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Modeling the slurry filtration performance of nonwoven geotextiles

机译:模拟非织造土工布的浆料过滤性能

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Nonwoven geotextiles have been widely used for separation, filtration, reinforcing and drainage systems. The filtration and drainage functions are especially attractive in the construction of soil structures. In this paper, based on the theoretical pore size distribution of nonwoven geotextiles established on Poisson polyhedron theory by Lombard, Rollin and Wolff [1989. Theoretical and experimental opening size of heat-bonded geotextiles. Textile Research Journal 59(4), 208-217], the filtration performance is studied using the random probability theory, and a mathematical model on mass of soil passing through nonwoven geotextile is established. The model is validated by slurry test using apparatus created by authors. The water head is constant at 13 cm and the slurry is continually stirred during experiment. The experimental results obtained for four different specimens are compared with the theoretical solution, and it is shown that the present model predicts to an accuracy of about 93% for heat-bonded nonwoven geotextiles.
机译:非织造土工布已广泛用于分离,过滤,增强和排水系统。过滤和排水功能在土壤结构的建造中特别有吸引力。本文基于Lombard,Rollin和Wolff [1989年]基于泊松多面体理论建立的非织造土工布的理论孔径分布。热粘合土工布的理论和实验开口尺寸。纺织研究学报59(4),208-217],使用随机概率理论研究过滤性能,并建立了通​​过非织造土工布的土壤质量的数学模型。使用作者创建的设备通过浆料测试验证了该模型。水头恒定在13cm,并且在实验过程中不断搅拌浆料。将针对四个不同样本获得的实验结果与理论解进行了比较,结果表明,该模型预测热粘合非织造土工布的精度约为93%。

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