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Sustainable application of waste tire chips and geogrid for improving load carrying capacity of granular soils

机译:废轮胎碎片和土工格栅的可持续应用可提高粒状土壤的承载能力

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The objective of the present study is to explore the viability of using waste tire chips and combined waste tire chips, geogrid reinforcement for improving load-carrying capacity of sand. Under this study, series of laboratory model footing tests were conducted to study pressure settlement behaviour of Tire chip Reinforced Sand (TRS). In first phase, tests were conducted on TRS underlying poorly graded sand by varying parameters such as tire chip content, reinforcement depth of TRS Zone, relative density of TRS. In the second phase, tests were conducted on Geogrid Reinforced Sand (GRS) and results were compared with TRS, and subsequently in third phase, combined behaviour of TRS and GRS was studied. Results indicated that addition of tire chips significantly increases bearing capacity at low strains (s/B = 2-5%) as well as at high strains (s/B = 10-20%). Bearing Capacity Ratio (BCR) as high as 4.65 and 10.36 was observed at low and high strains respectively. Performance of TRS was found better than GRS at all strain levels. The BCR can be further increased to 11 if TRS is used in conjunction with GRS. Therefore, recommended technique has an advantage of enabling shallow foundations in situations that either demand use of deep foundations or costly ground improvement techniques thus providing economy in construction as well as safe disposals of large stockpiles of waste tires. (C) 2018 Elsevier Ltd. All rights reserved.
机译:本研究的目的是探讨使用废旧轮胎碎屑和组合废旧轮胎碎屑,土工格栅加固来提高沙子的承载能力的可行性。在这项研究下,进行了一系列的实验室模型基础测试,以研究轮胎碎屑增强砂(TRS)的压力沉降行为。在第一阶段,通过改变诸如轮胎碎片含量,TRS区的补强深度,TRS的相对密度等参数,对低等级砂下的TRS进行了测试。在第二阶段,对土工格栅加筋砂(GRS)进行了测试,并将结果与​​TRS进行了比较,随后在第三阶段,研究了TRS和GRS的组合行为。结果表明,在低应变(s / B = 2-5%)和高应变(s / B = 10-20%)下,添加轮胎碎屑会显着提高承载能力。在低应变和高应变下分别观察到高达4.65和10.36的承载力比(BCR)。在所有应变水平下,TRS的性能均优于GRS。如果TRS与GRS一起使用,则BCR可以进一步提高到11。因此,推荐的技术具有在需要使用较深基础或昂贵的地面改良技术的情况下启用较浅基础的优点,从而可提供经济的施工以及安全处置大量旧轮胎的库存。 (C)2018 Elsevier Ltd.保留所有权利。

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