Assimilating Tropospheric Airborne Meteorological Data Reporting (TAMDAR) Observations and the Relative Value of Other Observation Types
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- Type
- report
- Published
- 2014-08-01
- Cited by
- 3
- References
- 23
- Access
- Open access
- OpenAlex
- https://openalex.org/W340992103
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:127030772
Keywords
Troposphere, Environmental science, Meteorology, Climatology, Value (mathematics)
References
- Using Real-Time Weather Data from an Unmanned Aircraft System to Support the Advanced Research Version of the Weather Research and Forecast Model
- The WRF Single-Moment 6-Class Microphysics Scheme (WSM6)
- Improving High-Resolution Numerical Weather Simulations by Assimilating Data from an Unmanned Aerial System
- Evaluation of Regional Aircraft Observations Using TAMDAR
- The Real-Time Mesoscale Analysis at NOAA’s National Centers for Environmental Prediction: Current Status and Development
- Radiative transfer for inhomogeneous atmospheres: RRTM, a validated correlated-k model for the longwave
- An Objective Methodology for Configuring and Down-Selecting an NWP Ensemble for Low-Level Wind Prediction
- Land-Surface Heterogeneity Effects in the Planetary Boundary Layer
- Coupling an Advanced Land Surface–Hydrology Model with the Penn State–NCAR MM5 Modeling System. Part I: Model Implementation and Sensitivity
- A Revised Approach to Ice Microphysical Processes for the Bulk Parameterization of Clouds and Precipitation
- The Kain–Fritsch Convective Parameterization: An Update
- Mitigating Excessive Drying from the Use of Observations in Mesoscale Modeling
- Estimation of TAMDAR Observational Error and Assimilation Experiments
- Coupling an Advanced Land Surface–Hydrology Model with the Penn State–NCAR MM5 Modeling System. Part II: Preliminary Model Validation
- Numerical Study of Convection Observed during the Winter Monsoon Experiment Using a Mesoscale Two-Dimensional Model
- Nonsingular implementation of the Mellor-Yamada level 2.5 scheme in the NCEP Meso model
- Validation of Tropospheric Airborne Meteorological Data Reporting (TAMDAR) Temperature, Relative Humidity, and Wind Sensors During the 2003 Atlantic THORPEX Regional Campaign and the Alliance Icing Research Study (AIRS II)
- A Description of the Advanced Research WRF Version 3
Cited by
- Improving Weather Research and Forecasting Model Initial Conditions via Surface Pressure Analysis
- Intercomparison of 7 Planetary Boundary- Layer/Surface-Layer Physics Schemes over Complex Terrain for Battlefield Situational Awareness
- Wind Speed Ramp Rate Predictions Using Wind Farm SCADA Data Assimilation and a WRF Ensemble
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