Engineering Load Combination Theory and Application

Author: Jin Weiliang
Publisher:
Publish Date: 2006-03-29
Features: The book is divided into two parts, totaling 20 chapters. The first part covers the theory of engineering load combination, including the fundamentals of engineering load stochastic processes, analysis of engineering load effects, stochastic probability models of engineering loads, theory of engineering load combination, and design methods for engineering load combination. The second part covers the classification and application of engineering loads, including permanent loads, planar live loads, wind loads, snow loads, seismic loads, temperature loads, wave loads, tidal currents, ice loads, vehicle loads, hoisting loads, ship loads, impact loads, and earth pressure. The book is guided by the theory of engineering reliability, emphasizing the combination of engineering load combination theory and the application of engineering loads based on current national design codes. It can serve as a teaching reference for undergraduate and graduate students in civil engineering, water conservancy, highways, railways, port engineering, ship and marine engineering, as well as a professional reference for technical personnel in civil and industrial construction, municipal facilities, bridges, roads (highways and railways), ports, and marine engineering. The book is divided into two parts, totaling 20 chapters. The first part covers the theory of engineering load combination, including chapters such as the fundamentals of engineering load stochastic processes, analysis of engineering load effects, stochastic probability models of engineering loads, theory of engineering load combination, and design methods for engineering load combination. It involves the basic properties of engineering load stochastic processes, analysis methods for load effects on civil engineering structures, statistical characteristics and stochastic probability models of major engineering loads, fundamental theories and analytical methods of load combination, design methods for load combination of engineering structures based on reliability theory, determination methods of design load partial factors, combination value factors, frequent value factors, and quasi-permanent value factors, as well as reliability calibration of engineering load combination design methods. The second part covers the classification and application of engineering loads, including chapters such as permanent loads, planar live loads, wind loads, snow loads, seismic actions, temperature effects, wave loads, tidal currents, ice loads, vehicle loads, hoisting loads, ship loads, impact loads, and earth pressure. It introduces the selection of design representative values of engineering loads, the basic concepts, properties, calculation methods, and engineering applications of engineering loads, facilitating direct use by civil engineering technicians. The book is divided into two parts, totaling 20 chapters. The first part covers the theory of engineering load combination, including chapters such as the fundamentals of engineering load stochastic processes, analysis of engineering load effects, stochastic probability models of engineering loads, theory of engineering load combination, and design methods for engineering load combination. The second part covers the classification and application of engineering loads, including permanent loads, planar live loads, etc.

📌 Related Posts