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首页> 外文期刊>Journal of Geophysical Research. Biogeosciences >Impact of NOx emissions from subsonic aircraft: Inclusion of plume processes in a three-dimensional model covering Europe, North America, and the North Atlantic
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Impact of NOx emissions from subsonic aircraft: Inclusion of plume processes in a three-dimensional model covering Europe, North America, and the North Atlantic

机译:亚音速飞机NOx排放的影响:在覆盖欧洲,北美和北大西洋的三维模型中包含羽流过程

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A three-dimensional (3-D) regional chemistry transport model covering Europe, North America, and the North Atlantic Flight Corridor (NAFC) has been used to study the impact of NO, emissions from subsonic aircraft when plume processes were taken into account. An aircraft plume model has been used to quantify the chemical conversion of NOx to reservoir species. With the turbulent conditions used, the plume was spread to scales resolved by the 3-D model after 15 hours. The conversion of NOx was calculated as a function of time of emission, latitude, and background concentration of ozone and NOx under summer conditions. The conversion of NOx in the plume showed a strong variation with time of emissions. In some cases, more than 50% of the emitted NOx was converted to reservoir species after 15 hours at midlatitudes, The results from the plume model were used to modify the aircraft emissions used as inputs to the 3-D regional model. When the aircraft NOx emissions were instantaneously mixed over the model grid area, a standard procedure in regional and global models, monthly averaged NOx increases of up to 70 parts per trillion (ppt) were calculated over the midwest United States and over England in July 1998. The highest ozone increase was calculated northeast of Scandinavia (2.7 parts per billion (ppb)). When plume processes were taken into account, the corresponding monthly averaged NOx contribution from aircraft was reduced by similar to 40% or less. Ozone was lowered by up to similar to 30% within the NAFC, while the peak over Scandinavia was reduced by similar to 20%. [References: 27]
机译:涵盖欧洲,北美和北大西洋飞行走廊(NAFC)的三维(3-D)区域化学物质运输模型已用于研究考虑羽流过程的亚音速飞机NO,排放的影响。飞机羽流模型已用于量化NOx向储层物质的化学转化。在所用的湍流条件下,羽流在15小时后散布到3-D模型解析的尺度。在夏季条件下,将NOx的转化率计算为排放时间,纬度以及臭氧和NOx的背景浓度的函数。烟羽中的NOx转化率随排放时间变化很大。在某些情况下,中纬度15小时后,超过50%的NOx排放被转化为储层物种。羽状模型的结果被用来修改飞机排放物,作为3-D区域模型的输入。当飞机的NOx排放在模型网格区域上即时混合时,在区域和全球模型中采用标准程序计算,1998年7月,美国中西部和英格兰的平均NOx每月增加量高达70万亿分之一(ppt)。 。最高的臭氧增加量是在斯堪的纳维亚半岛东北部计算的(2.7十亿分之一(ppb))。当考虑羽流过程时,飞机相应的每月平均NOx贡献减少约40%或更少。在NAFC中,臭氧降低了多达30%,而在斯堪的纳维亚半岛的峰值降低了约20%。 [参考:27]

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