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Beyond equilibrium climate sensitivity

机译:超越均衡气候敏感性

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摘要

Equilibrium climate sensitivity characterizes the Earth's long-term global temperature response to increased atmospheric CO2 concentration. It has reached almost iconic status as the single number that describes how severe climate change will be. The consensus on the 'likely' range for climate sensitivity of 1.5 degrees C to 4.5 degrees C today is the same as given by Jule Charney in 1979, but now it is based on quantitative evidence from across the climate system and throughout climate history. The quest to constrain climate sensitivity has revealed important insights into the timescales of the climate system response, natural variability and limitations in observations and climate models, but also concerns about the simple concepts underlying climate sensitivity and radiative forcing, which opens avenues to better understand and constrain the climate response to forcing. Estimates of the transient climate response are better constrained by observed warming and are more relevant for predicting warming over the next decades. Newer metrics relating global warming directly to the total emitted CO2 show that in order to keep warming to within 2 degrees C, future CO2 emissions have to remain strongly limited, irrespective of climate sensitivity being at the high or low end.
机译:均衡气候敏感性表征地球的长期全球温度响应,以增加大气CO 2浓度。它已经达到了几乎标志性的状态作为描述了气候变化如何的单个数字。今天的气候敏感度的“可能”范围为1.5摄氏度至4.5摄氏度的共识与Jule Charney在1979年的思考相同,但现在它是基于来自气候系统和整个气候历史的定量证据。为了约束气候敏感度的追求已经揭示了对气候系统反应,自然变化和气候模型的自然变化和局限性的重要见解,也涉及气候敏感性和辐射强制潜在的简单概念,这打开了更好的理解和更好地理解和更好地理解和约束对强迫的气候响应。通过观察到的变暖更好地限制了瞬态气候响应的估计,并且对于在未来几十年中预测变暖更为重要。新的度量与全球变暖直接向总发出的CO2表示,为了保持升温到2摄氏度范围内,未来的二氧化碳排放必须保持强烈限制,无论气候敏感性都处于高端还是低端。

著录项

  • 来源
    《Nature geoscience》 |2017年第10期|共18页
  • 作者单位

    Swiss Fed Inst Technol Inst Atmospher &

    Climate Sci CH-8092 Zurich Switzerland;

    Swiss Fed Inst Technol Inst Atmospher &

    Climate Sci CH-8092 Zurich Switzerland;

    Univ Edinburgh Sch Geosci Edinburgh EH9 3FE Midlothian Scotland;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 地球物理学;
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