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Filtration performance of geotextile encasement to minimize the clogging of stone column during soil liquefaction

机译:土工织物包装的过滤性能,以最小化土壤液化过程中石柱堵塞

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摘要

Stone columns, which are frequently employed to stabilize the liquefiable soil, are susceptible to accumulation of soil particles. The progressive accumulation of the soil particles causes clogging of the stone column which decreases its drainage capacity. The stone column can be encased with geotextile to sustain its long term drainage function. The encasement prevents the movement of the soil particles into the stone pores. In the present paper, a mathematical model is presented to assess the filtration performance of the geotextile encasement to prevent the clogging. The filtration capacity of the geotextile is related to its maximum pore size, porosity and soil characteristics. It is observed that the encased stone column dissipates the excess pore pressure at a faster rate compared to the stone column without encasement. The peak maximum excess pore water pressure (Umax) is not significantly affected due to selection of the opening size of the geotextiles for single earthquake. However, the opening size can significantly affect the peak Umax value for multiple earthquakes. Depending on the capture coefficient of the stone column, the clogging can be fully prevented for higher hydraulic gradient if geotextile with maximum opening size in between D10 to D5 is used as encasement.
机译:通常用于稳定液体土壤的石柱易受土壤颗粒的积累。土壤颗粒的渐进积累导致石柱堵塞,这降低了其排水能力。石柱可以用土工布包裹,以维持其长期排水功能。外壳防止土颗粒的运动进入石孔。在本文中,提出了一种数学模型,以评估土工织物口服的过滤性能,以防止堵塞。土工织物的过滤能力与其最大孔径,孔隙度和土壤特性有关。观察到,与石塔相比,被包装的石柱以更快的速率耗散过量的孔隙压力,而没有被包裹。由于单次地震的土工织物的开口尺寸的选择,峰值最大过量孔隙水压(Umax)不会受到显着影响。然而,开口尺寸可以显着影响多次地震的峰值ux值。根据石柱的捕获系数,如果使用D10至D5之间的最大开口尺寸的土工织物,可以完全防止堵塞更高的液压梯度。

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