Articles | Volume 8, issue 2
Earth Syst. Sci. Data, 8, 415–423, 2016
https://doi.org/10.5194/essd-8-415-2016
Earth Syst. Sci. Data, 8, 415–423, 2016
https://doi.org/10.5194/essd-8-415-2016

Review article 19 Sep 2016

Review article | 19 Sep 2016

In situ air temperature and humidity measurements over diverse land covers in Greenbelt, Maryland, November 2013–November 2015

Mark L. Carroll et al.

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Cited articles

Carroll, M. L., Brown, M. E., Wooten, M. R., Donham, J. E., Hubbard, A. B., and Ridenhour, W. B.: In-situ air temperature and relative humidity in Greenbelt, MD, 2013–2015, in: ORNL DAAC, Oak Ridge, Tennessee, USA, Oak Ridge National Lab, Distributed Active Archive Center, 2016.
Chun, B. and Guldmann, J. M.: Spatial statistical analysis and simulation of the urban heat island in high-density central cities, Landscape Urban Plan., 125, 76–88, 2014.
Homer, C., Dewitz, J., Yang, L.M., Jin, S., Danielson, P., Xian, G., Coulston, J., Herold, N., Wickham, J., and Megown, K.: Completion of the 2011 National Land Cover Database for the Conterminous United States – Representing a Decade of Land Cover Change Information, Photogramm. Eng. Rem. S., 81, 345–354, 2015.
Stewart, I. D. and Oke, T. R.: Local Climate Zones for Urban Temperature Studies, B. Am. Meteorol. Soc., 93, 1879–1900, 2012.
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As climate changes around the world it becomes increasingly important to understand how the built environment handles heating and cooling even on a localized basis. This study employed a dozen sensors placed on seven different types of surfaces (natural and built) to develop an understanding of how these surfaces affect temperatures in a campus setting. The data were collected at 15 min intervals over 2 years and are freely available through the Oak Ridge National Laboratory.