Soil Degradation-Consolidation Theory and Its Applications (eBook)
X, 243 Seiten
Springer Nature Singapore (Verlag)
978-981-97-7985-7 (ISBN)
This book focuses on skeleton-degradable soils, including three typical degradation processes of soil skeletons: soil particle breakage, chemical degradation, and biochemical degradation. Corresponding degradation models and constitutive models are proposed, and a degradation-consolidation theory is established. The theory overcomes the limitations of classical soil mechanics, such as the constant solid-phase mass assumption, and addresses the neglect of the effects of consolidation on degradation in environmental engineering. The theory provides key theoretical foundations and new analytical perspectives for understanding phenomena such as the degradation-consolidation processes in municipal solid waste landfills, the decomposition and exploitation of natural gas hydrates, and the behavior evolution of geomaterials under the influence of particle breakage.
This book offers detailed theoretical insights, rich experimental data, and advanced numerical and physical simulation methods, particularly in environmental hazards prevention and control in municipal solid waste landfills. Hence, it is suitable for researchers, practitioners, and graduate students engaged in soil constitutive relations, multi-field coupling problems, and related fields.
This book focuses on skeleton-degradable soils, including three typical degradation processes of soil skeletons: soil particle breakage, chemical degradation, and biochemical degradation. Corresponding degradation models and constitutive models are proposed, and a degradation-consolidation theory is established. The theory overcomes the limitations of classical soil mechanics, such as the constant solid-phase mass assumption, and addresses the neglect of the effects of consolidation on degradation in environmental engineering. The theory provides key theoretical foundations and new analytical perspectives for understanding phenomena such as the degradation-consolidation processes in municipal solid waste landfills, the decomposition and exploitation of natural gas hydrates, and the behavior evolution of geomaterials under the influence of particle breakage.This book offers detailed theoretical insights, rich experimental data, and advanced numerical and physical simulation methods, particularly in environmental hazards prevention and control in municipal solid waste landfills. Hence, it is suitable for researchers, practitioners, and graduate students engaged in soil constitutive relations, multi-field coupling problems, and related fields.
| Erscheint lt. Verlag | 15.11.2024 |
|---|---|
| Zusatzinfo | X, 243 p. 220 illus., 124 illus. in color. |
| Sprache | englisch |
| Themenwelt | Naturwissenschaften ► Biologie ► Ökologie / Naturschutz |
| Naturwissenschaften ► Geowissenschaften ► Geologie | |
| Technik ► Bauwesen | |
| Technik ► Umwelttechnik / Biotechnologie | |
| Weitere Fachgebiete ► Land- / Forstwirtschaft / Fischerei | |
| Schlagworte | Centrifugal Hypergravity and Interdisciplinary Experiments • constitutive model • Critical Landfill Gas Pressure • Crticial Water Level • Degradation-Consolidation Theory • Environmental Disaster Prevention and Control • Environmental geotechnics • field survey • Intrinsic Permeability • Landfill Gas Production • Landfill Settlement and Capacity • Large-Scale Bioreactor Experiment • Lecahte Production • Municipal Solid Waste Landfill • Natural gas hydrate • Numberical Modelling • Skeleton-Degradable Soil • Slope instability • Soil Mechanics • Stabilization Indicators |
| ISBN-10 | 981-97-7985-5 / 9819779855 |
| ISBN-13 | 978-981-97-7985-7 / 9789819779857 |
| Informationen gemäß Produktsicherheitsverordnung (GPSR) | |
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