Engineering Investigations of Hurricane Damage


Book Description

After a hurricane or tropical storm strikes, civil engineers are often called upon to investigate the resulting damage to structures. One of the common assignments is to distinguish between wind damage and water damage. This task can be complex, requiring expertise in structural engineering, historic building codes, construction practices, wind forces, and water/wave forces, as well as familiarity with meteorology. The engineer may be asked to provide a rational estimate of the extent of wind damage to a structure that was subsequently destroyed by water. This publication provides civil engineers with the background and guidance necessary to conduct engineering damage investigations of structures following hurricanes, focusing particularly on distinguishing between wind damage and water damage.







Forensic Engineering


Book Description

Proceedings of the Sixth Congress on Forensic Engineering, held in San Francisco, California, October 31-November 3, 2012. Sponsored by the Technical Council on Forensic Engineering of ASCE. This collection contains 144 peer-reviewed papers presenting findings intended to help forensic engineers develop practices and procedures to reduce the number of failures, disseminate information on failures, and provide guidelines for conducting failure investigations and for ethical conduct. Topics include: bridges; building envelopes; critical infrastructure; design practices; disaster risk management; education; emerging technologies; fires; floods; flooring; geotechnical failures; hurricanes, tornadoes, and extreme winds; investigative methodologies; practices to reduce failures; professional practice; research and testing; residential construction; and structural failures. This will be valuable to engineers, researchers, educators, and students involved in forensic engineering.




Forensic Engineering 2009


Book Description

This proceedings contains 82 papers presented at the 5th ASCE Forensic Engineering Congress, held in Washington, D.C., November 11 14, 2009. The conference was sponsored by the ASCE Technical Council on Forensic Engineering whose mission is to develop practices and procedures to reduce the number of failures, to disseminate information on failures, and to provide guidelines for conducting failure investigations and for ethical conduct. Forensic Engineering 2009: Pathology of the Built Environment includes papers that examine case studies, investigation approach and methodology, expert witnessing, ethics, standard of care, non-destructive evaluation, and education in forensic engineering. This book will be valuable to engineers, professionals, researchers, educators, and students involved in forensic engineering.




Advances in Hurricane Engineering


Book Description

Sponsored by Applied Technology Council; Structural Engineering Institute of ASCE. This collection contains 106 papers presented at the ATC & SEI Conference on Advances in Hurricane Engineering, held in Miami, Florida, October 24-26, 2012. When Hurricane Andrew wreaked havoc on South Florida and Louisiana 20 years ago, the engineering community learned a great deal about how powerful storms affect the built environment. These papers demonstrate the application of lessons learned to reduce losses from subsequent hurricanes and to make communities more resilient to natural hazards. Topics include: building codes; building envelope; building envelope and large structures; building roofs; flooding; infrastructure; large structures; meteorology; risk modeling; and wind loading. Structural engineers, architects, building code officials, and risk managers will gain important insights into the prevention and mitigation of damage from hurricanes and other powerful storms.




Engineering for Hurricanes


Book Description

This title explores the advances engineers have made to better prepare for hurricanes and to minimize their damage. Clear text, compelling images, and helpful sidebars and infographics make this book an accessible and engaging read.




Engineering Solutions for Hurricanes


Book Description

Hurricanes are increasing in frequency and intensity, bringing massive destruction in their wake. This resource provides readers with insight into the nature of hurricanes and the solutions engineers are using to prepare for hurricanes and protect people and property when they occur. It explains the technological tools such as NASA satellites, computer modeling, and aircraft and field missions that scientists and engineers are using to predict when and where hurricanes will occur. It also describes how engineers are creating improved building codes and innovative structures and redesigning cities to withstand hurricanes' violence and save lives when disaster strikes.




Hurricane Ike Field Investigations: Setting; Chapter 3 Hurricane Ike; Chapter 4 Geologic Conditions; Chapter 5 Shoreline Structure Issues; Chapter 6 Buildings; Chapter 7 Lifelines and Infrastructure; Chapter 8 Marina Performance; Chapter 9 Policy Issues; Chapter 10 Lessons Learned; Appendix Storm Hydrographs at Area NOAA Stations


Book Description

Prepared by the Hurricane Ike Field Assessment Team of the Coasts, Oceans, Ports, and Rivers Institute of ASCE. Hurricane Ike Coastal Impact Assessment: Field Observations from October 3-6, 2008 describes the environmental and infrastructure impacts of Hurricane Ike on the upper Texas coast. Most important, the report identifies factors that appeared to provide protection from storm damage and presents some policy implications. After a general introduction to the area, its geology, historical storm events and rehabilitation, and coastal processes, the book describes Hurricane Ike, including water levels, storm surge measurements, and comparisons with other storms. It portrays the physical impacts of the storm, such as geomorphic changes, erosion rates, shoreline position, and impact of winds on engineered structures. Damage to and survival of shoreline structures--piers, seawalls, geotextile tubes, groins, and inlet jetties--are also discussed. Subsequent chapters address structural damage to buildings, lifelines and infrastructure, and marinas from wind, flooding, waves, and erosion. Finally, the book raises policy issues and summarizes lessons learned. Civil engineers engaged in projects related to coasts, oceans, ports, and rivers, especially in hurricane-prone areas; facilities managers in coastal areas; government officials from agencies that participate in coastal zone management or manage emergency preparedness will find the observations and conclusions of this book valuable.







Forensic Structural Engineering Handbook


Book Description

The Most Complete and Up-to-Date Resource on Forensic Structural Engineering Thoroughly revised and featuring contributions from leading experts, this definitive handbook offers comprehensive treatment of forensic structural engineering and expert witness delivery. From exploring the possible origins of errors, through investigating and analyzing failures, to working with the legal profession for assigning responsibilities, Forensic Structural Engineering Handbook, Second Edition covers every important topic in the field. The design and construction process Design and construction safety codes, standards, and regulations Standard of care and duty to perform First steps and legal concerns after a failure Engineering investigation of failures Origins and causes of failures Loads and hazards Design errors, construction defects, and project miscommunication Defects, deterioration, and durability Mechanisms and analyses of failures in steel, concrete, masonry, timber, and temporary structures; building envelope; and structural foundations Litigation and dispute resolution The expert consultant and witness