Explicit Forecasts of Low-Level Rotation from Convection-Allowing Models for Next-Day Tornado PredictionSource: Weather and Forecasting:;2016:;volume( 031 ):;issue: 005::page 1591Author:Sobash, Ryan A.
,
Romine, Glen S.
,
Schwartz, Craig S.
,
Gagne, David J.
,
Weisman, Morris L.
DOI: 10.1175/WAF-D-16-0073.1Publisher: American Meteorological Society
Abstract: hree diagnostic fields were examined to assess their ability to act as surrogates for tornadoes in a convection-allowing ensemble system run during the spring of 2015. The diagnostics included midlevel (2?5 km AGL) updraft helicity (UH25), low-level (0?3 km AGL) updraft helicity (UH03), and low-level (1 km AGL) vertical relative vorticity (RVORT1). RVORT1 was used as a direct measure of low-level rotation strength. Each storm?s RVORT1 magnitude and near-storm environment properties were extracted from each hour?s forecasts using an object-based approach. The near-storm environments of storm objects with large magnitudes of RVORT1 were very similar to the environments identified as conducive for the development of tornadic supercells in previous proximity sounding-based studies (e.g., low lifted condensation levels and strong low-level shear). This motivated the use of RVORT1 as a direct surrogate for tornadoes, without the need to filter forecasts with environmental information. The relationship between UH25 and UH03 was also explored among the simulated storms; UH03 only exceeded UH25 in storms occurring within low-CAPE/high-shear environments, while UH03 rarely exceeded UH25 in traditional supercell environments. Next-day ensemble surrogate severe probability forecasts (E-SSPFs) for tornadoes were generated using these diagnostics for 92 forecasts, with thresholds based on the number of observed tornado reports. E-SSPFs for tornadoes using RVORT1 and UH03 were more skillful than E-SSPFs using UH25. The UH25 E-SSPFs possessed little skill, regardless of threshold or smoothing length scale. All E-SSPFs suffered from poor sharpness at skillful scales, with few forecast probabilities greater than 40%.
|
Collections
Show full item record
| contributor author | Sobash, Ryan A. | |
| contributor author | Romine, Glen S. | |
| contributor author | Schwartz, Craig S. | |
| contributor author | Gagne, David J. | |
| contributor author | Weisman, Morris L. | |
| date accessioned | 2017-06-09T17:37:25Z | |
| date available | 2017-06-09T17:37:25Z | |
| date copyright | 2016/10/01 | |
| date issued | 2016 | |
| identifier issn | 0882-8156 | |
| identifier other | ams-88250.pdf | |
| identifier uri | http://onlinelibrary.yabesh.ir/handle/yetl/4232009 | |
| description abstract | hree diagnostic fields were examined to assess their ability to act as surrogates for tornadoes in a convection-allowing ensemble system run during the spring of 2015. The diagnostics included midlevel (2?5 km AGL) updraft helicity (UH25), low-level (0?3 km AGL) updraft helicity (UH03), and low-level (1 km AGL) vertical relative vorticity (RVORT1). RVORT1 was used as a direct measure of low-level rotation strength. Each storm?s RVORT1 magnitude and near-storm environment properties were extracted from each hour?s forecasts using an object-based approach. The near-storm environments of storm objects with large magnitudes of RVORT1 were very similar to the environments identified as conducive for the development of tornadic supercells in previous proximity sounding-based studies (e.g., low lifted condensation levels and strong low-level shear). This motivated the use of RVORT1 as a direct surrogate for tornadoes, without the need to filter forecasts with environmental information. The relationship between UH25 and UH03 was also explored among the simulated storms; UH03 only exceeded UH25 in storms occurring within low-CAPE/high-shear environments, while UH03 rarely exceeded UH25 in traditional supercell environments. Next-day ensemble surrogate severe probability forecasts (E-SSPFs) for tornadoes were generated using these diagnostics for 92 forecasts, with thresholds based on the number of observed tornado reports. E-SSPFs for tornadoes using RVORT1 and UH03 were more skillful than E-SSPFs using UH25. The UH25 E-SSPFs possessed little skill, regardless of threshold or smoothing length scale. All E-SSPFs suffered from poor sharpness at skillful scales, with few forecast probabilities greater than 40%. | |
| publisher | American Meteorological Society | |
| title | Explicit Forecasts of Low-Level Rotation from Convection-Allowing Models for Next-Day Tornado Prediction | |
| type | Journal Paper | |
| journal volume | 31 | |
| journal issue | 5 | |
| journal title | Weather and Forecasting | |
| identifier doi | 10.1175/WAF-D-16-0073.1 | |
| journal fristpage | 1591 | |
| journal lastpage | 1614 | |
| tree | Weather and Forecasting:;2016:;volume( 031 ):;issue: 005 | |
| contenttype | Fulltext |