SFPE Handbook of Fire Protection Engineering
Author | : Philip J. DiNenno |
Publisher | : National Fire Protection Association (NFPA) |
Total Pages | : 829 |
Release | : 1988-01-01 |
Genre | : Building, Fireproof |
ISBN | : 9780877653530 |
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Author | : Philip J. DiNenno |
Publisher | : National Fire Protection Association (NFPA) |
Total Pages | : 829 |
Release | : 1988-01-01 |
Genre | : Building, Fireproof |
ISBN | : 9780877653530 |
Author | : Society of Fire Protection Engineers |
Publisher | : Springer |
Total Pages | : 159 |
Release | : 2018-11-14 |
Genre | : Technology & Engineering |
ISBN | : 3319946978 |
This single resource for the fire safety community distills the most relevant and useful science and research into a consensus-based guide whose key factors and considerations impact the response and behavior of occupants of a building during a fire event. The Second Edition of SFPE's Engineering Guide: Human Behavior in Fire provides a common introduction to this field for the broad fire safety community: fire protection engineers/fire safety engineers, human behavior scientists/researchers, design professionals, and code authorities. The public benefits from consistent understanding of the factors that influence the responses and behaviors of people when threatened by fire and the application of reliable methodologies to evaluate and estimate human response in buildings and structures. This Guide also aims to lessen the uncertainties in the "people components" of fire safety and allow for more refined analysis with less reliance on arbitrary safety factors. As with fire science in general, our knowledge of human behavior in fire is growing, but is still characterized by uncertainties that are traceable to both limitation in the science and unfamiliarity by the user communities. The concepts for development of evacuation scenarios for performance-based designs and the technical methods to estimate evacuation response are reviewed with consideration to the limitation and uncertainty of the methods. This Guide identifies both quantitative and qualitative information that constitutes important consideration prior to developing safety factors, exercising engineering judgment, and using evacuation models in the practical design of buildings and evacuation procedures. Besides updating material in the First Edition, this revision includes new information on: Incapacitating Effects of Fire Effluent & Toxicity Analysis Methods Occupant Behavior Scnearios Movement Models and Behavioral Models Egress Model Selection, Verification, and Validation Estimation of Uncertainty and Use of Safety Factors Enhancing Human Response to Emergencies & Notification of Messaging The prediction of human behavior during a fire emergency is one of the most challenging areas of fire protection engineering. Yet, understanding and considering human factors is essential to designing effective evacuation systems, ensuring safety during a fire and related emergency events, and accurately reconstructing a fire.
Author | : Mark A. Finney |
Publisher | : CSIRO PUBLISHING |
Total Pages | : 675 |
Release | : 2021-11-01 |
Genre | : Nature |
ISBN | : 1486309100 |
Wildland fires have an irreplaceable role in sustaining many of our forests, shrublands and grasslands. They can be used as controlled burns or occur as free-burning wildfires, and can sometimes be dangerous and destructive to fauna, human communities and natural resources. Through scientific understanding of their behaviour, we can develop the tools to reliably use and manage fires across landscapes in ways that are compatible with the constraints of modern society while benefiting the ecosystems. The science of wildland fire is incomplete, however. Even the simplest fire behaviours – how fast they spread, how long they burn and how large they get – arise from a dynamical system of physical processes interacting in unexplored ways with heterogeneous biological, ecological and meteorological factors across many scales of time and space. The physics of heat transfer, combustion and ignition, for example, operate in all fires at millimetre and millisecond scales but wildfires can become conflagrations that burn for months and exceed millions of hectares. Wildland Fire Behaviour: Dynamics, Principles and Processes examines what is known and unknown about wildfire behaviours. The authors introduce fire as a dynamical system along with traditional steady-state concepts. They then break down the system into its primary physical components, describe how they depend upon environmental factors, and explore system dynamics by constructing and exercising a nonlinear model. The limits of modelling and knowledge are discussed throughout but emphasised by review of large fire behaviours. Advancing knowledge of fire behaviours will require a multidisciplinary approach and rely on quality measurements from experimental research, as covered in the final chapters.
Author | : Richard Gann |
Publisher | : Jones & Bartlett Publishers |
Total Pages | : 309 |
Release | : 2013-12-03 |
Genre | : Medical |
ISBN | : 1284056104 |
Based on the National Fire Academy’s Fire Behavior and Combustion model curriculum. Without a comprehensive grasp of how fires start and spread, informed decisions on how to best control and extinguish fires can not be made. Principles of Fire Behavior and Combustion, Fourth Edition will provide readers with a thorough understanding of the chemical and physical properties of flammable materials and fire, the combustion process, and the latest in suppression and extinguishment. The Fourth Edition of this time-tested resource is the most current and accurate source of fire behavior information available to fire science students and on-the-job fire fighters today.
Author | : Mustapha Hatti |
Publisher | : Springer |
Total Pages | : 571 |
Release | : 2018-11-23 |
Genre | : Technology & Engineering |
ISBN | : 303004789X |
This book features cutting-edge research presented at the second international conference on Artificial Intelligence in Renewable Energetic Systems, IC-AIRES2018, held on 24–26 November 2018, at the High School of Commerce, ESC-Koléa in Tipaza, Algeria. Today, the fundamental challenge of integrating renewable energies into the design of smart cities is more relevant than ever. While based on the advent of big data and the use of information and communication technologies, smart cities must now respond to cross-cutting issues involving urban development, energy and environmental constraints; further, these cities must also explore how they can integrate more sustainable energies. Sustainable energies are a major determinant of smart cities’ longevity. From an environmental and technological standpoint, these energies offer an optimal power supply to the electric network while creating significantly less pollution. This requires flexibility, i.e., the availability of supply and demand. The end goal of any smart city is to improve the quality of life for all citizens (both in the city and in the countryside) in a way that is sustainable and respectful of the environment. This book encourages the reader to engage in the preservation of our environment, every moment, every day, so as to help build a clean and healthy future, and to think of the future generations who will one day inherit our planet. Further, it equips those whose work involves energy systems and those engaged in modelling artificial intelligence to combine their expertise for the benefit of the scientific community and humanity as a whole.
Author | : Guan-Yuan Wu |
Publisher | : Springer Nature |
Total Pages | : 1061 |
Release | : 2019-09-12 |
Genre | : Technology & Engineering |
ISBN | : 9813291397 |
This book features selected papers from the 11th Asia-Oceania Symposium on Fire Science and Technology (AOSFST 2018), held in Taipei, Taiwan. Covering the entire spectrum of fire safety science, it focuses on research on fires, explosions, combustion science, heat transfer, fluid dynamics, risk analysis and structural engineering, as well as other topics. Presenting advanced scientific insights, the book introduces and advances new ideas in all areas of fire safety science. As such it is a valuable resource for academic researchers, fire safety engineers, and regulators of fire, construction and safety authorities. Further it provides new ideas for more efficient fire protection.
Author | : Christopher W. Schmidt |
Publisher | : Academic Press |
Total Pages | : 313 |
Release | : 2011-10-10 |
Genre | : Medical |
ISBN | : 008055928X |
This unique reference provides a primary source for osteologists and the medical/legal community for the understanding of burned bone remains in forensic or archaeological contexts. It describes in detail the changes in human bone and soft tissues as a body burns at both the chemical and gross levels and provides an overview of the current procedures in burned bone study. Case studies in forensic and archaeological settings aid those interested in the analysis of burned human bodies, from death scene investigators, to biological anthropologists looking at the recent or ancient dead. - Includes the diagnostic patterning of color changes that give insight to the severity of burning, the positioning of the body, and presence (or absence) of soft tissues during the burning event - Chapters on bones and teeth give step-by-step recommendations for how to study and recognize burned hard tissues
Author | : Frances D. Burton |
Publisher | : UNM Press |
Total Pages | : 337 |
Release | : 2011-09-29 |
Genre | : Social Science |
ISBN | : 0826346480 |
The association between our ancestors and fire, somewhere around six to four million years ago, had a tremendous impact on human evolution, transforming our earliest human ancestor, a being communicating without speech but with insight, reason, manual dexterity, highly developed social organization, and the capability of experimenting with this new technology. As it first associated with and then began to tame fire, this extraordinary being began to distance itself from its primate relatives, taking a path that would alter its environment, physiology, and self-image. Based on her extensive research with nonhuman primates, anthropologist Frances Burton details the stages of the conquest of fire and the systems it affected. Her study examines the natural occurrence of fire and describes the effects light has on human physiology. She constructs possible variations of our earliest human ancestor and its way of life, utilizing archaeological and anthropological evidence of the earliest human-controlled fires to explore the profound physical and biological impacts fire had on human evolution.
Author | : David J. Kolko |
Publisher | : Academic Press |
Total Pages | : 442 |
Release | : 2002-06-26 |
Genre | : Education |
ISBN | : 0124177611 |
In recent years, much research has been conducted on why young people start fires inappropriately, but more crucially on how to keep them from doing so. Psychologists, fire prevention specialists, and investigators from around the US share what has been learned about identifying those who set fires and programs for deterring them. Annotation c. Book News, Inc., Portland.
Author | : Andrew C. Scott |
Publisher | : John Wiley & Sons |
Total Pages | : 434 |
Release | : 2013-10-31 |
Genre | : Science |
ISBN | : 1118534093 |
Earth is the only planet known to have fire. The reason is both simple and profound: fire exists because Earth is the only planet to possess life as we know it. Fire is an expression of life on Earth and an index of life’s history. Few processes are as integral, unique, or ancient. Fire on Earth puts fire in its rightful place as an integral part of the study of geology, biology, human history, physics, and global chemistry. Fire is ubiquitous in various forms throughout Earth, and belongs as part of formal inquiries about our world. In recent years fire literature has multiplied exponentially; dedicated journals exist and half a dozen international conferences are held annually. A host of formal sciences, or programs announcing interdisciplinary intentions, are willing to consider fire. Wildfire also appears routinely in media reporting. This full-colour text, containing over 250 illustrations of fire in all contexts, is designed to provide a synthesis of contemporary thinking; bringing together the most powerful concepts and disciplinary voices to examine, in an international setting, why planetary fire exists, how it works, and why it looks the way it does today. Students, lecturers, researchers and professionals interested in the physical, ecological and historical characteristics of fire will find this book, and accompanying web-based material, essential reading for undergraduate and postgraduate courses in all related disciplines, for general interest and for providing an interdisciplinary foundation for further study. A comprehensive approach to the history, behaviour and ecological effects of fire on earth Timely introduction to this important subject, with relevance for global climate change, biodiversity loss and the evolution of human culture. Provides a foundation for the interdisciplinary field of Fire Research Authored by an international team of leading experts in the field Associated website provides additional resources