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BibEntryCargo > Journal : Journal of Geophysical Research: Atmospheres or Monthly Weather Review or None

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Title:
A Coupled Atmosphere–Wave–Ocean Modeling System: Simulation of the Intensity of an Idealized Tropical Cyclone (3) · Evaluation of coupled wind / wave model simulations of offshore winds in the Mid-Atlantic Bight using lidar-equipped buoys. (3) · Impact of Lateral Flow on Surface Water and Energy Budgets Over the Southern Great Plains—A Modeling Study (2) · A High-Resolution Coupled Riverine Flow, Tide, Wind, Wind Wave, and Storm Surge Model for Southern Louisiana and Mississippi. Part I: Model Development and Validation (2) · Impact of Lateral Terrestrial Water Flow on Land‐Atmosphere Interactions in the Heihe River Basin in China: Fully Coupled Modeling and Precipitation Recycling Analysis (2) · A New Way to Improve Seasonal Prediction by Diagnosing and Correcting the Intermodel Systematic Errors (2) · Performance of the Weather Research and Forecasting Model for Month-Long Pan-Arctic Simulations (2) · E3DVar: Coupling an Ensemble Kalman Filter with Three-Dimensional Variational Data Assimilation in a Limited-Area Weather Prediction Model and Comparison to E4DVar (2) · Impact of Tropical Cyclone Landfall Angle on Storm Surge Along the Mid‐Atlantic Bight (2) · Assimilation of Precipitation-Affected Radiances in a Cloud-Resolving WRF Ensemble Data Assimilation System (2) · Evaluation of Surface Analyses and Forecasts with a Multiscale Ensemble Kalman Filter in Regions of Complex Terrain (2) · The Role of Parameterizations and Model Coupling on Simulations of Energy and Water Balances – Investigations With the Atmospheric Model WRF and the Hydrologic Model WRF‐Hydro (2) · Tests of an Ensemble Kalman Filter for Mesoscale and Regional-Scale Data Assimilation. Part IV: Comparison with 3DVAR in a Month-Long Experiment (2) · An Immersed Boundary Method for the Weather Research and Forecasting Model (2) · Role of Lateral Terrestrial Water Flow on the Regional Water Cycle in a Complex Terrain Region: Investigation With a Fully Coupled Model System (2) · Modeling the Atmospheric Boundary Layer Wind Response to Mesoscale Sea Surface Temperature Perturbations (2)
 
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Auto downloaded ref at: 2024-09-08 (201) · Auto downloaded ref at: 2024-09-05 (155) · Auto downloaded ref at: 2024-09-04 (138) · Auto downloaded ref at: 2020-06-19 (100) · Auto downloaded ref at: 2024-08-30 (55) · Auto downloaded ref at: 2020-06-07 (52) · Auto downloaded ref at: 2021-01-12 (20) · Auto downloaded ref at: 2022-02-18 (19) · Auto downloaded ref at: 2019-12-31 (17) · Auto downloaded ref at: 2020-06-17 (12) · Auto downloaded ref at: 2024-08-29 (11) · Auto downloaded ref at: 2020-06-10 (10) · Auto downloaded ref at: 2022-10-06 (8) · Auto downloaded ref at: 2020-07-16 (7) · Auto downloaded ref at: 2021-04-20 (6) · Auto downloaded ref at: 2024-09-09 (5) · Auto downloaded ref at: 2020-06-05 (4) · Auto downloaded ref at: 2020-06-25 (4) · Auto downloaded ref at: 2021-04-16 (4) · Auto downloaded ref at: 2021-01-22 (4)

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