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Current Practice For Augered Cast-In-Place (ACIP) And Drilled Displacement (DD) Pile Quality ControlBy Rudolph P. Frizzi
Structures supported on ACIP and DD piles perform successfully when quality control is maintained from the initial site subsurface investigation through pile design, bidding, and construction. The fou
Jan 1, 2005
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Metro Sports Facility – A Ground Improvement Case StudyBy I. D. McPherson, Dominic P. Mahoney
The Metro Sports Facility is currently under development in Christchurch, New Zealand and is a key Anchor Project in the city’s post-earth quake recovery. When completed it will be largest indoor spor
Nov 1, 2022
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Steel H-Piles For A 11.7-Mile Long Rail Rapid Transit ProjectBy Jeongbok Seo
The Dulles Corridor Metrorail Project (DCMP) involves the design and construction of a 23.1-mile extension of the Washington Metropolitan Area Transit Authority (WMATA) rail system. The initial 11.7-m
Jan 1, 2010
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Deep Foundation Support for the Iconic New York WheelBy Satyajit Vaidya, Rudolph Frizzi, Quadri Owokoniran
"This paper presents a case history in the design and construction of high-capacity drilled shafts for the iconic New York Wheel presently being constructed along the St. George area waterfront in nor
Jan 1, 2016
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Installation And Testing Of 260 Hollow Core Bar MicropilesBy Jesús E. Gómez
A total of 260 micropiles were installed as part of a retrofit effort for two existing bridges. The micropiles consisted of hollow core bars installed under limited headroom conditions. Of the total n
Jan 1, 2007
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Monotonic And Cyclic Lateral Full-Scale Testing Of Reinforced Helical Pulldown MicropilesBy M. Meckkey El Sharnouby
In this paper, the results of full-scale field testing of reinforced helical pulldown micropiles (RG-HSP) installed in clayey till soils and resting on sandy soils are presented. Piles were tested und
Jan 1, 2011
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Remedial Method for Collapse Soil Foundation of Mosul DamBy Arash Khosravifar, Ali N. Ibrahim
"Large areas of Iraq are covered with collapsible soils namely gypsiferous soil which is often used as the foundation soil for structures. In particular, the Mosul Dam foundation is comprised of high
Jan 1, 2017
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Cooling Water Intake Shafts for the Oak Creek ExpansionBy Edward Jacobsen, Patrick J. Lydon
"The ongoing expansion of the Oak Creek Power Plant in Oak Creek, Wisc., includes a tunnel bored in rock that connects to four vertical intake shafts approximately 1.5 miles (2.4 km) offshore in Lake
Jan 1, 2008
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Numerical Study On Behavior Of Unreinforced And Reinforced Disconnected Piled Raft FoundationBy P. Seethalakshmi, Yatakuri Yaswanth Naidu
The use of a single pile, group of piles with pile cap, piled raft foundation system, etc., are prevalent in transferring the superstructure load from the soft soil layers to the firm underground laye
Sep 1, 2022
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Framework for Risk-Based Electric System Deep Foundation DesignBy Steve Davidow, Ashely E. Evans, Peter M. Kandaris
"Annually thousands of deep foundations are constructed across North America supporting high voltage transmission line structures. However, a recent state of the practice survey by the Deep Foundation
Jan 1, 2017
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Behavior Of Piled Raft Foundation Systems Under A Combined Set Of LoadingsBy Renato P. Cunha
The paper explores a parametric analysis of a four-pile group in contact (hence piled raft) and without contact (hence standard pile group) with the superficial soil layer, under a combined set of loa
Jan 1, 2006
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Augered Pile World Record Depth within a Soil Mix BasementBy Andres M. Baquerizo, Jeremiah J. Filjones, Nicholas Feldt
The Estates at Acqualina located in Sunny Isles Beach, FL, is comprised of two, ocean-front, 50-story, luxury towers with podiums and villas. With city regulations now requesting that above-grade floo
Jan 1, 2019
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Soil Fatigue Analysis for Pile Driving Simulations Using an Impact HammerBy Peter Middendorp, David J. Tara, Gerald E. Verbeek, Jan Fischer
"For pile driving simulation the model used must be accurate for the entire process, i.e. from the start of pile driving until the pile has reached its target depth. Of the various model components (h
Jan 1, 2017
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Aseismic and Anti-Tsunami Upgrades of Existing Coastal Levees and Seawalls in High Risk RegionsBy Takefumi Takuma, Hiroyuki Nishimura, Shigeru Kambe
"Japan’s Great Tohoku Earthquake and the immediately following tsunami of March 11, 2011 killed more than fifteen thousand people and destroyed numerous buildings and infrastructures in the northeaste
Jan 1, 2017
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Utilizing Real-Time Data and Statistical Analysis for Wet Soil Mixing: A Case HistoryBy Sunil Arora, Lisheng Shao, Chris Conkle
"The East Garden Grove - Wintersburg Channel located in Orange County, California, required upgrades along the levees to mitigate potential liquefaction and lateral spreading hazards. The Orange Count
Jan 1, 2015
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Making Foundation Design Courses More Engaging and Effective for StudentsBy Evangelia Ieronymaki
Civil engineering education relies on traditional methods of teaching, comprising mostly of deductive instruction by presenting the theory, followed by applications. This paper presents an alternative
Jan 1, 2019
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Estimation Of Wind Turbine Foundation Rotational Stiffness Based On Fully Non-Linear Dynamic AnalysisBy Yazn Khasawneh Ph. D. P. E., Will Tjaden, Spencer E. Ness P. E., Mohammed Nasim Ph. D. P. E.
Wind turbine components undergo many loading cycles during their operational life. Additionally, wind turbines may undergo extreme loading conditions from natural hazards, mechanical failures, or emer
Oct 1, 2022
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Design and In-Construction Geologic Characterization of Micropiles to Support a Historic Transmission Line Upgrade in the Steep Talus and Basalt Slopes of the Columbia River GorgeBy Brian J. Olson, Kevin Haiar
Originally constructed between 1939 and 1941 as part of Franklin D. Roosevelt’s New Deal programs, the Bonneville to Hood River 115 kV Transmission Line required an infrastructure upgrade to remain re
Sep 8, 2021
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Piles In Expansive Soil For Large Tension Forces ? SynopsisBy G. W. Plant
This paper describes the design philosophy and construction details of piles between 25m and 32m deep to support 160m high and 110m base diameter cooling rowers for a major power station. It is sited
Jan 1, 2010
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Top-Loaded Bi-Directional Test and the Conventional Bi-Directional Load Test, a Direct ComparisonBy Patrick J. Hannigan, Seth Robertson, Frank Rausche, Rozbeh B. Moghaddam
The Top-Loaded Bi-Directional Test (“TLBT”) and the conventional Bi-Directional Load Test (“BDLT”) are full-scale load tests where loads are applied bi-directionally to the foundation element. The BDL
Sep 8, 2021