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Passive earth pressure of overconsolidated collapsible soil subjected to inundation

机译:受淹的超固结湿陷土的被动土压力

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Backfills behind retaining walls are often made of collapsible soils, which are subjected to wetting by surface running water or by rising the groundwater table. Collapsible soil shows considerable strength when it is dry or at a relatively low degree of saturation and experiences excessive and sudden settlement when it is inundated. This paper presents an experimental investigation on walls retaining overconsolidated collapsible soil subjected to passive earth pressure. A prototype model of a vertical wall, retaining horizontal backfill was developed. Collapsible soil was prepared in the laboratory by mixing kaolin clay with fine sand. The model was instrumented to measure the total passive earth force on the wall, the passive earth pressure at strategic locations on the wall, and the overconsolidation ratio of the soil in the testing tank. The state of passive pressure was developed by pushing the wall horizontally toward the backfill without any rotation. Tests were conducted on walls retaining overconsolidated collapsible soil at the dry and at full saturation conditions. Results showed that for the dry state, the passive earth pressure increases with the increase of the collapse potential and overconsolidation ratio, and was significantly dropped at full saturation.
机译:挡土墙后面的回填土通常由可塌陷的土壤制成,这些土壤会因地表自来水或地下水位升高而变湿。当干燥或处于相对较低的饱和度时,可塌陷的土壤会显示出相当大的强度,而当土壤被淹没时,其会出现过多而突然的沉降。本文提出了对承受被动土压力的超固结可塌陷土墙进行试验的研究。开发了保留水平回填的垂直墙的原型模型。在实验室中通过将高岭土与细砂混合来制备可塌陷的土壤。该模型用于测量墙壁上的总被动土压力,墙壁上关键位置的被动土压力以及测试罐中土壤的超固结率。被动压力的状态是通过将壁水平推向回填物而没有旋转而产生的。在干燥和完全饱和的条件下,对保留了超固结可塌陷土壤的墙壁进行了测试。结果表明,在干燥状态下,被动土压力随着坍塌电位和超固结率的增加而增加,并在完全饱和时显着下降。

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