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Physicochemical theory of effective ...
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Osipov, V.I.
Physicochemical theory of effective stress in soils[electronic resource] /
紀錄類型:
書目-語言資料,印刷品 : Monograph/item
杜威分類號:
624.15136
書名/作者:
Physicochemical theory of effective stress in soils/ by V.I. Osipov.
作者:
Osipov, V.I.
出版者:
Cham : : Springer International Publishing :, 2015.
面頁冊數:
x, 55 p. : : ill. (some col.), digital ;; 24 cm.
Contained By:
Springer eBooks
標題:
Soil mechanics.
標題:
Soil physics.
標題:
Earth Sciences.
標題:
Geotechnical Engineering & Applied Earth Sciences.
標題:
Theoretical and Applied Mechanics.
標題:
Physical Chemistry.
ISBN:
9783319206394
ISBN:
9783319206387
內容註:
Introduction -- 1. Stresses in soils -- Types of stresses -- External stresses -- Internal stresses -- 2. Terzaghi theory of effective stresses -- 3. Physicochemical theory of effective stresses -- Types of contacts in clays -- Number of contacts -- Area of contacts -- Effective contact stress in water-saturated soils -- Effective contact stress in unsaturated soils -- Actual total effective stress in soils -- Conclusion.
摘要、提要註:
This book presents a new theory of effective stresses in soils, which takes into account the internal stresses caused by the molecular, electrostatic, and structural mechanical forces. These forces exist in thin hydrate films of adsorbed water molecules at the contacts of structural elements, producing the so-called disjoining effect. They can be evaluated by incorporating theoretical achievements of molecular physics and colloidal chemistry. The novel theory described in this book considers not only external but also internal stresses and gives different results for effective forces compared with the Terzaghi theory widely applied in soil mechanics. The book provides equations for the actual effective stresses at the contacts of particles, thus improving the Terzaghi theory in physicochemical context.
電子資源:
http://dx.doi.org/10.1007/978-3-319-20639-4
Physicochemical theory of effective stress in soils[electronic resource] /
Osipov, V.I.
Physicochemical theory of effective stress in soils
[electronic resource] /by V.I. Osipov. - Cham :Springer International Publishing :2015. - x, 55 p. :ill. (some col.), digital ;24 cm. - SpringerBriefs in earth sciences,2191-5369. - SpringerBriefs in earth sciences..
Introduction -- 1. Stresses in soils -- Types of stresses -- External stresses -- Internal stresses -- 2. Terzaghi theory of effective stresses -- 3. Physicochemical theory of effective stresses -- Types of contacts in clays -- Number of contacts -- Area of contacts -- Effective contact stress in water-saturated soils -- Effective contact stress in unsaturated soils -- Actual total effective stress in soils -- Conclusion.
This book presents a new theory of effective stresses in soils, which takes into account the internal stresses caused by the molecular, electrostatic, and structural mechanical forces. These forces exist in thin hydrate films of adsorbed water molecules at the contacts of structural elements, producing the so-called disjoining effect. They can be evaluated by incorporating theoretical achievements of molecular physics and colloidal chemistry. The novel theory described in this book considers not only external but also internal stresses and gives different results for effective forces compared with the Terzaghi theory widely applied in soil mechanics. The book provides equations for the actual effective stresses at the contacts of particles, thus improving the Terzaghi theory in physicochemical context.
ISBN: 9783319206394
Standard No.: 10.1007/978-3-319-20639-4doiSubjects--Topical Terms:
338475
Soil mechanics.
LC Class. No.: TA710
Dewey Class. No.: 624.15136
Physicochemical theory of effective stress in soils[electronic resource] /
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This book presents a new theory of effective stresses in soils, which takes into account the internal stresses caused by the molecular, electrostatic, and structural mechanical forces. These forces exist in thin hydrate films of adsorbed water molecules at the contacts of structural elements, producing the so-called disjoining effect. They can be evaluated by incorporating theoretical achievements of molecular physics and colloidal chemistry. The novel theory described in this book considers not only external but also internal stresses and gives different results for effective forces compared with the Terzaghi theory widely applied in soil mechanics. The book provides equations for the actual effective stresses at the contacts of particles, thus improving the Terzaghi theory in physicochemical context.
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