Interseismic Uplift of Anticlines Above the Rakhine-Bangladesh Megathrust From ALOS-2 InSAR

IF 3.9 2区 地球科学 Q1 GEOCHEMISTRY & GEOPHYSICS Journal of Geophysical Research: Solid Earth Pub Date : 2024-12-29 DOI:10.1029/2024jb030003
Jeng-Hann Chong, Bar Oryan, Lin Shen, Michael S. Steckler, Eric O. Lindsey
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Abstract

The shallow portion of a megathrust represents the zone of first contact between two colliding plates, and its rheological properties control the seismic and tsunami hazards generated by the fault. The high cost of underwater geodetic data collection results in sparse observations, leading to limited constraints on the interseismic behavior of megathrusts. The Rakhine-Bangladesh megathrust offers a unique opportunity to probe the behavior of the shallow megathrust as it is the only ocean-continent subduction zone where the near-trench region is fully accessible on land. Here, we use observations from ALOS-2 wide-swath imagery spanning 2015 to 2022 to conduct an InSAR timeseries analysis of the overriding plate within Bangladesh and the Indo-Myanmar Ranges. We identify a narrow pattern of alternating uplift and subsidence associated with mapped anticlines but show that it cannot be explained by slip on the megathrust or other fault structures. Instead, we argue that the deformation is likely caused by active aseismic folding within the wedge above a shallow decollement. We show that estimates of the decollement depth derived from a viscous folding model and the observed anticline spacing are in agreement with previous seismic observations of the decollement depth across the fold belt. We suggest that the role of ductile deformation in the overriding plate in subduction zones may be more important than previously recognized.
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来自ALOS-2 InSAR的若开邦-孟加拉国大逆冲构造上背斜的震间隆起
大型逆冲断层的浅层部分代表了两个碰撞板块之间的首次接触带,其流变特性控制着断层产生的地震和海啸危险。水下大地测量数据采集的高成本导致观测结果稀疏,导致对特大逆冲地震间行为的限制有限。若开邦-孟加拉国巨型逆冲构造为探测浅层巨型逆冲构造的行为提供了独特的机会,因为它是唯一一个在陆地上完全可以到达近海沟区域的海洋-大陆俯冲带。在这里,我们使用2015年至2022年的ALOS-2宽幅图像观测数据,对孟加拉国和印度-缅甸山脉内的覆盖板块进行了InSAR时间序列分析。我们发现了与已绘制的背斜相关的一个狭窄的交替升降模式,但表明它不能用大型逆冲断层或其他断层结构的滑动来解释。相反,我们认为变形很可能是由浅层滑脱之上的楔体内部的主动地震褶皱引起的。研究表明,根据粘性褶皱模型估计的沉降深度和观测到的背斜间距与以往在褶皱带上观测到的沉降深度是一致的。我们认为,韧性变形在俯冲带上覆板块中的作用可能比以前认识到的更为重要。
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来源期刊
Journal of Geophysical Research: Solid Earth
Journal of Geophysical Research: Solid Earth Earth and Planetary Sciences-Geophysics
CiteScore
7.50
自引率
15.40%
发文量
559
期刊介绍: The Journal of Geophysical Research: Solid Earth serves as the premier publication for the breadth of solid Earth geophysics including (in alphabetical order): electromagnetic methods; exploration geophysics; geodesy and gravity; geodynamics, rheology, and plate kinematics; geomagnetism and paleomagnetism; hydrogeophysics; Instruments, techniques, and models; solid Earth interactions with the cryosphere, atmosphere, oceans, and climate; marine geology and geophysics; natural and anthropogenic hazards; near surface geophysics; petrology, geochemistry, and mineralogy; planet Earth physics and chemistry; rock mechanics and deformation; seismology; tectonophysics; and volcanology. JGR: Solid Earth has long distinguished itself as the venue for publication of Research Articles backed solidly by data and as well as presenting theoretical and numerical developments with broad applications. Research Articles published in JGR: Solid Earth have had long-term impacts in their fields. JGR: Solid Earth provides a venue for special issues and special themes based on conferences, workshops, and community initiatives. JGR: Solid Earth also publishes Commentaries on research and emerging trends in the field; these are commissioned by the editors, and suggestion are welcome.
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