Department of Atmospheric and Oceanic Sciences, McGill University, Montreal, Canada.
State Key Laboratory of Tibetan Plateau Earth System, Environment and Resources (TPESER), Institute of Tibetan Plateau Research, Chinese Academy of Sciences, Beijing, China.
Sci Data. 2024 Feb 24;11(1):237. doi: 10.1038/s41597-024-03080-y.
Radiative kernel is a widely adopted method for diagnosing radiation variability and climate feedback. However, most of the existing radiative kernels are broadband flux kernels and lack the spectral information. Motivated by the growing interest in the spectral changes of the Earth radiation budget, we generate a new set of band-by-band radiative kernels based on the fifth generation European Center for Medium-Range Weather Forecasts (ERA5) reanalysis, which can be used for analyzing the spectrally decomposed changes in the top of atmosphere, surface and atmospheric radiation. The radiative sensitivity quantified by the ERA5 band-by-band kernel is compared to another spectral kernel and validated in a spectral radiation closure test. The use and benefits of the new ERA5 kernels are then demonstrated in an analysis of spectral feedbacks of an ensemble of global climate models (GCMs).
辐射核是一种广泛应用于诊断辐射变化和气候反馈的方法。然而,现有的大多数辐射核都是宽带通量核,缺乏光谱信息。鉴于人们对地球辐射收支的光谱变化越来越感兴趣,我们基于第五代欧洲中期天气预报中心(ECMWF)再分析数据生成了一套新的逐带辐射核,可用于分析大气顶、地表和大气辐射的光谱分解变化。ERA5 逐带核量化的辐射敏感性与另一个光谱核进行了比较,并在光谱辐射闭合测试中进行了验证。然后,在对一组全球气候模型(GCM)的光谱反馈分析中展示了新的 ERA5 核的用途和优势。