工业化前至全新世中期亚洲降水增强和陆洋热梯度的多模式变化

A. Maharani, Y. Djamil, R. Rachmayani
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引用次数: 0

摘要

降雨代理记录显示,全新世中期亚洲大陆的降雨量高于今天。在全新世中期,亚洲大陆降雨量的增加被认为与亚洲夏季风(ASM)在大陆-海洋热梯度更大之后的增强有关。本研究考察了与工业化前相比,全新世中期亚洲大陆-海洋热梯度变化与降雨量增加之间的多模式变化。我们分析了九个全球气候模型(GCM)中850毫巴的地表温度、降水量和风力,这些模型都是从古气候建模相互比较项目第三阶段(PMIP3)的数据库中获得的。多模式分析表明,大陆-海洋热梯度的变化与ASM风呈正相关。然而,大陆-海洋热梯度的变化与亚洲降雨量之间存在负相关。模拟大陆-海洋热梯度大变化的模型产生的亚洲降雨量增幅最小,反之亦然。这种反比关系可能是由于印度洋SST的冷却,因为它与亚洲降雨量的相关性得分远高于与亚洲大陆变暖的相关性得分。因此,从全新世中期到今天,亚洲大陆降雨量增加的多模式变化主要与印度洋SST降温的多模式变异有关。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
MULTI-MODEL VARIATION OF THE ENHANCED ASIAN RAINFALL AND CONTINENT-OCEAN THERMAL GRADIENT FROM PRE-INDUSTRIAL TO MID-HOLOCENE
Rainfall over the Asian continent during the mid-Holocene was higher than today as shown by the rainfall proxy records. During the mid-Holocene, increased rainfall over the Asian Continent has been suggested to be associated with the strengthening of the Asian Summer Monsoon (ASM) following a sharper continent-ocean thermal gradient. This study examined multi-model variation between changes of the continent-ocean thermal gradient and the increased rainfall over Asia during the mid-Holocene as compared to the pre-Industrial. We analyzed surface temperature, precipitation, and wind at 850mb from nine Global Climate Models (GCMs) which are all obtained from the database of the Paleoclimate Modeling Intercomparison Project Phase-3 (PMIP3). Multi-model analysis shows that changes in a continent-ocean thermal gradient has a positive correlation with ASM wind. However, a negative correlation occurs between changes in the continent-ocean thermal gradient with Asian rainfall. Models that simulate large changes in the continent-ocean thermal gradient produced the smallest increase in the Asian rainfall and vice versa. Such inverse relation is likely due to the cooling of Indian Ocean SST since its correlation scores with Asian rainfall is much higher than the one with the warming of the Asian continent. Thus, multi-model variation of the increased rainfall over the Asian continent between mid-Holocene and today is mainly related to the multi-model variation of the cooling in the Indian Ocean SST.
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