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On the Derivation of Material Thermal Properties Representative of Heterogeneous Urban Neighborhoods
Author(s) -
Francisco Salamanca,
E. Scott Krayenhoff,
Alberto Martilli
Publication year - 2009
Publication title -
journal of applied meteorology and climatology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.079
H-Index - 134
eISSN - 1558-8432
pISSN - 1558-8424
DOI - 10.1175/2009jamc2176.1
Subject(s) - terrain , mesoscale meteorology , sensible heat , aggregate (composite) , thermal , urban heat island , heat flux , grid , environmental science , work (physics) , meteorology , geology , heat transfer , mechanics , geography , materials science , physics , geodesy , thermodynamics , cartography , composite material
An important question arises when modeling a heterogeneous landscape (e.g., an urbanized area) with a mesoscale atmospheric model. The surface within a grid cell of the model (which has a typical dimension of one or more kilometers) can be composed of patches of surfaces of different character. The total sensible heat flux in the grid cell, then, is the aggregate of the heat fluxes from each individual surface, each one with a unique thermal response arising from its thermal properties, among other factors. Current methods to estimate the sensible heat flux consider only one (in the case of flat terrain) or three (roof, walls, and ground, for urban areas) active surfaces with thermal properties that are ideally representative of the materials present in the grid cell. The question is then how to choose the representative thermal properties such that the heat flux computed by the model most closely approximates the aggregate of the fluxes from the different patches. In this work a new way to avera...

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