亚洲边缘海季风勘探综合

IF 1.6 Q3 GEOSCIENCES, MULTIDISCIPLINARY Scientific Drilling Pub Date : 2022-10-28 DOI:10.5194/sd-31-1-2022
P. Clift, C. Betzler, S. Clemens, B. Christensen, G. Eberli, C. France‐Lanord, S. Gallagher, A. Holbourn, W. Kuhnt, R. Murray, Y. Rosenthal, R. Tada, S. Wan
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引用次数: 6

摘要

摘要国际海洋发现计划(IODP)在2013年至2016年期间进行了一系列考察,旨在解决亚洲和澳大利亚季风气候系统的发展问题。从阿拉伯海到日本海,向南到西澳大利亚的新近纪剖面的恢复取得了重大进展。先进活塞盖(APC)的高采收率提供了大量半连续剖面,用于研究季风演变。使用半长APC对印度洋海底扇的富砂沉积物进行了成功取样。记录显示,整个地区的湿度和季节性发展是历时性的,尽管大多数地区自中新世中期以来,特别是自~ 4 Ma以来表现出干燥,可能与全球变冷有关。从C3到C4植被的转变通常伴随着干旱,但可能与全球变冷有更多的联系。在中新世晚期,西澳大利亚和可能的中国南部与变湿润的总体趋势不同,澳大利亚季风更多地受到印度尼西亚通流的影响,而亚洲季风更多地受到南亚喜马拉雅山脉上升和东亚青藏高原的影响。季风表现出对轨道强迫的敏感性,在北半球冰期期间,许多地区的夏季风较弱。更强的季风与更快的大陆侵蚀有关,但与风化强度无关,自中新世中期以来,亚洲的风化强度没有减弱的趋势。海洋生产力代用指标和陆地化学风化、侵蚀和植被代用指标经常出现分歧。未来还需要对几乎未知的古近纪进行研究,以及碳酸盐台地作为古海洋条件档案的潜力。
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A synthesis of monsoon exploration in the Asian marginal seas
Abstract. The International Ocean Discovery Program (IODP) conducted a series of expeditions between 2013 and 2016 that were designed to address the development of monsoon climate systems in Asia and Australia. Significant progress was made in recovering Neogene sections spanning the region from the Arabian Sea to the Sea of Japan and southward to western Australia. High recovery by advanced piston corer (APC) has provided a host of semi-continuous sections that have been used to examine monsoonal evolution. Use of the half-length APC was successful in sampling sand-rich sediment in Indian Ocean submarine fans. The records show that humidity and seasonality developed diachronously across the region, although most regions show drying since the middle Miocene and especially since ∼ 4 Ma, likely linked to global cooling. A transition from C3 to C4 vegetation often accompanied the drying but may be more linked to global cooling. Western Australia and possibly southern China diverge from the general trend in becoming wetter during the late Miocene, with the Australian monsoon being more affected by the Indonesian Throughflow, while the Asian monsoon is tied more to the rising Himalaya in South Asia and to the Tibetan Plateau in East Asia. The monsoon shows sensitivity to orbital forcing, with many regions having a weaker summer monsoon during times of northern hemispheric Glaciation. Stronger monsoons are associated with faster continental erosion but not weathering intensity, which either shows no trend or a decreasing strength since the middle Miocene in Asia. Marine productivity proxies and terrestrial chemical weathering, erosion, and vegetation proxies are often seen to diverge. Future work on the almost unknown Paleogene is needed, as well as the potential of carbonate platforms as archives of paleoceanographic conditions.
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来源期刊
Scientific Drilling
Scientific Drilling GEOSCIENCES, MULTIDISCIPLINARY-
CiteScore
2.50
自引率
0.00%
发文量
12
审稿时长
27 weeks
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