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Practice of Constitutive Modelling for Saturated Soils (Paperback, 1st ed. 2020): Zhenyu Yin, Pierre-Yves Hicher, Yinfu Jin Practice of Constitutive Modelling for Saturated Soils (Paperback, 1st ed. 2020)
Zhenyu Yin, Pierre-Yves Hicher, Yinfu Jin
R2,998 Discovery Miles 29 980 Ships in 10 - 15 working days

This book describes the development of a constitutive modeling platform for soil testing, which is one of the key components in geomechanics and geotechnics. It discusses the fundamentals of the constitutive modeling of soils and illustrates the use of these models to simulate various laboratory tests. To help readers understand the fundamentals and modeling of soil behaviors, it first introduces the general stress-strain relationship of soils and the principles and modeling approaches of various laboratory tests, before examining the ideas and formulations of constitutive models of soils. Moving on to the application of constitutive models, it presents a modeling platform with a practical, simple interface, which includes various kinds of tests and constitutive models ranging from clay to sand, that is used for simulating most kinds of laboratory tests. The book is intended for undergraduate and graduate-level teaching in soil mechanics and geotechnical engineering and other related engineering specialties. Thanks to the inclusion of real-world applications, it is also of use to industry practitioners, opening the door to advanced courses on modeling within the industrial engineering and operations research fields.

Practice of Constitutive Modelling for Saturated Soils (Hardcover, 1st ed. 2020): Zhenyu Yin, Pierre-Yves Hicher, Yinfu Jin Practice of Constitutive Modelling for Saturated Soils (Hardcover, 1st ed. 2020)
Zhenyu Yin, Pierre-Yves Hicher, Yinfu Jin
R2,623 Discovery Miles 26 230 Ships in 12 - 17 working days

This book describes the development of a constitutive modeling platform for soil testing, which is one of the key components in geomechanics and geotechnics. It discusses the fundamentals of the constitutive modeling of soils and illustrates the use of these models to simulate various laboratory tests. To help readers understand the fundamentals and modeling of soil behaviors, it first introduces the general stress-strain relationship of soils and the principles and modeling approaches of various laboratory tests, before examining the ideas and formulations of constitutive models of soils. Moving on to the application of constitutive models, it presents a modeling platform with a practical, simple interface, which includes various kinds of tests and constitutive models ranging from clay to sand, that is used for simulating most kinds of laboratory tests. The book is intended for undergraduate and graduate-level teaching in soil mechanics and geotechnical engineering and other related engineering specialties. Thanks to the inclusion of real-world applications, it is also of use to industry practitioners, opening the door to advanced courses on modeling within the industrial engineering and operations research fields.

Practice of Optimisation Theory in Geotechnical Engineering (Hardcover, 1st ed. 2019): Zhenyu Yin, Yinfu Jin Practice of Optimisation Theory in Geotechnical Engineering (Hardcover, 1st ed. 2019)
Zhenyu Yin, Yinfu Jin
R4,549 Discovery Miles 45 490 Ships in 10 - 15 working days

This book presents the development of an optimization platform for geotechnical engineering, which is one of the key components in smart geotechnics. The book discusses the fundamentals of the optimization algorithm with constitutive models of soils. Helping readers easily understand the optimization algorithm applied in geotechnical engineering, this book first introduces the methodology of the optimization-based parameter identification, and then elaborates the principle of three newly developed efficient optimization algorithms, followed by the ideas of a variety of laboratory tests and formulations of constitutive models. Moving on to the application of optimization methods in geotechnical engineering, this book presents an optimization-based parameter identification platform with a practical and concise interface based on the above theories. The book is intended for undergraduate and graduate-level teaching in soil mechanics and geotechnical engineering and other related engineering specialties. It is also of use to industry practitioners, due to the inclusion of real-world applications, opening the door to advanced courses on both modeling and algorithm development within the industrial engineering and operations research fields.

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