膨胀性粘土
膨胀的
重新使用
持续性
土壤水分
过程(计算)
可靠性(半导体)
环境科学
工程类
岩土工程
计算机科学
土壤科学
废物管理
材料科学
生态学
复合材料
功率(物理)
物理
操作系统
生物
量子力学
抗压强度
作者
Chijioke Christopher Ikeagwuani,Donald Chimobi Nwonu
标识
DOI:10.1016/j.jrmge.2018.08.013
摘要
Expansive soils are problematic due to the performances of their clay mineral constituent, which makes them exhibit the shrink-swell characteristics. The shrink-swell behaviours make expansive soils inappropriate for direct engineering application in their natural form. In an attempt to make them more feasible for construction purposes, numerous materials and techniques have been used to stabilise the soil. In this study, the additives and techniques applied for stabilising expansive soils will be focused on, with respect to their efficiency in improving the engineering properties of the soils. Then we discussed the microstructural interaction, chemical process, economic implication, nanotechnology application, as well as waste reuse and sustainability. Some issues regarding the effective application of the emerging trends in expansive soil stabilisation were presented with three categories, namely geoenvironmental, standardisation and optimisation issues. Techniques like predictive modelling and exploring methods such as reliability-based design optimisation, response surface methodology, dimensional analysis, and artificial intelligence technology were also proposed in order to ensure that expansive soil stabilisation is efficient.
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