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Explains the mechanisms governing flow-induced vibrations and helps engineers prevent fatigue and fretting-wear damage at the design stage Fatigue or fretting-wear damage in process and plant equipment caused by flow-induced vibration can lead to operational disruptions, lost production, and expensive repairs. Mechanical engineers can help prevent or mitigate these problems during the design phase of high capital cost plants such as nuclear power stations and petroleum refineries by performing thorough flow-induced vibration analysis. Accordingly, it is critical for mechanical engineers to have a firm understanding of the dynamic parameters and the vibration excitation mechanisms that govern flow-induced vibration. Flow-Induced Vibration Handbook for Nuclear and Process Equipment provides the knowledge required to prevent failures due to flow-induced vibration at the design stage. The product of more than 40 years of research and development at the Canadian Nuclear Laboratories, this authoritative reference covers all relevant aspects of flow-induced vibration technology, including vibration failures, flow velocity analysis, vibration excitation mechanisms, fluidelastic instability, periodic wake shedding, acoustic resonance, random turbulence, damping mechanisms, and fretting-wear predictions. Each in-depth chapter contains the latest available lab data, a parametric analysis, design guidelines, sample calculations, and a brief review of modelling and theoretical considerations. Written by a group of leading experts in the field, this comprehensive single-volume resource: Helps readers understand and apply techniques for preventing fatigue and fretting-wear damage due to flow-induced vibration at the design stage Covers components including nuclear reactor internals, nuclear fuels, piping systems, and various types of heat exchangers Features examples of vibration-related failures caused by fatigue or fretting-wear in nuclear and process equipment Includes a detailed overview of state-of-the-art flow-induced vibration technology with an emphasis on two-phase flow-induced vibration Covering all relevant aspects of flow-induced vibration technology, Flow-Induced Vibration Handbook for Nuclear and Process Equipment is required reading for professional mechanical engineers and researchers working in the nuclear, petrochemical, aerospace, and process industries, as well as graduate students in mechanical engineering courses on flow-induced vibration.
A richly illustrated look at some of the British Library’s most beautiful books from around the world. For centuries across the world, books have been created as objects of beauty, with bookmakers lavishing great care on their paper, binding materials, illustrations, and lettering. The Book by Design, featuring an array of books from the British Library's collection, focuses on the sensory experience of holding and reading these objects. Each selection represents a specific moment in the development of what we know today as the book—from scrolls and bound illuminated manuscripts to paperbacks and formatted digital information. These range from the seventh century to the present and include examples from China, Japan, Southeast Asia, the Middle East, Europe, and North America, in addition to a look at book traditions in Africa and Oceania. John James Audubon’s Birds of America, the works of Chaucer, Russian Futurist books, limited editions, historic copies of the Qur’an and the Bible, mass-market paperbacks, and more come together to tell the visual, tactile, artistic, and cultural history of books. Expert curators and specialists explore these books from the perspective of design and manufacturing, original art photographs offer vivid representations of their textures and materials, and graphics detail the size and specifications of each book. Offering a wide-ranging look at the creation and use of books, illustrated with hundreds of color images, this volume is itself an object of beauty.