首页> 外文会议>Deep Foundations Institute Annual Conference on Deep Foundations >STATIC AND DYNAMIC APPROACHES FOR BEARING CAPACITY EVALUATION OF DRIVEN PILES IN TWO DRY DOCKS PROJECT
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STATIC AND DYNAMIC APPROACHES FOR BEARING CAPACITY EVALUATION OF DRIVEN PILES IN TWO DRY DOCKS PROJECT

机译:两个干码头项目中桩承载能力评估的静态和动态方法

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Two dry docks are currently under construction on the northern banks of the Persian Gulf by Iran Shipyard and Offshore Industries Co. (ISOICO). The construction of these dry docks forms a huge civil offshore project. The foundation system include more than 6500 large diameter (40-48 inch) spiral pipe piles with embedded depth varying from 18 to 25 meters. Extensive geotechnical subsurface investigations were carried out in the project site in order to provide enough information and proper perspective on the underlying soil layers. The results of geotechnical investigation indicated that a 20 m thick dense silty sand layer exist which can be considered as the main bearing stratum. Due to short clear distance between the piles (less than 3 m) refusal occurred for some piles, accordingly led to actual length less than their design length. To verify and in-situ evaluation of piles capacity, static and dynamic full scale loading tests programme were performed. The data from 40 static compression and tension and also 50 dynamic tests with PDA were interpreted and analyzed by current approaches and CAPWAP software. The results of analysis demonstrated that the safety factor of bearing capacity of piles must be increased to reach a safety factor of about 1.8. To achieve this purpose the interaction of combined piled-raft system has been realized.
机译:目前正在伊朗造船厂和离岸工业公司的波斯湾北部银行正在建设中建设了两条干船坞。(Isoico)。这些干船坞的建设形成了一个庞大的民事海上项目。基础系统包括6500多个大直径(40-48英寸)螺旋管桩,嵌入深度从18到25米之间变化。在项目现场进行了广泛的岩土地下表面调查,以便在底层土层上提供足够的信息和适当的观点。岩土性研究的结果表明,存在20米厚的密集粉状砂层,其可被认为是主轴承层。由于桩之间的距离短距离(小于3米)拒绝,对于一些桩而发生,因此导致的实际长度小于其设计长度。为了验证和原位评估桩容量,执行静态和动态全尺度加载测试程序。通过当前方法和CAPWAP软件解释和分析来自40个静态压缩和张力和50个与PDA的动态测试的数据。分析结果表明,必须增加桩承载能力的安全系数以达到约1.8的安全系数。为达到此目的,已经实现了合并堆积筏系统的相互作用。

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