您的位置: 专家智库 > >

国家自然科学基金(s40575019)

作品数:1 被引量:15H指数:1
发文基金:国家自然科学基金更多>>
相关领域:天文地球更多>>

文献类型

  • 1篇中文期刊文章

领域

  • 1篇天文地球

主题

  • 1篇平流层
  • 1篇总拥有成本
  • 1篇纬度
  • 1篇温度变化
  • 1篇流层
  • 1篇高纬
  • 1篇高纬度
  • 1篇高纬度地区
  • 1篇INCREA...
  • 1篇臭氧
  • 1篇臭氧损耗

传媒

  • 1篇Advanc...

年份

  • 1篇2009
1 条 记 录,以下是 1-1
排序方式:
Impact of Increasing Stratospheric Water Vapor on Ozone Depletion and Temperature Change被引量:15
2009年
Using a detailed, fully coupled chemistry climate model (CCM), the effect of increasing stratospheric H2O on ozone and temperature is investigated. Different CCM time-slice runs have been performed to investigate the chemical and radiative impacts of an assumed 2 ppmv increase in H2O. The chemical effects of this H2O increase lead to an overall decrease of the total column ozone (TCO) by ~1% in the tropics and by a maximum of 12% at southern high latitudes. At northern high latitudes, the TCO is increased by only up to 5% due to stronger transport in the Arctic. A 2-ppmv H2O increase in the model's radiation scheme causes a cooling of the tropical stratosphere of no more than 2 K, but a cooling of more than 4 K at high latitudes. Consequently, the TCO is increased by about 2%-6%. Increasing stratospheric H2O, therefore, cools the stratosphere both directly and indirectly, except in the polar regions where the temperature responds differently due to feedbacks between ozone and H2O changes. The combined chemical and radiative effects of increasing H2O may give rise to more cooling in the tropics and middle latitudes but less cooling in the polar stratosphere. The combined effects of H2O increases on ozone tend to offset each other, except in the Arctic stratosphere where both the radiative and chemical impacts give rise to increased ozone. The chemical and radiative effects of increasing H2O cause dynamical responses in the stratosphere with an evident hemispheric asymmetry. In terms of ozone recovery, increasing the stratospheric H2O is likely to accelerate the recovery in the northern high latitudes and delay it in the southern high latitudes. The modeled ozone recovery is more significant between 2000-2050 than between 2050-2100, driven mainly by the larger relative change in chlorine in the earlier period.
田文寿Martyn P.CHIPPERFIELD吕达仁
关键词:臭氧损耗平流层温度变化高纬度地区总拥有成本
共1页<1>
聚类工具0