Fifty?six papers from the ASME 2022 Power Conference (POWER2022) including such topics as Renewable
Proceedings of the ASME 2022 Power Conference (POWER2022)
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SKU: | 9780791885826 |
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Category: | Imported-Books |
Tag: | Mechanical Engineering |
Edition | 1st |
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Format | Paperback |
ISBN | 9780791885826 |
Publication Year | |
Publisher |
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Cumulative Damage of Welded Joints
This problem is further investigated in the next chapter which is devoted to two and three level load testing. Chapters six, seven and eight look at the influence that the variety of variable loading spectra can have on fatigue strength, whether narrow or wide band loading or cycles of small stress range. Taking all of this knowledge, chapter nine discusses structure designs.
Cumulative damage of welded joints is a comprehensive source of invaluable information for welding engineers, supervisors, inspection personnel and designers. It will also be of great interest for academics working in the fields of structural and mechanical engineering.
- Covers the wealth of research in the field of fatigue strength and its role in the design and manufacture of welded components
- Invaluable reference source for welding engineers, supervisors, inspection personnel and designers
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Aviation Security Engineering
Moreover, it provides a detailed treatment of methods used to design security controls that not only meet individual corporate interests of a stakeholder, but also work towards the holistic securing of the entire industry. This forward-looking volume introduces exiting new areas of aviation security research and techniques for solving today’s the most challenging problems, such as security attack identification and response.
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Designing Human-machine Cooperation Systems
Part 2 develops the methods of evaluation of the human-machine systems, looking at the evaluation of the activity of the human operator at work and human error analysis methods.
Finally, Part 3 is dedicated to human-machine cooperation, where the authors show that a cooperative agent comprises a know-how and a so-called know-how-to-cooperate and show the way to design and evaluate that cooperation in real industrial contexts.
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Design of Cost-Efficient Interconnect Processing Units
From professionals in computer sciences, electrical engineering, and other related fields, to semiconductor vendors and investors – all readers will appreciate the encyclopedic treatment of background NoC information ranging from CMPs to the basics of interconnection networks. The text introduces innovative system-level design methodology and tools for efficient design space exploration and topology selection. It also provides a wealth of key theoretical and practical MPSoC and NoC topics, such as technological deep sub-micron effects, homogeneous and heterogeneous processor architectures, multicore SoC, interconnect processing units, generic NoC components, and embeddings of common communication patterns.
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Design of Enterprise Systems
The author uses the enterprise system design methodology to organize the chapters to mimic the completion of an actual project. Thus, the book details the enterprise engineering process from initial conceptualization of an enterprise to its final design.
Pedagogical tools available include:
For instructors:
- PowerPoint® slides for each chapter
- Project case studies that can be assigned as long-term projects to accompany the text
- Quiz questions for each chapter
- Business Process Analyzer software available for download
For students:
- Templates, checklists, forms, and models to support enterprise engineering activities
The book fills a need for greater design content in engineering curricula by describing how to design enterprise systems. Inclusion of design is also critical for business students, since they must realize the import their decisions may have on the long-term design of the enterprises they work with. The book’s practical focus and project-based approach coupled with the pedagogical tools gives students the knowledge and skills they need to lead enterprise engineering projects.
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Basic Principles of Plates and Slabs
For the reader with some previous knowledge of plate theory, there is a stimulating discussion of the geometry of surfaces, reference to the most modern applications of plate theory, and an annotated bibliography. The features new to this edition include a treatment of the lower bound methods for plate collapse load studies, and the introduction of a new chapter on the new technology – externally reinforced concrete.
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Dynamics of Wheel-Soil Systems
These methods offer practical solutions to methodological problems that may arise during the design and preparation of field experiments.
- Provides technical information on measuring, modeling, and optimizing off-road vehicle traction―including a novel method for describing off-road traction
- Provides rare experimental data on soil stress and deformation under a variety of wheeled and tracked vehicles
- Supplies solutions for designing, building, and using soil or snow pressure transducers and sensors
- Compiles original experimental data on soil degradation due to agricultural machinery traffic and soil compaction
- Explains how to create dynamic models of wheel–soil systems based on experimental data
A valuable reference on an important area of terramechanics, this book shows how to analyze and model wheel–soil interactions to create more effective designs for a range of vehicle types.
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Computational Optimal Control
Featuring tutorial insights into computational optimal formulations and an advanced case-study approach to the topic, Computational Optimal Control: Tools and Practice provides an essential handbook for practising engineers and academics interested in practical optimal solutions in engineering.
- Focuses on an advanced, real-world aeronautical case study examining optimisation of the bunt manoeuvre
- Covers DIRCOL, NUDOCCCS, PROMIS and SOCS (under the GESOP environment), and BNDSCO
- Explains how to configure and optimize software to solve complex real-world computational optimal control problems
- Presents a tutorial three-stage hybrid approach to solving optimal control problem formulations
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