Tides and their dynamics over the Sunda Shelf of the southern South China Sea

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Tides and their dynamics over the Sunda Shelf of the southern South China Sea. / Daryabor, Farshid; Ooi, See Hai Ooi; Samah, Azizan Abu ; Akbari, Abolghasem .

I: PLOS ONE, Bind 11, Nr. 9, e0162170, 2016.

Publikation: Bidrag til tidsskriftTidsskriftartikelForskningfagfællebedømt

Harvard

Daryabor, F, Ooi, SHO, Samah, AA & Akbari, A 2016, 'Tides and their dynamics over the Sunda Shelf of the southern South China Sea', PLOS ONE, bind 11, nr. 9, e0162170. https://doi.org/10.1371/journal.pone.0162170

APA

Daryabor, F., Ooi, S. H. O., Samah, A. A., & Akbari, A. (2016). Tides and their dynamics over the Sunda Shelf of the southern South China Sea. PLOS ONE, 11(9), [e0162170]. https://doi.org/10.1371/journal.pone.0162170

Vancouver

Daryabor F, Ooi SHO, Samah AA, Akbari A. Tides and their dynamics over the Sunda Shelf of the southern South China Sea. PLOS ONE. 2016;11(9). e0162170. https://doi.org/10.1371/journal.pone.0162170

Author

Daryabor, Farshid ; Ooi, See Hai Ooi ; Samah, Azizan Abu ; Akbari, Abolghasem . / Tides and their dynamics over the Sunda Shelf of the southern South China Sea. I: PLOS ONE. 2016 ; Bind 11, Nr. 9.

Bibtex

@article{b44f99476d0a4ceca17f9e484d8802d6,
title = "Tides and their dynamics over the Sunda Shelf of the southern South China Sea",
abstract = "A three-dimensional Regional Ocean Modelling System is used to study the tidal characteristics and their dynamics in the Sunda Shelf of the southern South China Sea. In this model, the outer domain is set with a 25 km resolution and the inner one, with a 9 km resolution. Calculations are performed on the inner domain. The model is forced at the sea surface by climatological monthly mean wind stress, freshwater (evaporation minus precipitation), and heat fluxes. Momentum and tracers (such as temperature and salinity) are prescribed in addition to the tidal heights and currents extracted from the Oregon State University TOPEX/Poseidon Global Inverse Solution (TPXO7.2) at the open boundaries. The results are validated against observed tidal amplitudes and phases at 19 locations. Results show that the mean average power energy spectrum (in unit m2/s/cph) for diurnal tides at the southern end of the East Coast of Peninsular Malaysia is approximately 43% greater than that in the East Malaysia region located in northern Borneo. In contrast, for the region of northern Borneo the semidiurnal power energy spectrum is approximately 25% greater than that in the East Coast of Peninsular Malaysia. This implies that diurnal tides are dominant along the East Coast of Peninsular Malaysia while both diurnal and semidiurnal tides dominate almost equally in coastal East Malaysia. Furthermore, the diurnal tidal energy flux is found to be 60% greater than that of the semidiurnal tides in the southern South China Sea. Based on these model analyses, the significant tidal mixing frontal areas are located primarily off Sarawak coast as indicated by high chlorophyll-a concentrations in the area.",
author = "Farshid Daryabor and Ooi, {See Hai Ooi} and Samah, {Azizan Abu} and Abolghasem Akbari",
year = "2016",
doi = "10.1371/journal.pone.0162170",
language = "English",
volume = "11",
journal = "PLoS ONE",
issn = "1932-6203",
publisher = "Public Library of Science",
number = "9",

}

RIS

TY - JOUR

T1 - Tides and their dynamics over the Sunda Shelf of the southern South China Sea

AU - Daryabor, Farshid

AU - Ooi, See Hai Ooi

AU - Samah, Azizan Abu

AU - Akbari, Abolghasem

PY - 2016

Y1 - 2016

N2 - A three-dimensional Regional Ocean Modelling System is used to study the tidal characteristics and their dynamics in the Sunda Shelf of the southern South China Sea. In this model, the outer domain is set with a 25 km resolution and the inner one, with a 9 km resolution. Calculations are performed on the inner domain. The model is forced at the sea surface by climatological monthly mean wind stress, freshwater (evaporation minus precipitation), and heat fluxes. Momentum and tracers (such as temperature and salinity) are prescribed in addition to the tidal heights and currents extracted from the Oregon State University TOPEX/Poseidon Global Inverse Solution (TPXO7.2) at the open boundaries. The results are validated against observed tidal amplitudes and phases at 19 locations. Results show that the mean average power energy spectrum (in unit m2/s/cph) for diurnal tides at the southern end of the East Coast of Peninsular Malaysia is approximately 43% greater than that in the East Malaysia region located in northern Borneo. In contrast, for the region of northern Borneo the semidiurnal power energy spectrum is approximately 25% greater than that in the East Coast of Peninsular Malaysia. This implies that diurnal tides are dominant along the East Coast of Peninsular Malaysia while both diurnal and semidiurnal tides dominate almost equally in coastal East Malaysia. Furthermore, the diurnal tidal energy flux is found to be 60% greater than that of the semidiurnal tides in the southern South China Sea. Based on these model analyses, the significant tidal mixing frontal areas are located primarily off Sarawak coast as indicated by high chlorophyll-a concentrations in the area.

AB - A three-dimensional Regional Ocean Modelling System is used to study the tidal characteristics and their dynamics in the Sunda Shelf of the southern South China Sea. In this model, the outer domain is set with a 25 km resolution and the inner one, with a 9 km resolution. Calculations are performed on the inner domain. The model is forced at the sea surface by climatological monthly mean wind stress, freshwater (evaporation minus precipitation), and heat fluxes. Momentum and tracers (such as temperature and salinity) are prescribed in addition to the tidal heights and currents extracted from the Oregon State University TOPEX/Poseidon Global Inverse Solution (TPXO7.2) at the open boundaries. The results are validated against observed tidal amplitudes and phases at 19 locations. Results show that the mean average power energy spectrum (in unit m2/s/cph) for diurnal tides at the southern end of the East Coast of Peninsular Malaysia is approximately 43% greater than that in the East Malaysia region located in northern Borneo. In contrast, for the region of northern Borneo the semidiurnal power energy spectrum is approximately 25% greater than that in the East Coast of Peninsular Malaysia. This implies that diurnal tides are dominant along the East Coast of Peninsular Malaysia while both diurnal and semidiurnal tides dominate almost equally in coastal East Malaysia. Furthermore, the diurnal tidal energy flux is found to be 60% greater than that of the semidiurnal tides in the southern South China Sea. Based on these model analyses, the significant tidal mixing frontal areas are located primarily off Sarawak coast as indicated by high chlorophyll-a concentrations in the area.

U2 - 10.1371/journal.pone.0162170

DO - 10.1371/journal.pone.0162170

M3 - Journal article

C2 - 27622552

VL - 11

JO - PLoS ONE

JF - PLoS ONE

SN - 1932-6203

IS - 9

M1 - e0162170

ER -

ID: 168056809