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Geomechanics in Soil, Rock, and Environmental Engineering

  • Format
  • Bog, hardback
  • Engelsk

Beskrivelse

Utilizes both Computer- and Hand-Based Calculations

Modern practice in geomechanics is becoming increasingly reliant on computer-based software, much of which can be obtained through the Internet. In Geomechanics in Soil, Rock, and Environmental Engineering the application of these numerical techniques is examined not only for soil mechanics, but also for rock mechanics and environmental applications.

For Use in Complex Analysis

It deals with the modern analysis of shallow foundations, deep foundations, retaining structures, and excavation and tunneling. In recent years, the environment has become more and more important, and so it also deals with municipal and mining waste and solutions for the disposal and containment of the waste. Many fresh solutions to problems are presented to enable more accurate and advanced designs to be carried out.

A Practical Reference for Industry Professionals, This Illuminating Book:

Offers a broad range of coverage in soil mechanics, rock mechanics, and environmental engineering

Incorporates the author‘s more than 40 years of academic and practical design experience

Describes the latest applications that have emerged in the last ten years

Supplies references readily available online for futher research

Geomechanics in Soil, Rock, and Environmental Engineering should appeal to students in their final undergraduate course in geomechanics or master‘s students, and should also serve as a useful reference to practitioners in the field of geomechanics, reflecting the author‘s background in both industry and academia.

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Detaljer
  • SprogEngelsk
  • Sidetal564
  • Udgivelsesdato27-07-2017
  • ISBN139781138430204
  • Forlag Crc Press
  • FormatHardback
Størrelse og vægt
  • Vægt453 g
  • coffee cup img
    10 cm
    book img
    17,8 cm
    25,4 cm

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    Excavation Foundations Numerical analysis Rock slopes Failure Surface Pressure Remediation Permeability Rock mechanics Numerical integration Geophysical methods Finite element analysis Finite element methods Stress analysis Soil improvement Plasticity theory Finite Bearing capacity Numerical methods Pore Landfills Shear Pore pressure Load testing Slope stability Underground excavation Soft Soils Finite Difference Methods Resistivity Soil properties Effective Stress Analysis Geomechanics Stone Columns Settlement Fourier transforms Layer Strength Shallow foundations Measurement techniques Site Investigation Fourier coefficients Sheet Environmental Geomechanics Environmental Geotechnics Driven piles Moisture content In situ testing Anchored Walls Anchored Sheet Pile Wall Base Heave for Cuts in Clay Basic Rock Mechanics Consolidation Tests cold climates Column-Supported Embankments Consolidation Analysis Dilatometers Classification of Rocks Cross-Hole Techniques Dynamic Pile Testing Cam Clay Type Models Cone Penetrometers Elastic–Perfectly Plastic Models Controlled Modulus Columns Excess Pore Pressures Earth Pressure Calculation Deep Soil Mixing Finite Layer Finite Layer Methods Engineering Properties of Rocks Clay Liners Dynamic Compaction Compacted Clay Liners field tests Failure Criterion for Rock Failure Surface Finite Difference Solutions Consolidation Problems Cone Data Forces on Braced Excavations Foundations on Rock Finite Layer Method Ground Settlement Direct Shear Tests laterally loaded piles Lateral Resistance of Piles Magnetic Surveying Finite Element Solutions Finite Layer Techniques Flexible Membrane Liners Finite Element Mesh Mohr’s Circles Ground Probing Radar Pile Shaft Piles in Rock Pile Test Procedures Geosynthetic Clay Liners Numerical approaches Piled Raft Piled Rafts Pile Load Tests Reinforced Earth Pile Driving Equipment Pile Groups Planes of Weakness Retaining Structures Pressuremeters Seismic Borehole Techniques Slope Stabilisation Techniques Stress Path Rock Masses SPT Blow Count Surcharging seismic effects Standard Penetration Test Steady State Seepage Slope Stabilization Techniques Soil Models Jet Grouting Three-Dimensional Problems Stability Charts Total Head undrained Vibro-Replacement Single Piles Wick Drains Soil Tests Liquefaction Potential Undrained Analysis Undrained Shear Strength Lower-Bound Solutions John C. Small Surface Loads Vane Shear Test Wedge Analysis Non-Displacement Piles mining waste Piled Foundations Raft Foundations Reactive Soils Slurry-Filled Trenches Rock Coring Upper Bound Solutions Pile Head Pile integrity tests Sheet Pile Walls Slip Circle Analysis Rock Mass Seismic Devices Vibration through Rock Work Hardening Models Vibroflotation
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