Trapping and escaping processes of Yangtze River-derived sediments to the East China Sea

Author:

Wu Jiaxue1,Ren Jie1,Liu Huan1,Qiu Chunhua1,Cui Yongsheng1,Zhang Qianjiang1

Affiliation:

1. The Centre for Coastal Ocean Science and Technology, School of Marine Sciences, Sun Yat-sen University, Guangzhou 510275, China

Abstract

AbstractContour-parallel sediment dispersal from the Yangtze Estuary into the East China Sea develops a large-scale mud belt on the inner shelf. The sediment dynamics of long-distance dispersal is, however, still an open question. This was investigated by field observations in the 2013 wet season. To clarify the physics of the large-scale mud belt, we examined: (a) shelf circulation currents and their interaction with the Yangtze River; (b) small-/meso-scale processes including bottom boundary-layer flows, stratification and mixing, upwelling, and fronts; and (c) river-borne sediment gravity and contour currents. Field observations demonstrated that estuarine turbidity maxima can trap benthic concentrated suspensions in the near-bed layer and move these downslope of the subaqueous delta, forming sediment gravity currents supported by tidal currents. Compared with near-bed sediment transports, the buoyant coastal current cannot be a controlling factor in the mud belt formation. A constant along-shelf flux of near-bed sediment transport is responsible for the long-distance dispersal of the large-scale mud belt on the East China Sea inner shelf. The upwelling events provide more turbulent energy to sediment suspension under unstably stratified boundary flow. Our recognition of a contour-parallel ‘sediment channel’ has deep implications for understanding this inner-shelf mud belt and ancient mud deposits.

Publisher

Geological Society of London

Subject

Geology,Ocean Engineering,Water Science and Technology

Reference44 articles.

1. Origin of Amazon mudbanks along the northeastern coast of South America

2. Tide-supported gravity flows on the upper delta front, Fraser River delta, Canada;Marine Geology,2012

3. Remote sensing of salinity from satellite-derived CDOM in the Changjiang River dominated East China Sea;Journal of Geophysical Research: Oceans,2013

4. Large-river delta-front estuaries as natural "recorders" of global environmental change

5. The late-Holocene Gargano subaqueous delta, Adriatic shelf: Sediment pathways and supply fluctuations

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