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Pile Group Effects and Soil Dilatancy at the Fort Lauderdale International Airport

机译:劳德代尔堡国际机场的桩群效应和土壤膨胀

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The Fort Lauderdale airport runway and taxiway expansion involved the lengthening of a 1.6-km-long landing strip into a new 2.5-km-long runway that partially sits on a 15-m-high manmade embankment, and required the construction of two substantial bridges for the runway and taxiway to traverse over US-1, Florida East Coast railway, and other airport roadways. The stringent settlement tolerances coupled with impact loading for the largest commercial aircraft, the Airbus A380, result in a design where the bridge foundations consist of approximately 2,700 driven 24-in. (61 cm) pre-stressed concrete pilings. The project design had various geotechnical considerations including avoiding differential settlement between 15-m-high MSE walls at the bridge abutments, pile group effects, and variable bearing strata. These inherent features were further complicated during construction by the dilation of dense saturated fine sands, an uncommon phenomenon for South Florida, which resulted in temporary high driving resistances and then subsequent resistance decreases after pile driving. Over 1,000 dynamic pile tests, comprising of nearly 300 test piles, and approximately 900 set-checks and/or redrives were required to ensure the project was completed safely and according to plan. The case study will provide an overview of the project and will include specific examples where both refusal conditions and dilative behavior were observed. The marriage of these conditions presented challenges in terms of driving piles to ensure that measured capacities, through dynamic pile testing, would remain higher than the designed capacity over the long term. The technical aspects of dilatancy, its impact on negative excess pore water pressure, and in turn effective stress and ultimately pile capacity, will be reviewed within the data rich environment. These aspects, among other interesting project features will be reviewed, with emphasis on the project challenges, how they were overcome, and lessons learned.
机译:劳德代尔堡机场跑道和滑行道的扩建涉及将1.6公里长的着陆带延长到一条新的2.5公里长的跑道上,该跑道部分位于15米高的人造堤岸上,并需要建造两座坚固的桥梁跑道和滑行道可以越过US-1,佛罗里达东海岸铁路和其他机场道路。最大的商用飞机空中客车A380的严格的沉降公差和冲击载荷共同导致了桥基由大约2700个驱动的24英寸驱动器组成的设计。 (61厘米)预应力混凝土桩。该项目设计具有多种岩土考虑因素,包括避免桥台处15 m高的MSE墙之间的差异沉降,桩群效应和可变承载层。这些固有特征在施工过程中由于致密的饱和细砂膨胀而变得更加复杂,这在南佛罗里达州是一种罕见的现象,导致暂时的高驱动阻力,然后在打桩后随后阻力减小。为了确保安全并按计划完成项目,需要进行1000多次动态桩测试,其中包括近300个测试桩,以及大约900次设置检查和/或重新安装。案例研究将提供该项目的概述,并将包括观察拒绝条件和扩张行为的具体示例。这些条件的结合给打桩带来了挑战,以确保通过动态打桩测试测得的能力长期保持高于设计能力。在数据丰富的环境中,将对膨胀性的技术方面,其对负的超高孔隙水压力的影响以及有效应力和最终桩的承载力的影响进行审查。这些方面以及其他有趣的项目功能将进行审查,重点放在项目挑战,如何克服挑战以及汲取的教训上。

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