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Evaluation of Foundation Settlement under Various Added Loads in Different Locations of Iraq Using Finite Element

机译:有限元法对伊拉克不同地区各种附加荷载下基础沉降的评估。

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摘要

Settlement is an important criterion in the design of the foundations. It is classifying into immedi-ate (or elastic) settlement and consolidated settlement (primary and secondary). The factors that affect the shallow foundation settlement are the applied loads, soil stiffness, and geometric shape of foundation. Calculations of settlement depend on the parameters of soil which can be obtained from field and laboratory tests. Field and laboratory tests were conducted for twenty three sites in three different regions in Iraq (Mosul, Baghdad, and Basrah). In this research, field and laboratory tests results adopted for two sites from each region depended on the maximum and minimum bearing capacity values. Settlement for each site was calculated using numerical (mathematical) calculations and PLAXIS software under different added loads. The results of settlements beneath the foundation were competing for the sites with maximum value of bearing capacity in Mosul; Baghdad and Basrah. Also, the comparison conducted for sites of minimum bearing capacity value and the results showed different settlement values of each site. The change of settlement values under different loads was linearly in the six sites using numerical (mathematical) calculations. While, the settlement values obtained from PLAXIS software for sites with maximum bearing ca- pacity value showed that Mosul site had the highest value due to the type of soil layers and the dif- ference models of soil used in the software. Basrah site had a settlement value higher than Bagh- dad site due to the soil layers of sand type only. PLAXIS results for sites with minimum bearing capacity showed that for Basrah site the soil went to failure. While, the settlement values for Mosul and Baghdad sites were close to each other due to have nearly same soil layers. Therefore, high rise buildings could not be used in some sites. Also, soil in some locations and under some added loads needed to be improved before the implementation of any constructions.
机译:沉降是基础设计的重要标准。它分为即时(或弹性)结算和合并结算(主要和次要)。影响浅层基础沉降的因素是施加的载荷,土壤刚度和基础的几何形状。沉降的计算取决于可以从野外和实验室测试中获得的土壤参数。在伊拉克三个不同地区(摩苏尔,巴格达和巴士拉)的23个地点进行了现场和实验室测试。在这项研究中,每个地区在两个地点采用的现场和实验室测试结果取决于最大和最小承载力值。使用数值(数学)计算和PLAXIS软件在不同附加载荷下计算每个站点的沉降。地基下的沉降结果正在争夺摩苏尔具有最大承载力的地点。巴格达和巴士拉。此外,对最小承载力值的站点进行的比较结果显示每个站点的沉降值不同。使用数值(数学)计算,六个地点在不同载荷下的沉降值变化呈线性关系。而从PLAXIS软件获得的具有最大承载力值的站点的沉降值表明,由于土壤层的类型和软件中使用的土壤的不同模型,摩苏尔站点的值最高。仅由于沙土类型的土壤层,巴士拉遗址的沉降值高于巴格达遗址。对于具有最小承载力的站点,PLAXIS结果表明,对于巴士拉站点,土壤已经破裂。同时,摩苏尔(Mosul)和巴格达(Baghdad)站点的沉降值彼此接近,原因是土壤层几乎相同。因此,高层建筑不能在某些地方使用。另外,在实施任何结构之前,需要对某些位置的土壤和某些附加负荷下的土壤进行改良。

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