Arid
DOI10.1007/s10546-017-0292-8
Effects of Explicit Urban-Canopy Representation on Local Circulations Above a Tropical Mega-City
Flores Rojas, Jose L.1; Pereira Filho, Augusto J.1; Karam, Hugo A.2; Vemado, Felipe1; Masson, Valery3
通讯作者Flores Rojas, Jose L.
来源期刊BOUNDARY-LAYER METEOROLOGY
ISSN0006-8314
EISSN1573-1472
出版年2018
卷号166期号:1页码:83-111
英文摘要

The Advanced Regional Prediction System (ARPS) is coupled with the tropical town energy budget (tTEB) scheme to analyze the effects of the urban canopy circulation over the metropolitan area of So Paulo and its interactions with the sea breeze and mountain-valley circulation in the eastern state of So Paulo, Brazil. Two experiments are carried out for the typical sea-breeze event occurring on 22 August 2014 under weak synoptic forcing and clear-sky conditions: (a) a control run with the default semi-desert surface parametrization and; (b) a tTEB run for the urban canopy of So Paulo. A realistic land-use database over the south-eastern domain of Brazil is used in the downscaling simulation to a horizontal grid resolution of 3 km. Our results indicate that ARPS effectively simulates features of the nighttime and early morning land-breeze circulation, which is affected by the surrounding hills and the nocturnal heat island of So Paulo. By early afternoon, the south-eastern sea-breeze circulation moves inland perpendicular to the upslope of the Serra do Mar scarp, which generates a line of moisture convergence and updrafts further inland. Later, the convergence line reaches So Paulo and interacts with the circulation arising from the urban heat island (UHI), which increases the moisture convergence and strength of updrafts. The surface energy balance indicates that the UHI is caused by large sensible heat storage within the urban canopy during the day, which is later released in the afternoon and at night. The simulations are verified with available radiosonde and surface weather station data, land-surface-temperature estimates from the moderate resolution imaging spectroradiometer, as well as the National Center for Atmospheric Research reanalysis databases. The three-dimensional geometry of the urban canyons within the tTEB scheme consistently improves the thermodynamically-induced circulation over So Paulo.


英文关键词Urban boundary layer Urban energy fluxes Urban heat island Sea-breeze circulation
类型Article
语种英语
国家Brazil ; France
收录类别SCI-E
WOS记录号WOS:000419678100005
WOS关键词FLUX-PROFILE RELATIONSHIPS ; PLANETARY BOUNDARY-LAYER ; SEA-BREEZE ; OPTICAL-PROPERTIES ; ENERGY BUDGET ; HEAT-ISLAND ; PARAMETERIZATION ; SIMULATION ; MODEL ; TEMPERATURES
WOS类目Meteorology & Atmospheric Sciences
WOS研究方向Meteorology & Atmospheric Sciences
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/208241
作者单位1.Univ Sao Paulo, USP IAG DCA, Rua Matao 1226, Sao Paulo, SP, Brazil;
2.Univ Fed Rio de Janeiro, UFRJ IGEO CCMN, Ilha Fundao Rio de Janeiro, Rua Athos da Silveira Ramos 274,Bloco G1, Rio De Janeiro, Brazil;
3.CNRS, Ctr Natl Rech Meteorol, Meteo France, Toulouse, France
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Flores Rojas, Jose L.,Pereira Filho, Augusto J.,Karam, Hugo A.,et al. Effects of Explicit Urban-Canopy Representation on Local Circulations Above a Tropical Mega-City[J],2018,166(1):83-111.
APA Flores Rojas, Jose L.,Pereira Filho, Augusto J.,Karam, Hugo A.,Vemado, Felipe,&Masson, Valery.(2018).Effects of Explicit Urban-Canopy Representation on Local Circulations Above a Tropical Mega-City.BOUNDARY-LAYER METEOROLOGY,166(1),83-111.
MLA Flores Rojas, Jose L.,et al."Effects of Explicit Urban-Canopy Representation on Local Circulations Above a Tropical Mega-City".BOUNDARY-LAYER METEOROLOGY 166.1(2018):83-111.
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