- and food-systems, pharmaceuticals and energy are discussed and presented. This book is an excellent guide and companion for undergraduate, graduate students as well as professional practitioners.
Описание: Explains the origin of new types of products in evolutionary terms. The authors describe the relevant literature and case studies to place their theory in context, and use their theory to create predictions on the most likely next step in the evolution of a product, offering practical tools for those involved in new product development.
The 3rd Annual International Conference on Design, Manufacturing and Mechatronics (ICDMM2016) was successfully held in Wuhan, China in 2016.
The ICDMM2016 covers a wide range of fundamental studies, technical innovations and industrial applications in industry design, manufacturing and mechatronics. The ICDMM2016 program consists of 4 keynote speeches, 96 oral and poster presentations. We were pleased to have more than 80 participants from China, South Korea, Taiwan, Japan, Malaysia, and Saudi Arabia. However, finally, only 83 articles were selected after peer review to be included in this proceedings.
Описание: This volume consists of 52 peer-reviewed papers, presented at the International Conference on Sustainable Design and Manufacturing (SDM-19) held in Budapest, Hungary in July 2019.
The book aims to provide principles of chemical engineering design and at the same time examples of their application using the most often employed simulation software. The book is divided into four sections: Introduction to design and simulation; Design and simulation of single unit operations; Plant design and simulation -- conventional components; and Plant design and simulation -- nonconventional components.
The first section describes basic methodologies for computer aided design followed by a description of basic steps of process simulation in Aspen Plus and Aspen HYSYS. Process concept syntheses, data collection, thermodynamic phase equilibrium, physical properties, conventional and nonconventional components, and chemical reaction data are the main topics of this section. The second section is devoted to the design and simulation of individual single unit operations. After representing a mathematical model of each unit operation such as reactors, separators, heat exchangers etc., examples of real problems are solved using Aspen Plus and Aspen HYSYS respectively. Specific requirements for the model of a given type of equipment, is highlighted, and method of its selection and costing are shown.
The third section describes the design of new plants and simulation of existing plants where conventional chemicals and material mixtures with measurable compositions are used. In this section, material integration, energy analysis and economic evaluation are described and shown on examples in Aspen Plus and Aspen HYSYS respectively. Specific tools of Aspen Plus and Aspen HYSYS for energy and economic analysis of processes are also applied to real examples. The use of programs such as Aspen Exchanger Design and Rating (EDR) for detailed design of shell and tube heat exchangers, Aspen Energy Analyser (AEA) for pinch point analysis and design of heat exchanger networks, and Aspen Economic Evaluation for mapping, sizing and economic evaluation of processes, is introduced in the book. The final section covers plant design and simulation of processes using nonconventional components. In many industrial processes, exact composition of material streams is not known. Design and simulation of such processes requires specific approaches. Petroleum refining and upgrading of crude oil distillation products, combustion, gasification, pyrolysis and drying of different solids, and many other processes belong to this group.
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