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实验研究评估了在达西渗流 regime 下粉煤灰对多孔介质中流动的影响。

Experimental investigations for assessing the influence of fly ash on the flow through porous media in Darcy regime.

机构信息

National Institute of Technology, Hamirpur, India E-mail:

PEC University of Technology, Chandigarh, India.

出版信息

Water Sci Technol. 2021 Mar;83(5):1028-1038. doi: 10.2166/wst.2021.042.

Abstract

Hydraulic conductivity plays a vital role in the studies encompassing explorations on flow and porous media. The study investigates the compaction characteristics of a river sand (Beas, Sutlej, and Ghaggar rivers) and fly ash mix in different proportions and evaluates four empirical equations for estimating hydraulic conductivity. Experiments show that an increase in the fly ash content results in a decrease in the maximum dry density (MDD) and an increase in the corresponding optimum moisture content (OMC) of sand-fly ash samples. MDD at optimum fly ash content was achieved at low water content, which resulted in less dry unit weight than that of typical conventional fill. In Beas, Sutlej, and Ghaggar sands the optimum fly ash content up to which the hydraulic conductivity value reduced uniformly was found to be 30, 45, and 40%, respectively. Any further increase in the fly ash content results in a negligible decrease in hydraulic conductivity value. The observed hydraulic conductivity of sand-fly ash mix lies in the range of silts, which emboldens the use of sand-fly ash mix as embankment material. Further, the evaluation of empirical equations considered in the study substantiates the efficacy of the Terzaghi equation in estimating the hydraulic conductivity of river sand-fly ash mix.

摘要

水力传导率在涉及流动和多孔介质探索的研究中起着至关重要的作用。本研究调查了不同比例的河砂(Beas、Sutlej 和 Ghaggar 河)和粉煤灰混合物的压实特性,并评估了四种经验方程来估算水力传导率。实验表明,粉煤灰含量的增加会导致最大干密度(MDD)降低,相应的最优含水量(OMC)增加。在最优粉煤灰含量下,MDD 达到了低含水量,导致干单位重量比典型的常规填土少。在 Beas、Sutlej 和 Ghaggar 砂中,发现水力传导率值均匀降低的最优粉煤灰含量分别为 30%、45%和 40%。进一步增加粉煤灰含量只会导致水力传导率值的微小下降。砂-粉煤灰混合物的观测水力传导率位于粉土范围内,这支持将砂-粉煤灰混合物用作路堤材料。此外,研究中考虑的经验方程的评估证实了 Terzaghi 方程在估算河砂-粉煤灰混合物水力传导率方面的有效性。

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