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Many important advances in designing modern structures have
occurred over the last several years. Structural engineers need an
authoritative source of information that thoroughly and concisely
covers the foundational principles of the field. Comprising
chapters selected from the second edition of the best-selling
Handbook of Structural Engineering, Principles of Structural Design
provides a tightly focused, concise, and valuable guide to the
theoretical, practical, and computational aspects of structural
design. This book systematically explores the fundamental concepts
underlying structural design for each major type of structural
material. Expert contributors authoritatively discuss steel
structures, steel frame design using advanced analysis, cold-formed
steel structures, reinforced concrete structures, prestressed
concrete, and masonry, timber, and aluminum structures. For each
construction material, the chapter explores the material
properties, design considerations, and structural principles
affecting overall design. Reflecting recent advances, the book
includes two chapters devoted to reliability-based structural
design and structure configuration based on wind engineering.
Computational methods and simulation techniques illustrate the
concepts of reliability-based design, while examples of real
bridges highlight the application of wind engineering principles
and methods. Principles of Structural Design couples fundamental
concepts with advanced practices. It is an ideal introduction for
newcomers to the field as well as a perfect review and
quick-reference guide for seasoned engineers.
Many important advances in designing earthquake-resistant
structures have occurred over the last several years. Civil
engineers need an authoritative source of information that reflects
the issues that are unique to the field. Comprising chapters
selected from the second edition of the best-selling Handbook of
Structural Engineering, Earthquake Engineering for Structural
Design provides a tightly focused, concise, and valuable guide to
the theoretical, practical, and computational aspects of earthquake
engineering. In chapters contributed by renowned experts from
around the world, this book supplies the latest concepts, design
methodologies, and analytical techniques for mitigating the effects
of seismic damage to structures. It discusses the fundamentals of
earthquake engineering, explaining the causes of earthquakes and
faulting, measurement of earthquakes, and characterization of
seismicity. Subsequent chapters discuss the various types of
earthquake damage to structures including recent improvements in
earthquake performance, seismic design of buildings and bridges
considering various types of construction materials, and
performance-based seismic design and evaluation of building
structures. The book introduces probabilistic approaches to
performance-based methodologies as well as an application example
of performance-based design. Earthquake Engineering for Structural
Design offers practical tools gathered together in a convenient
reference for immediate implementation. It is an ideal resource for
civil and structural engineers specializing in earthquake
engineering.
Many important advances in designing modern structures have
occurred over the last several years. Structural engineers need an
authoritative source of information that thoroughly and concisely
covers the foundational principles of the field. Comprising
chapters selected from the second edition of the best-selling
Handbook of Structural Engineering, Principles of Structural Design
provides a tightly focused, concise, and valuable guide to the
theoretical, practical, and computational aspects of structural
design. This book systematically explores the fundamental concepts
underlying structural design for each major type of structural
material. Expert contributors authoritatively discuss steel
structures, steel frame design using advanced analysis, cold-formed
steel structures, reinforced concrete structures, prestressed
concrete, and masonry, timber, and aluminum structures. For each
construction material, the chapter explores the material
properties, design considerations, and structural principles
affecting overall design. Reflecting recent advances, the book
includes two chapters devoted to reliability-based structural
design and structure configuration based on wind engineering.
Computational methods and simulation techniques illustrate the
concepts of reliability-based design, while examples of real
bridges highlight the application of wind engineering principles
and methods. Principles of Structural Design couples fundamental
concepts with advanced practices. It is an ideal introduction for
newcomers to the field as well as a perfect review and
quick-reference guide for seasoned engineers.
Continuing the tradition of the best-selling Handbook of Structural
Engineering, this second edition is a comprehensive reference to
the broad spectrum of structural engineering, encapsulating the
theoretical, practical, and computational aspects of the field. The
authors address a myriad of topics, covering both traditional and
innovative approaches to analysis, design, and rehabilitation. The
second edition has been expanded and reorganized to be more
informative and cohesive. It also follows the developments that
have emerged in the field since the previous edition, such as
advanced analysis for structural design, performance-based design
of earthquake-resistant structures, lifecycle evaluation and
condition assessment of existing structures, the use of
high-performance materials for construction, and design for safety.
Additionally, the book includes numerous tables, charts, and
equations, as well as extensive references, reading lists, and
websites for further study or more in-depth information.
Emphasizing practical applications and easy implementation, this
text reflects the increasingly global nature of engineering,
compiling the efforts of an international panel of experts from
industry and academia. This is a necessity for anyone studying or
practicing in the field of structural engineering. New to this
edition -Fundamental theories of structural dynamics -Advanced
analysis -Wind and earthquake-resistant design -Design of
prestressed concrete, masonry, timber, and glass structures
-Properties, behavior, and use of high-performance steel, concrete,
and fiber-reinforced polymers -Semirigid frame structures
-Structural bracing -Structural design for fire safety
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