Article ID Journal Published Year Pages File Type
4730929 Journal of Asian Earth Sciences 2014 11 Pages PDF
Abstract

•Highlight the stratigraphic evolution of Pliocene-Quaternary sediments.•Fault systems are mainly oriented in NW-SE and submeridional directions.•Quaternary volcanic activities occurred widely, especially near the major faults.•High resolution seismic helps identifying 7 sedimentary units.•A reworking process during the rapid deglacial transgression at ~ 20-8 ka.

The continental shelf of central Vietnam is characterized by complex geological structures in a strike-slip setting and thus by unique morphology compared to other parts of the Vietnam shelf. Studying the Pliocene–Quaternary sediments in this area allows the processes that control the stratigraphic evolution to be highlighted. In this paper, we present new results derived from high resolution seismic data that reveal the geological evolution of the continental shelf of central Vietnam during the Pliocene–Quaternary. Our results demonstrate that the continental shelf of central Vietnam is narrow relatively to other parts of the Vietnam shelf. The evolution of the shelf during the Pliocene–Quaternary was controlled by the pre-Pliocene rifting process. However, fault systems below the present shelf were not strongly active during the Pliocene–Quaternary period, except for several listric faults in the slope. Nonetheless, Quaternary volcanic activities occurred widely both offshore and onshore, especially near the major faults. The Pliocene–Quaternary sedimentary deposits were subdivided into 7 units based on unconformities as result of marine regression corresponding to glacial cycles. Sedimentary environments during this period consist of coastal plain, fluvial, nearshore and shelf environments. Most of the Holocene sediments were trapped nearshore while the outer shelf is characterized by abundant lag gravels as a result of rapid sea level rise between ∼20 and 8 ka.

Related Topics
Physical Sciences and Engineering Earth and Planetary Sciences Geology
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