...
首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Effects of Different Stratospheric SO_2 Injection Altitudes on Stratospheric Chemistry and Dynamics
【24h】

Effects of Different Stratospheric SO_2 Injection Altitudes on Stratospheric Chemistry and Dynamics

机译:不同平流层SO_2注射率对地流层化学和动力学的影响

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

Strategically applied geoengineering is proposed to reduce some of the known side effects of stratospheric aerosol modifications. Specific climate goals could be reached depending on design choices of stratospheric sulfur injections by latitude, altitude, and magnitude. Here we explore in detail the stratospheric chemical and dynamical responses to injections at different altitudes using a fully coupled Earth System Model. Two different scenarios are explored that produce approximately the same global cooling of 2°C over the period 2042–2049, a high-altitude injection case using 24 Tg SO_2/year at 30 hPa (≈25-km altitude) and a low-altitude injection case using 32 Tg SO_2/year injections at 70 hPa (between 19- and 20-km altitude), with annual injections divided equally between 15°N and 15°S. Both cases result in a warming of the lower tropical stratosphere up to 10 and 15°C for the high- and low-altitude injection case and in substantial increases of stratospheric water vapor of up to 2 and 4 ppm, respectively, compared to no geoengineering conditions. Polar column ozone in the Northern Hemisphere is reduced by up to 18% in March for the high-altitude injection case and up to 8% for the low-altitude injection case. However, for winter middle and high northern latitudes, low-altitude injections result in greater column ozone values than without geoengineering. These changes are mostly driven by dynamics and advection. Antarctic column ozone in 2042–2049 does not recover from present-day (2002–2009) values for both cases.
机译:建议策略性地应用地理工程,以减少地段气溶胶改性的一些已知的副作用。根据纬度,高度和幅度的平流层硫注入的设计选择,可以达到具体的气候目标。在这里,我们使用完全耦合的地球系统模型详细探讨了在不同高度的注射的流程图化学和动态反应。探讨了两种不同的场景,在2042-2049期间产生大约相同的2°C的全球冷却,高空注射箱使用30 HPA(Im≈25km海拔)和低空注射箱使用32 TG SO_2 /年注射在70 HPA(高海拔高度)之间,年注喷射等于15°N和15°S。两种情况导致较低的热带平流层的升温到高度和低空注射箱,高度和低空注射箱,并且分别在没有地形工程的情况下分别具有高达2和4ppm的平坦散水蒸汽的大幅增加状况。 3月份北半球的极柱臭氧在3月份的高空注射箱中减少了高达18%,低空注射箱的8%高达8%。然而,对于冬季中和高北部纬度,低空注射导致更大的臭氧值,而不是没有地衰老。这些变化主要由动态和平流驱动。 2042-2049中的南极柱臭氧不会从两天(2002-2009)的两种情况下恢复。

著录项

  • 来源
  • 作者单位

    Atmospheric Chemistry Observations and Modeling Laboratory National Center for Atmospheric Research Boulder CO USA;

    Climate and Global Dynamics Laboratory National Center for Atmospheric Research Boulder CO USA;

    Atmospheric Chemistry Observations and Modeling Laboratory National Center for Atmospheric Research Boulder CO USA;

    Atmospheric Sciences and Global Change Division Pacific Northwest National Laboratory Richland WA USA;

    Mechanical and Aerospace Engineering Cornell University Ithaca NY USA;

    Atmospheric Chemistry Observations and Modeling Laboratory National Center for Atmospheric Research Boulder CO USA;

    Atmospheric Chemistry Observations and Modeling Laboratory National Center for Atmospheric Research Boulder CO USA;

    Climate and Global Dynamics Laboratory National Center for Atmospheric Research Boulder CO USA;

    Climate and Global Dynamics Laboratory National Center for Atmospheric Research Boulder CO USA;

    Atmospheric Chemistry Observations and Modeling Laboratory National Center for Atmospheric Research Boulder CO USA;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 地球物理学;
  • 关键词

    Different Stratospheric; SO_2 Injection; Dynamics;

    机译:不同的划分;SO_2注射;动态;

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号