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Books on the topic 'Geotechnical Site Investigation'

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1

Peninsula Corridor Joint Powers Board. and Dames & Moore., eds. Final report, geotechnical site investigation: CalTrain S.F. downtown station relocation EIS/EIR project. [San Carlos, Calif.]: Peninsula Corridor Joint Powers Board, 1995.

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2

Killey, Myrna M. Geotechnical site investigation for an advanced photon source at Argonne National Laboratory, Illinois. Champaign, IL: Illinois State Geological Survey, 1994.

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3

Fla.) Geotechnical Frontiers (2017 Orlando. Geotechnical Frontiers 2017: Transportation facilities, structures, and site investigation : selected papers from sessions of Geotechnical Frontiers 2017, Orlando, Florida, USA, 12-15 March 2017. Edited by Brandon Thomas L. editor, Valentine Richard J. editor, and American Society of Civil Engineers. Geo-Institute. Reston, VA: American Society of Civil Engineers, 2017.

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4

Georgakis, Christos T., Yozo Fuino, Siegfried Hopf, Klaus H. Ostenfeld, and S. Eilif Svensson. Investigation of the Chirajara Bridge Collapse. Zurich, Switzerland: International Association for Bridge and Structural Engineering (IABSE), 2022. http://dx.doi.org/10.2749/cs003.

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<p>On January 15, 2018 at 11:49, the west pylon of the cable-stayed Chirajara Bridge collapsed during construction of the bridge girder. The collapse led to the total destruction of the pylon, together with the erected span of the bridge girder. Authorities reported nine fatalities resulting from the collapse.</p> <p>In this case study, the findings of the detailed investigation into the failure mechanism of the bridge are reported. In addition, selected drawings used for construction, geotechnical aspects, and deficiencies in the bridge design are presented, together with observations made during site visits and interviews with relevant parties.</p>
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5

Lovell, Parish. Geotechnical investigations report of the piping failure of Anita Dam: First phase of additional investigations (site inspection, test pitting, and laboratory testing). [Place of publication not identified: publisher not identified], 1997.

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6

1949-, Bennett M. J., and Geological Survey (U.S.), eds. Subsurface geotechnical investigations near sites of ground deformation caused by the January 17, 1994, Northridge, California, earthquake. Menlo Park, Calif: U.S. Dept. of the Interior, U.S. Geological Survey, 1998.

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7

1949-, Bennett M. J., and Geological Survey (U.S.), eds. Subsurface geotechnical investigations near sites of ground deformation caused by the January 17, 1994, Northridge, California, earthquake. Menlo Park, Calif: U.S. Dept. of the Interior, U.S. Geological Survey, 1998.

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8

A Short Course in Geotechnical Site Investigation. Thomas Telford Services Ltd, 2003.

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9

Chapman, Tim, Hilary D. Skinner, Michael Brown, and John Burland, eds. ICE Manual of Geotechnical Engineering Volume 1: Geotechnical Engineering Principles, Problematic Soils and Site Investigation. Thomas Telford Ltd, 2012. http://dx.doi.org/10.1680/moge.57074.

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10

Kibria, Golam, Sahadat Hossain, and Sadik Khan. Site Investigation Using Resistivity Imaging. Taylor & Francis Group, 2018.

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11

Kibria, Golam, Sahadat Hossain, and Sadik Khan. Site Investigation Using Resistivity Imaging. Taylor & Francis Group, 2018.

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12

Site Investigation Using Resistivity Imaging. Taylor & Francis Group, 2018.

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13

Kibria, Golam, Sahadat Hossain, and Sadik Khan. Site Investigation Using Resistivity Imaging. Taylor & Francis Group, 2018.

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14

Knox, Kenneth. Applications of the Electronic Cone Penetration Test for the Geotechnical Site Investigation of Florida Soils. Dissertation Discovery Company, 2019.

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15

Knox, Kenneth. Applications of the Electronic Cone Penetration Test for the Geotechnical Site Investigation of Florida Soils. Dissertation Discovery Company, 2019.

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16

Knox, Kenneth James. Applications of the electronic cone penetration test for the geotechnical site investigation of Florida soils. 1989.

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17

Corp, Asian Community Development. Proposal for subsurface investigation, geotechnical engineering services, and environmental site assessment, chinatown parcel b, Boston, ma. 1990.

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18

Wear of Rock Cutting Tools: Implications for the Site Investigation of Rock Dredging Projects. CRC Press LLC, 2017.

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19

Verhoef, P. N. W. Wear of Rock Cutting Tools: Implications for the Site Investigation of Rock Dredging Projects. CRC Press LLC, 2017.

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20

Miller, Engineering Inc. Proposal for subsurface investigation, geotechnical engineering services, and environmental site assessment, chinatown parcels a, b, and c, Boston, ma. 1989.

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21

Hawley, Mark, and John Cunning, eds. Guidelines for Mine Waste Dump and Stockpile Design. CSIRO Publishing, 2017. http://dx.doi.org/10.1071/9781486303519.

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Guidelines for Mine Waste Dump and Stockpile Design is a comprehensive, practical guide to the investigation, design, operation and monitoring of mine waste dumps, dragline spoils and major stockpiles associated with large open pit mines. These facilities are some of the largest man-made structures on Earth, and while most have performed very well, there are cases where instabilities have occurred with severe consequences, including loss of life and extensive environmental and economic damage. Developed and written by industry experts with extensive knowledge and experience, this book is an initiative of the Large Open Pit (LOP) Project. It comprises 16 chapters that follow the life cycle of a mine waste dump, dragline spoil or stockpile from site selection to closure and reclamation. It describes the investigation and design process, introduces a comprehensive stability rating and hazard classification system, provides guidance on acceptability criteria, and sets out the key elements of stability and runout analysis. Chapters on site and material characterisation, surface water and groundwater characterisation and management, risk assessment, operations and monitoring, management of ARD, emerging technologies and closure are included. A chapter is also dedicated to the analysis and design of dragline spoils. Guidelines for Mine Waste Dump and Stockpile Design summarises the current state of practice and provides insight and guidance to mine operators, geotechnical engineers, mining engineers, hydrogeologists, geologists and other individuals that are responsible at the mine site level for ensuring the stability and performance of these structures. Readership includes mining engineers, geotechnical engineers, civil engineers, engineering geologists, hydrogeologists, environmental scientists, and other professionals involved in the site selection, investigation, design, permitting, construction, operation, monitoring, closure and reclamation of mine waste dumps and stockpiles.
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22

Patel, Anjan. Geotechnical Investigations and Improvement of Ground Conditions. Elsevier Science & Technology, 2019.

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23

Geotechnical Investigations and Improvement of Ground Conditions. Woodhead Publishing, 2019.

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24

Thomas, S. Geotechnical Investigation of UK Test Sites for the Foundations of Offshore Structures. Stationery Office Books, 1990.

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25

Subsurface geotechnical investigations near sites of ground deformation caused by the January 17, 1994, Northridge, California, earthquake. Menlo Park, Calif: U.S. Dept. of the Interior, U.S. Geological Survey, 1998.

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26

Read, John, and Peter Stacey. Guidelines for Open Pit Slope Design. CSIRO Publishing, 2009. http://dx.doi.org/10.1071/9780643101104.

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Guidelines for Open Pit Slope Design is a comprehensive account of the open pit slope design process. Created as an outcome of the Large Open Pit (LOP) project, an international research and technology transfer project on rock slope stability in open pit mines, this book provides an up-to-date compendium of knowledge of the slope design processes that should be followed and the tools that are available to aid slope design practitioners. This book links innovative mining geomechanics research into the strength of closely jointed rock masses with the most recent advances in numerical modelling, creating more effective ways for predicting rock slope stability and reliability in open pit mines. It sets out the key elements of slope design, the required levels of effort and the acceptance criteria that are needed to satisfy best practice with respect to pit slope investigation, design, implementation and performance monitoring. Guidelines for Open Pit Slope Design comprises 14 chapters that directly follow the life of mine sequence from project commencement through to closure. It includes: information on gathering all of the field data that is required to create a 3D model of the geotechnical conditions at a mine site; how data is collated and used to design the walls of the open pit; how the design is implemented; up-to-date procedures for wall control and performance assessment, including limits blasting, scaling, slope support and slope monitoring; and how formal risk management procedures can be applied to each stage of the process. This book will assist in meeting stakeholder requirements for pit slopes that are stable, in regards to safety, ore recovery and financial return, for the required life of the mine.
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27

Society for Underwater Technology Staff. Offshore Site Investigation and Geotechnics : Smarter Solutions for Future Offshore Developments: Proceedings of the 8th International Conference, 12-14 September 2017, Royal Geographical Society, London, UK. Society for Underwater Technology, 2017.

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28

Society for Underwater Technology Staff. Offshore Site Investigation and Geotechnics : Smarter Solutions for Future Offshore Developments: Proceedings of the 8th International Conference, 12-14 September 2017, Royal Geographical Society, London, UK. Society for Underwater Technology, 2017.

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