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G. Achtemeier (1991)
Modification of a Successive Corrections Objective Analysis for Improved Derivative CalculationsMonthly Weather Review, 117
R. Farrell, T. Carlson (1989)
Evidence for the Role of the Lid and Underunning in an Outbreak of Tornadic ThunderstormsMonthly Weather Review, 117
I. Velasco, J. Fritsch (1987)
Mesoscale Convective Complexes in the AmericasJournal of Geophysical Research, 92
L. Uccellini, Donald Johnson (1979)
The Coupling of Upper and Lower Tropospheric Jet Streaks and Implications for the Development of Severe Convective StormsMonthly Weather Review, 107
R. Arritt, T. Rink, M. Segal, D. Todey, C. Clark, M. Mitchell, K. Labas (1997)
The Great Plains Low-Level Jet during the Warm Season of 1993Monthly Weather Review, 125
B. Hoskins, I. Drăghici, H. Davies (1978)
A new look at the ?-equationQuarterly Journal of the Royal Meteorological Society
Raymond Menard, J. Fritsch (1989)
A Mesoscale Convective Complex-Generated Inertially Stable Warm Core VortexMonthly Weather Review, 117
D. Stensrud (1996)
Importance of Low-Level Jets to Climate: A Review.Journal of Climate, 9
S. Barnes (1994)
Applications of the Barnes Objective Analysis Scheme. Part III: Tuning for Minimum ErrorJournal of Atmospheric and Oceanic Technology, 11
D. Rodgers, K. Howard, E. Johnston (1983)
Mesoscale convective complexes over the United States during 1982Monthly Weather Review, 111
G. Bell, J. Janowiak (1995)
Atmospheric Circulation Associated With the Midwest Floods of 1993Bulletin of the American Meteorological Society, 76
B. Schwartz, C. Chappell, William Togstad, Xiao-Ping Zhong (1990)
The Minneapolis Flash Flood: Meteorological Analysis and Operational ResponseWeather and Forecasting, 5
W. Cotton, Ming-sen Lin, Ray McAnelly, C. Tremback (1989)
A Composite Model of Mesoscale Convective ComplexesMonthly Weather Review, 117
E. Kalnay, M. Kanamitsu, W. Baker (1990)
Global Numerical Weather Prediction at the National Meteorological CenterBulletin of the American Meteorological Society, 71
R. Murray, S. Daniels (1953)
Transverse flow at entrance and exit to jet streamsQuarterly Journal of the Royal Meteorological Society, 79
A. Laing, J. Fritsch (1997)
The global population of mesoscale convective complexesQuarterly Journal of the Royal Meteorological Society, 123
J. Fritsch, R. Maddox (1981)
Convectively Driven Mesoscale Weather Systems Aloft. Part I: ObservationsJournal of Applied Meteorology, 20
J. Holton (2004)
An introduction to dynamic meteorology
J. Augustine, K. Howard (1988)
Mesoscale Convective Complexes over the United States during 1985Monthly Weather Review, 116
R. Stull (1988)
An Introduction to Boundary Layer Meteorology
R. Maddox, D. Rodgers, K. Howard (1982)
Mesoscale Convective Complexes Over the United States During 1981— Annual SummaryMonthly Weather Review, 110
J. Fritsch, R. Kane, C. Chelius (1986)
The Contribution of Mesoscale Convective Weather Systems to the Warm-Season Precipitation in the United States, 25
K. Kunkel, S. Changnon, J. Angel (1994)
Climatic Aspects of the 1993 Upper Mississippi River Basin FloodBulletin of the American Meteorological Society, 75
L. Uccellini (1980)
On the Role of Upper Tropospheric Jet Streaks and Leeside Cyclogenesis in the Development of Low-Level Jets in the Great PlainsMonthly Weather Review, 108
Da‐Lin Zhang, J. Fritsch (1987)
Numerical Simulation of the Meso-β Scale Structure and Evolution of the 1977 Johnstown Flood. Part II: Inertially Stable Warm-Core Vortex and the Mesoscale Convective ComplexJournal of the Atmospheric Sciences, 44
D. Rodgers, M. Magnano, J. Arns (1985)
Mesoscale Convective Complexes over the United States during 1983Monthly Weather Review, 113
Tsing‐Chang Chen, J. Kpaeyeh (1993)
The Synoptic-Scale Environment Associated with the Low-Level Jet of the Great PlainsMonthly Weather Review, 121
J. Augustine, F. Caracena (1994)
Lower-tropospheric precursors to nocturnal MCS development over the central United StatesWeather and Forecasting, 9
Large, long-lived convective systems over the United States in 1992 and 1993 have been classified according to physical characteristics observed in satellite imagery as quasi-circular mesoscale convective complex (MCC) or elongated persistent elongated convective system (PECS) and cataloged. The catalog includes the time of initiation, maximum extent, termination, duration, area of the −52°C cloud shield at the time of maximum extent, significant weather associated with each occurrence, and tracks of the −52°C cloud-shield centroid. Both MCC and PECS favored nocturnal development and on average lasted about 12 h. In both 1992 and 1993, PECS produced −52°C cloud-shield areas of greater extent and occurred more frequently compared with MCCs. The mean position of initiation for PECS in 1992 and 1993 followed a seasonal shift similar to the climatological seasonal shift for MCC occurrences but was displaced eastward of the mean position of MCC initiation in 1992 and 1993. The spatial distribution of MCC and PECS occurrences contain a period of persistent development near 40°N in July 1992 and July 1993 that contributed to the extreme wetness experienced in the Midwest during these two months. Both MCC and PECS initiated in environments characterized by deep, synoptic-scale ascent associated with continental-scale baroclinic waves. PECS occurrences initiated more often as vigorous waves exited the intermountain region, whereas MCCs initiated more often within a high-amplitude wave with a trough positioned over the northwestern United States and a ridge positioned over the Great Plains. The low-level jet transported moisture into the region of initiation for both MCC and PECS occurrences. The areal extent of convective initiation was limited by the orientation of low-level features for MCC occurrences.
Monthly Weather Review – American Meteorological Society
Published: Feb 5, 1997
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