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Intermittency in precipitation: Duration, frequency, intensity, and amounts using hourly data

    • National Center for Atmospheric Research
    • University of Colorado Boulder

    Research output: Contribution to journalArticlepeer-review

    139 Scopus citations

    Abstract

    Intermittency is a core characteristic of precipitation, not well described by data and very poorly modeled. Detailed analyses are made of near-global gridded (about 1°) hourly or 3-hourly precipitation rates from two updated observational datasets [3-hourly TRMM 3B42, version 7, and hourly CMORPH, version 1.0, bias corrected (CRT)] and from special runs of CESM from January 1998 to December 2013 to obtain hourly values. The analyses explore the intermittency of precipitation: the frequency, intensity, duration, and amounts. A comparison is made for all products using several metrics with a focus on the duration of events, and a new metric is proposed based on the ratio of the frequency of precipitation at certain rates (0.2-2 mm h-1) for hourly versus 3-hourly versus daily data. For all seasons and rain rates, TRMM values are similar in pattern to CMORPH, but durations are about 80%-85%. It is mainly over land in the monsoons that CMORPH exceeds TRMM rain durations. Observed duration of precipitation events in CMORPH over oceans are 12-15 h in the tropics and subtropics, much less than the ~20 h for CESM. Hence, the observational results differ somewhat but both are considerably different from the model, which has too much precipitation overall, and it precipitates far too often at low rates and not enough for intense rates, with the divide about 1-2 mm h-1. There is a need to properly represent precipitation phenomena and processes either explicitly or implicitly (parameterized).

    Original languageEnglish
    Pages (from-to)1393-1412
    Number of pages20
    JournalJournal of Hydrometeorology
    Volume18
    Issue number5
    DOIs
    StatePublished - May 1 2017

    Keywords

    • Coupled models
    • Hydrologic cycle
    • Hydrometeorology
    • Model errors
    • Precipitation
    • Rainfall

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