Assessment of lake-level variations to decipher geological controlling factors and depositional architecture of Lake Fuxian, Yunnan Plateau: preliminary insights from geophysical data

IF 3.9 2区 工程技术 Q3 ENERGY & FUELS
Umar Ashraf, Hucai Zhang, Aqsa Anees, Xiaonan Zhang, Lizeng Duan
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Abstract

Lake Fuxian is one of the deepest tectonic plateau freshwater lakes in the southeastern Tibetan Plateau, China. However, questions such as how old the lake is, how deep the total sedimentary thickness sequences are, and what landscape of the lake basin settings and geological structures are unknown. Here, based on fifteen seismic reflection profiles, we applied seismic facies and seismic sequence stratigraphic analyses to interpret the lake sequences. The results of the seismic response reveal that the maximum thickness of the sedimentation is ca. 1238 m and lies toward the NNE region of the lake basin on the L10-2 survey line. Lake sediments can be categorized into five seismic sequences and six seismic horizons. The oldest clinoforms in the deepest sequence (Sq-5) show that the depositional center was shifted to ~ 19 km from the NNE region to the SSW modern location and was ~ 930 m lower than the current lake floor. Multiple and complex tectonic activities strongly impacted on the lake basin, and a series of normal faults created an overall crustal extensional regime, resulting in the formation of many horst and graben structures.

Abstract Image

评估湖面变化以破译云南高原抚仙湖的地质控制因素和沉积结构:地球物理数据的初步启示
抚仙湖是中国青藏高原东南部最深的构造高原淡水湖之一。然而,抚仙湖的年龄有多大、总沉积厚度序列有多深、湖盆地貌和地质构造如何等问题尚不清楚。在此,我们基于 15 条地震反射剖面,应用地震剖面和地震序列地层分析来解释湖泊序列。地震响应结果表明,湖盆最大沉积厚度约为 1238 米,位于 L10-2 测线的 NNE 区域。湖泊沉积可分为五个地震序列和六个地震层位。最深序列(Sq-5)中最古老的地层表明,沉积中心从 NNE 地区向 SSW 现代位置移动了约 19 千米,比现在的湖底低约 930 米。多种复杂的构造活动对湖盆产生了强烈的影响,一系列正断层形成了整体地壳伸展机制,从而形成了许多地角和地堑构造。
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来源期刊
Geomechanics and Geophysics for Geo-Energy and Geo-Resources
Geomechanics and Geophysics for Geo-Energy and Geo-Resources Earth and Planetary Sciences-Geophysics
CiteScore
6.40
自引率
16.00%
发文量
163
期刊介绍: This journal offers original research, new developments, and case studies in geomechanics and geophysics, focused on energy and resources in Earth’s subsurface. Covers theory, experimental results, numerical methods, modeling, engineering, technology and more.
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