Annual Department of Defense Bibliography of Logistics Studies and Related Documents
Author: United States. Defense Logistics Studies Information Exchange
Publisher:
Published: 1970
Total Pages: 620
ISBN-13:
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Author: United States. Defense Logistics Studies Information Exchange
Publisher:
Published: 1970
Total Pages: 620
ISBN-13:
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Publisher:
Published: 1980
Total Pages: 176
ISBN-13:
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Publisher: DIANE Publishing
Published:
Total Pages: 88
ISBN-13: 1428993843
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Publisher: DIANE Publishing
Published:
Total Pages: 43
ISBN-13: 142899095X
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Publisher:
Published: 1995
Total Pages: 704
ISBN-13:
DOWNLOAD EBOOKAuthor: Mohammad Jamshidi
Publisher: John Wiley & Sons
Published: 2011-09-20
Total Pages: 516
ISBN-13: 1118210735
DOWNLOAD EBOOKDiscover the emerging science and engineering of System of Systems Many challenges of the twenty-first century, such as fossil fuel energy resources, require a new approach. The emergence of System of Systems (SoS) and System of Systems Engineering (SoSE) presents engineers and professionals with the potential for solving many of the challenges facing our world today. This groundbreaking book brings together the viewpoints of key global players in the field to not only define these challenges, but to provide possible solutions. Each chapter has been contributed by an international expert, and topics covered include modeling, simulation, architecture, the emergence of SoS and SoSE, net-centricity, standards, management, and optimization, with various applications to defense, transportation, energy, the environment, healthcare, service industry, aerospace, robotics, infrastructure, and information technology. The book has been complemented with several case studies—Space Exploration, Future Energy Resources, Commercial Airlines Maintenance, Manufacturing Sector, Service Sector, Intelligent Transportation, Future Combat Missions, Global Earth Observation System of Systems project, and many more—to give readers an understanding of the real-world applications of this relatively new technology. System of Systems Engineering is an indispensable resource for aerospace and defense engineers and professionals in related fields.
Author:
Publisher:
Published: 2003
Total Pages: 240
ISBN-13:
DOWNLOAD EBOOKAuthor: Raghu Chaitanya Munjulury
Publisher: Linköping University Electronic Press
Published: 2017-05-23
Total Pages: 101
ISBN-13: 9176855201
DOWNLOAD EBOOKThe design and development of new aircraft are becoming increasingly expensive and timeconsuming. To assist the design process in reducing the development cost, time, and late design changes, the conceptual design needs enhancement using new tools and methods. Integration of several disciplines in the conceptual design as one entity enables to keep the design process intact at every step and obtain a high understanding of the aircraft concepts at early stages. This thesis presents a Knowledge-Based Engineering (KBE) approach and integration of several disciplines in a holistic approach for use in aircraft conceptual design. KBE allows the reuse of obtained aircrafts’ data, information, and knowledge to gain more awareness and a better understanding of the concept under consideration at early stages of design. For this purpose, Knowledge-Based (KB) methodologies are investigated for enhanced geometrical representation and enable variable fidelity tools and Multidisciplinary Design Optimization (MDO). The geometry parameterization techniques are qualitative approaches that produce quantitative results in terms of both robustness and flexibility of the design parameterization. The information/parameters from all tools/disciplines and the design intent of the generated concepts are saved and shared via a central database. The integrated framework facilitates multi-fidelity analysis, combining low-fidelity models with high-fidelity models for a quick estimation, enabling a rapid analysis and enhancing the time for a MDO process. The geometry is further propagated to other disciplines [Computational Fluid Dynamics (CFD), Finite Element Analysis (FEA)] for analysis. This is possible with an automated streamlined process (for CFD, FEM, system simulation) to analyze and increase knowledge early in the design process. Several processes were studied to streamline the geometry for CFD. Two working practices, one for parametric geometry and another for KB geometry are presented for automatic mesh generation. It is observed that analytical methods provide quicker weight estimation of the design and when coupled with KBE provide a better understanding. Integration of 1-D and 3-D models offers the best of both models: faster simulation, and superior geometrical representation. To validate both the framework and concepts generated from the tools, they are implemented in academia in several courses at Linköping University and in industry