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Influence of lateral and top boundary conditions on regional air quality prediction: A multiscale study coupling regional and global chemical transport models

机译:横向和顶部边界条件对区域空气质量预测的影响:多尺度研究耦合区域和全球化学传输模型

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摘要

The sensitivity of regional air quality model to various lateral and top boundary conditions is studied at 2 scales: a 60 km domain covering the whole USA and a 12 km domain over northeastern USA. Three global models (MOZART-NCAR, MOZART-GFDL and RAQMS) are used to drive the STEM-2K3 regional model with time-varied lateral and top boundary conditions (BCs). The regional simulations with different global BCs are examined using ICARTT aircraft measurements performed in the summer of 2004, and the simulations are shown to be sensitive to the boundary conditions from the global models, especially for relatively long-lived species, like CO and O3. Differences in the mean CO concentrations from three different global-model boundary conditions are as large as 40 ppbv, and the effects of the BCs on CO are shown to be important throughout the troposphere, even near surface. Top boundary conditions show strong effect on O3 predictions above 4 km. Over certain model grids, the model’s sensitivity to BCs is found to depend not only on the distance from the domain’s top and lateral boundaries, downwind/upwind situation, but also on regional emissions and species properties. The near-surface prediction over polluted area is usually not as sensitive to the variation of BCs, but to the magnitude of their background concentrations. We also test the sensitivity of model to temporal and spatial variations of the BCs by comparing the simulations with time-varied BCs to the corresponding simulations with time-mean and profile BCs. Removing the time variation of BCs leads to a significant bias on the variation prediction and sometime causes the bias in predicted mean values. The effect of model resolution on the BC sensitivity is also studied.
机译:区域空气质量模型对各种横向和顶部边界条件的敏感性在2段中研究:一个60公里的域名,覆盖整个美国和美国东北部的12公里。三个全局模型(Mozart-NCAR,Mozart-GFDL和RAQMS)用于驱动Stew-2K3区域模型,随时间变化的横向和顶部边界条件(BCS)。使用在2004年夏季进行的ICARTT飞机测量检查具有不同全球BC的区域模拟,并且模拟显示对全球模型的边界条件敏感,特别是对于相对长的物种,如CO和O3。来自三种不同全球模型边界条件的平均CO浓度的差异大约40ppbv,BCS对CO的影响在整个对流层中都显示出很重要,甚至在表面附近。顶部边界条件对4公里的O3预测显示强烈影响。在某些模型网格上,该模型对BCS的敏感性不仅取决于域的顶部和横向边界,下风/上风情况,还取决于区域排放和物种属性。对污染区域的近表面预测通常与BCS的变化不那么敏感,而是对其背景浓度的大小。我们还通过将模拟与时间变化的BCS与时间均值和简档BCS的相应模拟进行比较来测试模型对BCS的时间和空间变化的敏感性。去除BCS的时间变化导致变化预测的显着偏差,并且有时会导致预测平均值的偏差。还研究了模型分辨率对BC敏感性的影响。

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