Microscale mobile monitoring of urban air temperature

被引:74
作者
Tsin, Pak Keung [1 ]
Knudby, Anders [2 ]
Krayenhoff, E. Scott [3 ]
Ho, Hung Chak [4 ]
Brauer, Michael [1 ]
Henderson, Sarah B. [1 ,5 ]
机构
[1] Univ British Columbia, Sch Populat & Publ Hlth, Vancouver, BC, Canada
[2] Univ Ottawa, Dept Geog Environm & Geomat, Ottawa, ON, Canada
[3] Western Univ, Dept Geog, London, ON, Canada
[4] Simon Fraser Univ, Dept Geog, Burnaby, BC, Canada
[5] BC Ctr Dis Control, Vancouver, BC, Canada
关键词
Hot weather; Air temperature; Mobile monitoring; Spatial variability; Microscale measurements;
D O I
10.1016/j.uclim.2016.10.001
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Background: Mobile air temperature monitoring is a promising method to better understand temperature distributions at fine spatial resolutions across urban areas. The study objectives were to collect microscale measurements for evaluate different data sources used to assess heat exposure in greater Vancouver, Canada. Methods: Mobile air temperature monitoring was conducted on foot at least twice for each of 20 routes. First, the mobile data were compared with 1-minute measurements from the nearest fixed site. Second, the mobile data from runs corresponding with Landsat overpass days were compared with satellite-derived land surface temperature (LST). Third, the mobile datawere compared with estimates from a previously developed heat map for the region. Results: Mobile measurements were typically higher and more variable than simultaneous fixed site measurements. Correlations between mobile measurements and LST were weak and highly variable (r(2) = 0.04-0.38). The z-score differentials between mobile measurements and the heat map suggested that spatial variability in temperatures is captured by the heat map. Conclusion: Microscale measurements confirm that fixed sites do not characterize the variability in thermal conditions within nearby street-scapes. Microscale monitoring of air temperatures is a valuable tool fortemporally and spatially evaluating other high resolution temperature data within small areas. (C) 2016 The Authors. Published by Elsevier B.V.
引用
收藏
页码:58 / 72
页数:15
相关论文
共 67 条
[11]   Neighborhood microclimates and vulnerability to heat stress [J].
Harlan, Sharon L. ;
Brazel, Anthony J. ;
Prashad, Lela ;
Stefanov, William L. ;
Larsen, Larissa .
SOCIAL SCIENCE & MEDICINE, 2006, 63 (11) :2847-2863
[12]  
Hedquist Brent C., 2006, Journal of the Arizona-Nevada Academy of Science, V38, P77, DOI 10.2181/1533-6085(2006)38[77:URARCC]2.0.CO
[13]  
2
[14]   A Data-driven Approach to Setting Trigger Temperatures for Heat Health Emergencies [J].
Henderson, Sarah B. ;
Kosatsky, Tom .
CANADIAN JOURNAL OF PUBLIC HEALTH-REVUE CANADIENNE DE SANTE PUBLIQUE, 2012, 103 (03) :227-230
[15]  
Ho H. C., 2016, CANADA ENV HLTH PERS
[16]   A comparison of urban heat islands mapped using skin temperature, air temperature, and apparent temperature (Humidex), for the greater Vancouver area [J].
Ho, Hung Chak ;
Knudby, Anders ;
Xu, Yongming ;
Hodul, Matus ;
Aminipouri, Mehdi .
SCIENCE OF THE TOTAL ENVIRONMENT, 2016, 544 :929-938
[17]   Cooling rates, sky view factors and the development of intra-urban air temperature differences [J].
Holmer, Bjorn ;
Thorsson, Sofia ;
Eliasson, Ingegard .
GEOGRAFISKA ANNALER SERIES A-PHYSICAL GEOGRAPHY, 2007, 89A (04) :237-248
[18]  
IPCC Intergovernmental Panel on Climate Change, 2014, CLIMATE CHANGE 2014
[19]  
Irons J., 2011, LANDSAT 7 DATA SCI U
[20]  
Kaiser Reinhard, 2007, Am J Public Health, V97 Suppl 1, pS158, DOI 10.2105/AJPH.2006.100081