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Numerical Analysis of Settlement Response of Shallow Footing Subjected to Heavy Rainfall and Flood Events

机译:大雨和洪水事件浅脚井沉降响应的数值分析

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The US and many parts around the world have experienced prolonged periods of heavy rainfall, severe floods, and droughts over the past 50 years. This study investigates the impacts of extreme hydrological events such as heavy rainfall and flood on the settlement behavior of continuous footing installed in unsaturated soil using a coupled Geotechnical-Hydrological finite element software, PLAXIS 2D. Initially, the effect of different degrees of saturation on the settlement behavior of the continuous footing of widths 1.5 m, 3.0 m, and 4.5 m was style="font-family:Verdana;"> style="font-family:Verdana;"> style="font-family:Verdana;"> analyzed by applying a mechanical load. Then the settlement behavior of the footing was analyzed by applying heavy rainfall of intensity 102 mm/day for six days. Finally, the settlement behavior of the footing was analyzed by applying a flood head of 2.5 meters for seven days. The results indicated that the wetting front movement during heavy rainfall and flooding led to the weakening of soil strength and stiffness and induced additional settlements. The additional settlement induced by the flood was significantly higher than the heavy rainfall. The differential settlement was higher when the rainfall was applied on one side of the footing. The rebound of the elastic settlement was uniquely noticed when the flood head receded with time. The results indicated that not all the settlements were induced by the soil saturation but also due to the hydrostatic loading due to the flood head. The settlements induced by the flooding exceeded the allowable settlement of 25 mm, resulting in failure. These additional settlements caused by heavy rainfall and flood will lead to poor serviceability of the structures and cause the failure of the footing.
机译:在过去的50年里,世界各地的美国和许多零部件都经历了长期的大雨,严重的洪水和干旱。本研究调查了使用耦合的岩土水文有限元软件,Plaxis 2d在不饱和土中安装了大量降雨和洪水等极其水文事件对连续脚踏的沉降行为的影响。最初,不同饱和度对宽度1.5米,3.0米和4.5米的连续脚踏的沉降行为的影响是 style =“font-family:verdana;”> style =“字体家庭:Verdana;“> <跨度样式=”Font-Family:Verdana;“>通过应用机械负载分析。然后通过施加六天的强度102毫米/天的大雨降雨来分析脚踏的沉降行为。最后,通过施加2.5米七天的洪水头分析了基础的沉降行为。结果表明,大雨和洪水期间润湿前运动导致土壤强度和刚度的弱化,诱导额外的沉降。洪水引起的额外沉降显着高于大雨。当脚踏的一侧施加降雨时,差动沉降更高。当洪水随着时间的推迟时,弹性沉降的反弹被唯一注意到。结果表明,并非所有沉淀都是由土壤饱和诱导的,而且由于洪水头引起的静液压载荷也是由于静水负载。洪水引起的沉降超过了25毫米的允许沉降,导致失败。这些额外的降雨和洪水造成的沉降将导致结构的可维修能力差,导致基础失败。

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