Estimates of freshwater discharge from continents: Latitudinal and seasonal variations

Annual and monthly mean values of continental freshwater discharge into the oceans are estimated at 1° resolution using several methods. The most accurate estimate is based on streamflow data from the world's largest 921 rivers, supplemented with estimates of discharge from unmonitored areas based on the ratios of runoff and drainage area between the unmonitored and monitored regions. Simulations using a river transport model (RTM) forced by a runoff field were used to derive the river mouth outflow from the farthest downstream gauge records. Separate estimates are also made using RTM simulations forced by three different runoff fields: 1) based on observed streamflow and a water balance model, and from estimates of precipitation P minus evaporation E computed as residuals from the atmospheric moisture budget using atmospheric reanalyses from 2) the National Centers for Environmental Prediction-National Center for Atmospheric Research (NCEP-NCAR) and 3) the European Centre for Medium-Range Weather Forecasts (ECMWF). Compared with previous estimates, improvements are made in extending observed discharge downstream to the river mouth, in accounting for the unmonitored streamflow, in discharging runoff at correct locations, and in providing an annual cycle of continental discharge. The use of river mouth outflow increases the global continental discharge by 19% compared with unadjusted streamflow from the farthest downstream stations. The river-based estimate of global continental discharge presented here is 37288 ± 662 km³ yr¹⁻, which is 7.6% of global P or 35% of terrestrial P. While this number is comparable to earlier estimates, its partitioning into individual oceans and its latitudinal distribution differ from earlier studies. The peak discharges into the Arctic, the Pacific, and global oceans occur in June, versus May for the Atlantic and August for the Indian Oceans. Snow accumulation and melt are shown to have large effects on the annual cycle of discharge into all ocean basins except for the Indian Ocean and the Mediterranean and Black Seas. The discharge and its latitudinal distribution implied by the observation-based runoff and the ECMWF reanalysis-based P-E agree well with the river-based estimates, whereas the discharge implied by the NCEP-NCAR reanalysis-based P-E has a negative bias.

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Related Links

Related Dataset #1 : Streamflow drought indicators across conterminous United States

Related Dataset #2 : Augmented Monthly Flow Rates of World Rivers (except former Soviet Union)

Related Dataset #3 : Russian River Flow Data by Bodo, Enhanced

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Copyright 2002 American Meteorological Society (AMS). Permission to use figures, tables, and brief excerpts from this work in scientific and educational works is hereby granted provided that the source is acknowledged. Any use of material in this work that is determined to be "fair use" under Section 107 of the U.S. Copyright Act or that satisfies the conditions specified in Section 108 of the U.S. Copyright Act (17 USC §108, as revised by P.L. 94-553) does not require the AMS's permission. Republication, systematic reproduction, posting in electronic form on servers, or other uses of this material, except as exempted by the above statement, requires written permission or a license form the AMS. Additional details are provided in the AMS Copyright Policy, available on the AMS Web site located at (http://www.ametsoc.org/AMS) or from the AMS at 617-227-2425 or copyright@ametsoc.org.


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Author Dai, Aiguo
Trenberth, Kevin
Publisher UCAR/NCAR - Library
Publication Date 2002-12-01T00:00:00
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Topic Category geoscientificInformation
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Metadata Date 2023-08-18T18:08:09.150534
Metadata Record Identifier edu.ucar.opensky::articles:17601
Metadata Language eng; USA
Suggested Citation Dai, Aiguo, Trenberth, Kevin. (2002). Estimates of freshwater discharge from continents: Latitudinal and seasonal variations. UCAR/NCAR - Library. http://n2t.net/ark:/85065/d7639r2f. Accessed 16 March 2025.

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