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Wind Effects on Structures
Modern Structural Design for Wind
Emil Simiu (Author), DongHun Yeo (Author)
9781119375883, Wiley
Hardback, published 1 March 2019
528 pages
24.4 x 17.3 x 3.1 cm, 1.134 kg
"This is an excellent book following the tradition of the previous three editions in 1978, 1986 and 1996. The 4th edition is quite expanded and includes the most recent development in the field of wind engineering, making the book an excellent choice for any university graduate course in this area. (...) The 496-page book is clearly written, includes plenty of examples and utilizes suitable software, so it becomes indispensable for all researchers and graduate students in the wind engineering field. Practicing engineers, architects and other building design professionals will find this book very interesting and useful." Journal of Wind Engineering & Industrial Aerodynamics 212 (2021) 104635
“(The book) is a fundamental resource for both the experienced researcher and the practicing structural engineer.”
Luca Caracoglia, F.ASCE, Journal of Structural Engineering, Volume 147, Issue 3 - March 2021, American Society of Civil Engineers
Provides structural engineers with the knowledge and practical tools needed to perform structural designs for wind that incorporate major technological, conceptual, analytical and computational advances achieved in the last two decades. With clear explanations and documentation of the concepts, methods, algorithms, and software available for accounting for wind loads in structural design, it also describes the wind engineer's contributions in sufficient detail that they can be effectively scrutinized by the structural engineer in charge of the design. Wind Effects on Structures: Modern Structural Design for Wind, 4th Edition is organized in four sections. The first covers atmospheric flows, extreme wind speeds, and bluff body aerodynamics. The second examines the design of buildings, and includes chapters on aerodynamic loads; dynamic and effective wind-induced loads; wind effects with specified MRIs; low-rise buildings; tall buildings; and more. The third part is devoted to aeroelastic effects, and covers both fundamentals and applications. The last part considers other structures and special topics such as trussed frameworks; offshore structures; and tornado effects. Offering readers the knowledge and practical tools needed to develop structural designs for wind loadings, this book: Wind Effects on Structures: Modern Structural Design for Wind, 4th Edition is an excellent text for structural engineers, wind engineers, and structural engineering students and faculty.
Preface to the Fourth Edition xix Introduction xxi Part I Atmospheric Flows, Extreme Wind Speeds, Bluff Body Aerodynamics 1 1 Atmospheric Circulations 3 2 The Atmospheric Boundary Layer 17 3 Extreme Wind Speeds 55 4 Bluff Body Aerodynamics 73 5 Aerodynamic Testing 105 6 Computational Wind Engineering 135 7 Uncertainties in Wind Engineering Data 157 Part II Design of Buildings 167 8 Structural Design for Wind 169 9 Stiffness Matrices, Second-Order Effects, and Influence Coefficients 179 10 Aerodynamic Loads 183 11 Dynamic and Effective Wind-Induced Loads 195 12 Wind Load Factors and Design Mean Recurrence Intervals 203 13 Wind Effects with Specified MRIs: DCIs, Inter-Story Drift, and Accelerations 211 14 Equivalent Static Wind Loads 219 15 Wind-Induced Discomfort in and Around Buildings 225 16 Mitigation of Building Motions 251 17 Rigid Portal Frames 259 18 Tall Buildings 267 Part III Aeroelastic Effects 283 19 Vortex-Induced Vibrations 287 20 Galloping and Torsional Divergence 297 21 Flutter 305 22 Slender Chimneys and Towers 315 23 Suspended-Span Bridges 331 Part IV Other Structures and Special Topics 347 24 Trussed Frameworks and Plate Girders 349 25 Offshore Structures 367 26 Tensile Membrane Structures 385 27 Tornado Wind and Atmospheric Pressure Change Effects 389 28 Tornado- and Hurricane-Borne Missile Speeds 399 Appendices 409 Appendix A Elements of Probability and Statistics 411 A.1 Introduction 411 A.2 Fundamental Relations 412 A.3 Random Variables and Probability Distributions 415 A.4 Descriptors of Random Variable Behavior 419 A.5 Geometric, Poisson, Normal, and Lognormal Distributions 420 A.6 Extreme Value Distributions 422 A.7 Statistical Estimates 425 A.8 Monte Carlo Methods 427 A.9 Non-Parametric Statistical Estimates 428 Appendix B Random Processes 433 B.1 Fourier Series and Fourier Integrals 433 B.2 Parseval’s Equality 435 B.3 Spectral Density Function of a Random Stationary Signal 435 B.4 Autocorrelation Function of a Random Stationary Signal 437 B.5 Cross-Covariance Function, Co-Spectrum, Quadrature Spectrum, Coherence 438 B.6 Mean Upcrossing and Outcrossing Rate for a Gaussian Process 439 B.7 Probability Distribution of the Peak Value of a Random Signal with Gaussian Marginal Distribution 441 C.1 Introduction 443 C.2 Peak Estimation by Peaks-Over-Threshold Poisson-Process Procedure 444 C.3 Dependence of Peak Estimates by BLUE Upon Number of Partitions 451 C.4 Summary 451 Appendix D Structural Dynamics 455 D.1 Introduction 455 D.2 The Single-Degree-of-Freedom Linear System 455 D.3 Continuously Distributed Linear Systems 458 D.4 Example: Along-Wind Response 463 Appendix E Structural Reliability 467 E.1 Introduction 467 E.2 The Basic Problem of Structural Safety 468 E.3 First-Order Second-Moment Approach: Load and Resistance Factors 469 E.4 Structural Strength Reserve 475 E.5 Design Criteria for Multi-Hazard Regions 477 Appendix F World Trade Center Response to Wind 481 F.1 Overview 481 F.2 NIST-Supplied Documents 482 F.3 Discussion and Comments 482 Index 487
Appendix C Peaks-Over-Threshold Poisson-Process Procedure for Estimating Peaks 443
Subject Areas: Civil engineering, surveying & building [TN]
