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兴化湾潮汐潮流特性及工程影响分析 被引量:8
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作者 童朝锋 王俊杰 张青 《水利水运工程学报》 CSCD 北大核心 2015年第1期53-60,共8页
福建省兴化湾内大量围填、疏浚工程建设直接影响湾内水动力环境。依据2009年2月水文观测资料,对实测资料进行分析,并利用潮汐调和分析、潮流准调和分析、潮流数值模拟等方法得到了兴化湾海区的潮汐、潮流特性以及湾内工程前后的潮位、... 福建省兴化湾内大量围填、疏浚工程建设直接影响湾内水动力环境。依据2009年2月水文观测资料,对实测资料进行分析,并利用潮汐调和分析、潮流准调和分析、潮流数值模拟等方法得到了兴化湾海区的潮汐、潮流特性以及湾内工程前后的潮位、潮流场和余流场特征。分析研究表明,兴化湾潮汐属于正规半日潮,浅水效应较弱;潮流为不正规半日潮流,浅海分潮作用较强;湾内潮波逐渐有驻波特征,形成湾内潮波的两股潮流流向稳定,呈往复流,其中兴化水道潮流涨潮占优,南日水道潮流落潮占优;工程实施后,基于调和常数的2013年7月潮位预报与实测潮位吻合较好,同时潮汐潮流性质不变,在港池、航道水域流速有所增加;兴化、南日两水道涨、落潮通量均减小,全湾纳潮量有所减少;湾内余流场整体不变,口门处涡漩有所加强。 展开更多
关键词 兴化湾 调和分析 水流动力特性 潮流通量
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Analysis of tidal and residual currents across semi-enclosed bay mouth based on shipboard ADCP measurements 被引量:1
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作者 李希彬 孙晓燕 姚志刚 《Marine Science Bulletin》 2012年第2期37-45,共9页
Based on 25 hours shipboard ADCP measurements across semi-enclosed bay mouth(Kemen Channel), time series of tidal currents over 12 sites, which distribute evenly along the transect, were constructed to improve our u... Based on 25 hours shipboard ADCP measurements across semi-enclosed bay mouth(Kemen Channel), time series of tidal currents over 12 sites, which distribute evenly along the transect, were constructed to improve our understanding of tidal characteristics and residuals in this region. The tidal currents in Kemen Channel were identified as the regular semidiurnal and reversing tidal flows, with its behaviour more like standing waves. Moreover, the flood currents in the lower layers were found to be ahead of that in the upper layers and vice versa for ebb tides. The major of tidal ellipse for M2 constituent was found to be larger close to the southern side of the channel, with its incline also increasing toward the south. The signs of M4 constituent were also found mainly nearby the end points of this transect, indicating the importance of nonlinearity in tidal dynamics due to the shallower topography. A two-layer structure was found for the residual currents in Kemen Channel, flowing northeastwardly out of the Bay in upper 20m and southwestwardly into the bay in the lowers. Besides approximate 4.81×10^8 m^3 water exchanges were determined between the Luoyuan Bay and outer seas by the calculation of tidal flux through Kemen Channel. 展开更多
关键词 shipboard ADCP tidal currents RESIDUALS tidal transport
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Impact of seasonal tide variation on saltwater intrusion in the Changjiang River estuary 被引量:13
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作者 裘诚 朱建荣 顾玉亮 《Chinese Journal of Oceanology and Limnology》 SCIE CAS CSCD 2012年第2期342-351,共10页
An improved 3-D ECOM-si model was used to study the impact of seasonal tide variation on saltwater intrusion into the Changjiang River estuary, especially at the bifurcation of the North Branch (NB) and the South Br... An improved 3-D ECOM-si model was used to study the impact of seasonal tide variation on saltwater intrusion into the Changjiang River estuary, especially at the bifurcation of the North Branch (NB) and the South Branch (SB). The study assumes that the fiver discharge and wind are constant. The model successfully reproduced the saltwater intrusion. During spring tide, there is water and salt spillover (WSO and SSO) from the NB into the SB, and tidally averaged (net) water and salt fluxes are 985 m3/s and 24.8 ton/s, respectively. During neap tide, the WSO disappears and its net water flux is 122 m3/s. Meanwhile, the SSO continues, with net salt flux of 1.01 ton/s, much smaller than during spring tide. Because the tidal range during spring tide is smaller in June than in March, overall saltwater intrusion is weaker in June than in March during that tidal period. However, the WSO and SSO still exist in June. Net water and salt fluxes in that month are 622 m3/s and 15.35 ton/s, respectively, decreasing by 363 m3/s and 9.45 ton/s over those in March. Because tidal range during neap tide is greater in June than in March, saltwater intrusion in June is stronger than in March during that tidal period. The WSO and SSO appear in June, with net water and salt fluxes of 280 m3/s and 8.55 ton/s, respectively, increasing by 402 m3/s and 7.54 ton/s over those in March. Saltwater intrusion in the estuary is controlled by the fiver discharge, semi-diurnal flood-ebb tide, semi-monthly spring or neap tide, and seasonal tide variation. 展开更多
关键词 tidal range seasonal variation saltwater intrusion numerical simulation
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