Structural Design for Hazardous Loads

Structural Design for Hazardous Loads
Title Structural Design for Hazardous Loads PDF eBook
Author J. L. Clarke
Publisher Van Nostrand Reinhold Company
Pages 516
Release 1992
Genre Technology & Engineering
ISBN

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Structural design for hazardous loads

Structural design for hazardous loads
Title Structural design for hazardous loads PDF eBook
Author J.L. Clarke
Publisher
Pages 464
Release 1992
Genre
ISBN

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Minimum Design Loads and Associated Criteria for Buildings and Other Structures

Minimum Design Loads and Associated Criteria for Buildings and Other Structures
Title Minimum Design Loads and Associated Criteria for Buildings and Other Structures PDF eBook
Author American Society of Civil Engineers
Publisher ASCE Press
Pages 1046
Release 2022-02
Genre Buildings
ISBN 9780784415788

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Standard ASCE/SEI 7-22 provides requirements for general structural design and includes means for determining various loads and their combinations, which are suitable for inclusion in building codes and other documents.

Design of Hazardous Mechanical Structures, Systems and Components for Extreme Loads

Design of Hazardous Mechanical Structures, Systems and Components for Extreme Loads
Title Design of Hazardous Mechanical Structures, Systems and Components for Extreme Loads PDF eBook
Author John David Stevenson
Publisher American Society of Mechanical Engineers
Pages 320
Release 2006
Genre Technology & Engineering
ISBN

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Addresses the issue of safe design of mechanical structures, systems and components belonging to hazardous facilities, in order to withstand the effects of extreme loads. This volume provides information on government regulations and industry standards. It also addresses the structures, distribution systems, and components.

Explosive Loading of Engineering Structures

Explosive Loading of Engineering Structures
Title Explosive Loading of Engineering Structures PDF eBook
Author P.S. Bulson
Publisher CRC Press
Pages 272
Release 1997-07-24
Genre Architecture
ISBN 1135829802

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This book reviews the development of research into the explosive loading of structures, mainly since the beginning of the twentieth century. Major contributions in the fields of measurement, analysis and prediction are discussed. Dynamic loading from conventional high explosives is examined, as well as the effects of liquid propellant, dust, gas, vapour, and fuel/air explosions. Subjects include blast in tunnels, underground and underwater explosions, pressure measurement and blast stimulation. Explosive effects on civil buildings, civil bridges, aircraft and ships are summarized, including the estimation of residual strength. The concluding passages refer to structural safety and reliability.

Structural design for hazardous loads

Structural design for hazardous loads
Title Structural design for hazardous loads PDF eBook
Author
Publisher
Pages
Release 1991
Genre
ISBN

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Optimal Reliability-Based Design of Structures Against Several Natural Hazards

Optimal Reliability-Based Design of Structures Against Several Natural Hazards
Title Optimal Reliability-Based Design of Structures Against Several Natural Hazards PDF eBook
Author Alfredo H-S Ang
Publisher CRC Press
Pages 90
Release 2021-08-09
Genre Technology & Engineering
ISBN 1000461793

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Interest in the topic of structural reliability and optimal design has been rapidly growing in recent years. Besides, the field of numerical methods and artificial intelligence is experiencing a surge of new methods and the refinement of existing ones to expand opportunities to apply robust formulations to complex engineering problems. Today, more than ever, the field is receiving fresh ideas on how to face the challenges of finding a balance between cost and benefits that may lead towards the optimal design of systems. Recently, the probability density evolution method (PDEM) was proposed by Prof. Jie Li as an alternative way to obtain the stochastic and dynamic solution of the safety level of engineering systems under any kind of hazard. This work deals with the application of this powerful method to derive optimal design recommendations for large engineering systems under natural hazards. The three case studies illustrate to engineers and academic specialists how to strike a cost-effective balance in designing such systems.