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Detection of stratospheric ozone intrusions by windprofiler radars

机译:风廓线雷达探测平流层臭氧入侵

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Stratospheric ozone attenuates harmful ultraviolet radiation and protects the Earth's biosphere. Ozone is also of fundamental importance for the chemistry of the lowermost part of the atmosphere, the troposphere. At ground level, ozone is an important by-product of anthropogenic pollution, damaging forests and crops, and negatively affecting human health. Ozone is critical to the chemical and thermal balance of the troposphere because, via the formation of hydroxyl radicals, it controls the capacity of tropospheric air to oxidize and remove other pollutants. Moreover, ozone is an important greenhouse gas, particularly in the upper troposphere. Although photochemistry in the lower troposphere is the major source of tropospheric ozone, the stratosphere-troposphere transport of ozone is important to the overall climatology, budget and long-term trends of tropospheric ozone. Stratospheric intrusion events, however, are still poorly understood. Here we introduce the use of modern windprofiler radars to assist in such transport investigations. By hourly monitoring the radar-derived tropopause height in combination with a series of frequent ozonesonde balloon launches, we find numerous intrusions of ozone from thernstratosphere into the troposphere in southeastern Canada. On some occasions, ozone is dispersed at altitudes of two to four kilometres, but on other occasions it reaches the ground, where it can dominate the ozone density variability. We observe rapid changes in radar tropopause height immediately preceding these intrusion events. Such changes therefore serve as a valuable diagnostic for the occurrence of ozone intrusion events. Our studies emphasize the impact that stratospheric ozone can have on tropospheric ozone, and show that windprofiler data can be used to infer the possibility of ozone intrusions, as well as better represent tropopause motions in association with stratosphere-troposphere transport.
机译:平流层臭氧会减弱有害的紫外线辐射,并保护地球的生物圈。臭氧对最底层大气即对流层的化学作用也至关重要。在地面上,臭氧是人为污染,破坏森林和农作物并对人类健康产生负面影响的重要副产品。臭氧对对流层的化学和热平衡至关重要,因为臭氧通过形成羟基自由基来控制对流层空气氧化和去除其他污染物的能力。此外,臭氧是重要的温室气体,特别是在对流层上部。尽管对流层下部的光化学是对流层臭氧的主要来源,但平流层-对流层臭氧的运输对对流层臭氧的整体气候,预算和长期趋势很重要。但是,对平流层侵入事件的了解仍然很少。在这里,我们介绍使用现代风廓线雷达来协助进行此类运输调查。通过每小时监测一次由雷达得出的对流层顶高度,并结合一系列频繁的探空仪气球发射,我们发现了大量的臭氧从平流层侵入加拿大东南部的对流层。在某些情况下,臭氧会散布在两到四公里的高度,但在其他情况下,它会到达地面,在那里臭氧占主导地位。在这些入侵事件发生之前,我们观察到雷达对流层顶高度的快速变化。因此,这样的变化可作为臭氧入侵事件发生的有价值的诊断。我们的研究强调了平流层臭氧对平流层臭氧的影响,并表明风廓线数据可以用来推断臭氧入侵的可能性,以及更好地表示平流层与对流层运输相关的对流层顶运动。

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