The 13–14 December 2001 IMPROVE-2 Event. Part III: Simulated Microphysical Budgets and Sensitivity Studies
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- Type
- article
- Published
- 2005-10-01
- Cited by
- 100
- References
- 46
- OpenAlex
- https://openalex.org/W2074690430
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:122212766
Keywords
Graupel, Environmental science, Precipitation, Snow, MM5
References
- Numerical Modeling of Dynamical and Microphysical Evolution of an Isolated Convective Cloud
- Explicit Forecasts of Winter Precipitation Using an Improved Bulk Microphysics Scheme. Part I: Description and Sensitivity Analysis
- Microphysical Structure and Evolution of a Central Sierra Nevada Orographic Cloud System
- Use of Four-Dimensional Data Assimilation in a Limited-Area Mesoscale Model. Part I: Experiments with Synoptic-Scale Data
- The 13–14 December 2001 IMPROVE-2 Event. Part I: Synoptic and Mesoscale Evolution and Comparison with a Mesoscale Model Simulation
- Evaluation of key microphysical parameters in three‐dimensional cloud‐model simulations using aircraft and multiparameter radar data
- Fall speeds and masses of solid precipitation particles
- An Analysis of Cloud Drop Growth by Collection: Part IV. A New Parameterization
- Microphysical Processes and Synergistic Interaction between Frontal and Orographic Forcing of Precipitation during the 13 December 2001 IMPROVE-2 Event over the Oregon Cascades
- Improvement of Microphysical Parameterization through Observational Verification Experiment
- A Linear Theory of Orographic Precipitation
- Production of secondary ice particles during the riming process
- Modelling precipitation in frontal rainbands
- Bulk Microphysical Sensitivities within the MM5 for Orographic Precipitation. Part I: The Sierra 1986 Event
- The Mesoscale and Microscale Structure and Organization of Clouds and Precipitation in Midlatitude Cyclones. VIII: A Model for the “Seeder-Feeder” Process in Warm-Frontal Rainbands
- Evaluation of the Potential for Wintertime Quantitative Precipitation Forecasting over Mountainous Terrain with an Explicit Cloud Model. Part I: Two-Dimensional Sensitivity Experiments.
- Nonlocal Boundary Layer Vertical Diffusion in a Medium-Range Forecast Model
- Air motions and precipitation growth in Alpine storms
- Bulk Parameterization of the Snow Field in a Cloud Model
- Size Distributions of Precipitation Particles in Frontal Clouds.
Cited by
- The Impact of Microphysical Schemes on Intensity and Track of Hurricane
- Studying Precipitation Processes in WRF with Goddard Bulk Microphysics in Comparison with Other Microphysical Schemes
- On the Climatology of Orographic Precipitation in the Mid-Latitudes
- Parameterization Schemes: Keys to Understanding Numerical Weather Prediction Models
- An evaluation of fall speed characteristics in bin and bulk microphysical schemes and use of bin fall speeds to improve forecasts of warm-season rainfall
- Evaluation of precipitation forecasts by polarimetric radar
- High‐resolution NU‐WRF simulations of a deep convective‐precipitation system during MC3E: Further improvements and comparisons between Goddard microphysics schemes and observations
- The 4–5 December 2001 IMPROVE-2 Event: Observed Microphysics and Comparisons with the Weather Research and Forecasting Model
- Small‐scale precipitation variability in the Alps: Climatology in comparison with semi‐idealized numerical simulations
- The 13–14 December 2001 IMPROVE-2 Event. Part I: Synoptic and Mesoscale Evolution and Comparison with a Mesoscale Model Simulation
- Fall speed measurement and high-resolution multi-angle photography of hydrometeors in free fall
- The Impact of Positive-Definite Moisture Advection and Low-Level Moisture Flux Bias over Orography
- A study of the microphysical processes in a numerically simulated heavy snowfall event in North China: the sensitivity of different snow intercept parameters
- Parameterization of Cloud Microphysics Based on the Prediction of Bulk Ice Particle Properties. Part II: Case Study Comparisons with Observations and Other Schemes
- Microphysical Processes and Synergistic Interaction between Frontal and Orographic Forcing of Precipitation during the 13 December 2001 IMPROVE-2 Event over the Oregon Cascades
- A study of the triggering mechanisms for deep convection in the Tropics using a Mesoscale Model: Hector events during SCOUT-O3 and TWP-ICE campaigns. (3.10)
- A New Bulk Microphysical Scheme That Includes Riming Intensity and Temperature-Dependent Ice Characteristics
- Validating precipitation forecasts using remote sensor synergy: A case study approach
- The impact of microphysical schemes on hurricane intensity and track
- Verification of Hydrometeor Properties Simulated by a Cloud-Resolving Model Using a Passive Microwave Satellite and Ground-Based Radar Observations for a Rainfall System Associated with the Baiu Front
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