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南天山大龙池堰塞体形成演化过程分析
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作者 高旭 《地质科技通报》 CAS CSCD 北大核心 2024年第1期229-240,共12页
堰塞体是高山峡谷区开展工程建设重点关注的地质体,本研究以南天山大龙池堰塞体为研究对象,探索南天山高山峡谷地区堰塞体的成因及演化过程。基于大龙池区域卫星遥感影像、区域地质资料,依托现场调查和地质钻探等方法,结合理论计算与有... 堰塞体是高山峡谷区开展工程建设重点关注的地质体,本研究以南天山大龙池堰塞体为研究对象,探索南天山高山峡谷地区堰塞体的成因及演化过程。基于大龙池区域卫星遥感影像、区域地质资料,依托现场调查和地质钻探等方法,结合理论计算与有限元-离散元模拟技术,对南天山高山峡谷地区堰塞体的成因及演化过程进行了系统研究。结果表明:(1)大龙池堰塞体北侧山体陡峭,山体表面可见多处滑坡擦痕和刻槽,堰塞体堆积结构具有明显的反粒序和拼图结构特征,提出了大龙池堰塞体为高速远程古滑坡堆积的成因机理;(2)通过复原大龙池北面山体滑坡原始坡面,对其运动学特征进行理论计算与数值仿真模拟,结果表明大龙池北侧山体曾发生高速远程滑坡;(3)大龙池堰塞体的形成演化过程可分为古滑坡孕育、古滑坡堵河形成堰塞体以及堰塞体溃决3个阶段。研究结论可为南天山地区类似堰塞体的成因分析提供参考。 展开更多
关键词 堰塞体 堆积特征 古滑坡 形成演化 大龙池
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Hydroclimatic variations in the Tianshan Mountains based on grain size and geochemistry of core sediments since~1490 CE
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作者 LAN Bo XU Wen-feng +3 位作者 YANG Yun-peng CHEN Xiang-le LIU Zheng-xue ZHANG Dong-liang 《Journal of Mountain Science》 SCIE CSCD 2023年第4期1010-1025,共16页
Numerous studies have focused on modern hydroclimate and the modulated mechanisms in the Tianshan Mountains(TMs),arid central Asia.However,the detailed information of hydroclimatic processes beyond the instrumental pe... Numerous studies have focused on modern hydroclimate and the modulated mechanisms in the Tianshan Mountains(TMs),arid central Asia.However,the detailed information of hydroclimatic processes beyond the instrumental period is still scarce.This paper reconstructed a hydrology history from core sediments of the Dalongchi Lake in the Tianshan Mountains.The comparability between endmembers(EMs)of grain size and ICP-AES based geochemical elements in the lake sediments highlighted their availability for hydrological reconstructions.Hydrodynamic forces(EM1,EM4,Ti/Al and Li/Al),chemical weathering intensity[(Mg+Ca+K)/Al],salinity proxy(Mg/Ca)and redoxsensitive proxy(Fe/Mn)highly correlated with the first principal component(P<0.01),whereas paleoproductivity proxies(TN,TOC,Ba/Al,Zn/Al and Cu/Al)and C/N showed high loadings on the second principal component(P<0.05).The inferred hydrology progress was nonlinearly responded to temperature,precipitation and climate-dictated glaciers.Specifically,the water level didn’t always covary with the humidity because of glaciers.The maximum water level was the comprehensive result of glaciers melting and high humidity around 1830 CE.Thereafter,water level continually decreased with declining moisture at high temperature,implying a limited buffering capacity of glaciers in the Dalongchi Lake basin.EM3-indicated eolian activity intensity was caused by the behaviors of Siberian High because the latter intensified surface wind and the dust transportation.The hydrothermal patterns were characterized by warm/dry and cold/wet alternations in a long run although warm/wet pattern was identified from a short-term view. 展开更多
关键词 dalongchi Lake PALEOHYDROLOGY End-members Central Tianshan Mountains GEOCHEMISTRY Trace metal
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