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Im, Jungho
Intelligent Remote sensing and geospatial Information Science Lab.
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Impact of seasonal vertical stratification on the dispersion patterns of dredging plumes off the south coast of Korea

Author(s)
Seo, Jun YoungHa, Ho KyungIm, JunghoHwang, Jin HwanChoi, Sun MinWon, Nam-IlKim, Youngsung
Issued Date
2018-01
DOI
10.1016/j.margeo.2017.09.005
URI
https://scholarworks.unist.ac.kr/handle/201301/23689
Fulltext
https://www.sciencedirect.com/science/article/pii/S0025322716303607?via%3Dihub
Citation
MARINE GEOLOGY, v.395, pp.14 - 21
Abstract
Simultaneous satellite and ship-borne surveys have been conducted to investigate the dispersion patterns of dredging plumes off the south coast of Korea in two contrasting seasons (spring and autumn). The distribution of total suspended solid (TSS) derived from sequential satellite imagery showed that the dredging plumes in spring developed over longer distances along the surface current than those in autumn. In spring, the deep and strong stratified condition in the water column contributed to the increase in radius of plume dispersion along the water surface. In autumn, the shallow and vertically well-mixed (or un-stratified) condition in the water column enhanced sinking of suspended dredged materials. This difference is due to the Brunt-Vaisala frequency being higher in spring (0.0183 s(-1)) than in autumn (0.0123 s(-1)). Although the sediment-laden overflow significantly increased TSS near the surface during the dredging period, the TSS contribution to water column stratification was only 23-5.6% of the thermohaline contribution. Therefore, the seasonal variation of thermohaline density is the main factor determining the dispersion patterns of dredging plumes in the study area.
Publisher
ELSEVIER SCIENCE BV
ISSN
0025-3227
Keyword (Author)
Sand dredgingPlumesOverflowStratificationDispersion patterns
Keyword
COLOR IMAGER GOCISUSPENDED PARTICULATE MATTERRIVER PLUMESEDIMENTSHELFRETRIEVALSEAVARIABILITYALGORITHMSTRANSPORT

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