Literature DB >> 28910853

Impacts of Streambed Heterogeneity and Anisotropy on Residence Time of Hyporheic Zone.

Suning Liu1, Ting Fong May Chui.   

Abstract

The hyporheic zone (HZ), which is the region beneath or alongside a streambed, plays an important role in the stream's ecology. The duration that a water molecule or a solute remains within the HZ, or residence time (RT), is one of the most common metrics used to evaluate the function of the HZ. The RT is greatly influenced by the streambed's hydraulic conductivity (K), which is intrinsically difficult to characterize due to its heterogeneity and anisotropy. Many laboratory and numerical studies of the HZ have simplified the streambed K to a constant, thus producing RT values that may differ from those gathered from the field. Some studies have considered the heterogeneity of the HZ, but very few have accounted for anisotropy or the natural K distributions typically found in real streambeds. This study developed numerical models in MODFLOW to examine the influence of heterogeneity and anisotropy, and that of the natural K distribution in a streambed, on the RT of the HZ. Heterogeneity and anisotropy were both found to shorten the mean and median RTs while increasing the range of the RTs. Moreover, heterogeneous K fields arranged in a more orderly pattern had longer RTs than those with random K distributions. These results could facilitate the design of streambed K values and distributions to achieve the desired RT during river restoration. They could also assist the translation of results from the more commonly considered homogeneous and/or isotropic conditions into heterogeneous and anisotropic field situations.
© 2017, National Ground Water Association.

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Year:  2017        PMID: 28910853     DOI: 10.1111/gwat.12589

Source DB:  PubMed          Journal:  Ground Water        ISSN: 0017-467X            Impact factor:   2.671


  1 in total

1.  Influence of the In-Stream Structure on Solute Transport in the Hyporheic Zone.

Authors:  Han Li; Ying Liu; Jinghong Feng; Defu Liu; Yi Li; Lihui Chen; Jingwen Xiao
Journal:  Int J Environ Res Public Health       Date:  2022-05-11       Impact factor: 4.614

  1 in total

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