Literature DB >> 27331372

Improved Vertical Streambed Flux Estimation Using Multiple Diurnal Temperature Methods in Series.

D J Irvine1,2, M A Briggs3, I Cartwright1,2, C R Scruggs3, L K Lautz4.   

Abstract

Analytical solutions that use diurnal temperature signals to estimate vertical fluxes between groundwater and surface water based on either amplitude ratios (Ar ) or phase shifts (Δϕ) produce results that rarely agree. Analytical solutions that simultaneously utilize Ar and Δϕ within a single solution have more recently been derived, decreasing uncertainty in flux estimates in some applications. Benefits of combined (Ar Δϕ) methods also include that thermal diffusivity and sensor spacing can be calculated. However, poor identification of either Ar or Δϕ from raw temperature signals can lead to erratic parameter estimates from Ar Δϕ methods. An add-on program for VFLUX 2 is presented to address this issue. Using thermal diffusivity selected from an Ar Δϕ method during a reliable time period, fluxes are recalculated using an Ar method. This approach maximizes the benefits of the Ar and Ar Δϕ methods. Additionally, sensor spacing calculations can be used to identify periods with unreliable flux estimates, or to assess streambed scour. Using synthetic and field examples, the use of these solutions in series was particularly useful for gaining conditions where fluxes exceeded 1 m/d.
© 2016, National Ground Water Association.

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Year:  2016        PMID: 27331372     DOI: 10.1111/gwat.12436

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


  2 in total

1.  Heat as a groundwater tracer in shallow and deep heterogeneous media: Analytical solution, spreadsheet tool, and field applications.

Authors:  B L Kurylyk; Dylan J Irvine; Sean K Carey; Martin A Briggs; Dale D Werkema; Mariah Bonham
Journal:  Hydrol Process       Date:  2017-07-01       Impact factor: 3.565

2.  GW/SW-MST: A Groundwater/Surface-Water Method Selection Tool.

Authors:  Steven Hammett; Frederick D Day-Lewis; Brett Trottier; Paul M Barlow; Martin A Briggs; Geoffrey Delin; Judson W Harvey; Carole D Johnson; John W Lane; Donald O Rosenberry; Dale D Werkema
Journal:  Ground Water       Date:  2022-03-16       Impact factor: 2.887

  2 in total

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