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A new statistically-based methodology for variability assessment of rheological parameters in mineral processing

机译:一种新的基于统计学方法,用于矿物加工中流变参数的变化评估

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摘要

If variability of input data for rheological measurements is not adequately included, their associated uncertainty and subsequent modelling can be underrated. Mineral pulp rheology determination is commonly done through triplicate tests, with such variability reported as multiples of a standard deviation, with the potential for underestimation. In the present work, a novel statistically-based methodology for the estimation of uncertainty in the rheological characterization of mineral suspensions -and other parametric models- is proposed. From the variability of the experimental measurements and the analytical propagation of errors, a set of rheological profiles are generated using Monte Carlo simulations within a variability frame. The corresponding inverse problem for curve-fitting is solved individually, resulting in distributions of fitted parameters, which were statistically-analyzed to obtain representative values for both the parameter and its true variability. The methodology proposed herein has been used to explore the applicability and limitations of the Herschel-Bulkley and Bingham models under specific experimental and data analysis protocols, where the relevance of including low-shear-rate measurement points or yield stress measurements using alternative methods is exposed. Additionally, we present a case study on the effect of the concentration of NaCl on the rheological response of synthetic tailings consisting of quartz suspensions doped with kaolinite, bentonite and kaolinite-bentonite blends, using the proposed methodology with a concentric cylinder rheometer. Results show predominantly decreasing trends in yield stress as salt concentration increases, with non-monotonical behavior and strongest variability associated to the quartz-bentonite blend.
机译:如果没有充分包括流变测量的输入数据的可变性,则可以低估它们相关的不确定性和随后的建模。矿物纸浆流变学测定通常通过三份测试进行,这种可变性报告为标准偏差的倍数,具有低估的可能性。在本作工作中,提出了一种新的基于统计学的方法,用于估计矿物悬浮液的流变特征中的不确定性 - 以及其他参数模型 - 是其他参数模型。根据实验测量的可变性和误差的分析传播,在变形框架内使用蒙特卡罗模拟产生一组流变型材。曲线拟合的相应逆问题单独解决,导致拟合参数分布,其在统计上分析以获得参数的代表值及其真实变异性。本文所提出的方法已经用于探讨Herschel-Bulkley和Bingham模型在特定实验和数据分析方案下的适用性和限制,其中包括使用替代方法的低剪切速率测量点或产量应力测量的相关性。此外,我们展示了NaCl浓度对由具有同心圆柱流变仪掺杂的石英悬浮液组成的石英悬浮液组成的合成尾矿流变响应的案例研究。结果表明,随着盐浓度的增加,屈服应力的趋势主要降低,具有非单调的行为和与石英膨润土混合物相关的最强的可变性。

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