首页> 外文会议>Deep Foundations Institute annual conference on Deep Foundations >HIGH CAPACITY MICROPILES IN WEAK DOLOMITIC LIMESTONE FOR CRANE FOUNDATION SUPPORT - A CASE HISTORY IN TEMPORARY FOUNDATIONS
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HIGH CAPACITY MICROPILES IN WEAK DOLOMITIC LIMESTONE FOR CRANE FOUNDATION SUPPORT - A CASE HISTORY IN TEMPORARY FOUNDATIONS

机译:用于起重机基础的弱白云岩基质中的高容量微粒-临时基础的案例历史

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A major combined nuclear and coal-fired power plant, located in on the western coast of Florida has undergone multiple upgrades in recent years to increase power output and enhance environmental controls. Construction of new elements within the existing plant structure required working in highly congested conditions and heavy crane lifts with large picking radii. The largest crane pick involved the use of an 1800 metric tonne capacity Mammoet PTC ring crane for a single long-radius, high altitude lift of a precipitator unit. Original bid tender documents had called for drilled shaft foundation support, but the presence of many critical utilities and unfavorable access for cost effective construction led specialty contractor Moretrench American Corporation to propose an alternate micropile foundation on the basis that high capacities could be achieved in the weak limestone geology and that the smaller size of micropiles would allow for more surgical installation in the utility-congested areas. This case history describes the design and construction of seventy three (73) high capacity micropiles for the value engineering alternative and the crane foundation for this critical lift. Each micropile was founded in a competent dolomitic fossiliferous limestone unit at typical depths of 23 m below existing ground surface. Strain gauge instrumented load testing was used to validate the geotechnical design parameters in the weak limestone bedrock and resulted in the finding that the entire test load was being carried in the upper half of the bond zone. Construction of the production micropiles required numerous relocations due to utility conflicts and local reanalysis and redesign of the 1.2 m thick reinforced concrete ring beam cap. Crane foundation performance was satisfactory and the effective life of this temporary foundation was only 6 months before decommissioning and demolition.
机译:近年来,位于佛罗里达州西海岸的一个主要的核电和燃煤联合发电厂经历了多次升级,以增加电力输出并加强环境控制。在现有工厂结构中建造新元件需要在高度拥挤的条件下工作,并需要具有大拾取半径的重型起重机。最大的起重机选择包括将一台1800公吨容量的Mammoet PTC环形起重机用于除尘器单元的单个长半径,高海拔提升。原始招标文件曾要求对钻孔基础进行支撑,但由于存在许多重要的公用设施以及对成本效益高的施工方式的不利使用,专业承包商Moretrench American Corporation提出了一个替代性微型桩基础,其基础是可以在薄弱的地方实现高承载力石灰岩地质学和较小的微桩尺寸将允许在公用事业拥挤的地区进行更多的外科手术安装。该案例历史描述了价值工程替代方案的七十三(73)个高容量微型桩的设计和构造以及此关键举升的起重机基础。每个微型桩都位于一个称职的白云岩化石石灰岩单元中,典型深度为现有地面以下23 m。使用应变仪仪表化的载荷测试来验证弱石灰岩基岩中的岩土工程设计参数,并导致发现整个测试载荷都在粘结区的上半部分承担。由于实用程序冲突和局部重新分析以及1.2 m厚的钢筋混凝土环形梁帽的重新设计,生产微型桩的建造需要大量搬迁。起重机地基性能令人满意,该临时地基的有效寿命仅在退役和拆除前6个月即可。

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