Cholachat Rujikiatkamjorn – författare
3 292 kr
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1 342 kr
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Written by an international group of experts, Ground Improvement Case Histories: Chemical, Electrokinetic, Thermal and Bioengineering Methods provides over 700 pages of case-histories collected from all over the world. Each case-history provides an overview of the specific technology followed by applications, and in some cases, comprehensive back analysis through numerical modelling is discussed. The book includes methods for employing bacterial and biological treatment, and native vegetation for stabilizing problematic soils. Specific case-histories included in the book are: Effect of Drainage and Grouting for the World Longest Seikan Undersea Tunnel Construction, Cement/lime Mixing Ground Improvement for Road Construction on Soft Ground, Use of Jet Grouting in Deep Excavations, and Stabilization of Reactive Sulphide Mine Tailings using Water Cover Technology.
Provides recent case histories using chemical and bio-engineering methods by world-renowned engineering experts Includes over 200 illustrations and 150 equations from relevant topics, including state-of-the-art chemical and bioengineering methods Presents comprehensive analysis methods using numerical modelling methods Case histories include the "Effect of Drainage and Grouting on the World's Longest Seikan Undersea Tunnel Construction" and "Cement/Lime Mixing Ground Improvement for Road Construction on Soft Ground"1 257 kr
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Written by a group of international contributors, Ground Improvement Case Histories: Embankments with Special Reference to Soil Consolidation and Other Physical Methods, employs the use of case-histories to illustrate and apply equations, numerical methods and technology to undertake even the most complicated ground improvement projects. In this book, each case-history provides an overview of the specific technology followed by field applications and in some cases comprehensive back-analysis through numerical modelling. Specific embankment case-histories with special reference to soil consolidation included are: Ballina Bypass (Australia), Tianjin Port (China), Second Bangkok International Airport (Thailand), Changi East reclamation (Singapore), Maizuru-Wakasa Expressway (Japan) and Colombo Airport Expressway, Sri Lanka. Other physical methods include performance of stone columns at Penny's Bay reclamation in Hong Kong and PCC piles for highway and high-speed railway construction in China, among others.
Provides a wealth of contributor-generated case histories from all over the world Includes an abundance of illustrations and worked out examples All inclusive discussion of preloading, vertical drains and vacuums applications Features case-histories regarding sand and gravel piles, stone columns and other Rigid Inclusions1 632 kr
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1 632 kr
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1 378 kr
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Written by an international group of contributors, Ground Improvement Case Histories: Compaction, Grouting and Geosynthetics provides over 700 pages of international case-histories. Each case-history provides an overview of the specific technology followed by applications, with some cases offering a comprehensive back-analysis through numerical modelling. Specific case-histories include: The Use of Alternative and Improved Construction Materials and Geosynthetics in Pavements, Case Histories of Embankments on Soft Soils and Stabilisation with Geosynthetics, Ground Improvement with Geotextile Reinforcements, Use of Geosynthetics to aid Construction over Soft Soils and Soil Improvement and Foundation Systems with Encased Columns and Reinforced Bearing Layers.
Comprehensive analysis methods using numerical modelling methods Features over 700 pages of contributor generated case-histories from all over the world Offers field data and clear observations based on the practical aspects of the construction procedures and treatment effectiveness1 701 kr
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1 326 kr
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3 305 kr
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3 569 kr
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Ballast plays a vital role in transmitting and distributing the train wheel loads to the underlying track substructure. The load-bearing capacity, safe train speed, and the levels of noise and vibration, as well as passenger comfort depend on the behaviour of ballast through particle interlocking and the corresponding deformation of this granular assembly. Attrition and breakage of ballast occur progressively under heavy and continual cyclic loading, causing track deterioration and rail misalignment affecting safety, while exacerbating the intensity of track maintenance. In the absence of realistic computational models, the track substructure is traditionally designed using mostly empirical approaches.
In this book, the authors present the detailed information on the strength, deformation, and degradation aspects of fresh and recycled ballast under monotonic, cyclic, and impact loading using innovative geotechnical testing devices. A constitutive model for ballast incorporating particle breakage is presented representing a more realistic stress–strain response. The mathematical formulations and numerical models are validated using controlled experimental simulations and fully instrumented field trials. Revised ballast gradation is described to provide greater track resiliency and extended longevity. The book also provides a detailed description of geosynthetics for substructure improvement considering track deterioration caused by particle degradation, fouling, and impeded drainage. New to this second edition are extensive discussions on subgrade soil stabilisation, causes and mechanisms of soil fluidisation (mud pumping) under cyclic loading, and preventive and remedial measures to alleviate undue instability of ballast tracks.
This book should prove most beneficial for final-year civil engineering students and for postgraduate teaching and learning. It is an ideal supplement for practising railway engineers and researchers engaged in the challenging tasks of future track design for heavier and faster trains.
3 569 kr
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Ballast plays a vital role in transmitting and distributing the train wheel loads to the underlying track substructure. The load-bearing capacity, safe train speed, and the levels of noise and vibration, as well as passenger comfort depend on the behaviour of ballast through particle interlocking and the corresponding deformation of this granular assembly. Attrition and breakage of ballast occur progressively under heavy and continual cyclic loading, causing track deterioration and rail misalignment affecting safety, while exacerbating the intensity of track maintenance. In the absence of realistic computational models, the track substructure is traditionally designed using mostly empirical approaches.
In this book, the authors present the detailed information on the strength, deformation, and degradation aspects of fresh and recycled ballast under monotonic, cyclic, and impact loading using innovative geotechnical testing devices. A constitutive model for ballast incorporating particle breakage is presented representing a more realistic stress–strain response. The mathematical formulations and numerical models are validated using controlled experimental simulations and fully instrumented field trials. Revised ballast gradation is described to provide greater track resiliency and extended longevity. The book also provides a detailed description of geosynthetics for substructure improvement considering track deterioration caused by particle degradation, fouling, and impeded drainage. New to this second edition are extensive discussions on subgrade soil stabilisation, causes and mechanisms of soil fluidisation (mud pumping) under cyclic loading, and preventive and remedial measures to alleviate undue instability of ballast tracks.
This book should prove most beneficial for final-year civil engineering students and for postgraduate teaching and learning. It is an ideal supplement for practising railway engineers and researchers engaged in the challenging tasks of future track design for heavier and faster trains.
3 094 kr
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2 252 kr
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2 619 kr
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As natural geologic materials become scarce, nations around the world are embracing a circular economy perspective to reduce their carbon footprint. This book provides a unique perspective on this shift by highlighting several methods of waste materials recycling for use in civil infrastructure construction and transportation geotechnics.
The authors explore innovative and cost-effective solutions to modern-day waste management problems through the use of granular waste materials from mining and mineral processing industries, power plants, steel manufacturing, rubber tyres, and demolished buildings in construction and soft ground stabilisation. This book contains a rich repository of experimental studies conducted on recycled materials and industry byproducts using static and dynamic geotechnical testing, 1:1 scale physical modelling through large-scale process simulation testing, and fully instrumented field monitoring. With fresh insights from international experts, this book will transform transportation infrastructure practices into a new paradigm.
This is a valuable resource for academics, practitioners, and postgraduate researchers in the fields of transportation geotechnics, ground improvement, and sustainable infrastructure engineering.
2 596 kr
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As natural geologic materials become scarce, nations around the world are embracing a circular economy perspective to reduce their carbon footprint. This book provides a unique perspective on this shift by highlighting several methods of waste materials recycling for use in civil infrastructure construction and transportation geotechnics.
The authors explore innovative and cost-effective solutions to modern-day waste management problems through the use of granular waste materials from mining and mineral processing industries, power plants, steel manufacturing, rubber tyres, and demolished buildings in construction and soft ground stabilisation. This book contains a rich repository of experimental studies conducted on recycled materials and industry byproducts using static and dynamic geotechnical testing, 1:1 scale physical modelling through large-scale process simulation testing, and fully instrumented field monitoring. With fresh insights from international experts, this book will transform transportation infrastructure practices into a new paradigm.
This is a valuable resource for academics, practitioners, and postgraduate researchers in the fields of transportation geotechnics, ground improvement, and sustainable infrastructure engineering.
1 314 kr
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1 144 kr
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Advances in Geomechanics and Geotechnical Engineering
Proceedings of the 2024 AGS Sydney Annual Symposium
2 393 kr
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3 046 kr
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Geotechnical Lessons Learnt—Building and Transport Infrastructure Projects
Proceedings of the 2022 AGS Sydney Annual Symposium
2 176 kr
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2 741 kr
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This book presents the select proceedings of the 26th Annual Symposium organized by the Sydney Chapter of the Australian Geomechanics Society (AGS). The symposium brought together key stakeholders of the Australian geological and geotechnical community. This book showcases state-of-the-art practices, new research findings, and case histories that demonstrate reliability-based designs and assessments. The papers on reliability-based approaches cover various aspects of site investigations, interpretations, designs, specialized testing, and technologies. This book presents recent innovations, trends, and concerns, as well as practical challenges encountered, and solutions adopted in the field. This volume will be a useful guide to those in academia and industry working in the fields of geotechnical engineering.
2 176 kr
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Proceedings of the 5th International Conference on Transportation Geotechnics (ICTG) 2024, Volume 1
Sensor Technologies, Data Analytics and Climatic Effects
2 718 kr
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3 381 kr
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This book presents select proceedings of the 5th International Conference on Transportation Geotechnics (ICTG 2024). It includes papers on ground improvement methodologies, dynamics of transportation infrastructure, and geotechnical intricacies of mega projects. It covers topics such as underground transportation systems and heights of airfields and pavements. This book discusses diverse thematic landscapes, offering profound explorations into sensor technologies, data analytics, and machine learning applications. The publication highlights advanced practices, latest developments, and efforts to foster collaboration, innovation, and sustainable solutions for transportation infrastructure worldwide. The book can be a valuable reference for researchers and professionals interested in transportation geotechnics.
Proceedings of the 5th International Conference on Transportation Geotechnics (ICTG) 2024, Volume 1
Sensor Technologies, Data Analytics and Climatic Effects
2 718 kr
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Proceedings of the 5th International Conference on Transportation Geotechnics (ICTG) 2024, Volume 2
Engineering Resilience: Geotechnical-Seismic Vulnerability and Slope Stability
3 260 kr
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3 809 kr
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This book presents select proceedings of the 5th International Conference on Transportation Geotechnics (ICTG 2024). It includes papers on ground improvement methodologies, dynamics of transportation infrastructure, and geotechnical intricacies of mega projects. It covers topics such as underground transportation systems and heights of airfields and pavements. This book discusses diverse thematic landscapes, offering profound explorations into sensor technologies, data analytics, and machine learning applications. The publication highlights advanced practices, latest developments, and efforts to foster collaboration, innovation, and sustainable solutions for transportation infrastructure worldwide. The book can be a valuable reference for researchers and professionals interested in transportation geotechnics.
Proceedings of the 5th International Conference on Transportation Geotechnics (ICTG) 2024, Volume 2
Engineering Resilience: Geotechnical-Seismic Vulnerability and Slope Stability
3 260 kr
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Proceedings of the 5th International Conference on Transportation Geotechnics (ICTG) 2024, Volume 3
Integrating Mega Project Planning, Airfield Behavior, and Rail Transition Zones
3 260 kr
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3 809 kr
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This book presents select proceedings of the 5th International Conference on Transportation Geotechnics (ICTG 2024). It includes papers on ground improvement methodologies, dynamics of transportation infrastructure, and geotechnical intricacies of mega projects. It covers topics such as underground transportation systems and heights of airfields and pavements. This book discusses diverse thematic landscapes, offering profound explorations into sensor technologies, data analytics, and machine learning applications. The publication highlights advanced practices, latest developments, and efforts to foster collaboration, innovation, and sustainable solutions for transportation infrastructure worldwide. The book can be a valuable reference for researchers and professionals interested in transportation geotechnics.