Study on Osmotic Consolidation and Hydraulic Conductivity Behavior of an Expansive Soil Inundated with Sodium Chloride Solution

IF 2.3 4区 工程技术 Q3 ENGINEERING, CHEMICAL International Journal of Chemical Engineering Pub Date : 2023-07-19 DOI:10.1155/2023/6574646
S. Sathyapriya, R. Sharvesh, V. Karthik, S. Periyasamy, Venkatesa Prabhu Sundramurthy
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引用次数: 1

Abstract

Canals are a very imperative source of irrigation for the agricultural sector in India. Seepage causes major water loss in canals, and hence, the installation of liners becomes necessary. Compacted clay soils are commonly used as liners in the canals. This structure will most probably be subjected to salinization and desalinization cycles throughout its life. Because of the interaction between the pore liquid and clay particles, physico-chemical influences considerably impact the behavior of clay barriers. In this paper, the effect of interacting fluid on volume change, consolidation parameters, and hydraulic conductivity of compacted clay soil is investigated with the help of a one-dimensional consolidation test. The compacted clay specimens were immersed alternatively with distilled water (DW) and sodium chloride (NaCl) solutions (SW) at constant loading of 10 kPa, which replicates the load conditions in the field canal due to 1 m head of water and incremental loading as per IS 2720 part 15 standards. The experimental results proved that there is a percentage volume change increase of about two times for each stage inundated with 4M NaCl solution than its preceding stages inundated with distilled water at constant loading of 10 kPa. The consolidation rate was accelerated with 4M NaCl solution than the normal consolidation at incremental loading. The permeability coefficient in the salt water-induced sample increased by 217% more than the distilled water-induced sample at incremental loading. Therefore, the soil specimen subjected to alternate salinization and desalinization cycles significantly affects the volumetric and consolidation behavior, leading to decreased life of clay barrier structures.
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氯化钠浸水膨胀土渗透固结及导水性能研究
运河是印度农业部门非常重要的灌溉来源。渗漏会造成水渠的大量失水,因此,必须安装衬垫。压实的粘土通常用作运河的衬里。这种结构在其整个生命周期中很可能受到盐化和脱盐循环的影响。由于孔隙液体与粘土颗粒之间的相互作用,物理化学影响对粘土屏障的行为有很大影响。本文通过一维固结试验,研究了相互作用流体对压实粘土体积变化、固结参数和水导率的影响。按IS 2720第15部分标准,将压实后的粘土试样分别浸入蒸馏水(DW)和氯化钠(NaCl)溶液(SW)中,在10 kPa的恒加载条件下交替进行浸没,模拟水头1 m和增量加载条件下的现场运河荷载情况。实验结果表明,在恒负荷10 kPa条件下,每一级浸泡4M NaCl溶液后,其体积变化百分比比前一级蒸馏水浸泡后的体积变化百分比增加约2倍。在增量加载下,4M NaCl溶液比正常固结速率更快。在增加加载时,盐水诱导样品的渗透系数比蒸馏水诱导样品提高了217%。因此,盐渍化和脱盐交替循环对土样的体积和固结行为产生显著影响,导致粘土屏障结构的寿命降低。
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来源期刊
International Journal of Chemical Engineering
International Journal of Chemical Engineering Chemical Engineering-General Chemical Engineering
CiteScore
4.00
自引率
3.70%
发文量
95
审稿时长
14 weeks
期刊介绍: International Journal of Chemical Engineering publishes papers on technologies for the production, processing, transportation, and use of chemicals on a large scale. Studies typically relate to processes within chemical and energy industries, especially for production of food, pharmaceuticals, fuels, and chemical feedstocks. Topics of investigation cover plant design and operation, process design and analysis, control and reaction engineering, as well as hazard mitigation and safety measures. As well as original research, International Journal of Chemical Engineering also publishes focused review articles that examine the state of the art, identify emerging trends, and suggest future directions for developing fields.
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