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Manual of Geotechnical Laboratory Soil Testing

Manual of Geotechnical Laboratory Soil Testing

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This book provides a basic understanding of the geotechnical principles for determining the physical, index, and engineering properties of soil materials. It covers objectives, concepts, procedures, and interpretation of soil analytical data, with observation data sheets, analysis, results, and discussions.

\n Format: Hardback
\n Length: 374 pages
\n Publication date: 04 October 2021
\n Publisher: Taylor & Francis Ltd
\n


The following is the rephrased text in 130% to 150% more words and format it and arrange in paragraphs with html tags:

Provides comprehensive coverage of fundamental laboratory characterization of soils

Describes objectives, basic concepts, general understanding, and appreciation of the geotechnical principles for determining the physical, index, and engineering properties of soil materials.

Presents step-by-step procedures for various tests based on relevant standards.

Interprets soil analytical data and illustrates empirical relationships between various soil properties.

Includes observation data sheets, analysis, results, and discussions, applications of test results.

Soil characterization is a crucial process in civil engineering that involves the examination and analysis of soil properties to determine their suitability for various construction purposes. It involves a range of laboratory tests and field investigations to assess the physical, chemical, and biological characteristics of soil.

The objectives of soil characterization are to provide information on the soil's strength, stiffness, density, water content, permeability, and other relevant properties. This information is essential for designing and constructing buildings, roads, bridges, and other infrastructure projects.

There are several basic concepts and principles that govern the determination of soil properties. These include the principles of soil mechanics, which describe the behavior of soil under different loading conditions; the principles of soil chemistry, which describe the composition and properties of soil materials; and the principles of soil biology, which describe the interactions between soil organisms and their environment.

Soil characterization involves a range of laboratory tests and field investigations. These tests include the determination of soil density, water content, pH, and soil strength. Soil density is determined by weighing a sample of soil in air and water, while water content is determined by measuring the weight of the wet soil. pH is determined by using a pH meter, while soil strength is determined by conducting standard penetration tests, such as the cone penetration test (CPT) or the dynamic penetration test (DPT).

In addition to these tests, soil characterization may also involve the collection and analysis of soil samples for the determination of soil composition and properties. Soil composition is determined by analyzing the chemical and mineralogical properties of soil samples, while soil properties are determined by conducting physical and chemical tests on soil samples.

Soil characterization is an important step in the planning and design of construction projects. It provides information on the soil's properties and characteristics, which can be used to optimize the design of structures and foundations, select appropriate construction materials, and assess the stability and safety of structures.

In conclusion, soil characterization is a fundamental process in civil engineering that involves the examination and analysis of soil properties to determine their suitability for various construction purposes. It involves a range of laboratory tests and field investigations to assess the physical, chemical, and biological characteristics of soil. The objectives of soil characterization are to provide information on the soil's strength, stiffness, density, water content, permeability, and other relevant properties. By understanding the properties of soil, engineers can design and construct structures that are safe, stable, and sustainable.

\n Weight: 764g\n
Dimension: 160 x 242 x 34 (mm)\n
ISBN-13: 9781032060095\n \n

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