Ground Improvement By Deep Vibratory Methods 1st Edition by Klaus Kirsch, Fabian Kirsch – Ebook PDF Instant Download/Delivery: 0415550157, 9780415550154
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Product details:
ISBN 10: 0415550157
ISBN 13: 9780415550154
Author: Klaus Kirsch, Fabian Kirsch
Ground Improvement By Deep Vibratory Methods 1st Table of contents:
Chapter 1: Introduction to Ground Improvement Techniques
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Importance of Ground Improvement in Geotechnical Engineering
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Overview of Soil Improvement Methods
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Classification of Ground Improvement Techniques
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The Role of Deep Vibratory Methods in Modern Engineering
Chapter 2: Fundamentals of Deep Vibratory Methods
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Principles of Vibratory Ground Improvement
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Vibratory Equipment and Tools Used in the Process
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Basic Mechanisms of Vibratory Soil Compaction
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Theoretical Background: Vibrations and Soil Response
Chapter 3: Types of Deep Vibratory Methods
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Vibrocompaction
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Vibro-Displacement and Vibro-Replacement
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Vibration with Drilling (Vibroflotation)
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The Use of Vibratory Probes and Drilling Equipment
Chapter 4: Design and Selection of Vibratory Ground Improvement Techniques
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Site Investigation and Soil Testing
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Criteria for Selecting the Right Vibratory Method
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Design Parameters and Calculation Methods
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Impact of Soil Properties on Improvement Outcomes
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Depth and Spacing Considerations for Vibro Methods
Chapter 5: Vibrocompaction: Mechanisms and Applications
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Process of Vibrocompaction
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Applications of Vibrocompaction in Dense Sands and Granular Soils
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Case Studies and Practical Examples
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Benefits and Limitations of Vibrocompaction
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Environmental Considerations and Effects
Chapter 6: Vibro-Replacement: Methods and Use
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Explanation of Vibro-Replacement Process
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Use in Granular Soils and Cohesive Soils
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Design of Gravel or Sand Columns
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Case Histories: Successful Applications of Vibro-Replacement
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Performance and Monitoring of Vibro-Replacement
Chapter 7: Vibroflotation and its Applications
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Principles and Techniques of Vibroflotation
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Mechanism of Vibroflotation in Improving Soil Density
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Case Studies of Vibroflotation in Soft and Saturated Soils
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Enhancing Liquefaction Resistance with Vibroflotation
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Limitations and Precautions
Chapter 8: Equipment Used in Deep Vibratory Methods
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Overview of Vibratory Probes and Vibro-Compaction Equipment
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Selection of Vibro-Equipment for Specific Site Conditions
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Maintenance and Calibration of Vibratory Equipment
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Technological Advances in Vibro-Equipment Design
Chapter 9: Applications of Deep Vibratory Methods in Construction
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Ground Improvement for Foundations
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Enhancing Soil for Dams and Embankments
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Soil Treatment for Roads and Pavement Layers
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Mitigation of Soil Settlement in Building Construction
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Seismic and Earthquake-Resistant Soil Modification
Chapter 10: Environmental and Economic Considerations
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Environmental Impacts of Vibratory Ground Improvement
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Noise, Vibration, and Soil Compaction Effects
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Regulatory Requirements and Standards
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Cost-Benefit Analysis of Using Vibratory Methods
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Sustainability and Energy Consumption in Ground Improvement
Chapter 11: Monitoring, Quality Control, and Performance Evaluation
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Monitoring Techniques for Deep Vibratory Ground Improvement
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Evaluating the Success of Ground Improvement Projects
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Post-Construction Settlement Monitoring and Long-Term Performance
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Methods for Quality Assurance and Control in Vibro Treatments
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Case Studies on Monitoring Vibro-Treated Sites
Chapter 12: Future Trends and Innovations in Ground Improvement
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Advances in Vibratory Technology
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Future Applications and Emerging Techniques
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Automation and Smart Technologies in Ground Improvement
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Sustainable Ground Improvement Practices
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Role of Deep Vibratory Methods in Geotechnical Innovation
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Tags: Klaus Kirsch, Fabian Kirsch, Deep Vibratory


