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Civil Engineer's Illustrated Sourcebook
McGraw-Hill Professional
2003-02-11
ISBN: 0071376070
750 pages
PDF 30,3 MB
A quick-look-up resource of pictorial details for the right plans, construction materials and methods for a specific application
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Highways: The Location, Design, Construction and Maintenance of Road Pavements
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Highways: The Location, Design, Construction and Maintenance of Road Pavements
Colm O'Flaherty,
Butterworth-Heinemann
ISBN: 0750650907
2002
PDF 7.23 MB
256 pages
“ 'Highways' is a comprehensive textbook on all aspects of road engineering. This new edition, written by a team of acknowledged experts in the field, teams up with 'Transport Planning and Traffic Engineering' to become a worthy successor to O'Flaherty's classic 'Highway Engineering' set. This fourth edition covers road location and plans, roadwork materials, surface and subsurface moisture control, pavement design and construction, thickness design of bituminous and concrete pavements and road maintenance and rehabilitation. The content has been expanded and thoroughly updated to take into account new developments in the subject, making it essential reading for students of civil engineering.
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* Publisher: Taylor & Francis
* Number Of Pages: 320
* Publication Date: 2009-06-17
* ISBN-10 / ASIN: 0415447623
* ISBN-13 / EAN: 9780415447621
Product Description:
As the new Eurocode 8 on the Design of Structures for Earthquake Resistance has acquired the status of a full Euronorm, practical information and training has become urgently needed, especially in relation to the underlying principles of seismic behaviour and the design of building structures. This book covers seismic design in a clear but brief manner and links the principles to the code, illustrated with design examples. Concrete and steel buildings, and their foundations, are given special emphasis but the book is also applicable to many other types of structure and sub-structure.The book stems from practical short courses on seismic design, run jointly by the Society for Earthquake and Civil Engineering Dynamics (SECED) and Imperial College London. Its contributors are either senior academics with significant consulting experience, or leading practitioners, which gives the book a strong industry emphasis. It will be of value to a wide range of practising civil and structural engineers at different stages of their careers; and should also be of direct use to academics preparing courses and worked examples on seismic design to EC8, to advanced undergraduate students, and to Masters level students in Earthquake, Structural or Geotechnical Engineering.
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Hydrodynamics Around Cylindrical Structures
(Advanced Series on Ocean Engineering)
B. Mutlu Sumer, Jorgen Fredsoe,
World Scientific Publishing Company
2006-09-20
ISBN: 9812700390
546 pages
DjVu 4,1 MB
This book discusses the subject of wave/current flow around a cylinder, the forces induced on the cylinder by the flow, and the vibration pattern of slender structures in a marine environment. The primary aim of the book is to describe the flow pattern and the resulting load which develops when waves or current meet a cylinder. Special attention is paid to circular cylinder. The development in the forces is related to the various flow patterns and is discussed in detail. Regular as well as irregular waves are considered, and special cases like wall proximities (pipelines) are also investigated.
Key Features: Discusses hydrodynamic loading on cylindrical structures in the marine environment, Includes extensive discussions on flow-induced vibrations, Special focus on marine pipelines.
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Mechanics of Coastal Sediment Transport
(Advanced Series in Ocean Engineering)
Jorgen Fredsoe, Rolf Deigaard,
World Scientific Publishing Company
1992-04
ISBN: 9810208405
392 pages
PDF 12,5 MB
The primary aim of the book is to describe the physical processes of sediment transport and how to represent them in mathematical models. The book can be divided in two main parts; in the first, the relevant hydrodynamic theory is described. This part contains a review of elementary theory for water waves, chapters on the turbulent wave boundary layer and the turbulent interaction between waves and currents, and finally, surf zone hydrodynamics and wave driven currents. The second part covers sediment transport and morphological development.The part on sediment transport introduces the basic concepts (critical bed shear stress, bed load, suspended load and sheet layer, near-bed concentration, effect of sloping bed); it treats suspended sediment in waves and current and in the surf zone, and current and wave-generated bed forms. Finally, the modelling of cross-shore and long-shore sediment transport is described together with the development of coastal profiles and coastlines.
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sorry for not attaching image/despriction because i have not installed it yet. (acually this program does not require description). I am reposting the links posted by one of our member earlier and moved from our forum.
EN 998 Specification for mortar for masonry
EN 1052 Methods of test for masonry
EN 771 Specification for masonry units
EN 772 Methods of test for masonry units
EN 1015 Methods of test for mortar for masonry
Developments in Offshore Engineering: Wave Phenomena and Offshore Topics
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Developments in Offshore Engineering: Wave Phenomena and Offshore Topics
(Handbook of Coastal & Ocean Engineering)
John B. Herbich,
Gulf Professional Publishing
1998-12-18
ISBN: 0884153800
584 pages
PDF 22,2 MB
Drawing from experts and top researchers from around the world, this book presents current developments in a variety of areas that impact offshore and ocean engineering.
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Advanced Numerical Models For Simulating Tsunami Waves And Runup
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Advanced Numerical Models For Simulating Tsunami Waves And Runup
(Advances in Coastal & Ocean Engineering)
Philip L. F. Liu,
World Scientific Publishing Company
2008-09-29
ISBN: 9812700129
344 pages
PDF 15,5 MB
This review volume is divided into two parts. The first part includes five review papers on various numerical models. Pedersen provides a brief but thorough review of the theoretical background for depth-integrated wave equations, which are employed to simulate tsunami runup. LeVeque and George describe high-resolution finite volume methods for solving the nonlinear shallow water equations. The focus of their discussion is on the applications of these methods to tsunami runup.
In recent years, several advanced 3D numerical models have been introduced to the field of coastal engineering to calculate breaking waves and wave structure interactions. These models are still under development and are at different stages of maturity. Rogers and Dalrymple discuss the Smooth Particles Hydrodynamics (SPH) method, which is a meshless method. Wu and Liu present their Large Eddy Simulation (LES) model for simulating the landslide-generated waves. Finally, Frandsen introduces the lattice Boltzmann method with the consideration of a free surface.
The second part of the review volume contains the descriptions of the benchmark problems with eleven extended abstracts submitted by the workshop participants. All these papers are compared with their numerical results with benchmark solutions.
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