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Spatially distributed atmospheric boundary layer properties in Houston - A value-added observational dataset.
Lamer, Katia; Mages, Zackary; Treserras, Bernat Puigdomènech; Walter, Paul; Zhu, Zeen; Rapp, Anita D; Nowotarski, Christopher J; Brooks, Sarah D; Flynn, James; Sharma, Milind; Klein, Petra; Spencer, Michelle; Smith, Elizabeth; Gebauer, Joshua; Bell, Tyler; Bunting, Lydia; Griggs, Travis; Wagner, Timothy J; McKeown, Katherine.
Afiliación
  • Lamer K; Brookhaven National Laboratory, Upton, USA. klamer@bnl.gov.
  • Mages Z; Stony Brook University, Stony Brook, USA.
  • Treserras BP; McGill University, Montreal, Canada.
  • Walter P; St. Edward's University, Austin, USA.
  • Zhu Z; Brookhaven National Laboratory, Upton, USA.
  • Rapp AD; Texas A&M University, College Station, USA.
  • Nowotarski CJ; Texas A&M University, College Station, USA.
  • Brooks SD; Texas A&M University, College Station, USA.
  • Flynn J; University of Houston, Houston, USA.
  • Sharma M; Texas A&M University, College Station, USA.
  • Klein P; School of Meteorology, University of Oklahoma, Norman, USA.
  • Spencer M; School of Meteorology, University of Oklahoma, Norman, USA.
  • Smith E; Cooperative Institute for High Impact and Severe Weather Research and Operations, University of Oklahoma, Norman, USA.
  • Gebauer J; School of Meteorology, University of Oklahoma, Norman, USA.
  • Bell T; NOAA/OAR National Severe Storms Laboratory, Norman, USA.
  • Bunting L; Cooperative Institute for High Impact and Severe Weather Research and Operations, University of Oklahoma, Norman, USA.
  • Griggs T; NOAA/OAR National Severe Storms Laboratory, Norman, USA.
  • Wagner TJ; Cooperative Institute for High Impact and Severe Weather Research and Operations, University of Oklahoma, Norman, USA.
  • McKeown K; NOAA/OAR National Severe Storms Laboratory, Norman, USA.
Sci Data ; 11(1): 661, 2024 Jun 22.
Article en En | MEDLINE | ID: mdl-38909030
ABSTRACT
In 2022, Houston, TX became a nexus for field campaigns aiming to further our understanding of the feedbacks between convective clouds, aerosols and atmospheric boundary layer (ABL) properties. Houston's proximity to the Gulf of Mexico and Galveston Bay motivated the collection of spatially distributed observations to disentangle coastal and urban processes. This paper presents a value-added ABL dataset derived from observations collected by eight research teams over 46 days between 2 June - 18 September 2022. The dataset spans 14 sites distributed within a ~80-km radius around Houston. Measurements from three types of instruments are analyzed to objectively provide estimates of nine ABL parameters, both thermodynamic (potential temperature, and relative humidity profiles and thermodynamic ABL depth) and dynamic (horizontal wind speed and direction, mean vertical velocity, updraft and downdraft speed profiles, and dynamical ABL depth). Contextual information about cloud occurrence is also provided. The dataset is prepared on a uniform time-height grid of 1 h and 30 m resolution to facilitate its use as a benchmark for forthcoming numerical simulations and the fundamental study of atmospheric processes.

Texto completo: 1 Banco de datos: MEDLINE Idioma: En Revista: Sci Data Año: 2024 Tipo del documento: Article País de afiliación: Estados Unidos

Texto completo: 1 Banco de datos: MEDLINE Idioma: En Revista: Sci Data Año: 2024 Tipo del documento: Article País de afiliación: Estados Unidos