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contributor authorLynn, Barry H.
contributor authorCarlson, Toby N.
contributor authorRosenzweig, Cynthia
contributor authorGoldberg, Richard
contributor authorDruyan, Leonard
contributor authorCox, Jennifer
contributor authorGaffin, Stuart
contributor authorParshall, Lily
contributor authorCiverolo, Kevin
date accessioned2017-06-09T16:22:15Z
date available2017-06-09T16:22:15Z
date copyright2009/02/01
date issued2009
identifier issn1558-8424
identifier otherams-66615.pdf
identifier urihttp://onlinelibrary.yabesh.ir/handle/yetl/4207971
description abstractA new approach to simulating the urban environment with a mesocale model has been developed to identify efficient strategies for mitigating increases in surface air temperatures associated with the urban heat island (UHI). A key step in this process is to define a ?global? roughness for the cityscape and to use this roughness to diagnose 10-m temperature, moisture, and winds within an atmospheric model. This information is used to calculate local exchange coefficients for different city surface types (each with their own ?local roughness? lengths); each surface?s energy balances, including surface air temperatures, humidity, and wind, are then readily obtained. The model was run for several summer days in 2001 for the New York City five-county area. The most effective strategy to reduce the surface radiometric and 2-m surface air temperatures was to increase the albedo of the city (impervious) surfaces. However, this caused increased thermal stress at street level, especially noontime thermal stress. As an alternative, the planting of trees reduced the UHI?s adverse effects of high temperatures and also reduced noontime thermal stress on city residents (and would also have reduced cooling energy requirements of small structures). Taking these results together, the analysis suggests that the best mitigation strategy is planting trees at street level and increasing the reflectivity of roofs.
publisherAmerican Meteorological Society
titleA Modification to the NOAH LSM to Simulate Heat Mitigation Strategies in the New York City Metropolitan Area
typeJournal Paper
journal volume48
journal issue2
journal titleJournal of Applied Meteorology and Climatology
identifier doi10.1175/2008JAMC1774.1
journal fristpage199
journal lastpage216
treeJournal of Applied Meteorology and Climatology:;2009:;volume( 048 ):;issue: 002
contenttypeFulltext


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