The role of vertical wind shear in modulating maximum supercell updraft velocities JM Peters, CJ Nowotarski, H Morrison Journal of the Atmospheric Sciences 76 (10), 3169-3189, 2019 | 88 | 2019 |
Classifying proximity soundings with self-organizing maps toward improving supercell and tornado forecasting CJ Nowotarski, AA Jensen Weather and forecasting 28 (3), 783-801, 2013 | 71 | 2013 |
The characteristics of numerically simulated supercell storms situated over statically stable boundary layers CJ Nowotarski, PM Markowski, YP Richardson Monthly weather review 139 (10), 3139-3162, 2011 | 61 | 2011 |
The influences of effective inflow layer streamwise vorticity and storm-relative flow on supercell updraft properties JM Peters, CJ Nowotarski, JP Mulholland, RL Thompson Journal of the Atmospheric Sciences 77 (9), 3033-3057, 2020 | 47 | 2020 |
Are supercells resistant to entrainment because of their rotation? JM Peters, CJ Nowotarski, GL Mullendore Journal of the Atmospheric Sciences 77 (4), 1475-1495, 2020 | 40 | 2020 |
The influence of lifting condensation level on low-level outflow and rotation in simulated supercell thunderstorms M Brown, CJ Nowotarski Journal of the Atmospheric Sciences 76 (5), 1349-1372, 2019 | 40 | 2019 |
Effects of the low-level wind profile on outflow position and near-surface vertical vorticity in simulated supercell thunderstorms F Guarriello, CJ Nowotarski, CC Epifanio Journal of the Atmospheric Sciences 75 (3), 731-753, 2018 | 37 | 2018 |
A formula for the maximum vertical velocity in supercell updrafts JM Peters, H Morrison, CJ Nowotarski, JP Mulholland, RL Thompson Journal of the Atmospheric Sciences 77 (11), 3747-3757, 2020 | 34 | 2020 |
Modifications to the near-storm environment induced by simulated supercell thunderstorms CJ Nowotarski, PM Markowski Monthly Weather Review 144 (1), 273-293, 2016 | 34 | 2016 |
Supercell low-level mesocyclones in simulations with a sheared convective boundary layer CJ Nowotarski, PM Markowski, YP Richardson, GH Bryan Monthly Weather Review 143 (1), 272-297, 2015 | 27 | 2015 |
Multivariate self-organizing map approach to classifying supercell tornado environments using near-storm, low-level wind and thermodynamic profiles CJ Nowotarski, EA Jones Weather and Forecasting 33 (3), 661-670, 2018 | 25 | 2018 |
Evaluating the effective inflow layer of simulated supercell updrafts CJ Nowotarski, JM Peters, JP Mulholland Monthly Weather Review 148 (8), 3507-3532, 2020 | 23 | 2020 |
The influence of shear on deep convection initiation. Part I: Theory JM Peters, H Morrison, TC Nelson, JN Marquis, JP Mulholland, ... Journal of the Atmospheric Sciences 79 (6), 1669-1690, 2022 | 21 | 2022 |
Properties of a simulated convective boundary layer in an idealized supercell thunderstorm environment CJ Nowotarski, PM Markowski, YP Richardson, GH Bryan Monthly Weather Review 142 (11), 3955-3976, 2014 | 18 | 2014 |
The influence of shear on deep convection initiation. Part II: Simulations JM Peters, H Morrison, TC Nelson, JN Marquis, JP Mulholland, ... Journal of the Atmospheric Sciences 79 (6), 1691-1711, 2022 | 15 | 2022 |
Tornadoes in hurricane Harvey CJ Nowotarski, J Spotts, R Edwards, S Overpeck, GR Woodall Weather and Forecasting 36 (5), 1589-1609, 2021 | 15 | 2021 |
Southeastern US tornado outbreak likelihood using daily climate indices MC Brown, CJ Nowotarski Journal of Climate 33 (8), 3229-3252, 2020 | 15 | 2020 |
The role of permafrost in Eurasian land‐atmosphere interactions DJ Vecellio, CJ Nowotarski, OW Frauenfeld Journal of Geophysical Research: Atmospheres 124 (22), 11644-11660, 2019 | 15 | 2019 |
Disentangling the influences of storm-relative flow and horizontal streamwise vorticity on low-level mesocyclones in supercells JM Peters, BE Coffer, MD Parker, CJ Nowotarski, JP Mulholland, ... Journal of the Atmospheric Sciences 80 (1), 129-149, 2023 | 10 | 2023 |
The early evening transition in southeastern US tornado environments MC Brown, CJ Nowotarski, AR Dean, BT Smith, RL Thompson, JM Peters Weather and Forecasting 36 (4), 1431-1452, 2021 | 8 | 2021 |