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Observations of bay-breeze and ozone events over a marine site during the OWLETS-2 campaign

机译:在Owlets-2活动期间海洋网站上的海湾微风和臭氧活动的观察

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Land-sea recirculation such as bay and sea-breezes are important local circulations that facilitate pollution events. Measurements over a marine site in the Chesapeake Bay revealed the evolution of two bay-breeze events and associated ozone vertical structure. The horizontal and vertical structure of the bay-breeze was detailed using scanning Doppler wind lidar measurements and a ground-based ozone lidar was used to characterize the vertical distribution of ozone. The two bay-breeze events on 29-30 June 2018 observed during the Ozone Water Land Environmental Transition Study Phase 2 (OWLETS-2) campaign showed distinct differences in the horizontal and vertical evolution of wind as well as the accompanying vertical structure of ozone. The analysis of the wind circulation showed that the intensity of the offshore flow plays an important role in the initiation time, development, and strength of the bay-breeze on both days. Results showed increased surface ozone concentrations during times of relatively low or decreasing bay-breeze height and weak upwards vertical motion. Upwards vertical motions were significantly enhanced on 30 June 2018 and presented with a decrease in surface ozone concentrations, yet enhanced ozone values were lofted above the surface near the lofted offshore flow. This study shows that both the vertical structure and evolution of pollutants can be impacted by the bay-breeze events through dilution and transport.
机译:陆海再循环如海湾和海风是重要的本地循环,促进污染事件。 Chesapeake湾的海洋网站上的测量揭示了两个海湾微风事件的演变和相关的臭氧垂直结构。使用扫描多普勒风光激光雷达测量来详述托架微风的水平和垂直结构,并使用基于臭氧的臭氧的臭氧的垂直分布。臭氧水土环境过渡研究阶段2(Owlets-2)在臭氧水平和垂直演变中观察到2018年6月29日的两六年六月二十九日举行的两年湾微风事件在风中显示出明显的差异以及臭氧的伴随垂直结构。风循环分析表明,海上流动的强度在两天内湾微风的起始时间,开发和强度发挥着重要作用。结果表明,在相对较低或降低的海湾微风高度和弱向上垂直运动中增加了表面臭氧浓度。向上垂直运动于2018年6月30日显着增强,并随着表面臭氧浓度的减少而呈现,但增强的臭氧值在靠近倾向的海上流动附近的表面上方。本研究表明,污染物的垂直结构和演化都可以通过稀释和运输来受海湾微风事件的影响。

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