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首页> 外文期刊>Journal of Quantitative Spectroscopy & Radiative Transfer >Can climate sensitivity be estimated from short-term relationships of top-of-atmosphere net radiation and surface temperature?
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Can climate sensitivity be estimated from short-term relationships of top-of-atmosphere net radiation and surface temperature?

机译:是否可以通过大气顶净辐射与地表温度的短期关系来估算气候敏感性?

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摘要

Increasing the knowledge in climate radiative feedbacks is critical for current climate studies. This work focuses on short-term relationships between global mean surface temperature and top-of-atmosphere (TOA) net radiation. The relationships may be used to characterize the climate feedback as suggested by some recent studies. As those recent studies, an energy balance model with ocean mixed layer and both radiative and non-radiative heat sources is used here. The significant improvement of current model is that climate system memories are considered. Based on model simulations, short-term relationship between global mean surface temperature and TOA net radiation (or the linear striation feature as suggested by previous studies) might represent climate feedbacks when the system had no memories. However, climate systems with the same short-term feedbacks but different memories would have a similar linear striation feature. This linear striation feature reflects only fast components of climate feedbacks and may not represent the total climate feedback even when the memory length of climate systems is minimal. The potential errors in the use of short-term relationships in estimations of climate sensitivity could be big. In short time scales, fast climate processes may overwhelm long-term climate feedbacks. Thus, the climate radiative feedback parameter obtained from short-term data may not provide a reliable estimate of climate sensitivity. This result also suggests that long-term observations of global surface temperature and TOA radiation are critical in the understanding of climate feedbacks and sensitivities.
机译:增加气候辐射反馈的知识对于当前的气候研究至关重要。这项工作着眼于全球平均表面温度与大气层顶部(TOA)净辐射之间的短期关系。如一些最近的研究所建议的,这些关系可以用来表征气候反馈。正如最近的研究一样,这里使用了一个具有海洋混合层以及辐射和非辐射热源的能量平衡模型。当前模型的重大改进是考虑了气候系统的记忆。基于模型模拟,当系统没有记忆时,全球平均表面温度和TOA净辐射(或先前研究建议的线性条纹特征)之间的短期关系可能表示气候反馈。但是,具有相同短期反馈但记忆不同的气候系统将具有类似的线性条纹特征。此线性条纹特征仅反映了气候反馈的快速组成部分,即使气候系统的内存长度很小,也可能无法代表总的气候反馈。在评估气候敏感性时使用短期关系的潜在误差可能很大。在短时间内,快速的气候过程可能使长期的气候反馈不堪重负。因此,从短期数据获得的气候辐射反馈参数可能无法提供气候敏感性的可靠估计。该结果还表明,长期观测全球表面温度和TOA辐射对于理解气候反馈和敏感性至关重要。

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