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Application of ultimate limit state design for axially loaded single piles in Egyptian geotechnical practice

机译:极限极限状态设计在单轴荷载下在埃及岩土工程中的应用

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For a long time, the framework of geotechnical design in Egypt has been based mainly on Working Stress Design (WSD) philosophy with the global safety concept as presented in the current version of the Egyptian Code of Practice for Soil Mechanics and Foundations Design and Construction [1]. This design philosophy is supported by long-term experience, considering local experiences and is adopted to fulfill the required safety margin. Limit State Design (LSD) philosophy, on the other side, has already been applied for the design of reinforced concrete structures as introduced in the Egyptian Code of Practice for the Design and Construction of Reinforced Concrete Structures [2]. Applying LSD for superstructure and WSD for foundations often results in design misleading because of the incompatibility between the two design philosophies. Accordingly, implementation of LSD philosophy for geotechnical designs in Egypt has become mandatory and the transition to this new design philosophy of LSD should be as smooth and gradual as possible to allow for a better acceptance by the Egyptian geotechnical community. LSD philosophy using partial safety factors has been applied worldwide using two different approaches; factored strength approach and factored resistance approach. During this study, resistance reduction factors are calibrated on the basis of calibration-by-fitting technique, to be used with factored resistance approach for axially loaded single piles. The calibrated resistance reduction factors from this study are found to be relatively consistent with those values adopted in other geotechnical design codes worldwide.
机译:长期以来,埃及的岩土工程设计框架主要基于工作应力设计(WSD)理念和全球安全概念,如当前版本的《埃及土壤力学和地基设计和施工实践守则》 [ 1]。这种设计理念得到了长期经验的支持,并考虑了当地经验,并被采用来满足所需的安全裕度。另一方面,极限状态设计(LSD)理念已被应用于钢筋混凝土结构的设计,这在埃及《钢筋混凝土结构的设计和建造操作规范》 [2]中得到了介绍。由于两种设计理念之间的不兼容,将LSD用于上部结构而将WSD用于基础经常会导致设计误导。因此,在埃及的土力工程设计中实施LSD哲学已成为强制性的要求,向LSD的新设计哲学的过渡应尽可能平稳和渐进,以使埃及岩土工程界能够更好地接受。使用部分安全系数的LSD理念已在世界范围内通过两种不同的方法得到应用。分解强度方法和分解阻力方法。在这项研究中,阻力折减系数在逐拟合校准技术的基础上进行了校准,与轴向加载的单桩的分解阻力法一起使用。发现这项研究中校准的电阻降低系数与全球其他岩土设计规范中采用的数值相对一致。

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