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High voltage engineering is extremely important for the reliable design, safe manufacture and operation of electric devices, equipment and electric power systems. The 21st International Symposium on High Voltage Engineering, organized by the 90 years old Budapest School of High Voltage Engineering, provides an excellent forum to present results, advances and discussions among engineers, researchers and scientists, and share ideas, knowledge and expertise on high voltage engineering. The proceedings of the conference presents the state of the art technology of the field. The content is simultaneously aiming to help practicing engineers to be able to implement based on the papers and researchers to link and further develop ideas.
Unfortunately, dust explosions are common and costly in a wide array of industries such as petrochemical, food, paper and pharmaceutical. It is imperative that practical and theoretical knowledge of the origin, development, prevention and mitigation of dust explosions is imparted to the responsible safety manager. The material in this book offers an up to date evaluation of prevalent activities, testing methods, design measures and safe operating techniques. Also provided is a detailed and comprehensive critique of all the significant phases relating to the hazard and control of a dust explosion. An invaluable reference work for industry, safety consultants and students. - A completely new chapter on design of electrical equipment to be used in areas containing combustible/explosible dust - A substantially extended and re-organized final review chapter, containing nearly 400 new literature references from the years 1997-2002 - Extensive cross-referencing from the original chapters 1-7 to the corresponding sections of the expanded review chapter
How far will an ounce of prevention really go? While the answer to that question may never be truly known, Process Plants: A Handbook for Inherently Safer Design, Second Edition takes us several steps closer. The book demonstrates not just the importance of prevention, but the importance of designing with prevention in mind. It emphasizes the role
Explosion Hazards in the Process Industries, Second Edition, delivers the most current and comprehensive content for today's process engineer. Process safety and petrochemical engineers inherently accept that there is a risk of explosions when working on process facilities such as plants and refineries. Yet many that enter this field do not have a fundamental starting point to understand the nature of explosions, and there are a lot of misconceptions and impartial information in the market. Explosion Hazards in the Process Industries, Second Edition, answers this need by providing engineers and consultants a go-to reference and training guide to understand the principles of explosions, what causes them, and how to mitigate and prevent them from reoccurring. Enhanced to include new chapters on BLEVE (Boiling Liquid Expanding Vapor Explosions), water vapor explosions, and destructive effects from accidental explosions, this guide continues to fulfill a comprehensive introduction to the subject, rounded out with new case studies, references, and a discussion on methods of hazard and risk analysis. - Eckoff, Dust Explosions in the Process Industries, 3rd Edition, 9780750676021, Jun 2003, $240.00 - Amyotte, An Introduction to Dust Explosions, 9780123970077, Jun 2013, $49.95 - Barton, Dust Explosion Prevention and Protection, 9780750675192, Mar 2002, $155.00 - Nolan, Handbook of Fire and Explosion Protection Engineering Handbook Principles, 3rd, 9780323313018, May 2014, $160.00
The Natech symposium has been taking place since 2015, as an initiative of professors Naomi Kato, Shin-ichi Aoki and Ana María Cruz, from Osaka University and Kyoto University respectively. The primary objective of these symposiums has been the promotion of scientific and interdisciplinary exchange of experiences, risk assessment methods and innovative risk reduction measures that address Natech events (industrial accidents caused by large-scale natural events). In its different versions it has had researchers and participants from different countries, allowing the integration of initiatives and efforts that have been developed in this regard. The first symposium was held in March 2015 at Osaka University, and was entitled: International Symposium on Natural Disaster Impacts to Large Industrial Parks, it was funded by the Graduate School of Osaka University, the Airport and Port Research Institute (SIP), the Disaster Prevention Research Institute, and Kyoto University, in cooperation with the Calamity Science Institute.The second version of the event entitled: Activities of Research Initiatives for Natural Disaster Prevention of Oil and Gas Spill in Industrial Parks was held again at Osaka University in 2016. In March 2017, symposium number three was organized by the Disaster Prevention Research Institute (DPRI) and took place at Kyoto University. On this occasion, it was approached from the perspective of a workshop on Natech risk management tools, with the aim of making a practical demonstration of some tools available for Natech risk assessment, risk mitigation and emergency operations’ planning for various types of natural hazards. The workshop was attended by participants from 12 countries, including experts, students and stakeholders involved in Natech disaster risk reduction and similar topics. During 2018, the event moved to Ispra, Italy, where the Joint Research Center (JRC) of the European Commission and the University of Bologna were the hosts. On this occasion, the fourth event was named Natech Risk Reduction at Large Industrial Parks. The fifth version of the Natech symposium was held in 2021, again organized by Osaka University and Kyoto University. On this occasion, given the restrictions derived from the COVID-19 pandemic, the event was held virtually. Currently, the publication of two volumes in the IDRIM Springer Nature Book Series is being issued, which will be released by the end of 2022. This year (2022) Colombia was the host country of the sixth version of the Natech symposium, which was developed in a hybrid way (face-to-face and virtual), being the first time that this event is held in the American continent. On this occasion, the organizers of the event were the National Unit for Disaster Risk Management (UNGRD), Osaka University, Kyoto University and the Disaster Prevention Research Institute (DPRI). This event focused on the exchange of research experiences and lessons learned related to risk management of technological accidents triggered by natural events (Natech), for their understanding and approach in the Colombian territory.
This book discusses three major physical phenomena for active source seismology, namely underwater explosions, underground nuclear explosions, and large-scale on-surface chemical explosions. In particular, contributors consider how to use the technologies and applications in active source seismology and seismo-acoustics, rather than the theoretical approach for the resolution of the forensic explosion seismology in the light of an application for defense sciences. The volume also presents seismological investigations of discrimination between earthquakes and man-made explosions.
Preventable dust explosions continue to occur in industry in spite of significant research and practice efforts worldwide over many years. There is a need for effective understanding of the unique hazards posed by combustible dust. This book describes a number of dust explosion myths – which together cover the main source of dust explosion hazards – the reasons they exist and the corresponding scientific and engineering facts that mitigate these circumstances. An Introduction to Dust Explosions describes the main erroneous beliefs about the origin and propagation of dust explosions. It offers fact-based explanations for their occurrence and the impact of such events and provides a critical guide to managing and mitigating dust explosion risks. - Designed to prevent accidents, injury, loss of life and capital damage - An easy-to-read, scientifically rigorous treatment of the facts and fictions of dust explosions for those who need to – or ought to – understand dust explosions, their occurrence and consequences - Enables the management and mitigation of these critical industrial hazards