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首页> 外文期刊>Geoscientific Model Development Discussions >CALIOPE-Urban v1.0: coupling R-LINE with a mesoscale air quality modelling system for urban air quality forecasts over Barcelona city (Spain)
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CALIOPE-Urban v1.0: coupling R-LINE with a mesoscale air quality modelling system for urban air quality forecasts over Barcelona city (Spain)

机译:Caliope-Urban V1.0:耦合R线与Mescle空气质量建模系统,用于巴塞罗那市(西班牙)

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The NO2 annual air quality limit value is systematically exceeded in many European cities. In this context, understanding human exposure, improving policy and planning, and providing forecasts requires the development of accurate air quality models at the urban (street level) scale. We describe CALIOPE-Urban, a system coupling CALIOPE – an operational mesoscale air quality forecast system based on the HERMES (emissions), WRF (meteorology) and CMAQ (chemistry) models – with the urban roadway dispersion model R-LINE. Our developments have focused on Barcelona city (Spain), but the methodology may be replicated for other cities in the future. WRF drives pollutant dispersion and CMAQ provides background concentrations to R-LINE. Key features of our system include the adaptation of R-LINE to street canyons, the use of a new methodology that considers upwind grid cells in CMAQ to avoid double counting traffic emissions, a new method to estimate local surface roughness within street canyons, and a vertical mixing parameterisation that considers urban geometry and atmospheric stability to calculate surface level background concentrations. We show that the latter is critical to correct the night-time overestimations in our system. Both CALIOPE and CALIOPE-Urban are evaluated using two sets of observations. The temporal variability is evaluated against measurements from five traffic sites and one urban background site for April–May 2013. While both systems show a fairly good agreement at the urban background site, CALIOPE-Urban shows a better agreement at traffic sites. The spatial variability is evaluated using 182 passive dosimeters that were distributed across Barcelona during 2?weeks for February–March 2017. In this case, the coupled system also shows a more realistic distribution than the mesoscale system, which systematically underpredicts NO2 close to traffic emission sources. Overall CALIOPE-Urban improves mesoscale model results, demonstrating that the combination of both scales provides a more realistic representation of NO2 spatio-temporal variability in Barcelona.
机译:在许多欧洲城市系统地超过了NO2年度空气质量限值。在这种情况下,了解人体暴露,改善政策和规划,并提供预测需要在城市(街道层面)规模的准确空气质量模型的发展。我们描述了Caliope-Urban,一种系统耦合竞争力 - 基于Hermes(排放),WRF(气象)和CMAQ(化学)模型的运营Mescle空气质量预测系统 - 与城市道路分散模型R线。我们的发展集中在巴塞罗那市(西班牙),但该方法可能会在未来的其他城市复制。 WRF驱动器污染物分散和CMAQ为R线提供背景浓度。我们的系统的主要特点包括R-Line对街道峡谷的适应,利用一种新方法,以避免在CMAQ中占用的Upwind网格细胞,以避免双重计数交通排放,这是一种估算街道峡谷内局部表面粗糙度的新方法,以及垂直混合参数考虑城市几何和大气稳定性来计算表面级背景浓度。我们表明后者对于纠正我们系统中的夜间高档至关重要。使用两套观察来评估Caliope和Caliope-Urbor。对2013年4月的五个交通站点和一个城市背景现场的测量评估了时间变异性。虽然两个系统在城市背景现场表现出相当愉快的协议,Caliope-Urban在交通网站上表现出更好的协议。使用182个被动剂量计评估空间变异性,这些功能剂量在2月至2017年2月至3月的2周内分布在巴塞罗那。在这种情况下,耦合系统还示出了比Mescle系统更逼真的分布,这些系统系统地削弱了近距离发射的NO2来源。整体卡利普城改善了Messcale模型结果,表明两种尺度的组合在巴塞罗那的No2时空变异方面提供了更现实的表现。

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