Steel-concrete structures for multistorey buildings

書誌事項

Steel-concrete structures for multistorey buildings

Juraj Kozák

(Developments in civil engineering, v. 35)

Elsevier, 1991

タイトル別名

Konstrukcie vysokých budov

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注記

Translation of: Konštrukcie vysokých budov

Includes bibliographical references and index

内容説明・目次

内容説明

The construction of buildings shows a clear tendency towards an increased number of storeys and, in accordance with the function of the structure, to the utilization of more flexible layouts. A typical feature of modern building is a high degree of prefabrication which contributes to the economic acceptability of such structures. In this publication the author discusses buildings in which height dominates over other dimensions. A comprehensive approach is adopted in examining the problems the design engineer is confronted with in order to achieve realistic and optimal design solutions. Special attention is given to steel structures and their combination with reinforced concrete. Throughout the book emphasis is placed on the fact that load-carrying members are parts of the whole building. The procedures observed discuss first of all the higher systems and then continue down to lower systems, parts and elements. The analysis is carried out from the viewpoint of the whole building with its components, functions, architecture and structures down to load-carrying structures and static substructures in horizontal and vertical directions and their elements.

目次

  • 1. Construction of Multistorey Buildings General Problems. Multistorey buildings in central Europe and abroad
  • the present state and developmental trends. Causes of the growing complexity of buildings. Main problems of multistorey buildings from the point of view of load-bearing structures. Advances allowing erection of higher buildings. 2. Planning and Design. Position of planning and design in the investment activity system. Design as a process and creative work. Types of task in the design system. Stages in designing: increase of specification level. Information: significant factors in the design process. 3. Tall Buildings with Subsystems and Environment. The tall building as large and complex system. Architectural work composed of subsystems. Function and purpose of buildings. Urbanism and architecture. Structures as a mass subsystem of building objects. Relevant surroundings of oversystem building object. Development trends and influences in structural design. 4. Load-Bearing Structures of Multistorey Buildings. Structures, statics, materials, construction, technology. Layout scheme and typology. Structural and static design. Materials and technology. Combined steel, concrete structures. Types of structural and static system. Load-bearing systems and the determination of loading effects. 5. Criteria, Loading and Influences Accounted for Structural Design. Structural design system. Design criteria. Load: general. Gravity loads. Wind loads. Thermal loads. Shrinkage and creep of concrete. Effects of support settlement and undermining. Seismic effects. 6. Horizontal Structures. Function of ceilings
  • their components and peculiarities of tall buildings. Types of ceiling derived from complete assemblies. Structural systems of ceilings. Effects of completing structures on load-bearing ceiling structures. Influence of technical equipment on ceiling structure. Floor plates in beam-floor system. Floor structures with the function of horizontal plates. Floor beams and girders. Horizontal couplings and grids. 7. Vertical Structures. Function, distribution and effects. Line members, columns and hangers. Planar vertical bonds. 8. Examples of projects and Realizations. General experience of Czechoslovak construction. Buildings with a steel skeleton. Buildings with internal cores. Unconventional large-span-structures of buildings. Load carrying systems with staggered girders. Subject Index.

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