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Bearing ratio of reinforced fly ash overlying soft soil and deformation modulus of fly ash

机译:软土地基上加筋粉煤灰的承载比及粉煤灰的变形模量

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This paper presents the laboratory study on the bearing ratio of unreinforced and reinforced fly ash overlying soft soil beds of a total of 11 fly ash samples collected from different thermal power plants located in the Eastern part of India. The thickness of the bottom clay layer (H_c) was maintained as 100 mm in the bearing ratio mould. The upper layer thickness of compacted fly ash (H_f) was varied. The values of the ratio H_f/H_c used were 0.75,1.00 and 1.25 in this study. The fly ash layer was reinforced with single layer and double layers of geotextiles. The effects of (ⅰ) position and number of layers of geo-textiles, (ⅱ) thickness of the compacted fly ash layer overlying soft soil layer, and (ⅲ) moulding water content of the soft soil, on the bearing ratio of fly ash are highlighted. The inclusion of geotextile into the compacted fly ash bed enhances the bearing ratio. An increase in the thickness of compacted fly ash layer over the soft soil layer also increases the bearing ratio of the compacted fly ash bed. The values of unconfined compressive strength and deformation modulus of all the fly ash samples are also presented. Empirical relationships to estimate deformation modulus of fly ash from unconfined compressive strength and relationships between initial tangent modulus and secant modulus of fly ash are presented. It may be concluded from this research study that reinforced compacted fly ash overlying soft soil with a geotextile layer at the interface can find potential application in the construction of roads over soft soil.
机译:本文介绍了对印度东部不同火电厂收集的总共11份粉煤灰样品中未粉煤灰和粉煤灰覆盖软土层的承载比的实验室研究。在承载比模具中,底部粘土层的厚度(H_c)保持为100mm。改变压实粉煤灰的上层厚度(H_f)。在本研究中,使用的H_f / H_c比值分别为0.75、1.00和1.25。粉煤灰层用单层和双层土工布增强。 (ⅰ)土工布的位置和层数,(ⅱ)覆盖在软土层上的压实粉煤灰层的厚度以及(ⅲ)成型软土含水量对粉煤灰承载比的影响突出显示。将土工布包含在压实的粉煤灰层中可提高承载比。压实粉煤灰层在软土层上的厚度增加也增加了压实粉煤灰床的承载比。还给出了所有粉煤灰样品的无侧限抗压强度和变形模量的值。提出了从无侧限抗压强度估算粉煤灰变形模量的经验关系,以及粉煤灰的初始切线模量和割线模量之间的关系。从这项研究中可以得出结论,覆盖在软土上的压实粉煤灰在界面处带有土工布层可以发现在软土上道路施工中的潜在应用。

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