The Chaochou active fault in southern Taiwan: Characteristics and geomorphological significance as a reverse fault

IF 2.6 2区 地球科学 Q2 GEOSCIENCES, MULTIDISCIPLINARY Journal of Structural Geology Pub Date : 2024-06-20 DOI:10.1016/j.jsg.2024.105191
Yoko Ota , Chia-Yu Chen , Po-Nung Lee
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Abstract

The Chaochou Fault in southern Taiwan has long been recognized as an active fault, but its exact location is still uncertain. In this study, we focused on the middle part of the Chaochou Fault, where a flight of fluvial terraces was deformed and preserved. High-resolution aerial photos were first used to observe and map these terraces and their vicinity, followed by comprehensive field investigations including RTK-GPS surveys for high-resolution topographic profiles of the deformed terraces and OSL sample collections for obtaining the ages of the terraces. A series of active faults, consisting of Fault A (“FA”), Fault B (“FB”), and Fault Bb (“FBb”), are collectively named the Chaochou Active Fault Zone. The fault zone is recognized and characterized by range-facing scarps, frontal flexural scarps, and discontinuous slopes deformed by FA, FB, and FBb, respectively. The repeated activities of FA were recorded by the incremental fault scarp heights from young to old terraces. Considering the highest fault scarp height of 65.9 ± 6 m observed in T1 and its OSL age of 35.3 ± 4.3 ka, the long-term fault slip rate of FA is about 2 mm/yr.

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台湾南部的潮州活动断层:逆断层的特征和地貌学意义
台湾南部的潮洲断层早已被确认为活动断层,但其确切位置仍不确定。在本研究中,我们将重点放在潮洲断层的中段,那里有一列变形并保存下来的河流阶地。首先利用高分辨率航空照片对这些阶地及其附近地区进行了观察和测绘,随后进行了全面的实地调查,包括 RTK-GPS 勘测,以获得变形阶地的高分辨率地形剖面图,以及 OSL 样品采集,以获得阶地的年龄。由断层 A("FA")、断层 B("FB")和断层 Bb("FBb")组成的一系列活动断层被统称为潮州活动断层带。该断裂带的特征是分别由 FA、FB 和 FBb 形成的面向山脉的疤痕、正面挠曲疤痕和不连续斜坡。从年轻阶地到年老阶地,断层疤痕高度的递增记录了 FA 的反复活动。考虑到在 T1 观察到的最高断层疤痕高度(65.9 ± 6 m)及其 OSL 年龄(35.3 ± 4.3 ka),FA 的长期断层滑动速率约为 2 mm/年。
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来源期刊
Journal of Structural Geology
Journal of Structural Geology 地学-地球科学综合
CiteScore
6.00
自引率
19.40%
发文量
192
审稿时长
15.7 weeks
期刊介绍: The Journal of Structural Geology publishes process-oriented investigations about structural geology using appropriate combinations of analog and digital field data, seismic reflection data, satellite-derived data, geometric analysis, kinematic analysis, laboratory experiments, computer visualizations, and analogue or numerical modelling on all scales. Contributions are encouraged to draw perspectives from rheology, rock mechanics, geophysics,metamorphism, sedimentology, petroleum geology, economic geology, geodynamics, planetary geology, tectonics and neotectonics to provide a more powerful understanding of deformation processes and systems. Given the visual nature of the discipline, supplementary materials that portray the data and analysis in 3-D or quasi 3-D manners, including the use of videos, and/or graphical abstracts can significantly strengthen the impact of contributions.
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