Investigating the impact of straw-to-tailings sand ratios on combined vertical drain performance

IF 2.3 4区 地球科学 Acta Geophysica Pub Date : 2024-04-15 DOI:10.1007/s11600-024-01347-x
Chengfu Chu, Lingling Liu, Hurong Cai, Shan Wu, Fusheng Zha
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Abstract

Given the shortcomings of inadequate vacuum transfer effectiveness, susceptibility to clogging, and environmental impact, i.e., white pollution, associated with standard plastic drainage boards, this paper introduces an innovative solution termed combined vertical drain (CVD). This CVD is composed of biodegradable straw materials and tailings sand. Through controlled indoor model experiments, the drainage and consolidation performance of the CVD is investigated across varying proportions of straw content. The findings indicate that increasing the concentration of straw within the mixture of straw particles and tailings sand (referred to as MST) within the drain distinctly mitigates the diminishment of the vacuum condition during the vertical drainage transfer. Optimal elevation of the straw component in MST can notably reduce the duration required for vacuum preloading and enhance displacement up to a certain value. Nonetheless, an excessive increase in the straw composition not only fails to enhance drainage effectiveness but also raises the organic matter level within the soil. Furthermore, compared with the average water content difference of soil in different model box test units after vacuum preloading, the average divergence in vane shear strength of test soil exhibits a more pronounced variation.

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研究稻草与尾砂的比例对组合式垂直排水系统性能的影响
鉴于标准塑料排水板存在真空传递效果不佳、易堵塞和对环境造成影响(即白色污染)等缺点,本文介绍了一种创新的解决方案,即组合式垂直排水器(CVD)。这种 CVD 由可生物降解的秸秆材料和尾砂组成。通过受控室内模型实验,研究了不同比例秸秆含量下 CVD 的排水和固结性能。研究结果表明,在排水口内的秸秆颗粒和尾矿砂混合物(简称 MST)中增加秸秆浓度,可明显缓解垂直排水转移过程中真空条件的减弱。秸秆成分在 MST 中的最佳含量可显著缩短真空预加载所需的时间,并在一定值范围内提高排水量。然而,过度增加秸秆成分不仅不能提高排水效果,还会提高土壤中的有机物含量。此外,与真空预加载后不同模型箱试验装置中土壤的平均含水量差异相比,试验土壤的叶片剪切强度的平均差异表现出更明显的变化。
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来源期刊
Acta Geophysica
Acta Geophysica GEOCHEMISTRY & GEOPHYSICS-
CiteScore
3.80
自引率
13.00%
发文量
251
期刊介绍: Acta Geophysica is open to all kinds of manuscripts including research and review articles, short communications, comments to published papers, letters to the Editor as well as book reviews. Some of the issues are fully devoted to particular topics; we do encourage proposals for such topical issues. We accept submissions from scientists world-wide, offering high scientific and editorial standard and comprehensive treatment of the discussed topics.
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