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Strains and stresses --- Contraintes (Mécanique) --- 539.4 --- #KVIV --- Architectural engineering --- Engineering, Architectural --- Stresses and strains --- Architecture --- Elastic solids --- Flexure --- Mechanics --- Statics --- Structural analysis (Engineering) --- Deformations (Mechanics) --- Elasticity --- Engineering design --- Graphic statics --- Strength of materials --- Stress waves --- Structural design --- Strength. Resistance to stress --- 539.4 Strength. Resistance to stress --- Contraintes (Mécanique) --- Bending --- Plastic limit --- Stress analysis
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Architecture, Medieval --- Building --- Masonry --- Structural design --- Architecture médiévale --- Construction --- Maçonnerie --- Constructions --- History --- Histoire --- Calcul --- -Building --- -Structural design --- Engineering design --- Architectural design --- Strains and stresses --- Foundations --- Walls --- Architectural engineering --- Buildings --- Construction science --- Engineering, Architectural --- Structural engineering --- Architecture --- Construction industry --- Middle Ages --- History. --- Design and construction --- Architecture, Medieval. --- Structural design. --- Architecture médiévale --- Maçonnerie
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Statics --- Civil engineering --- Statics - Early works to 1800 --- Civil engineering - Early works to 1850 --- Coulomb functions. --- Coulomb, Fonctions de. --- Wave mechanics. --- Mécanique ondulatoire. --- Statics. --- Statique. --- Coulomb, Charles Augustin,
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Roofs, Shell. --- Shells (Engineering) --- Shells (Engineering). --- Equilibrium (physics) --- Static structural analysis
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This volume provides a concise, historical review of the methods of structural analysis and design - from Galileo in the seventeenth century, to the present day. Through it, students in structural engineering and professional engineers will gain a deeper understanding of the theory behind the modern software packages they use daily in structural design. This book also offers the reader a lucid examination of the process of structural analysis and how it relates to modern design. The first three chapters cover questions about the strength of materials, and how to calculate local effects. An account is then given of the development of the equations of elastic flexure and buckling, followed by a separate chapter on masonry arches. Three chapters on the overall behaviour of elastic structures lead to a discussion of plastic behaviour, and a final chapter indicates that there are still problems needing solution.
Structural analysis (Engineering) --- -#KVIV:BB --- Architectural engineering --- Engineering, Architectural --- Structural mechanics --- Structures, Theory of --- Structural engineering --- History --- #KVIV:BB --- Engineering --- General and Others --- Structural analysis (Engineering) - History --- History.
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What is the timescale for the settlement and cracking of an old stone building? How do the elegant flying buttresses of a Gothic cathedral safely transfer thrust to the foundations? And what is the effect of wind on a stone spire, or bell-ringing on a church tower? These and many other questions pertinent to the upkeep of old stone structures are answered in this clear and authoritative guide. With a firm scientific basis, but without the use of complex mathematics, the author provides a thorough and intuitive understanding of masonry structures. The basis of masonry analysis is introduced in the first two chapters, after which individual structures - including piers, pinnacles, towers, vaults and domes - are considered in more detail. This lucid and informative text will be of particular interest to structural engineers, practising architects and others involved in the renovation and care of old stone buildings.
Building, Stone --- Plastic analysis (Engineering) --- Structural analysis (Engineering) --- #KVIV:BB --- 693.2 --- Skeletbouw ; steen ; metselwerk ; structurele analyse --- 624.07 --- 693.7 --- Architectural engineering --- Engineering, Architectural --- Structural mechanics --- Structures, Theory of --- Structural engineering --- Analysis, Plastic --- Limit analysis (Engineering) --- Plastic analysis (Theory of structures) --- Ultimate strength analysis --- Stone building --- Stone construction --- Building --- 693.7 Floor tiling. Wall tiling. Paving. Paviour's trade. Asphalt work --- Floor tiling. Wall tiling. Paving. Paviour's trade. Asphalt work --- 624.07 Structural elements. Load-bearing members --- Structural elements. Load-bearing members --- Metselwerk van baksteen --- Construction en pierre --- Analyse plastique (Ingénierie) --- Constructions, Théorie des --- Building, Stone.
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A good grasp of the theory of structures - the theoretical basis by which the strength, stiffness and stability of a building can be understood - is fundamental to structural engineers and architects. Yet most modern structural analysis and design is carried out by computer, with the user isolated from the processes in action. Plastic Design of Frames; Volume 1. Fundamentals provides a broad introduction to the mathematics behind a range of structural processes. Some of the techniques used in this book may be familiar to the reader, and some may not, but each of the topics examined will give the structural engineer valuable insight into the basis of the subject. This companion book Plastic Design of Frames; Volume 2. Applications provides additional advanced topics and case studies. This lucid second volume provides a valuable read for structural engineers and others who wish to deepen their knowledge of the structural analysis and design of buildings.
Plastic analysis (Engineering) --- Structural frames. --- Structural design. --- Engineering design --- Architectural design --- Strains and stresses --- Framed structures --- Frames (Structures) --- Frames, Structural --- Frameworks (Structures) --- Structural analysis (Engineering) --- Structural design --- Structural engineering --- Analysis, Plastic --- Limit analysis (Engineering) --- Plastic analysis (Theory of structures) --- Ultimate strength analysis --- #KVIV --- 624.07 --- 624.07 Structural elements. Load-bearing members --- Structural elements. Load-bearing members --- Plastic analysis (Engineering). --- Structural frames --- Reinforced concrete. --- Bending --- Plastic properties
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