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Modelling of the Theological behavior of mechanically dewatered sewage sludge in uniaxial cyclic compression

机译:机械脱水污泥在单轴循环压缩中的神学行为建模

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The rheological behavior of mechanically dewatered sewage sludges is complex but essential as it affects almost all treatment, utilization and disposal operations, such as storage, pumping, land-spreading, or drying. In this work, a specific methodology coupling experiments and modelling is developed to characterize the rheological and textural properties of highly concentrated sludge. The experimental part based on a uniaxial compression method has been presented in a previous paper (Liang et al., 2017). This article is dedicated to the modelling part, which includes the behavior identification and the parameters optimization. Previous and additional mechanical tests allow the identification of a visco-elasto-plastic behavior. This behavior is then modelled with a Burgers-Ludwik model, with 7 rheological parameters. This model is able to simulate the viscoelastic behavior of sludge under the yield stress, and the visco-elasto-plastic hardening behavior over the yield stress. The optimization of model parameters is carried out in two steps and relies on the calculation of basins of attraction and confidence intervals with initial conditions estimated from the mechanical tests. Finally, the entire characterization methodology, from experimental mechanical tests to model parameter optimization, is applied to sludge samples at different operating conditions and structural states. The determination of the rheological properties of sludge is achieved with excellent matching between simulation and experimental results. Being able to take into account these impact factors, the rheological model can be used to predict the sludge behavior in various operating conditions. (C) 2018 Elsevier Ltd. All rights reserved.
机译:机械脱水的污水污泥的流变行为是复杂的,但却是必不可少的,因为它影响几乎所有的处理,利用和处置操作,例如存储,泵送,土地铺展或干燥。在这项工作中,开发了一种结合实验和建模的特定方法,以表征高浓度污泥的流变和质地特性。在先前的论文中已经介绍了基于单轴压缩方法的实验部分(Liang et al。,2017)。本文致力于建模部分,其中包括行为识别和参数优化。先前和其他的机械测试可以识别粘弹塑性行为。然后使用具有7个流变参数的Burgers-Ludwik模型对该行为进行建模。该模型能够模拟污泥在屈服应力下的粘弹性行为,以及在屈服应力下的粘弹塑性硬化行为。模型参数的优化分两步进行,它依赖于具有吸引力的盆地和置信区间的计算,初始条件是根据机械测试估算得出的。最后,从实验机械测试到模型参数优化的整个表征方法,均适用于不同操作条件和结构状态下的污泥样品。通过模拟与实验结果之间的出色匹配,可以确定污泥的流变性。考虑到这些影响因素,流变模型可用于预测各种工况下的污泥行为。 (C)2018 Elsevier Ltd.保留所有权利。

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