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青海共和盆地早全新世古风向重建及其对黄土物源的指示 被引量:5
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作者 田少华 肖国桥 +1 位作者 戴高文 赖忠平 《第四纪研究》 CAS CSCD 北大核心 2020年第1期95-104,共10页
青藏高原东北部地处黄土与沙漠的过渡地区,在冰期-间冰期旋回中受中纬西风与东亚季风环流的交替控制,曾发生大范围的沙漠进退,是黄土高原重要的潜在物源区。恢复该区地质历史时期的大气环流格局可为重建东亚地区的环境面貌、探讨黄土高... 青藏高原东北部地处黄土与沙漠的过渡地区,在冰期-间冰期旋回中受中纬西风与东亚季风环流的交替控制,曾发生大范围的沙漠进退,是黄土高原重要的潜在物源区。恢复该区地质历史时期的大气环流格局可为重建东亚地区的环境面貌、探讨黄土高原的物源区、检验东亚地区古气候模拟结果的有效性等方面提供重要依据。但目前对高原东北部的古大气环流特征却鲜有研究。青藏高原东北部保存有一系列的古沙丘,可为古大气环流的重建提供直接依据。本文选取青海共和盆地一处代表性新月形古沙丘开展光释光测年研究,并通过其平面形态和前积层产状恢复了当时的古风向。结果表明:共和盆地的风沙活动自早全新世以来开始显著减弱,此时近地面盛行与现今风向一致的西北风。前人的研究揭示出青藏高原东北部在冰期时很可能盛行西风,并存在广泛的荒漠化,因而很可能是黄土高原冰期时重要的物源区之一。而本研究指示,该区的盛行风向在早全新世以来转变为西北风,且荒漠范围显著退缩,导致其全新世不再是黄土高原的物源区。青藏高原东北部的盛行风向和荒漠范围在冰期-间冰期旋回中的这种变化,为理解黄土高原的粉尘物源在空间和冰期-间冰期旋回上的变化提供了依据。 展开更多
关键词 青藏高原东北部 共和盆地 古沙丘 古大气环流 黄土物源
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Cenozoic tectonic and geomorphic evolution of the Longxi region in northeastern Tibetan Plateau interpreted from detrital zircon 被引量:6
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作者 WANG ZhiXiang LIANG MeiYan +1 位作者 SUN YuQi dai gaowen 《Science China Earth Sciences》 SCIE EI CAS CSCD 2017年第2期256-267,共12页
The Longxi region contains different kinds of Cenozoic sediments, including eolian deposits, reworked loess, fluvial and lacustrine deposits. The provenance evolution of these sediments is of great significance in exp... The Longxi region contains different kinds of Cenozoic sediments, including eolian deposits, reworked loess, fluvial and lacustrine deposits. The provenance evolution of these sediments is of great significance in exploring the uplift, tectonic deformation and associated with geomorphic evolution of the Northeastern Tibetan Plateau. In this paper, we used the single-grain zircon provenance analysis to constrain the provenances for the Paleogene alluvial conglomerates and for the Neogene fluvial-lacustrine sediments, and compared them with results from the loess deposits since the Miocene. The results show that: (1) the Paleogene alluvial conglomerates contain a large number of detrital zircons ranging from 560 to 1100 Ma that were derived from the Yangzi Block. However, the sediments of early Miocene have much fewer zircons of this age span, which are characterized by an abundance of zircon ages in the ranges of 200 360 Ma. This indicates that the Paleogcne alluvial conglomerates mainly come from the middle and/or southern West Qinling, and the early Miocene sediments are primarily from the northern West Qinling; (2) Late Neogene fluvial sediments (11.5 Ma onward) in Tianshui-Qinan region are dominated by zircon ages of 380-450 Ma. This zircon population is similar to that of the exposed intrusive rocks of southern part of the Liupan Mountains, implying that the southern part of Liupan Mountains probably had already uplifted by 11.5 Ma; (3) Late Miocene lacustrine sediments in Tianshui region have a zircon age spectra that is remarkably different from coeval fluvial deposits, but is similar to the zircon age distributions of the Miocene loess in Qinan region, late Miocene-Pliocene Hipparion red clay and Quaternary loess. This indicates that fine particles within these Miocene lacustrine sediments in Tianshui region may be dominated by aeolian materials. This study reveals that provenance changes of Cenozoic sediments in Tianshui-Qinan region and its geomorphic evolution are closely related to the multi-stage uplift of the Northeastern Tibetan Plateau. In particular, the major uplift of the Northem Tibetan Plateau during late Oligocene-early Miocene may have not only provided the source areas and wind dynamic conditions for the deposits of the Miocene loess, but also provided the geomorphic conditions for its accumulation. 展开更多
关键词 Detrital zircon PROVENANCE Tectonic uplift Geomorphic evolution Tianshui-Qinan region
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