Precipitation over urban areas in the western Maritime Continent using a convection-permitting model

被引:0
作者
Daniel Argüeso
Alejandro Di Luca
Jason P. Evans
机构
[1] University of New South Wales,ARC Centre of Excellence for Climate System Science
[2] University of New South Wales,Climate Change Research Centre, Level 4, Matthews Building
来源
Climate Dynamics | 2016年 / 47卷
关键词
Regional climate modelling; Precipitation; Maritime Continent; Urban climate; Convection; Convection-permitting models;
D O I
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中图分类号
学科分类号
摘要
This study investigates the effects of urban areas on precipitation in the western Maritime Continent using a convection-permitting regional atmospheric model. The Weather Research and Forecasting model was used to simulate the atmosphere at a range of spatial resolutions using a multiple nesting approach. Two experiments (with and without urban areas) were completed over a 5-year period (2008–2012) each to estimate the contribution of cities to changes in local circulation. At first, the model is evaluated against two satellite-derived precipitation products and the benefit of using a very high-resolution model (2-km grid spacing) over a region where rainfall is dominated by convective processes is demonstrated, particularly in terms of its diurnal cycle phase and amplitude. The influence of cities on precipitation characteristics is quantified for two major urban nuclei in the region (Jakarta and Kuala Lumpur) and results indicate that their presence locally enhances precipitation by over 30 %. This increase is mainly due to an intensification of the diurnal cycle. We analyse the impact on temperature, humidity and wind to put forward physical mechanisms that explain such changes. Cities increase near surface temperature, generating instability. They also make land-sea temperature contrasts stronger, which enhances sea breeze circulations. Together, they increase near-surface moisture flux convergence and favour convective processes leading to an overall increase of precipitation over urban areas. The diurnal cycle of these effects is reflected in the atmospheric footprint of cities on variables such as humidity and cloud mixing ratio and accompanies changes in precipitation.
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页码:1143 / 1159
页数:16
相关论文
共 124 条
[1]  
Argüeso D(2014)Temperature response to future urbanization and climate change Clim Dyn 42 2183-2199
[2]  
Evans JP(2015)Effects of city expansion on heat stress under climate change conditions PLoS ONE 10 e0117066-55
[3]  
Fita L(1971)The effect of an urban area on the precipitation from a moving thunderstorm J Appl Meteorol 10 47-366
[4]  
Bormann KJ(2005)The use of moisture flux convergence in forecasting convective initiation: historical and operational perspectives Weather Forecast 20 351-11
[5]  
Argüeso D(1968)The La Porte weather anomaly—fact or fiction? Bull Am Meteorol Soc 49 4-288
[6]  
Evans JP(2011)The integrated WRF/urban modelling system: development, evaluation, and applications to urban environmental problems Int J Climatol 31 273-1980
[7]  
Pitman AJ(2005)Observations and numerical simulations of urban heat island and sea breeze circulations over New York City Pure appl Geophys 162 1955-24
[8]  
Di Luca A(2010)A land-atmospheric interaction study in the coastal tropical city of San Juan, Puerto Rico Earth Interact 14 1-597
[9]  
Atkinson BW(2011)The ERA-interim reanalysis: configuration and performance of the data assimilation system QJR Meteorol Soc 137 553-21
[10]  
Banacos PC(2015)Challenges in the quest for added value of regional climate dynamical downscaling Curr Clim Change Rep 1 10-64