A microscale three-dimensional urban energy balance model for studying surface temperatures

被引:171
|
作者
Krayenhoff, E. Scott [1 ]
Voogt, James A.
机构
[1] Univ British Columbia, Dept Geog, Vancouver, BC V6T 1Z2, Canada
[2] Univ Western Ontario, Dept Geog, London, ON N6A 5C2, Canada
基金
加拿大自然科学与工程研究理事会;
关键词
microclimate; model validation; radiative exchange; surface temperature; thermal remote sensing; urban energy balance model;
D O I
10.1007/s10546-006-9153-6
中图分类号
P4 [大气科学(气象学)];
学科分类号
0706 ; 070601 ;
摘要
A microscale three-dimensional (3-D) urban energy balance model, Temperatures of Urban Facets in 3-D (TUF-3D), is developed to predict urban surface temperatures for a variety of surface geometries and properties, weather conditions, and solar angles. The surface is composed of plane-parallel facets: roofs, walls, and streets, which are further sub-divided into identical square patches, resulting in a 3-D raster-type model geometry. The model code is structured into radiation, conduction and convection sub-models. The radiation sub-model uses the radiosity approach and accounts for multiple reflections and shading of direct solar radiation. Conduction is solved by finite differencing of the heat conduction equation, and convection is modelled by empirically relating patch heat transfer coefficients to the momentum forcing and the building morphology. The radiation and conduction sub-models are tested individually against measurements, and the complete model is tested against full-scale urban surface temperature and energy balance observations. Modelled surface temperatures perform well at both the facet-average and the sub-facet scales given the precision of the observations and the uncertainties in the model inputs. The model has several potential applications, such as the calculation of radiative loads, and the investigation of effective thermal anisotropy (when combined with a sensor-view model).
引用
收藏
页码:433 / 461
页数:29
相关论文
共 50 条
  • [1] A microscale three-dimensional urban energy balance model for studying surface temperatures
    E. Scott Krayenhoff
    James A. Voogt
    [J]. Boundary-Layer Meteorology, 2007, 123 : 433 - 461
  • [2] Use of an Energy Balance Model for Studying Urban Surface Temperature at Microscale
    Zeng, Fanxing
    Gao, Naiping
    [J]. 10TH INTERNATIONAL SYMPOSIUM ON HEATING, VENTILATION AND AIR CONDITIONING, ISHVAC2017, 2017, 205 : 2956 - 2966
  • [3] A semiempirical microscale model of the surface energy balance and its application to two urban rooftops
    Barzyk, Timothy M.
    Frederick, John E.
    [J]. JOURNAL OF APPLIED METEOROLOGY AND CLIMATOLOGY, 2008, 47 (03) : 819 - 834
  • [4] Development of a Three-Dimensional Urban Energy Model for Predicting and Understanding Surface Temperature Distribution
    Xinyan Yang
    Yuguo Li
    [J]. Boundary-Layer Meteorology, 2013, 149 : 303 - 321
  • [5] Development of a Three-Dimensional Urban Energy Model for Predicting and Understanding Surface Temperature Distribution
    Yang, Xinyan
    Li, Yuguo
    [J]. BOUNDARY-LAYER METEOROLOGY, 2013, 149 (02) : 303 - 321
  • [6] A microscale three-dimensional model of urban outdoor thermal exposure (TUF-Pedestrian)
    Jacob A. Lachapelle
    E. Scott Krayenhoff
    Ariane Middel
    Samuel Meltzer
    Ashley M. Broadbent
    Matei Georgescu
    [J]. International Journal of Biometeorology, 2022, 66 : 833 - 848
  • [7] A microscale three-dimensional model of urban outdoor thermal exposure (TUF-Pedestrian)
    Lachapelle, Jacob A.
    Krayenhoff, E. Scott
    Middel, Ariane
    Meltzer, Samuel
    Broadbent, Ashley M.
    Georgescu, Matei
    [J]. INTERNATIONAL JOURNAL OF BIOMETEOROLOGY, 2022, 66 (04) : 833 - 848
  • [8] A full three-dimensional surface energy balance over a desert playa
    Morrison, Travis J.
    Calaf, Marc
    Pardyjak, Eric R.
    [J]. QUARTERLY JOURNAL OF THE ROYAL METEOROLOGICAL SOCIETY, 2023, 149 (750) : 102 - 114
  • [9] Characterizing the seasonal relationships between urban heat island and surface energy balance fluxes considering the impact of three-dimensional urban morphology
    Lin, Zhongli
    Xu, Hanqiu
    Hu, Xisheng
    Liu, Zhicai
    Yao, Xiong
    Zhu, Zhipeng
    [J]. BUILDING AND ENVIRONMENT, 2024, 265
  • [10] A radiation and energy balance model for the microscale - Surface layer environment
    Rachele, H
    Tunick, AD
    Kordova, L
    Mahrer, Y
    [J]. 22ND CONFERENCE ON AGRICULTURAL & FOREST METEOROLOGY WITH SYMPOSIUM ON FIRE & FOREST METEOROLOGY/12TH CONFERENCE ON BIOMETEOROLOGY & AEROBIOLOGY, 1996, : 206 - 209