Bentham is offering subject-based scholarly content collections which are tailored to meet specific research needs. Researchers can access related articles from current and back volumes by purchasing access to these collections. Subscribers will also have access to new articles as soon as they are published and added to these collections. With new articles being added to these collections on a daily basis, the collections serve as an ideal tool to keep researchers updated with new developments in the respective fields.
DOI: 10.2174/97816810869961180101 eISBN: 978-1-68108-699-6, 2018 ISBN: 978-1-68108-700-9
Back Recommend this Book to your Library Cite as
Cite this Book as:
For Books Eduardo Rojas , " Towards a Unified Soil Mechanics Theory: The Use of Effective Stresses in Unsaturated Soil, Revised Edition ", Bentham Science Publishers (2018). https://doi.org/10.2174/97816810869961180101
Print ISBN978-1-68108-700-9
Online ISBN978-1-68108-699-6
Page: i-i (1) Author: Serge Leroueil DOI: 10.2174/9781681086996118010001
Page: ii-ii (1) Author: Eduardo Rojas DOI: 10.2174/9781681086996118010002
Page: iv-iv (1) Author: Eduardo Rojas DOI: 10.2174/9781681086996118010003
Page: v-v (1) Author: Eduardo Rojas DOI: 10.2174/9781681086996118010004
Page: vi-vi (1) Author: Eduardo Rojas DOI: 10.2174/9781681086996118010005
Page: 1-8 (8) Author: Eduardo Rojas DOI: 10.2174/9781681086996118010006 PDF Price: $15
Page: 9-18 (10) Author: Eduardo Rojas DOI: 10.2174/9781681086996118010007 PDF Price: $15
Page: 19-44 (26) Author: Eduardo Rojas DOI: 10.2174/9781681086996118010008 PDF Price: $15
Page: 45-68 (24) Author: Eduardo Rojas DOI: 10.2174/9781681086996118010009 PDF Price: $15
Page: 69-88 (20) Author: Eduardo Rojas DOI: 10.2174/9781681086996118010010 PDF Price: $15
Page: 89-95 (7) Author: Eduardo Rojas DOI: 10.2174/9781681086996118010011 PDF Price: $15
Page: 96-100 (5) Author: Eduardo Rojas DOI: 10.2174/9781681086996118010012 PDF Price: $15
Page: 101-122 (22) Author: Eduardo Rojas DOI: 10.2174/9781681086996118010013 PDF Price: $15
Page: 123-141 (19) Author: Eduardo Rojas DOI: 10.2174/9781681086996118010014 PDF Price: $15
Page: 142-167 (26) Author: Eduardo Rojas DOI: 10.2174/9781681086996118010015 PDF Price: $15
Page: 168-183 (16) Author: Eduardo Rojas DOI: 10.2174/9781681086996118010016 PDF Price: $15
Page: 184-209 (26) Author: Eduardo Rojas DOI: 10.2174/9781681086996118010017 PDF Price: $15
Page: 210-222 (13) Author: Eduardo Rojas DOI: 10.2174/9781681086996118010018
Page: 223-223 (1) Author: Eduardo Rojas DOI: 10.2174/9781681086996118010019
Page: 224-224 (1) Author: Eduardo Rojas DOI: 10.2174/9781681086996118010020
Page: 225-230 (6) Author: Eduardo Rojas DOI: 10.2174/9781681086996118010021
Page: 231-234 (4) Author: Eduardo Rojas DOI: 10.2174/9781681086996118010022
With the application of the effective stress concept, the strength and volumetric behavior of saturated materials was clearly understood. For the case of unsaturated materials, a universally accepted effective stresses equation is still under debate. However, the use of the effective stress concept to develop constitutive models for unsaturated soils is becoming increasingly popular not only because the hydro-mechanical coupling observed in these materials is implicit in the formulation but also because simpler and more precise models can be established. Towards A Unified Soil Mechanics Theory demonstrates that the same strength and volume change equations used in saturated soil mechanics can be used for the case of unsaturated soils. In other words, the constitutive models developed for saturated soils can be used for unsaturated materials once the effective stress equation has been defined. In this book, an analytical equation for the effective stress for unsaturated soils is established. This equation requires the knowledge of the superficial area of solids affected by the capillary phenomenon. In other words, we need to know how water distributes in the pores of the soil. This distribution can be modeled using a solid-porous model built on a regular network. However, the size of the network required to correctly simulate the structure of a small soil sample cannot be managed with a common PC. For that reason, a probabilistic porous-solid model is developed. This model uses the pore size distribution in the form of a probabilistic function which in addition to the Laplace equation and the principle of continuity can be expressed as the probability of a pore of certain size to be filled or dry at suction during a wetting or drying path, respectively. In this way, the soil-water retention curves can be simulated and the effective stress at any suction during wetting or drying processes can be determined. Based on this approach, it is shown that unsaturated soils behave under the same principles for strength and volumetric behavior as saturated soils. This revised edition brings additional information about an elastoplastic framework for expansive soils, hydro-mechanical coupling and a fully coupled model. The additional chapters also cover the experimental parameters used to derive the models. An updated set of references and a list of abbreviations is also included in this edition. Towards A Unified Soil Mechanics Theory paves the way for a universal theory of soil mechanics. The volume will be a valuable reference to civil engineers, earth scientists and hydrologists interested in soil mechanics at both academic and professional levels.
A Primer on Earth Pollution: Pollution Types and Disposal
Air Pollution: Economic Modelling and Control Policies
Application of Adsorbents for Water Pollution Control
Assessment and Mitigation of Indoor Radon Problem: A Case Book for Radon Professionals
Changing Landscapes in Urban British Churchyards
Environmental Zeolites and Aqueous Media: Examples of Practical Solutions
Famous Planet Earth Caves
Environmental Issues for the Twenty-First Century and their Impact on Human Health
Flood Risk Assessment and Management