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This book gathers selected contributions in the field of civil and structural engineering, as presented by international researchers and engineers at the International Conference on Materials Physics, Building Structures and Technologies in Construction, Industrial and Production Engineering (MPCPE), held in Vladimir, Russia on April 26-28 2021. The book covers a wide range of topics including the theory and design of capital construction facilities, engineering and hydraulic structures; development of innovative solutions in the field of modeling and testing of reinforced concrete, metal and…mehr
This book gathers selected contributions in the field of civil and structural engineering, as presented by international researchers and engineers at the International Conference on Materials Physics, Building Structures and Technologies in Construction, Industrial and Production Engineering (MPCPE), held in Vladimir, Russia on April 26-28 2021. The book covers a wide range of topics including the theory and design of capital construction facilities, engineering and hydraulic structures; development of innovative solutions in the field of modeling and testing of reinforced concrete, metal and wooden structures, as well as composite structures based on them; investigation of complex dynamic effects on construction objects, and many others directions. Intended for professional builders, designers and researchers. The contributions, which were selected by means of a rigorous international peer-review process, highlight numerous exciting ideas that will spur novel research directions and foster multidisciplinary collaborations.
Chapter 1: Engineering calculations of acidifier retaining walls during water treatment facilities designing.- Chapter 2: Determination of deformability of LVL structures with toothed plates connectors.- Chapter 3: Bending test of stress-laminated timber decks using laser scanning.- Chapter 4: Bending of multilayer slabs lying on elastic half-space, considering shear stresses.- Chapter 5: The new hypothesis about linear deformations of reinforced concrete structures and the construction of filling diagram under combined torsion and bending. Analysis, approximation, functions, graphics and functionals.- Chapter 6: Crack resistance of tension reinforced concrete members with bond failure areas.- Chapter 7: Nonlinear vibrations of an orthotropic viscoelastic rectangular plate under periodic loads.- Chapter 8: Development of a methodology for calculating and placing Spring Force Compensators in log structures of wooden housing construction.- Chapter 9: Finite element modeling of complexlystressed reinforced concrete structures.- Chapter 10: Calculating the strengthening of construction structures before the reconstruction of the building.
Chapter 1: Engineering calculations of acidifier retaining walls during water treatment facilities designing.- Chapter 2: Determination of deformability of LVL structures with toothed plates connectors.- Chapter 3: Bending test of stress-laminated timber decks using laser scanning.- Chapter 4: Bending of multilayer slabs lying on elastic half-space, considering shear stresses.- Chapter 5: The new hypothesis about linear deformations of reinforced concrete structures and the construction of filling diagram under combined torsion and bending. Analysis, approximation, functions, graphics and functionals.- Chapter 6: Crack resistance of tension reinforced concrete members with bond failure areas.- Chapter 7: Nonlinear vibrations of an orthotropic viscoelastic rectangular plate under periodic loads.- Chapter 8: Development of a methodology for calculating and placing Spring Force Compensators in log structures of wooden housing construction.- Chapter 9: Finite element modeling of complexlystressed reinforced concrete structures.- Chapter 10: Calculating the strengthening of construction structures before the reconstruction of the building.
Chapter 1: Engineering calculations of acidifier retaining walls during water treatment facilities designing.- Chapter 2: Determination of deformability of LVL structures with toothed plates connectors.- Chapter 3: Bending test of stress-laminated timber decks using laser scanning.- Chapter 4: Bending of multilayer slabs lying on elastic half-space, considering shear stresses.- Chapter 5: The new hypothesis about linear deformations of reinforced concrete structures and the construction of filling diagram under combined torsion and bending. Analysis, approximation, functions, graphics and functionals.- Chapter 6: Crack resistance of tension reinforced concrete members with bond failure areas.- Chapter 7: Nonlinear vibrations of an orthotropic viscoelastic rectangular plate under periodic loads.- Chapter 8: Development of a methodology for calculating and placing Spring Force Compensators in log structures of wooden housing construction.- Chapter 9: Finite element modeling of complexlystressed reinforced concrete structures.- Chapter 10: Calculating the strengthening of construction structures before the reconstruction of the building.
Chapter 1: Engineering calculations of acidifier retaining walls during water treatment facilities designing.- Chapter 2: Determination of deformability of LVL structures with toothed plates connectors.- Chapter 3: Bending test of stress-laminated timber decks using laser scanning.- Chapter 4: Bending of multilayer slabs lying on elastic half-space, considering shear stresses.- Chapter 5: The new hypothesis about linear deformations of reinforced concrete structures and the construction of filling diagram under combined torsion and bending. Analysis, approximation, functions, graphics and functionals.- Chapter 6: Crack resistance of tension reinforced concrete members with bond failure areas.- Chapter 7: Nonlinear vibrations of an orthotropic viscoelastic rectangular plate under periodic loads.- Chapter 8: Development of a methodology for calculating and placing Spring Force Compensators in log structures of wooden housing construction.- Chapter 9: Finite element modeling of complexlystressed reinforced concrete structures.- Chapter 10: Calculating the strengthening of construction structures before the reconstruction of the building.
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