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Climate and Ozone Response to Increased Stratospheric Water Vapor

机译:气候和臭氧对平流层水蒸气增加的响应

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摘要

Stratospheric water vapor abundance affects ozone, surface climate, and stratospheric temperatures. From 30-50 km altitude, temperatures show global decreases of 3-6 K over recent decades. These may be a proxy for water vapor increases, as the Goddard Institute for Space Studies (GISS) climate model reproduces these trends only when stratospheric water vapor is allowed to increase. Observations suggest that stratospheric water vapor is indeed increasing, however, measurements are extremely limited in either spatial coverage or duration. The model results suggest that the observed changes may be part of a global, long-term trend. Furthermore, the required water vapor change is too large to be accounted for by increased production within the stratosphere, suggesting that ongoing climate change may be altering tropospheric input. The calculated stratospheric water vapor increase contributes an additional approximately equals 24% (approximately equals 0.2 W/m(exp 2)) to the global warming from well-mixed greenhouse gases over the past two decades. Observed ozone depletion is also better reproduced when destruction due to increased water vapor is included. If the trend continues, it could increase future global warming and impede stratospheric ozone recovery.
机译:平流层水蒸气的丰度会影响臭氧,地表气候和平流层温度。在最近的几十年中,从30-50公里的海拔高度来看,全球气温下降了3-6K。这些可能是水蒸气增加的一种替代,因为戈达德空间研究所(GISS)气候模型仅在允许平流层水蒸气增加的情况下重现了这些趋势。观测结果表明,平流层水蒸气确实在增加,但是,无论是在空间覆盖范围还是持续时间上,测量都极为有限。模型结果表明,观察到的变化可能是全球长期趋势的一部分。此外,所需的水蒸气变化太大,无法用平流层内增加的产量来解释,这表明正在进行的气候变化可能正在改变对流层的输入。计算得出的平流层水蒸气增加量在过去的二十年中为全球温室气体充分混合贡献了大约等于24%(大约等于0.2 W / m(exp 2))。当包括由于增加的水蒸气引起的破坏时,观察到的臭氧消耗也会更好地再现。如果这一趋势继续下去,它将加剧未来的全球变暖,并阻碍平流层臭氧的恢复。

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    Shindell, Drew T.;

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  • 年度 2001
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