...
首页> 外文期刊>Advances in Water Resources >An efficient approximation of non-Fickian transport using a time-fractional transient storage model
【24h】

An efficient approximation of non-Fickian transport using a time-fractional transient storage model

机译:使用时间分数瞬态存储模型有效地近似非菲克尼运量

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

The classical transient storage (TS) model is widely used to describe a non-Fickian solute transport process induced by the solute mass exchange between the main channel and the immobile zone. It has been shown that the single rate TS model tends to underestimate the slower exchange that occurs in a deeper or longer hyporheic flow path. This long-term retention can be better described by the fractional mobile/immobile model (FMIM). However, in a real-world application, this method usually overestimates the late time concentrations in a breakthrough curve (BTC), which can be better described by the tempered-time-fractional model (TTFM). In this study, we introduced a fractional-in-time derivative TS model (FTTS), which can describe broad waiting times in a particle motion process. First, a fully-implicit numerical scheme was applied to solve the FTTS and the method was validated by comparing its results with the analytical solutions of the classical advection-dispersion model (ADE) and the FMIM. Then, the FTTS was applied to fit the synthetic data generated by the STAMMT-L and field tracer experiment data. Further, a variance-based global sensitivity analysis was performed to assess the influence rank of the parameters to the heavy tail of the BTCs. The results indicated that the FTTS could fit the BTCs generated by the ADE and FMIM well. In synthetic cases, the FITS could reproduce different heavy tailing BTCs accurately. In addition, the FTTS could well describe tracer data in natural streams and performed better than the TTFM. The sensitivity analysis indicated that both the fractional-in-time term and the TS term in the FTTS had important impacts on the tail of the BTC, which could make the FTTS more flexible for describing the tailing phenomenon in a BTC.
机译:经典瞬态存储(TS)模型被广泛用于描述由主通道和固定区域之间的溶质交换引起的非菲克溶质运移过程。已经表明,单速率TS模型倾向于低估在较深或较长的低流动路径中发生的较慢的交换。通过分数移动/固定模型(FMIM)可以更好地描述这种长期保留。但是,在实际应用中,此方法通常会高估突破曲线(BTC)中的延迟时间浓度,这可以通过调整时间分数模型(TTFM)更好地描述。在这项研究中,我们引入了时间分数导数TS模型(FTTS),该模型可以描述粒子运动过程中的宽等待时间。首先,采用全隐式数值格式求解FTTS,并通过将其结果与经典对流扩散模型(ADE)和FMIM的解析解进行比较来验证该方法。然后,应用FTTS来拟合由STAMMT-L生成的合成数据和现场示踪剂实验数据。此外,进行了基于方差的全局敏感性分析,以评估参数对BTC的粗尾的影响等级。结果表明,FTTS可以很好地适合ADE和FMIM生成的BTC。在合成情况下,FITS可以准确地复制不同的重尾矿比特币。此外,FTTS可以很好地描述自然流中的示踪剂数据,并且比TTFM表现更好。敏感性分析表明,FTTS中的时间分数项和TS项都对BTC的尾部有重要影响,这可以使FTTS更加灵活地描述BTC的尾部现象。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号