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MICROPILING IN KARSTIC ROCK: NEW CMFF FOUNDATION SOLUTION APPLIED AT THE SANITA FACTORY

机译:喀斯特岩石的微生品:在Sanita工厂应用新的CMFF基础解决方案

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The new Sanita factory is a 2 story factory warehouse covering an area of 10,000 m~2 located in Zouk-Mosbeh, Lebanon. The warehouse is composed of 140 reinforced concrete columns supporting a one way pre-stressed concrete slab designed to carry 25 kN/m~2 of industrial live load plus a future steel structure. The soil substratum consists of 1 to 4 m of silt on top of the bedrock. The bedrock is hard karstic limestone with cavities and fissures. Because of the karstic nature of the rock, the original design called for a strip foundation on top of the rock with a maximum allowable bearing pressure of 400 kPa. Combined Micropiles and Footing Foundation, CMFF, is a new foundation system that was created by the International Institute for Geotechnics and Materials, iIGM, and implemented as an alternative solution for this particular project. This new system was designed utilizing a finite element model. There were two major concerns regarding this solution. The first concern was with respect to the load-settlement performance of the micropile in the karstic terrain. The second concern was to prove the advantages of the CMFF system considering the particular conditions of the project. Two static load tests were performed on the micropiles with different methods. The results of the tests permitted modeling the soil/structure interactive foundation system. CMFF in karst offered many technical advantages over classical methods. A cost saving of about 40% was also accomplished in the foundation system without compromising safety. This paper summarizes the results of the load tests and the advantages of CMFF in this particular project. The paper also presents the different phases of the foundation system by covering the design details, construction aspects, performance evaluation, and cost analysis.
机译:新的Sanita工厂是一家2楼的工厂仓库,占地面积10,000米〜2,位于黎巴嫩Zouk-Mosbeh。仓库由140个钢筋混凝土柱组成,该柱支撑了一种预应力混凝土板的一种方式,设计用于携带25 kn / m〜2的工业活载加上未来的钢结构。土壤底层由基岩顶部的1至4米的淤泥组成。基岩是硬性石灰岩,具有空腔和裂缝。由于岩石的岩溶性质,原始设计要求岩石顶部的条带基础,最大允许轴承压力为400 kPa。 CMFF组合的微型微型和基础基础是一家由国际岩土和材料研究所,IIGM创建的新基础系统,并作为该特定项目的替代解决方案。该新系统采用有限元模型设计。关于这个解决方案有两个主要问题。第一个问题是关于喀斯特地形中微米的负荷沉降性能。第二个问题是考虑到项目的特定条件,证明了CMFF系统的优势。用不同的方法对微量厚度进行两个静态负载试验。试验结果允许建模土壤/结构互动基础系统。喀斯特CMFF提供了古典方法的许多技术优势。在没有损害安全的情况下,在基础系统中也可以节省约40%的成本。本文总结了该特定项目中负载测试的结果和CMFF的优点。本文还通过涵盖设计细节,施工方面,性能评估和成本分析来介绍基础系统的不同阶段。

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