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V. N. S. Murthy ... 795 pages - Publisher: CBS Publishers & Distributors; 1st edition (2007) ... Language: English - ISBN-10: 8123915063 - ISBN-13: 978-8123915067 ...

Advanced Foundation Engineering is the second volume in the series on geotechnical engineering, closely following A Textbook of Soil Mechanics and Foundation Engineering written to meet the requirements of undergraduate students. This volume covers various aspects of foundation engineering, bringing together all the relevant advanced theories coherently. As foundations have to be designed to simulate field conditions, it is imperative that the consulting engineer must be conversant with all the theories that are available as also the available approaches. This volume strives to meet most of these requirements It also presents in detail author s own research work on laterally loaded pile foundations to solve many of the problems confronted in this field. The approach is direct and simple as compared to the complicated methods proposed by others. This is an excellent text reference for the postgraduate students, practising engineers, consultants, researchers and professionals, in addition to serving as a valuable resource for the candidates appearing in Graduate Aptitude Test for Engineers (GATE), UPSC and other national selection entrance tests/examinations.

Jean-Claude Verbrugge, Christian Schroeder ... 230 pages - Publisher: Wiley-ISTE; 1st edition (July, 2018) ... Language: English - ISBN-10: 1786302799 - ISBN-13: 978-1786302793

The modelling tools for soils and rocks require more and more specific parameters not always available from the standard or usual survey campaigns, this generally for reasons of delay or costs. The use of correlations to solve the gap between available parameters and the required ones is a common practice. Many of them exist but are spread throughout numerous papers or books. The aim of this formulary is to provide a large synthesis of the existing correlations accumulated by the authors during more than 40 years academic and consulting careers.

Ehab Ellobody ... 682 pages - Publisher: Butterworth-Heinemann; 1st edition (June, 2014) ... Language: English - ISBN-10: 0124172474 - ISBN-13: 978-0124172470 ...

In recent years, bridge engineers and researchers are increasingly turning to the finite element method for the design of Steel and Steel-Concrete Composite Bridges. However, the complexity of the method has made the transition slow. Based on twenty years of experience, Finite Element Analysis and Design of Steel and Steel-Concrete Composite Bridges provides structural engineers and researchers with detailed modeling techniques for creating robust design models. The book’s seven chapters begin with an overview of the various forms of modern steel and steel–concrete composite bridges as well as current design codes. This is followed by self-contained chapters concerning: nonlinear material behavior of the bridge components, applied loads and stability of steel and steel–concrete composite bridges, and design of steel and steel–concrete composite bridge components. Constitutive models for construction materials including material non-linearity and geometric non-linearity. + The mechanical approach including problem setup, strain energy, external energy and potential energy), mathematics behind the method.  + Commonly available finite elements codes for the design of steel bridges. + Explains how the design information from Finite Element Analysis is incorporated into Building information models to obtain quantity information, cost analysis.

    Plaxis 2D v8.6 [Size: 438 MB] ... PLAXIS is the leading geotechnical finite element software, specifically developed for the 2D and 3D analysis of deformation, stability and groundwater flow.It is currently used by over 3000 engineers worldwide in the civil engineering, nuclear, oil & gas and renewable energy industries. Renowned for its ease of use and accurate soil models, it will help you optimise your designs and reduce conservatism compared to relying on traditional methods.

    Peter G. Nicholson ... 472 pages - Publisher: Butterworth-Heinemann; 1st edition (2015) ... Language: English - ISBN-10: 0124080766 - ISBN-13: 978-0124080768 ...
     
    Written by an author with more than 25 years of field and academic experience, Soil Improvement and Ground Modification Methods explains ground improvement technologies for converting marginal soil into soil that will support all types of structures. Soil improvement is the alteration of any property of a soil to improve its engineering performance. Some sort of soil improvement must happen on every construction site. This combined with rapid urbanization and the industrial growth presents a huge dilemma to providing a solid structure at a competitive price. The perfect guide for new or practicing engineers, this reference covers projects involving soil stabilization and soil admixtures, including utilization of industrial waste and by-products, commercially available soil admixtures, conventional soil improvement techniques, and state-of-the-art testing methods. Contents: Conventional soil improvement techniques and state-of-the-art testing methods + Methods for mitigating or removing the risk of liquefaction in the event of major vibrations + Structural elements for stabilization of new or existing construction industrial waste/by-products, commercially available soil + Innovative techniques for drainage, filtration, dewatering, stabilization of waste, and contaminant control and removal.

    Hsai-Yang Fang ... 923 pages - Publisher: Springer; 2nd edition (1990)... Language: English - ISBN-10: 0412988917 - ISBN-13: 978-0412988912 ...
      More than ten years have passed since the first edition was published. During that period there have been a substantial number of changes in geotechnical engineering, especially in the applications of foundation engineering. As the world population increases, more land is needed and many soil deposits previously deemed unsuitable for residential housing or other construction projects are now being used. Such areas include problematic soil regions, mining subsidence areas, and sanitary landfills. To overcome the problems associated with these natural or man-made soil deposits, new and improved methods of analysis, design, and implementation are needed in foundation construction. As society develops and living standards rise, tall buildings, transportation facilities, and industrial complexes are increasingly being built. Because of the heavy design loads and the complicated environments, the traditional design concepts, construction materials, methods, and equipment also need improvement. Further, recent energy and material shortages have caused additional burdens on the engineering profession and brought about the need to seek alternative or cost-saving methods for foundation design and construction.

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