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Establishing a Graphical Method for Calculation of Raft Thickness in Piled Raft, Pile Group and Raft Foundation

机译:建立用于计算桩筏,桩群和筏基中筏板厚度的图形方法

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Based on the rafts observation of 26 high-rise buildings in Vietnam and around the world, it is recorded that they are very thick. So, the questions is, what is the role of raft (and its thickness) in a foundation system individually, and the interactions between raft-soil and pile in the whole upper structure in general? And why do rafts in some buildings seem to be very thick? For example, MesseTurm Tower is 256 meters tall with raft's thickness of 6.0 meters while the others are relatively thinner such as Dubai Tower is 400 meters tall with raft's thickness of 2.5 meters. A literary review and a parametric study on the factors affecting raft thickness shows that it depends on the number of floors, pile system's properties and Young modulus of soil. Based on the mentioned observation, a graphical method is, therefore developed. The method is then verified and calibrated into six case studies equivalent to six buildings constructed in Vietnam and around the world. The estimated raft thicknesses from the 26 mentioned cases using the graphical method are reasonable in comparison with designed ones. Thanks to that, they can explain the cases of thick or thin rafts.
机译:根据对越南及世界各地26座高层建筑的木筏观察,发现它们很厚。因此,问题是,筏板(及其厚度)在基础系统中的作用分别是什么,通常整个上部结构中筏板土与桩之间的相互作用?为什么有些建筑物的木排看起来很厚?例如,MesseTurm塔高256米,木筏的厚度为6.0米,而其他的则相对较薄,例如迪拜塔高400米,木筏的厚度为2.5米。关于影响筏板厚度的因素的文献综述和参数研究表明,它取决于地板的数量,桩系统的特性和土壤的杨氏模量。基于上述观察,因此开发了一种图形方法。然后对该方法进行验证和校准,得出六个案例研究,这些案例相当于在越南及世界各地建造的六座建筑物。与设计方法相比,使用图形方法从上述26种情况中估算出的筏板厚度是合理的。因此,他们可以解释粗筏或细筏的情况。

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