Numerical Analysis of Bridge Foundation in Dry and Saturated Soils with Effect of Halabjah Earthquake (Case Study)

Arwa A. Hussein, Jasim M. Abbas
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Abstract

The importance of this study comes from the expected risks as the bridge foundations is exposed and their effects on the lives of users. So, the aim of this study is to investigate the influence of earthquakes loading on the bridge foundation subjected to combined loading as a case study for Al-Shareef Bridge/ Diyala province in Iraq. The numerical analysis highlights the foundation settlement firstly, in flat ground and secondly, in slope ground with applied different value of axial loads starts from the zero-working load (no loading) to maximum working load. All cases were investigated in dry and saturated soil under effect of Halabjah earthquake. Plaxis 3D is one of the finite element programs that had been used to simulate the soil foundation interaction by Mohr-Coulomb failure criteria for the soil model and linear elastic for concrete materials. The conclusions of this study showed that the settlement of pile group is increased in saturated soil about 5% more than the dry soil under the effect of static loads for both groups, but, the settlement in group (2) is increased about 10% more than the group (1) in dry and saturated condition. The settlement in saturated soil is increased to 12% more than the dry soil when Halabjah earthquake loads is applied.
受哈拉布贾地震影响的干土和饱和土桥梁地基数值分析(案例研究)
这项研究的重要性来自于桥梁地基所暴露的预期风险及其对使用者生命的影响。因此,本研究旨在以伊拉克迪亚拉省的 Al-Shareef 大桥为例,研究地震荷载对承受联合荷载的桥梁地基的影响。数值分析首先强调了平地地基沉降,其次强调了斜坡地基沉降,并施加了从零工作荷载(无荷载)到最大工作荷载的不同轴向荷载值。所有情况都在 Halabjah 地震影响下的干燥和饱和土壤中进行了研究。Plaxis 3D 是一种有限元程序,用于模拟土壤模型的莫尔-库仑失效准则和混凝土材料的线性弹性的土壤地基相互作用。研究结果表明,在静荷载作用下,两组桩组在饱和土中的沉降量均比在干燥土中增加约 5%,但在干燥和饱和条件下,(2)组的沉降量比(1)组增加约 10%。当施加 Halabjah 地震荷载时,饱和土壤的沉降比干燥土壤增加 12%。
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