Buch, Englisch, Band 404, 460 Seiten, Format (B × H): 160 mm x 241 mm, Gewicht: 962 g
Integrating Mega Project Planning, Airfield Behavior, and Rail Transition Zones
Buch, Englisch, Band 404, 460 Seiten, Format (B × H): 160 mm x 241 mm, Gewicht: 962 g
Reihe: Lecture Notes in Civil Engineering
ISBN: 978-981-97-8220-8
Verlag: Springer Nature Singapore
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.
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Weitere Infos & Material
Chapter 1: BIO-MODIFICATION OF CONCRETE FOR PAVEMENTS.- Chapter 2: Finite Element Analysis on the Distribution of Stress through Layered Soils.- Chapter 3: Balanced Mix Design in Kansas.- Chapter 4: Economic and easy to use design of the thickness of subbases.- Chapter 5: Impact of Spatial Variability of Material Properties of Compacted Geomaterials on Acceptance.- Chapter 6: Laboratory Testing to Design an Asphalt Treated Permeable Base for the Federal Highway Administration’s Pavement Test Facility.- Chapter 7: INVESTIGATION OF RUT FORMATION IN ASPHALT CONCRETE PAVEMENT.- Chapter 8: Evaluating the effects of particle size distribution on thehydraulic capabilities of the granular subbase layers.- Chapter 9: GEOTECHNICAL AND GEOPHYSICAL CHARACTERIZATION OF DELHI METRO TUNNEL ALIGNMENT: SECTION BETWEEN NABI KARIM TO RK ASHRAM.- Chapter 10: Foam penetration behavior in EPB shield tunneling: Insights from model experiments. etc.