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Contributions of annual and semiannual tidal constituents to chart datum in the China seas and adjacent waters
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作者 Yikai Feng Yanguang Fu +1 位作者 Long Yang Dongxu Zhou 《Acta Oceanologica Sinica》 SCIE CAS CSCD 2023年第10期127-136,共10页
Global uniform chart datum(CD)surface construction is the basic upon which to realize various vertical datums transformation,and is of great importance for geospatial data expression under the same vertical datum.Gene... Global uniform chart datum(CD)surface construction is the basic upon which to realize various vertical datums transformation,and is of great importance for geospatial data expression under the same vertical datum.Generally,the CD level is computed by developing the function between tidal constituents’harmonic constants and time,i.e.,the lowest astronomical tide is taken as the lowest predicted tide level by adopting the major constituents over a 19-a period.The CD surface prescribed in China is the theoretical lowest tide(TLT)and is calculated using 13 tidal constituents,i.e.,short-period(Q_(1),O_(1),P_(1),K_(1),N_(2),M_(2),S_(2),K_(2),M_(4),MS_(4)and M_(6))and long-period(Sa and Ssa)tidal constituents.Although the accuracy in determining short-period tidal constituents has improved gradually,the long-period tide has not been studied thoroughly owing to nonstationary and temporal variations.Previous studies have intended to evaluate the effect of Sa and Ssa tides in the determination of the TLT level for the purpose of determining a more accurate CD surface for the China seas and adjacent waters.Here,the parameters of long-period tidal correction and long-period tidal correction rate were treated as the effect of both Sa and Ssa on the TLT,and the TOPEX/Poseidon and Jason series satellite altimetry data ranged from October 1992 to April 2022 were adopted to analyze the contribution of long-period tidal constituents.Results showed that the average long-period correction value is 10.10 cm(range from 8.57 cm to 14.98 cm),and that the average long-period tidal contribution rate is 14.56%(range from 9.09%to 23.97%)in the China seas and adjacent waters.Finally,data from 82 tide gauge station with at least a 1-a record of hourly observations were compared with satellite-derived result.We concluded that the long-period tidal contribution should not be neglected in TLT construction.Furthermore,to reduce tidal datum uncertainty,accurate extraction of long-period tidal constituents should receive closer attentions. 展开更多
关键词 tidal datum chart datum long-period tidal constituent lowest normal low water China seas and adjacent waters
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Distribution of 9 Principal Tidal Constituents and Tide Prediction for the East China Sea 被引量:6
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作者 钱成春 沈育疆 《China Ocean Engineering》 SCIE EI 2000年第4期541-548,共8页
By use of the hydrodynamic model, the harmonic constants of 8 principal tidal constituents (Q(1), O-1, P-1, K-1, N-2, M-2, S-2 and K-2) are obtained for the East China Sea, and the harmonic constant of S-a is calculat... By use of the hydrodynamic model, the harmonic constants of 8 principal tidal constituents (Q(1), O-1, P-1, K-1, N-2, M-2, S-2 and K-2) are obtained for the East China Sea, and the harmonic constant of S-a is calculated by two-dimensional interpolation. The calculated results agree well with the observed data around the sea. The harmonic constants can be used to predict the tide in the East China Sea. The cotidal charts of the 9 tidal constituents reveal their distribution. 展开更多
关键词 tidal constituents cotidal chart hydrodynamic model
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3D Numerical Modeling of Hydrodynamics in the Dubai Coastal Zone
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作者 Priyantha Gunaratna Thamali Gunaratna 《Journal of Shipping and Ocean Engineering》 2012年第5期283-292,共10页
A three dimensional hydrodynamic was developed for the Dubai coastal zone including the Dubai Creek. The model is based on DHI (Danish Hydraulic Institute's) MIKE 3 HD (FM) modeling software. The model was subjec... A three dimensional hydrodynamic was developed for the Dubai coastal zone including the Dubai Creek. The model is based on DHI (Danish Hydraulic Institute's) MIKE 3 HD (FM) modeling software. The model was subjected to extensive calibration making use of recorded water levels, currents, water temperature and salinity. A high level of accuracy in calibration was achieved as indicated by the computed statistical error parameters at all recording stations. The model results combined with field recording of water levels were used to ascertain tidal wave propagation pattern in the Dubai coastal zone and in and out of the Dubai creek. This model will be a very useful tool in assessing impacts of planned connection of artificial waterways to the Dubai Creek. 展开更多
关键词 HYDRODYNAMICS numerical modeling tidal constituents tidal wave propagation.
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