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Mechanism based diffusion-reaction modelling for predicting the influence of SARA composition and ageing stage on spurt completion time and diffusivity in bitumen

机译:基于机理的扩散反应建模,用于预测SARA组成和老化阶段对沥青中喷射完成时间和扩散性的影响

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摘要

Diffusion-reaction models derived within the frame of continuum thermodynamics of irreversible processes for reacting mixtures enjoy a number of advantages over purely phenomenological models. This paper explores the potential and challenges of this approach by means of a particular model for spurt oxidation in bitumen.Film ageing experiments are simulated considering different bitumen compositions in terms of SARA fractions. The predicted spurt completion times are contrasted with parameters characterizing the initial composition. The results demonstrate the consistency of the model. Furthermore, the trend regarding spurt completion time predicted by the model is in line with experimental results from the Strategic Highway Research Program (SHRP).In addition, the change in diffusivity due to oxidation is discussed for different compositions. The model consistently predicts a significant decrease in diffusivity due to oxidation in the absence of out-diffusion of reaction products. (C) 2020 Elsevier Ltd. All rights reserved.
机译:在不可逆过程的连续工艺框架内导出的扩散反应模型用于反应混合物的不可逆转过程中的纯粹性现象模型的许多优点。本文借助于沥青中的喷射氧化的特定模型探讨这种方法的潜在和挑战。在莎拉级分方面考虑了不同沥青组合物的模拟了近霉菌的实验。预测的喷射完成时间与表征初始组成的参数形成对比。结果证明了模型的一致性。此外,模型预测的突然完成时间的趋势符合战略公路研究计划(SHRP)的实验结果。此外,对于不同的组合物,讨论了由于氧化引起的扩散性的变化。由于在不存在反应产物的情况下,该模型一致地预测由于氧化而导致的扩散性显着降低。 (c)2020 elestvier有限公司保留所有权利。

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