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A North American Hourly Assimilation and Model Forecast Cycle: The Rapid Refresh
by
Dowell, David C.
, Moninger, William R.
, Grell, Georg A.
, Peckham, Steven E.
, Lin, Haidao
, Smith, Tracy Lorraine
, Alexander, Curtis R.
, Weygandt, Stephen S.
, James, Eric P.
, Smirnova, Tatiana G.
, Kenyon, Jaymes S.
, Benjamin, Stanley G.
, Olson, Joseph B.
, Brown, John M.
, Manikin, Geoffrey S.
, Hu, Ming
in
Aviation
/ Data assimilation
/ Data collection
/ Decision making
/ Forecast verification
/ Interpolation
/ Mathematical models
/ Modelling
/ Physics
/ Precipitation
/ Rawinsondes
/ Regional analysis
/ Regional planning
/ Severe weather
/ Situational awareness
/ Statistical analysis
/ Verification
/ Weather
/ Weather forecasting
2016
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A North American Hourly Assimilation and Model Forecast Cycle: The Rapid Refresh
by
Dowell, David C.
, Moninger, William R.
, Grell, Georg A.
, Peckham, Steven E.
, Lin, Haidao
, Smith, Tracy Lorraine
, Alexander, Curtis R.
, Weygandt, Stephen S.
, James, Eric P.
, Smirnova, Tatiana G.
, Kenyon, Jaymes S.
, Benjamin, Stanley G.
, Olson, Joseph B.
, Brown, John M.
, Manikin, Geoffrey S.
, Hu, Ming
in
Aviation
/ Data assimilation
/ Data collection
/ Decision making
/ Forecast verification
/ Interpolation
/ Mathematical models
/ Modelling
/ Physics
/ Precipitation
/ Rawinsondes
/ Regional analysis
/ Regional planning
/ Severe weather
/ Situational awareness
/ Statistical analysis
/ Verification
/ Weather
/ Weather forecasting
2016
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Do you wish to request the book?
A North American Hourly Assimilation and Model Forecast Cycle: The Rapid Refresh
by
Dowell, David C.
, Moninger, William R.
, Grell, Georg A.
, Peckham, Steven E.
, Lin, Haidao
, Smith, Tracy Lorraine
, Alexander, Curtis R.
, Weygandt, Stephen S.
, James, Eric P.
, Smirnova, Tatiana G.
, Kenyon, Jaymes S.
, Benjamin, Stanley G.
, Olson, Joseph B.
, Brown, John M.
, Manikin, Geoffrey S.
, Hu, Ming
in
Aviation
/ Data assimilation
/ Data collection
/ Decision making
/ Forecast verification
/ Interpolation
/ Mathematical models
/ Modelling
/ Physics
/ Precipitation
/ Rawinsondes
/ Regional analysis
/ Regional planning
/ Severe weather
/ Situational awareness
/ Statistical analysis
/ Verification
/ Weather
/ Weather forecasting
2016
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A North American Hourly Assimilation and Model Forecast Cycle: The Rapid Refresh
Journal Article
A North American Hourly Assimilation and Model Forecast Cycle: The Rapid Refresh
2016
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Overview
The Rapid Refresh (RAP), an hourly updated assimilation and model forecast system, replaced the Rapid Update Cycle (RUC) as an operational regional analysis and forecast system among the suite of models at the NOAA/National Centers for Environmental Prediction (NCEP) in 2012. The need for an effective hourly updated assimilation and modeling system for the United States for situational awareness and related decision-making has continued to increase for various applications including aviation (and transportation in general), severe weather, and energy. The RAP is distinct from the previous RUC in three primary aspects: a larger geographical domain (covering North America), use of the community-based Advanced Research version of the Weather Research and Forecasting (WRF) Model (ARW) replacing the RUC forecast model, and use of the Gridpoint Statistical Interpolation analysis system (GSI) instead of the RUC three-dimensional variational data assimilation (3DVar). As part of the RAP development, modifications have been made to the community ARW model (especially in model physics) and GSI assimilation systems, some based on previous model and assimilation design innovations developed initially with the RUC. Upper-air comparison is included for forecast verification against both rawinsondes and aircraft reports, the latter allowing hourly verification. In general, the RAP produces superior forecasts to those from the RUC, and its skill has continued to increase from 2012 up to RAP version 3 as of 2015. In addition, the RAP can improve on persistence forecasts for the 1–3-h forecast range for surface, upper-air, and ceiling forecasts.
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