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Deep and Extra Deep Diaphragm Walls in Shanghai – Increasing Demand for Infrastructure in Megacities Drives the Requirement of Increasing Depth for Diaphragm WallsBy Wu Jie Mei, Li Yao Liang, Franz-Werner Gerressen, Arthur Bi
Diaphragm walls (D-walls) are known as underground structural elements commonly used for retention systems and permanent foundation elements. In addition, they are also quite often used as deep ground
Jan 1, 2018
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An Explosive Waterproofing Of A Riverbank - A Difficult Waterproofing Problem Solved By The Unique And Controversial Combination Of A Mining Technique (Blasting) And A Soil Improvement Technique (Jet-Grouting) - The ProblemBy M. Zanotto
[ ] A period of heavy rains caused the river Adda to flood parts of the Valtellina, one of the Alpine valleys of Northern Italy. The exceptionally high waters put under considerable strain the whole
Jan 1, 1992
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Lateral Dynamic Response Of Single Inclined PilesBy Amalia Giannakou
This paper utilises 3-D finite-element modeling to study the static and dynamic lateral harmonic response of inclined piles, in a homogenous and a non-homogenous soil, modeled as a linear hysteretic m
Jan 1, 2006
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Dynamic Horizontal Load Tests On Steel Pipe Piles Having Different Sizes In The Same Construction Site And Their AnalysesBy Eiji Kojima
In this research, dynamic and static load tests were performed on permanent foundation piles which had a pile length of 30 m, 800 mm in outer diameter and 15 mm in wall thickness. In this site the dyn
Jan 1, 2006
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Bending Strength Of Threaded Micropile ConnectionsBy Steven R. Musselman
The bending strength and flexural stiffness of a micropile at its threaded connection is less than its intact strength and may fail due to thread slippage or by fracture through the pin (reduced cross
Jan 1, 2007
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Advantages And Limitation Of Integrity Tests For Large Diameter Bored Piles In Bangkok SubsoilBy Narong Thasnanipan
In Bangkok due to the prevailing condition of subsoil (existence of considerably weak stratum at top part) deep-seated large diameter bored piles of over 50 m depth with 0.8 -1.8m in diameter have bee
Jan 1, 2004
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Anchoring Tall Buildings In Lower ManhattanBy Andrew Pontecorvo
The design of foundations for the tall buildings of lower Manhattan rely on the use of high capacity, rock anchors to resist overturning forces generated by lateral loads from wind, earth, water and,
Jan 1, 2011
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Arbitration - The Tender TrapBy James Green
It has often been said that the best contracts written are by people who are suspicious of each other. The Spanish philosopher, Ortega y Gasset, said: "Every contract is an Act of Distrust." T
Jan 1, 1987
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Deep Compaction Of Saturated Loess By Means Of Sand-Gravel Piles ? SynopsisBy Z. G. Lin
In Xian, China, compaction by means of soil (or lime-soil) piles is one of the effective methods widely used for densifying loess and eliminating its collapsibility. However, as a result of groundwate
Jan 1, 2010
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Real Time Monitoring the Historic Old South Church, Boston, MassachusettsBy Pierre Gouvin, Michael Oakland
"This paper covers the rapid response methods used to monitor the emergency response to damage to an historic structure. An architectural gem, the latest incarnation of the old south Church was comple
Jan 1, 2017
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Support Of Structures In Expansive Shale Using Recycled Plastic PilesBy Lance A. Roberts
Expansive soil formations can be found throughout the United States. When subjected to wetting, these formations have the potential to swell and exert large uplift forces on buildings and foundations.
Jan 1, 2010
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The Historical Evolution Of Piling And Deep Foundations And Prospects For The Future.By W. G. K. Fleming
The general history of piling is traced up to the present time with regard to the evolution of methods and materials. The processes have been strongly influenced by developments in basic equipment and
Jan 1, 1999
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Harmonization and Status of Geotechnical Standards in EuropeBy Trevor L. L. Orr
"AbstractThe background to the harmonization of geotechnical standards that has taken place in recent years in Europe has been the move to more economic and political integration following World War I
Jan 1, 2014
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Issues In The Performance-Based Seismic Evaluation Of Sheet Pile Quay WallsBy Dimitris Pachakis
In this paper, the authors give a brief overview of the current practice guidelines and tools for the seismic design of sheet pile quay walls, emphasizing how the design guidelines are lacking when th
Jan 1, 2011
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Capacity Of Slender Steel PilesBy J. Wennerstrand
Slender steel piles have found an increased use in Sweden in resent years. These piles are often driven throw soft normally consolidated clay to refusal in till or at the rock surface. In contrast to
Jan 1, 1989
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Application Of PCC Piles On Soft Ground Improvement Of ExpresswaysBy Hanlong Liu
The construction process and load-bearing behaviors of Cast-in-place Concrete Thin-wall Pipe Piles are analyzed based on its application on Yan-Tong Expressway project. The low strain test, static loa
Jan 1, 2006
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Quality Assurance Of Augercast Piles With Computerized Monitoring - SummaryBy Bill Starke
The acceptance of AugerCast piles in Canada has been limited. Many engineers are apprehensive about the quality of the piles produced by this method. However, advances in the sensing instruments and c
Jan 1, 1997
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Design Of The Foundation Of Zhu Jiang Fanying High-Rise Building Complex ? SynopsisBy A. F. Deng
A general description of the project, mainly the pier foundation design of the ZHU JIANG FANYING is presented in the paper. The major contents include the foundation scheme, the evaluation of bed-rock
Jan 1, 2010
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Case History: Multiple Axial Statnamic Tests On A Drilled Shaft Embedded In ShaleBy Paul J. Axtell
Two new railroad bridges in Kansas City, Missouri are founded on drilled shafts embedded into the soil and underlying shale. The uncertainty arising from the non-homogeneous, anisotropic nature of mo
Jan 1, 2006
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A Comparison Of Static And Statnamic Load Tests In Sand: A Case Study Of The Bayou Chico Bridge In Pensacola, Florida ? SummaryBy Michael D. Justason
This paper details the static and Statnamic load testing on a 600 mm square pre-stressed concrete pile. The pile was located at Pier 15 on the 20 million-dollar Bayou Chico Bridge Project in Pensacola
Jan 1, 1997