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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >The Climate Response to Stratospheric Aerosol Geoengineering Can Be Tailored Using Multiple Injection Locations
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The Climate Response to Stratospheric Aerosol Geoengineering Can Be Tailored Using Multiple Injection Locations

机译:使用多个注射位置可以量身定制对平坦散热热醇的气候响应

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摘要

By injecting different amounts of SO_2 at multiple different latitudes, the spatial pattern of aerosol optical depth (AOD) can be partially controlled. This leads to the ability to influence the climate response to geoengineering with stratospheric aerosols, providing the potential for design. We use simulations from the fully coupled whole-atmosphere chemistry climate model CESM1(WACCM) to demonstrate that by appropriately combining injection at just four different locations, 30°S, 15°S, 15°N, and 30°N, then three spatial degrees of freedom of AOD can be achieved: an approximately spatially uniform AOD distribution, the relative difference in AOD between Northern and Southern Hemispheres, and the relative AOD in high versus low latitudes. For forcing levels that yield 1–2°C cooling, the AOD and surface temperature response are sufficiently linear in this model so that the response to different combinations of injection at different latitudes can be estimated from single-latitude injection simulations; nonlinearities associated with both aerosol growth and changes to stratospheric circulation will be increasingly important at higher forcing levels. Optimized injection at multiple locations is predicted to improve compensation of CO_2-forced climate change relative to a case using only equatorial aerosol injection (which overcools the tropics relative to high latitudes). The additional degrees of freedom can be used, for example, to balance the interhemispheric temperature gradient and the equator to pole temperature gradient in addition to the global mean temperature. Further research is needed to better quantify the impacts of these strategies on changes to long-term temperature, precipitation, and other climate parameters.
机译:通过在多个不同纬度下注入不同量的SO_2,可以部分地控制气溶胶光学深度(AOD)的空间图案。这导致影响气候响应的气候响应与平坦散热器气溶胶,提供设计潜力。我们使用完全耦合的全氛围化学气候模型CESM1(WACCM)的模拟,以证明仅在仅四个不同位置的注射,30°S,15°S,15°N和30°N,然后三个空间可以实现AOD的自由度:近似空间均匀的AOD分布,北部和南半球之间AOD的相对差异,以及高纬度的相对AOD。用于迫使水平成品率1-2℃下冷却后,将AOD和表面温度响应应足以线性在该模型中,使得喷射到在不同纬度的不同组合的响应可以从单纬度注射模拟来估计;与气溶胶生长和平流层循环变化相关的非线性在更高的迫使水平下将越来越重要。预测多个位置处的优化注射,以改善仅使用仅使用赤道气溶胶喷射的壳体(其中通过相对于高纬度的热带加上热带)的案例来改善CO_2强制气候变化的补偿。除了全球平均温度之外,还可以使用例如平衡斜声温度梯度和赤道来平衡止血液温度梯度和极温梯度的自由度。需要进一步研究以更好地量化这些策略对长期温度,降水和其他气候参数变化的影响。

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  • 作者单位

    Mechanical and Aerospace Engineering Cornell University Ithaca NY USA;

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

    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;

    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

    The Climate; Response; Injection Locations;

    机译:气候;反应;注射位置;

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