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  4. Transit Time Estimation in Catchments: Recent Developments and Future Directions
 
review article

Transit Time Estimation in Catchments: Recent Developments and Future Directions

Benettin, Paolo  
•
Rodriguez, Nicolas B.
•
Sprenger, Matthias
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November 1, 2022
Water Resources Research

Water transit time is now a standard measure in catchment hydrological and ecohydrological research. The last comprehensive review of transit time modeling approaches was published 15+ years ago. But since then the field has largely expanded with new data, theory and applications. Here, we review these new developments with focus on water-age-balance approaches and data-based approaches. We discuss and compare methods including StorAge-Selection functions, well/partially mixed compartments, water age tracking through spatially distributed models, direct transit time estimates from controlled experiments, young water fractions, and ensemble hydrograph separation. We unify some of the heterogeneity in the literature that has crept in with these many new approaches, in an attempt to clarify the key differences and similarities among them. Finally, we point to open questions in transit time research, including what we still need from theory, models, field work, and community practice.

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Type
review article
DOI
10.1029/2022WR033096
Web of Science ID

WOS:000888572700001

Author(s)
Benettin, Paolo  
Rodriguez, Nicolas B.
Sprenger, Matthias
Kim, Minseok
Klaus, Julian
Harman, Ciaran J.
van der Velde, Ype
Hrachowitz, Markus
Botter, Gianluca
McGuire, Kevin J.
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Date Issued

2022-11-01

Publisher

AMER GEOPHYSICAL UNION

Published in
Water Resources Research
Volume

58

Issue

11

Article Number

e2022WR033096

Subjects

Environmental Sciences

•

Limnology

•

Water Resources

•

Environmental Sciences & Ecology

•

Marine & Freshwater Biology

•

transit time

•

water age

•

catchment

•

review

•

transport

•

tracer

•

young water fractions

•

residence time

•

stream water

•

age distributions

•

groundwater age

•

high-resolution

•

soil-water

•

storage dynamics

•

stable-isotopes

•

travel-times

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
ECHO  
Available on Infoscience
December 19, 2022
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/193419
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