Quote of the Week 17
“The best way to get the right answer on the Internet is not to ask a question; it's to post the wrong answer.”
― Ward Cunningham (Cunningham's Law)
quote--of-the--week.blogspot.com/2025/04/the-...
#Knowledge #Wisdom #Psychology
#Quote
#QuoteOfTheWeek #CW17
Martin: Using sinuosity to show that waviness of polar and subtropical jets increasing in time since 1960. #cw17
Picture perfect sunset for the last night of #cw17 @ Asilomar State Beach and Conference Grounds
instagram.com/p/9cg2_aJR-f/
Weber knows the way to my meteorological heart by showing gorgeous IR imagery of textbook ECs w/ sting jet. #cw17
Moore: Extreme rainfall events in EUS more likely occur w/ LC1 (anticyclonic) vs LC2 (cyclonic) wavebreaking #cw17
Steeves: Investigating trajectory pathways associated with heavy snowfall case studies. #cw17
Excellent summary of @jaycordeira 's talk. Need both Eulerian & Lagrangian framework to fully understand #ARs #cw17
Corderia: majority of #WCB trajectories (~80%) of tropical origin, but small part of total trajectories in #AR #cw17
Corderia provided an excellent schematic to illustrates a typical vertical cross-section view of an #AR. #cw17
Bluestein giving us some more impressive radar imagery of multiple tornadoes from the same mesocyclone. #cw17
Montgomery joining the Frey! This should be good! #cw17
Montgomery: "I'm not very good at PowerPoint so..." #cw17
Michael Montgomery "the boundary layer is inherently non-linear" #cw17
Rios-Berrios: Vort. Budget similar in #Ophelia (2011); tilting of horizontal vort. by upward vert. motion #cw17
Rios-Berrios: vort. budget differences: Stretching greater in strong members /n sfc; tilting stronger mid-lvls #cw17
Rios-Berrios: showing TCs intensifying in moderate shear env.; ensemble strong/weak member differences #cw17
Riemer also using theta/theta-E coordinate system to show parcel entrainment and detainment in TCs #cw17
Montgomery to Zhang: you need to go back to dynamics 101... Oh snap! #cw17
Fuqing Zhang filling in for Munsell is apparently giving us a full overview of all the research he does with TCs #cw17
Stevenson: case studies; Lightning < #RMW signals intensification. Lightning > RMW signals weakening. #cw17
Stevenson: lightning in #TC core. When #VWS is high, lightning = weakening/low #VWS, lightning = strengthening #cw17
Tang: low/high entropy deficit env.; low entropy deficit #TC s w/ same int., but larger and more efficient #cw17
Metz: Axis-symmetrization and #TT of unnamed TC occurs in moist env. Underneath cutoff upper-level cyclone. #cw17
Metz: How tropical transition (#TT) occurs. Sheared at first, but conv. outflow lowers shr; vort axismetrizes #cw17
Attard: Heat flux anom. w/ Nuri+downstream rdg, leads to slowing (not breakdown) of stratospheric polar vortex #cw17
Bosart: Predicability with Nuri on downstream env. bad until after re-intensification as EC properly fcst. #cw17
Grams: TC minus noTC runs show TC deflects moist parcels poleward, enhancing a PRE, amplifying jet downstream #cw17
Sinclair: high PV adv by irrotational wind cases favored in WPAC for TC-ET; w/ all ETCs, many cases in ATL&SP. #cw17