MEASUREMENT and relationships of soil stress and strength

MEASUREMENT and relationships of soil stress and strength
Title MEASUREMENT and relationships of soil stress and strength PDF eBook
Author
Publisher
Pages
Release 1964
Genre
ISBN

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Measurements and relationships of soil stress and strength

Measurements and relationships of soil stress and strength
Title Measurements and relationships of soil stress and strength PDF eBook
Author
Publisher
Pages 83
Release 1964
Genre
ISBN

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Measurements and Relationship of Soil Stress and Strength

Measurements and Relationship of Soil Stress and Strength
Title Measurements and Relationship of Soil Stress and Strength PDF eBook
Author National Research Council (U.S.). Highway Research Board
Publisher
Pages 98
Release 1964
Genre Technology & Engineering
ISBN

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This Record presents five papers relating to soil science presented at the 43rd annual meeting, January 13-17, 1964.

Measurements and Relationships of Soil Stress and Strength

Measurements and Relationships of Soil Stress and Strength
Title Measurements and Relationships of Soil Stress and Strength PDF eBook
Author National Research Council (U.S.). Highway Research Board
Publisher
Pages 83
Release 1964
Genre Soils
ISBN

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Measurements and Relationships of Soil Stress and Strength

Measurements and Relationships of Soil Stress and Strength
Title Measurements and Relationships of Soil Stress and Strength PDF eBook
Author
Publisher
Pages 83
Release 1964
Genre
ISBN

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Correlations of Soil and Rock Properties in Geotechnical Engineering

Correlations of Soil and Rock Properties in Geotechnical Engineering
Title Correlations of Soil and Rock Properties in Geotechnical Engineering PDF eBook
Author Jay Ameratunga
Publisher Springer
Pages 236
Release 2015-12-11
Genre Science
ISBN 8132226291

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This book presents a one-stop reference to the empirical correlations used extensively in geotechnical engineering. Empirical correlations play a key role in geotechnical engineering designs and analysis. Laboratory and in situ testing of soils can add significant cost to a civil engineering project. By using appropriate empirical correlations, it is possible to derive many design parameters, thus limiting our reliance on these soil tests. The authors have decades of experience in geotechnical engineering, as professional engineers or researchers. The objective of this book is to present a critical evaluation of a wide range of empirical correlations reported in the literature, along with typical values of soil parameters, in the light of their experience and knowledge. This book will be a one-stop-shop for the practising professionals, geotechnical researchers and academics looking for specific correlations for estimating certain geotechnical parameters. The empirical correlations in the forms of equations and charts and typical values are collated from extensive literature review, and from the authors' database.

Effective Stress and Equilibrium Equation for Soil Mechanics

Effective Stress and Equilibrium Equation for Soil Mechanics
Title Effective Stress and Equilibrium Equation for Soil Mechanics PDF eBook
Author Longtan Shao
Publisher CRC Press
Pages 150
Release 2017-12-06
Genre Technology & Engineering
ISBN 1351607421

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The concept of effective stress and the effective stress equation is fundamental for establishing the theory of strength and the relationship of stress and strain in soil mechanics and poromechanics. However, up till now, the physical meaning of effective stress has not been explained clearly, and the theoretical basis of the effective stress equation has not been proposed. Researchers have not yet reached a common understanding of the feasibility of the concept of effective stress and effective stress equation for unsaturated soils. Effective Stress and Equilibrium Equation for Soil Mechanics discusses the definition of the soil skeleton at first and clarifies that the soil skeleton should include a fraction of pore water. When a free body of soil skeleton is taken to conduct internal force analysis, the stress on the surface of the free body has two parts: one is induced by pore fluid pressure that only includes normal stress; the other is produced by all the other external forces excluding pore fluid pressure. If the effective stress is defined as the soil skeleton stress due to all the external forces excluding pore fluid pressure, the effective stress equation can be easily obtained by the internal force equilibrium analysis. This equation reflects the relationship between the effective stress, total stress and pore fluid pressure, which does not change with the soil property. The effective stress equation of saturated soils and unsaturated soils is unified, i.e., o ̃=o ̃t –Seuw–(1–Se)ua. For multiphase porous medium, o ̃=o ̃t –u*,u*=Seiui(i=1,2,...,M). In this book, a theoretical formula of the coefficient of permeability for unsaturated soils is derived. The formula of the seepage force is modified based on the equilibrium differential equation of the pore water. The relationship between the effective stress and the shear strength and deformation of unsaturated soils is preliminarily verified. Finally, some possibly controversial problems are discussed to provide a better understanding of the role of the equilibrium equation and the concept of effective stress.