Toward a Comprehensive Detection Algorithm for Atmospheric Blocking Events

dc.contributor.advisorFurtado, Jason
dc.contributor.authorFields, Jacob Lee
dc.contributor.committeeMemberCavallo, Steven
dc.contributor.committeeMemberSakaeda, Naoko
dc.contributor.committeeMemberRuppert, James
dc.date.accessioned2026-08-18T16:15:26Z
dc.date.embargoExpiration
dc.date.issued2026
dc.date.proquestAvailable01/01/2026
dc.date.updated2026-08-18T16:15:27Z
dc.description.abstractAtmospheric blocking is a phenomenon in which upper-level atmospheric flow becomes quasi-stationary for an extended period (i.e., several days to weeks), leading to some of the most impactful large-scale extreme weather events in the mid-latitudes including droughts, heatwaves, flooding, and cold air outbreaks. Although blocking has long been recognized, the physical mechanisms responsible for blocking formation, maintenance, and decay remain poorly understood, posing a challenge for improving long-range weather forecasts. A key obstacle in this effort is the ambiguity in how blocked flow patterns should be defined, resulting in the absence of a unified objective blocking detection algorithm. Using ERA5 reanalysis data, this thesis develops a novel objective algorithm to comprehensively detect and characterize blocking events in the Northern Hemisphere. Building upon established blocking identification metrics, the algorithm incorporates three dimensional tracking to approximate the dynamic spatiotemporal evolution of blocked flow patterns. It also accounts for blocking diversity by classifying events into ridge and dipole flow patterns. Applying this algorithm, a data set of Northern Hemisphere blocking events from 1950–2024 is established. The resulting climatology and trends of blocking characteristics are broadly consistent with previous studies that use alternative detection methods. The relationships between blocking and latent heating, as well as the influence of the El Niño Southern Oscillation and the North Atlantic Oscillation, are examined. These relationships exhibit notable differences from previous findings. Overall, the results suggest that a comprehensive blocking detection approach offers meaningful improvement over more simplified algorithms.
dc.identifier.orcid0000-0001-8677-0054
dc.identifier.urihttps://shareok.org/handle/11244/342890
dc.language.isoen
dc.publisherUniversity of Oklahoma – Graduate College
dc.subjectMeteorology
dc.subjectAlgorithm
dc.subjectBlock
dc.subjectBlocking
dc.subjectMid-latitude
dc.subjectSubseasonal-to-seasonal
dc.subjectSynoptic
dc.thesis.degreeM.S.
dc.titleToward a Comprehensive Detection Algorithm for Atmospheric Blocking Events
ou.groupMeteorology: Atmospheric & Geographic Sciences

Files

Original bundle

Now showing 1 - 1 of 1
Loading...
Thumbnail Image
Name:
Fields_oklahoma_2409B_10908.pdf
Size:
53.95 MB
Format:
Adobe Portable Document Format

License bundle

Now showing 1 - 1 of 1
Loading...
Thumbnail Image
Name:
license.txt
Size:
2.01 KB
Format:
Item-specific license agreed upon to submission
Description:

Collections