Structural Design For Physical Security


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Structural Design for Physical Security


Structural Design for Physical Security

Author: Task Committee on Structural Design for Physical Security

language: en

Publisher: ASCE Publications

Release Date: 1999-01-01


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Prepared by the Task Committee on Structural Design for Physical Security of the Structural Engineering Institute of ASCE. This report provides guidance to structural engineers in the design of civil structures to resist the effects of terrorist bombings. As dramatized by the bombings of the World Trade Center in New York City and the Murrah Building in Oklahoma City, civil engineers today need guidance on designing structures to resist hostile acts. The U.S. military services and foreign embassy facilities developed requirements for their unique needs, but these the documents are restricted. Thus, no widely available document exists to provide engineers with the technical data necessary to design civil structures for enhanced physical security. The unrestricted government information included in this report is assembled collectively for the first time and rephrased for application to civilian facilities. Topics include: determination of the threat, methods by which structural loadings are derived for the determined threat, the behavior and selection of structural systems, the design of structural components, the design of security doors, the design of utility openings, and the retrofitting of existing structures. This report transfers this technology to the civil sector and provides complete methods, guidance, and references for structural engineers challenged with a physical security problem.

Structural Design for Physical Security


Structural Design for Physical Security

Author: Task Committee on Structural Design for Physical Security

language: en

Publisher:

Release Date: 2021


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Prepared by the Task Committee on Structural Design for Physical Security of the Blast, Shock, and Impact Committee of the Dynamic Effects Technical Administration Committee of the Structural Engineering Institute of ASCEStructural Design for Physical Security, MOP 142, provides an overview of the typical design considerations encountered in new construction and renovation of facilities for physical security tactics. The constant change in threat tactics and types has led to the need for physical security designs that account for these new considerations and anticipate the environment of the future, with flexibility and adaptability being priorities. This Manual of Practice serves as a replacement for the 1999 technical report Structural Design for Physical Security: State of the Practice and is intended to provide a roadmap for designers and engineers involved in physical security. It contains references to other books, standards, and research. Topics includeThreat determination and available assessment and criteria documents,Methods by which structural loadings are derived for the determined threats, Function and selection of structural systems,Design of structural components,Function and selection of window and façade components,Specific considerations for retrofitting structures,Testing methodologies, andBridge and tunnel security.This book will be a valuable resource to structural engineers and design professionals involved with projects that have physical security concerns related to explosive, ballistic, forced entry, and hostile vehicle threats.

Structural Design for Physical Security


Structural Design for Physical Security

Author: Edward J. Conrath

language: en

Publisher: Amer Society of Civil Engineers

Release Date: 1999-01-01


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"In recognition of this void, the ASCE created a Task Committee to produce this State of the Practice Report, which provides guidance to structural engineers in the design of civil structures to resist the effects of terrorist bombings. This Report includes unrestricted government information, which is for the first time assembled collectively and rephrased for application to civilian facilities. Eight chapters outline the steps commonly followed in this practice. These are the determination of the threat, methods by which structural loadings are derived for the determined threat, the behavior and selection of structural systems, the design of structural components, the design of security doors, the design of utility openings, and the retrofitting of existing structures.".