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Properties of Singapore Marine Clays Improved by Cement Mixing

机译:水泥拌和改善新加坡海洋黏土的性能

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Stabilization of soft ground by the deep cement mixing (DCM) method has become an increasingly popular method to improve stability in an excavation in soft clay and to limit movement in adjacent sub-structures. The desired increase in strength and stiffness to fulfil the intended functions can be achieved provided that the right mix proportion is adopted. To proceed with this kind of soil improvement, prediction of the strength and stiffness of the improved soil is necessary. Due to a short history of the DCM method in Singapore, there is limited data on the improved properties of local clays. This study is conducted to bridge that gap and also extends its usefulness to clays elsewhere. In the paper, the influences of three main constituents of the mixture, namely clay, water, and cement on the strength development of Singapore marine clays improved by cement mixing are investigated. Based on the experimental results, it is shown that a convenient normalization can produce a consistent pattern for evaluation of improved strength of clays from different parts of Singapore. This normalization is also shown to work for one Japanese clay. Correlations between strength and stiffness of the improved clay are also obtained. Lastly, it is shown that for a cement mixed clay there is a continual increase in strength and stiffness with time. This will help to reduce ground movement, and it will also increase the bending moment in the retaining wall. Both aspects must be considered in a design.
机译:通过深层水泥混合(DCM)方法稳定软土地料已成为一种日益流行的方法,可以提高软粘土开挖的稳定性并限制相邻子结构的运动。只要采用正确的混合比例,就可以实现所需强度和刚度的增加,以实现预期的功能。为了进行这种土壤改良,必须对改良土壤的强度和刚度进行预测。由于在新加坡使用DCM方法的历史很短,因此有关当地黏土改善性能的数据有限。进行这项研究以弥合该间隙,并将其用途扩展到其他地方的粘土。在本文中,研究了混合物的三种主要成分,即粘土,水和水泥对通过水泥混合改善新加坡海事粘土强度发展的影响。根据实验结果,表明方便的归一化方法可以产生一致的模式,用于评估新加坡不同地区粘土的强度提高情况。此归一化也显示对一种日本黏土有效。还获得了改良粘土的强度和刚度之间的相关性。最后,表明对于水泥混合粘土,强度和刚度会随着时间不断增加。这将有助于减少地面运动,也将增加挡土墙的弯矩。在设计中必须同时考虑这两个方面。

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