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A study of the undrained shear strength of soft clay reinforced with 6mm and 8 mm diameter group of four bottom ash column

机译:直径6mm和8mm的四层底灰柱增强软粘土不排水剪切强度的研究。

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摘要

Soft clay that consists of low shear strength, low permeability and high compressibility udcharacteristics will affect the stability and settlement of structures. Vertical granular column is one of the ground improvement techniques to improve strength of the soft udsoil. Bottom ash, as a residue of combustion of coal from coal power plants, has similar properties with sand. The weak soft soil is not suitable for structure construction. udHence, ground improvement is necessary to modify soil properties and increase shear strength of soft soil. Bottom ash is the by-product produced from the coal burning in power plant. The substantial amount of bottom ash disposed in the landfills generates serious environment pollution from time to timç. Hence, by using bottom ash as granular material in vertical granular column, the cost of construction is reduced and this could be one of the methods in achieving sustainable development in construction industry. The aim of this Final Year Project is to determine the improvement in the shear strength of soft clay after being reinforced with a group of four bottom ash columns. The first stage of study was to determine the physical and mechanical properties of the materials used, which were kaolin and bottom ash. The results shows that kaolin can be classified as clayey soil whereas for the bottom ash it has relatively udsimilar characteristics to sand. At the second stage, remoulded samples of 50mm in diameter and 100mm in height soft kaolin clay with undrained shear strength were reinforced with group of bottom ash columns and subsequently tested under Unconfined udCompression Test. The diameter of bottom ash column is 6nmi and 8mm, and the heights of column are 24mm, 36mm, 48mm and 68mm. The group columns have been arranged in square pattern. It can be concluded that the shear strength parameters were udaffected by the diameter and the height of the column. It can be concluded that the shear strength of soft clay could be improved by the installation of bottom ash columns. The udpresence of bottom ash column greatly improved the shear strength.
机译:具有低剪切强度,低渗透性和高压缩性的软粘土特征会影响结构的稳定性和沉降。立式颗粒柱是提高软土强度的地面改良技术之一。底灰作为燃煤电厂燃煤的残余物,具有与沙子相似的特性。弱软土不适合结构施工。因此,必须进行地面改良以改善土壤特性并增加软土的抗剪强度。底灰是发电厂燃煤产生的副产品。填埋场中大量的底灰不时产生严重的环境污染。因此,通过使用底灰作为立式颗粒塔中的颗粒材料,降低了建筑成本,这可能是实现建筑行业可持续发展的方法之一。该最后一年项目的目的是确定在用一组四个底灰柱加固后,软土的抗剪强度的提高。研究的第一阶段是确定所用材料(高岭土和底灰)的物理和机械性能。结果表明,高岭土可以归类为黏土,而底灰则具有与沙子相对不相似的特性。在第二阶段,使用一组底灰柱对直径为50mm,高度为100mm的具有不排水抗剪强度的软高岭土重塑样品进行加固,并随后进行无侧压试验。底灰柱的直径为6nmi和8mm,柱高为24mm,36mm,48mm和68mm。组列已以正方形模式排列。可以得出结论,抗剪强度参数不受立柱直径和高度的影响。可以得出结论,安装底灰柱可以改善软黏土的抗剪强度。底灰柱的存在大大提高了剪切强度。

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    Nur Illani Hayon;

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  • 年度 2014
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