初始试样高度和固体浓度对细粒尾砂固结参数的影响

S. Islam, David J. Williams, Chenming Zhang
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引用次数: 0

摘要

摘要正确理解和分析尾矿从浆状到土状的固结特性和参数,对尾矿储存库的设计、管理和评价至关重要。细粒煤尾砂浆体从浆态沉降速度较快,沉降量较大,自重固结速度较慢,固结程度有限,保持浆状和欠固结状态,而非土状。大型专用泥浆固结计具有新开发的固结计单元,配有负载传感器和孔隙水压力传感器,非常适合测试从类似泥浆到类似土壤状态的尾矿,并实现恒定加载速率(CRL)来模拟尾矿的积累。CRL比增量阶跃加载更能代表TSF中尾矿的上升速率。通过在加载速率为0.12 kPa/min至施加应力为320 kPa的条件下,对矿浆状态的细粒尾砂进行固结试验,研究了初始试样高度(ISH)和初始固体浓度(ISC)对固结参数和水力导率的影响。以ISH和ISC为独立输入,建立了浆体固结试验结束时固结沉降的统计模型。
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Effect of initial specimen height and solids concentration on the consolidation parameters of fine-grained coal tailings
ABSTRACT Proper understanding and analysis of the consolidation behaviour and parameters of tailings from a slurry-like to a soil-like state are vital for the design, management, and assessment of a tailings storage facility (TSF). Fine-grained coal tailings slurry can undergo relatively rapid and substantial settlement from a slurried state and can experience relatively slow and limited self-weight consolidation, remaining slurry-like and under-consolidated, rather than soil-like. A large purpose-built slurry consolidometer having a newly developed consolidometer cell, instrumented with load cells and pore water pressure transducers, is well-suited to test tailings from a slurry-like to a soil-like state and enables the constant rate of loading (CRL) to simulate the build-up of tailings. CRL is more representative of the rate of rise of tailings in a TSF than incremental step loading. By conducting consolidation tests on fine-grained coal tailings from a slurry-state under a loading rate of 0.12 kPa/min up to applied stress of 320 kPa, this research investigated the effect of initial specimen height (ISH) and initial solids concentration (ISC) on consolidation parameters and hydraulic conductivity. Using ISH and ISC as independent inputs, a statistical model has been proposed to estimate the consolidation settlement at the end of the slurry consolidation test.
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来源期刊
CiteScore
2.20
自引率
9.10%
发文量
5
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