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DOI10.1029/2020WR028714
Discharge Estimation from Dense Arrays of Pressure Transducers
M. E. Harlan; C. J. Gleason; E. H. Altenau; D. Butman; T. Carter; V. W. Chu; S. W. Cooley; W. D. Dolan; M. T. Durand; E. Eidam; J. V. Fayne; D. Feng; Y. Ishitsuka; C. Kuhn; E. D. Kyzivat; T. Langhorst; J. T. Minear; T. M. Pavelsky; D. L. Peters; A. Pietroniro; L. H. Pitcher; L. C. Smith
2021-02-15
发表期刊Water Resources Research
出版年2021
英文摘要

In situ river discharge estimation is a critical component of studying rivers. A dominant method for establishing discharge monitoring in situ is a temporary gauge, which uses a rating curve to relate stage to discharge. However, this approach is constrained by cost and the time to develop the stage‐discharge rating curve, as rating curves rely on numerous flow measurements at high and low stages. Here, we offer a novel alternative approach to traditional temporary gauges: estimating Discharge via Arrays of Pressure Transducers (DAPT). DAPT uses a Bayesian discharge algorithm developed for the upcoming Surface Water Ocean Topography satellite (SWOT) to estimate discharge in situ derived from automated water surface elevation measurements. We conducted sensitivity tests over 4,954 model runs on five gauged rivers and conclude that the DAPT method can robustly reproduce discharge with an average Nash‐Sutcliffe Efficiency (NSE) of 0.79 and Kling‐Gupta Efficiency of 0.78. Further, we find that the DAPT method estimates discharge similarly to an idealized temporary gauge created from the same input data (NSE differences of less than 0.1), and that results improve significantly with accurate priors. Finally, we test the DAPT method in nine poorly gauged rivers in a realistic and complex field setting in the Peace‐Athabasca Delta, and show that the DAPT method largely outperforms a temporary gauge in this time and budget constrained setting. We therefore recommend DAPT as an effective tool for in situ discharge estimation in cases where there is not enough time or resources to develop a temporary gauge.

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文献类型期刊论文
条目标识符http://119.78.100.173/C666/handle/2XK7JSWQ/315642
专题资源环境科学
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M. E. Harlan,C. J. Gleason,E. H. Altenau,et al. Discharge Estimation from Dense Arrays of Pressure Transducers[J]. Water Resources Research,2021.
APA M. E. Harlan.,C. J. Gleason.,E. H. Altenau.,D. Butman.,T. Carter.,...&L. C. Smith.(2021).Discharge Estimation from Dense Arrays of Pressure Transducers.Water Resources Research.
MLA M. E. Harlan,et al."Discharge Estimation from Dense Arrays of Pressure Transducers".Water Resources Research (2021).
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