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Numerical simulation of a geotextile soil wall considering soil-atmosphere interaction

机译:考虑土壤 - 大气相互作用的土工织物土墙数值模拟

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This paper presents a numerical method for considering soil-atmosphere interaction applied to infiltration into an unsaturated geosynthetic reinforced soil wall and its effect on wall stability. A hypothetical nonwoven geotextile reinforced soil wall was subjected to simulated conditions of evaporation and precipitation over 2 years considering local climate variation in Sao Paulo city, Brazil. Net infiltration and actual evaporation were quantified inside and outside the reinforced zone, allowing for the assessment of changes in soil suction and factors of safety. The study discusses the implications of using in-plane draining reinforcements (e.g. nonwoven geotextiles) and soil-atmosphere effects. Results show that soil suction and factors of safety variation are more dependent on consecutive days of precipitation than on isolated heavy rainfalls. For the climate conditions considered in this study, results show that approximately 50% of the precipitation and potential evaporation transformed into net infiltration and actual evaporation, respectively. Additionally, the numerical results indicate that after the first wetting of the soil inside the reinforced soil zone, the evaporation to the atmosphere did not remove water from the inside of the geosynthetic reinforced wall because of the capillary break.
机译:本文介绍了考虑土壤 - 大气相互作用渗透到不饱和地质合成的土壤壁上的数值方法及其对壁稳定性的影响。考虑到巴西圣保罗市局部气候变化,对2年来探讨假设的非织造土工织物增强土壁的蒸发和降水量。净浸润和实际蒸发在加强区内和外部量化,允许评估土壤吸力和安全因素的变化。该研究讨论了使用面内排出增强(例如非织造土工织物)和土壤 - 大气效应的影响。结果表明,安全变化的土壤吸力和因素更加依赖于连续的降水日,而不是孤立的大雨。对于本研究中考虑的气候条件,结果表明,沉淀的大约50%和潜在的蒸发分别转化为净渗透和实际蒸发。另外,数值结果表明,在钢筋土壤内部的土壤润湿之后,由于毛细血管突破,大气中的蒸发不会从地质合成的加强墙的内侧去除水。

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