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Applicability of clinker ash as fill material in steel strip-reinforced soil walls

机译:熟料灰作为填充材料在钢带加筋的土墙中的适用性

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The generation of coal ash by coal-fired thermal power plants has increased in recent years. This study focuses on the use of a type of coal ash, clinker ash, in place of sandy soil as a fill material in soil structures. Clinker ash is an excellent geomaterial to use as backfill for soil structures because it is lightweight and has high shear strength and permeability. In this study, to determine the applicability of clinker ash as a backfill material for steel strip-reinforced soil walls, a series of laboratory pullout tests was conducted on different types of clinker ash to investigate the pullout behaviour of a ribbed strip from a layer of clinker ash and to evaluate the influence of the overburden pressure and the degree of compaction on the maximum pullout resistance. The correlation between the physical properties of clinker ash and the maximum pullout resistance was investigated on the basis of the test results. Additionally, the results of the pullout tests were compared with those of in-situ pullout tests. Furthermore, the usefulness of clinker ash was evaluated by applying the pullout test results to the standard design method for reinforced soil walls and comparing the results with the material constants for commonly used sandy soil. The main conclusions of the study are as follows: (1) The tests performed here confirmed that clinker ash has excellent frictional properties compared with sandy soil. (2) The frictional properties of clinker ash exceed the proposed design values given in the manual describing the reinforced soil wall method. (3) The application of clinker ash in reinforced soil walls is effective from the viewpoint of frictional properties. (C) 2018 Production and hosting by Elsevier B.V. on behalf of The Japanese Geotechnical Society.
机译:近年来,燃煤火力发电厂产生的煤灰增加了。这项研究的重点是使用煤灰,熟料灰代替砂土作为土壤结构的填充材料。熟料灰是一种出色的土工材料,可用作土壤结构的回填土,因为它是轻质的,并且具有高剪切强度和渗透性。在这项研究中,为了确定熟料灰作为钢带加筋的土墙体的回填材料的适用性,对不同类型的熟料灰进行了一系列的实验室拉拔试验,以研究带肋条从一层水泥上的拉拔性能。熟料灰,并评估上覆压力和压实度对最大抗拔性的影响。根据测试结果,研究了熟料灰的物理性质与最大抗拔性之间的相关性。另外,将拉出测试的结果与现场拉出测试的结果进行了比较。此外,通过将拉出试验结果应用于标准的加筋土墙设计方法,并将结果与​​常用砂土的材料常数进行比较,来评估熟料灰的有效性。研究的主要结论如下:(1)此处进行的测试证实,与砂土相比,熟料灰具有优异的摩擦性能。 (2)熟料灰的摩擦性能超过了描述加筋土壁法的手册中给出的建议设计值。 (3)从摩擦性能的观点来看,将熟料灰应用于加筋土墙是有效的。 (C)2018年由Elsevier B.V.代表日本岩土工程学会制作和托管。

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