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contributor authorUccellini, Louis W.
contributor authorPetersen, Ralph A.
contributor authorKeyser, Daniel
contributor authorKocin, Paul J.
contributor authordes Jardins, Mary
contributor authorBrill, Keith F.
contributor authorAune, Robert
date accessioned2017-06-09T14:40:25Z
date available2017-06-09T14:40:25Z
date copyright1986/10/01
date issued1986
identifier issn0003-0007
identifier otherams-24177.pdf
identifier urihttp://onlinelibrary.yabesh.ir/handle/yetl/4160820
description abstractThe synoptic-scale weather conditions preceding and following the ill-fated Space Shuttle Challenger launch are documented, with particular emphasis on the upper-level winds for central and northern Florida. Operational radiosonde data collected by the National Weather Service, visible and infrared imagery from the Geo-stationary Operational Environmental Satellite, and water-vapor imagery from the VISSR (Visible Infrared Spin Scan Radiometer) Atmospheric Sounder, ozone data collected by the Total Ozone Mapping Spectrometer aboard the Nimbus-7, and soundings collected at Cape Canaveral (XMR) are described. Analysts derived from these data sets point to the juxtaposition of two distinct jet-stream systems (a polar-front jet. [PFJ] and a subtropical jet [STJ]) over north-central Florida on the morning of the launch. Both jets were characterized by regions of significant vertical wind shear, which was especially strong above and below the core of the STJ. Data from a radiosonde released at Cape Canaveral 10 min after the shuttle accident combined with radiosonde and jimsphere wind measurements before the shuttle launch reveal that, over XMR, the magnitude of the maximum wind in the PFJ was increasing with time while the magnitude of the STJ was decreasing. Even with the decreasing magnitude of wind speeds in the core of the STJ over XMR, large vertical wind shears and low Richardson numbers were still diagnosed near the PFJ and beneath the core of the STJ at the time of launch (1639 GMT). The low Richardson numbers associated with the presence of vertical wind shear indicate that conditions were favorable for shear-induced turbulence at the time of the shuttle explosion. The results from the analyses of the synoptic radiosonde data are inconclusive due to the poor temporal and horizontal spatial resolution of the observational data base and the large number of missing data reports at numerous stations in the southeastern United States (including XMR). In an attempt to overcome this deficiency, numerical simulations of the atmospheric conditions were conducted using a mesoscale numerical model. The simulators initialized at 1200 GMT 28 January confirm the juxtaposition of two distinct jet systems over north-central Florida at the time of the shuttle launch and the presence of large vertical wind shears and low Richardson numbers associated with these jets. Given the rapid temporal evolution of atmospheric flow regimes which involve strong wind shears, we recommend that consideration should be given to 1) augmenting the observations (both in time and space) upstream and around the Cape Canaveral launch facility. 2) enhancing the analysis and display capabilities of these data, and 3) using numerical-model output to provide the best possible diagnosis and forecast of the meteorological conditions for future shuttle launches.
publisherAmerican Meteorological Society
titleA Report on the Upper-Level Wind Conditions Preceding and During the Shuttle Challenger (STS 51L) Explosion
typeJournal Paper
journal volume67
journal issue10
journal titleBulletin of the American Meteorological Society
identifier doi10.1175/1520-0477(1986)067<1248:AROTUL>2.0.CO;2
journal fristpage1248
journal lastpage1265
treeBulletin of the American Meteorological Society:;1986:;volume( 067 ):;issue: 010
contenttypeFulltext


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