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Urban Thermodynamic Island in a Coastal City Analysed from an Optimized Surface Network

机译:基于优化地表网络的沿海城市城市热力岛

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摘要

Within the framework of ESCOMPTE, a French experiment performed in June and July 2001 in the south-east of France to study the photo-oxidant pollution at the regional scale, the urban boundary layer (UBL) program focused on the study of the urban atmosphere over the coastal city of Marseille. A methodology developed to optimize a network of 20 stations measuring air temperature and moisture over the city is presented. It is based on the analysis of a numerical simulation, performed with the non-hydrostatic, mesoscale Meso-NH model, run with four nested-grids down to a horizontal resolution of 250 m over the city and including a specific parametrization for the urban surface energy balance. A three-day period was modelled and evaluated against data collected during the preparatory phase for the project in summer 2000. The simulated thermodynamic surface fields were analysed using an empirical orthogonal function (EOF) decomposition in order to determine the optimal network configuration designed to capture the dominant characteristics of the fields. It is the first attempt of application of this kind of methodology to the field of urban meteorology. The network, of 20 temperature and moisture sensors, was implemented during the UBL-ESCOMPTE experiment and continuously recorded data from 12 June to 14 July 2001. The measurements were analysed in order to assess the urban thermodynamic island spatio-temporal structure, also using EOF decomposition. During nighttime, the influence of urbanization on temperature is clear the field is characterized by concentric thermo-pleths around the old core of the city, which is the warmest area of the domain. The moisture field is more influenced by proximity to the sea and airflow patterns. During the day, the sea breeze often moves from west or south-west and consequently the spatial pattern for both parameters is characterized by a gradient perpendicular to the shoreline. Finally, in order to assess the methodology adopted, the spatial structures extracted from the simulation of the 2000 preparatory campaign and observations gathered in 2001 have been compared. They are highly correlated, which is a relevant validation of the methodology proposed. The relations between these spatial structures and geographical characteristics of the site have also been studied. High correlations between temperature spatial structure during nighttime and urban cover fraction or street aspect ratio are observed and simulated. For temperature during daytime or moisture during both daytime and nighttime these geographical factors are not correlated with thermodynamic fields spatial structures.
机译:在ESCOMPTE的框架内,法国于2001年6月和7月在法国东南部进行了一项实验,以研究区域范围内的光氧化剂污染,城市边界层(UBL)计划侧重于研究城市大气在沿海城市马赛上空。提出了一种用于优化由20个站点组成的网络的测量方法,该站点用于测量整个城市的气温和湿度。它基于对数值模拟的分析,该模拟是使用非静水的中尺度Meso-NH模型执行的,在整个城市中使用四个嵌套网格,水平分辨率为250 m,并包括针对城市表面的特定参数化能量平衡。对为期三天的阶段进行了建模,并对照了该项目在2000年夏季的准备阶段收集的数据进行了评估。使用经验正交函数(EOF)分解对模拟的热力学表面场进行分析,以确定旨在捕获的最佳网络配置。领域的主要特征。这是将这种方法论应用于城市气象学领域的首次尝试。该网络由20个温度和湿度传感器组成,是在UBL-ESCOMPTE实验期间建立的,并连续记录了2001年6月12日至7月14日的数据。分析了这些测量结果,以评估城市热力学岛的时空结构,也使用了EOF分解。在夜间,城市化对温度的影响是显而易见的,该领域的特征是在城市最古老的核心地区周围是同心的高温地带,这是该地区最温暖的地区。湿度场受靠近海和气流模式的影响更大。白天,海风经常从西部或西南方向移动,因此,两个参数的空间格局都以垂直于海岸线的梯度为特征。最后,为了评估所采用的方法,比较了从2000年筹备运动的模拟中提取的空间结构和2001年收集的观测资料。它们是高度相关的,这是对所提出方法的相关验证。还研究了这些空间结构与场地地理特征之间的关系。观察并模拟了夜间温度空间结构与城市覆盖率或街道纵横比之间的高度相关性。对于白天的温度或白天和夜间的湿度,这些地理因素与热力学场的空间结构无关。

著录项

  • 来源
    《Boundary-Layer Meteorology》 |2006年第2期|315-351|共37页
  • 作者单位

    Centre National de Recherches Météorologiques Météo-France/CNRS-GAME 42 av. Coriolis 31057 Toulouse Cedex France;

    Centre National de Recherches Météorologiques Météo-France/CNRS-GAME 42 av. Coriolis 31057 Toulouse Cedex France;

    GREYC – CNRS UMR 6072 Caen France;

    Centre National de Recherches Météorologiques Météo-France/CNRS-GAME 42 av. Coriolis 31057 Toulouse Cedex France;

    Centre National de Recherches Météorologiques Météo-France/CNRS-GAME 42 av. Coriolis 31057 Toulouse Cedex France;

    Laboratoire d’Aérologie UMR CNRS-UPS 5560 Toulouse France;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Coastal city; EOF; Surface network; UBL-ESCOMPTE; Urban heat isand;

    机译:沿海城市;OF;地表网络;UBL-ESCOMPTE;城市热岛;

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