Laboratory for Climate and Ocean-Atmosphere Studies, Department of Atmospheric and Oceanic Sciences, School of Physics, Peking University, Beijing, China.
Department of Atmospheric Science, School of Environmental Studies, China University of Geosciences, Wuhan, China.
Sci Data. 2022 Jun 28;9(1):371. doi: 10.1038/s41597-022-01490-4.
The Phanerozoic Eon has witnessed considerable changes in the climate system as well as abundant animals and plant life. Therefore, the evolution of the climate system in this Eon is worthy of extensive research. Only by studying climate changes in the past can we understand the driving mechanisms for climate changes in the future and make reliable climate projections. Apart from observational paleoclimate proxy datasets, climate simulations provide an alternative approach to investigate past climate conditions of the Earth, especially for long time span in the deep past. Here we perform 55 snapshot simulations for the past 540 million years, with a 10-million-year interval, using the Community Earth System Model version 1.2.2 (CESM1.2.2). The climate simulation dataset includes global distributions of monthly surface temperatures and precipitation, with a 1° horizontal resolution of 0.9° × 1.25° in latitude and longitude. This open access climate dataset is useful for multidisciplinary research, such as paleoclimate, geology, geochemistry, and paleontology.
显生宙见证了气候系统的重大变化以及丰富的动植物生命。因此,这个时代的气候系统演化值得广泛研究。只有通过研究过去的气候变化,我们才能了解未来气候变化的驱动机制,并做出可靠的气候预测。除了观测古气候代理数据集外,气候模拟提供了一种研究地球过去气候条件的替代方法,特别是对于过去的长时间跨度。在这里,我们使用社区地球系统模型版本 1.2.2(CESM1.2.2)进行了过去 540 百万年的 55 次快照模拟,时间间隔为 1000 万年。气候模拟数据集包括全球逐月表面温度和降水分布,水平分辨率为 1°,纬度和经度为 0.9°×1.25°。这个开放获取的气候数据集对于多学科研究非常有用,如古气候学、地质学、地球化学和古生物学。