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1.
于2019年3月、7月和10月对长江口及邻近海域有色溶解有机物(CDOM)的分布及河口混合行为进行分析研究。通过对盐度、吸收光谱斜率S275~295、吸收系数aCDOM(355)以及叶绿素a的分析发现,在河口内低盐度区,7月淡水流量大,陆源输入量最大,aCDOM(355)值最高,3月CDOM来源主要受陆源输入和浮游植物生产活动的影响,aCDOM(355)值较10月高;在口外高盐度区,3月和7月的aCDOM(355)值相近,均低于10月,CDOM分布主要受浮游植物生产活动的影响。利用三维荧光光谱?平行因子分析方法共鉴定出4个荧光组分:类蛋白质组分C1(280/330 nm)、类腐殖质组分C2(300/350 nm)、类腐殖质组分C3(260/465 nm)和类腐殖质组分C4(320/410 nm)。在3月、7月及10月,4个荧光组分强度由长江口内到口外呈递减趋势,受陆源输入和浮游植物生产活动的影响,平均荧光强度的季节变化总体上来说,由大到小依次为7月、10月、3月。3个季节CDOM荧光组分均存在偏离理论稀释线的现象,说明CDOM的来源(陆源输入、沉积物再悬浮和现场生物活动)和去除(被颗粒物吸附、光降解和细菌降解)机制复杂多变,揭示了长江口区域CDOM在不同时空下的不保守混合行为。  相似文献   

2.
台湾海峡西部近海潮汐特征   总被引:2,自引:0,他引:2  
田永青  潘爱军 《台湾海峡》2011,30(4):483-488
利用2006年夏、冬季和2007年春、秋季实测海床基水位资料,基于统计方法和潮汐调和分析方法给出了台湾海峡西部近海的潮汐时空分布特征及其变化规律.结果表明:平潭岛北部至漳浦近海属正规半日潮,汕头近海一带属于不正规半El潮,惠来近海属不正规日潮.全日潮波传播路径为从平潭岛南下至惠来近海,半日分潮传播路径也是如此.汕头一惠来近海由于海峡内南北向两支半日潮波相互抵消,故使得日潮成分占优.最大潮差分布为从平潭岛北部到泉州近海变化不大,厦门东南到惠来近海呈线性递减,原因是台湾北部的旋转潮波系统的南下潮波和从吕宋海峡进入南海的北上潮波在南日岛一带相遇形成驻波,平潭岛北部至泉州近海基本都在波腹内,而厦门东南至惠来近海则不在驻波影响范围之内.以春季为例,平潭岛北部的最大潮差为6.02m,南日岛近海为6.23m,泉州近海为5.98m,厦门东南近海为5.08m,漳浦近海为4.32m,汕头近海为2.28111,最大潮差还呈季节变化.平均潮差的统计结果依旧以春季为例:平潭岛北部3.92m、南日岛近海4.14m、泉州近海4.02m、厦门东南近海3.30m、漳浦近海2.74m、汕头近海1.22m.另外,平潭岛北部至漳浦近海的潮周期均为12h25min左右,且涨落潮历时几乎相等.汕头近海的潮周期约为12h30min.但涨潮历时比落潮历时多1h20min左右.原因是不正规半日潮一个太阴日内的两个涨潮历时和两个落潮历时一般不同,分点潮期间涨落潮历时虽然差较小,但回归潮期间差较大,故会形成汕头近海测站涨潮历时比落潮历时多1h20rain左右的现象.  相似文献   

3.
本文采用美国伍兹霍尔研究所研发的海洋-大气-波浪-泥沙输运耦合模式COAWST(Coupled Dcean-Atmosphere-Wave-Sediment Transport)对南海及邻近海域进行了9 km分辨率的数值模拟研究。结果表明,南海贯穿流的季节变化再现了冬强夏弱的特征,在南海内部冬季呈现气旋环流结构,夏季呈现反气旋环流结构,尤其在冬季其流轴结构更为清晰和稳定,海水从吕宋海峡进入南海,从民都洛海峡、卡里马塔海峡、台湾海峡和巴拉巴克海峡流出,吕宋海峡断面流量与其他4个海峡流量合计在数量级上相当,保持南海海水总量不变。吕宋海峡、卡里马塔海峡、民都洛海峡的流量呈现明显相关性,吕宋海峡流量增大时,民都洛海峡和卡里马塔海峡的流量也相应增大,相关系数分别达到0.78和0.9。通过更适于分析中短期变化的简化绕岛环流理论,定量计算2019年吕宋海峡、黑潮和棉兰老流流量与北赤道流分叉点位置的关系,发现夏季北赤道流分叉点NECBL(North Equatorial Current Bifurcation Latitude)偏南,在13.6°N附近;冬季NECBL偏北,在15.6°N左右,同期黑潮流量减少,棉兰老流流量增加,作为南海贯穿流入流的吕宋海峡流量可达13.4 Sv。吕宋海峡输运补偿了北赤道流到达菲律宾海岸后的北向分支的流量,与棉兰老流的流量呈正相关,相关系数达到0.5361。  相似文献   

4.
Temperature, wave and wind data over two years off Ho Peng, Shi Ti and Jang Yuan of east Taiwan are analyzed to study their seasonal variations. A model for predicting the mixed layer thickness is developed by use of wave data. The vertical profile of temperature indicates that there are basically three layers; mixed layer, thermocline layer and deep cold layer. The surface mixed layer appears in winter and disappears in summer. While surface water is warmer in summer than in winter, water at a depth of 50 m is warmer in winter than in summer. The seasonal variation in the deep cold layer is weak. The sea surface temperature is generally higher offshore than nearshore. The surface temperature off east Taiwan is almost equal to that in Taiwan Strait in summer, but in winter it is about 4°C warmer off northeast Taiwan than in the northeast of the Taiwan Strait, if compared at the same latitude. This is an effect of the seasonal variation of the Kuroshio. A model is developed for predicting the mixed layer thickness in terms of the input wave energy. The model successfully accounts for the observed features.  相似文献   

5.
Review on current and seawater volume transport through the Taiwan Strait   总被引:12,自引:0,他引:12  
Patterns and features of currents and seawater volume transports in the Taiwan Strait have been reviewed by examining the results from more than 150 research papers in recent decades. It is noted that there are diverse or even conflicting viewpoints on these subjects. Here both common and different opinions are summarized. This review paper covers the studies involving in situ measurements and numerical modeling of current velocity, analyses of hydrographic data, and classification of water masses. Generally speaking, there are three currents in the Taiwan Strait: the China Coastal Current along the Fujian coast in the western Taiwan Strait, the extension of the South China Sea Warm Current in the western and central Taiwan Strait, and the Kuroshio’s branch or loop current intruding through the eastern Taiwan Strait. The current pattern in winter is quite different from that in summer, and the currents also exhibit differences between the upper and lower layers. The seawater volume transport through the Taiwan Strait is about 2.3 Sv northward in summer but about 0.8 Sv northward in winter. Both the current pattern and the seawater transport vary with local winds in the Taiwan Strait. This is particularly true in winter when the currents and the transport in the upper layer are significantly affected by strong northeasterly winds.  相似文献   

6.
田川  王树新  徐霄阳 《海洋科学》2015,39(1):110-115
利用在台湾海峡附近的下放式声学多普勒流速剖面仪(Lowered Acoustic Doppler Current Profiler,LADCP)观测资料和温盐观测资料,通过对连续站的两个季节观测进行正压和斜压潮流分析从而去除潮流得到准定常流,并在此基础上计算了南海和东海之间通过台湾海峡输运的水体及热盐通量。结果表明:台湾海峡大部分海域是半日潮海区(正规半日潮及不正规半日潮海区),半日潮主要分量为太阴半日分潮M2;台湾海峡的水体输运及热盐通量呈现明显的季节变化:夏季台湾海峡内表现为一支东北流向的海流,即台湾海峡暖流,存在3.3 Sv(1Sv=106 m3/s)的东北向水体输运,冬季东北季风较强,西南方向的海流加强,混合层可达到底部,存在1.8 Sv的东北向水体输运。与此对应的热盐通量分别为:夏季热通量为0.34×1015 W,盐通量为118.6×109 g/s;冬季热通量为0.14×1015 W,盐通量为72.9×109 g/s。该结果对台湾海峡通量的研究给出了一个直接观测的准确值,并为相关的数值研究提供了参考。  相似文献   

7.
本文收集、整理和分析台湾岛东、西两岸的海流资料,获得以下主要结果;(1)台湾东岸的黑潮路径,无论是表层或深层,都是冬季偏酉(距台湾东岸较近),夏季偏东,春、秋两季的介于冬、夏季的路径之间。(2)台湾东岸黑潮的流速,具有夏、春强而冬弱的特点。(3)台湾西岸近海的海流,除表层受风的影响较大外,10m层开始,尤其是近底层,冬、夏两季皆以北向或东北向流为主,呈现出一派北向流的路径。这与传统观念不同。  相似文献   

8.
Dissolved organic matter(DOM) from freshwater, mid-salinity, and seawater endmember samples in the Jiulong River Estuary, China were fractionated using cross-flow ultrafiltration with a 10-kDa membrane. The colloidal organic matter(COM; 10 kDa–0.22 μm) retentate, low molecular weight(LMW) DOM(10 kDa) permeate, and bulk samples were analyzed using absorption spectroscopy and three-dimensional fluorescence excitation-emission-matrix spectroscopy. The UV-visible spectra of COM were very similar to those obtained for permeate and bulk samples, decreasing monotonically with increasing wavelength. Most of the chromophoric DOM(CDOM, expressed as the absorption coefficient a355) occurred in the LMW fraction, while the percentage of CDOM in the colloidal fraction was substantially higher in the freshwater endmember(13.4% of the total) than in the seawater endmember(6.8%). The bulk CDOM showed a conservative mixing behavior in the estuary, while there was removal of the COM fraction and a concurrent addition of the permeate fraction in the mid-salinity sample, implying that part of the colloidal CDOM was transformed into LMW CDOM. Two humic-like components(C1: 250, 325/402 nm; and C2: 265, 360/458 nm) and one protein-like component(C3: 275/334 nm) were identified using parallel factor analysis. The contributions of the C1, C2, and C3 components of the COM fraction to the bulk sample were 2.5%–8.7%, 4.8%–12.6%, and 7.4%–14.7%, respectively, revealing that fluorescent DOM occurred mainly in the LMW fraction in the Jiulong River Estuary. The C1 and C2 components in the retentate and permeate samples showed conservative mixing behavior, but the intensity ratio of C2/C1 was higher in the retentate than in the permeate fractions for all salinity samples, showing that the humic component was more enriched in the COM than the fulvic component. The intensity ratio of C3/(C1+C2) was much higher in the retentate than in the permeate fraction for mid-salinity and seawater samples, revealing that the protein-like component was relatively more enriched in COM than the humic-like component. The contribution of the protein-like component(C3) to the total fluorescence in the retentate increased from 14% in the freshwater endmember to 72% for the seawater endmember samples, clearly indicating the variation of dominance by the humic-like component compared to the protein-like component during the estuarine mixing process of COM.  相似文献   

9.
According to historical mean ocean current data through the field observations of the Taiwan Ocean Research Institute during 1991–2005 and survey data of nutrients on the continental shelf of the East China Sea(ECS) in the summer of 2006, nutrient fluxes from the Taiwan Strait and Kuroshio subsurface waters are estimated using a grid interpolation method, which both are the sources of the Taiwan Warm Current. The nutrient fluxes of the two water masses are also compared. The results show that phosphate(PO4-P), silicate(SiO3-Si) and nitrate(NO3-N) fluxes to the ECS continental shelf from the Kuroshio upwelling water are slightly higher than those from the Taiwan Strait water in the summer of 2006. In contrast, owing to its lower velocity, the nutrient flux density(i.e., nutrient fluxes divided by the area of the specific section) of the Kuroshio subsurface water is lower than that of the Taiwan Strait water. In addition, the Taiwan Warm Current deep water, which is mainly constituted by the Kuroshio subsurface water, might directly reach the areas of high-frequency harmful alga blooms in the ECS.  相似文献   

10.
海洋浮游介形类(Ostracods)是一类分布较广的小型甲壳动物, 在海洋碳循环中起重要作用。目前国内海洋浮游动物采样常使用505μm网目孔径的浮游生物网, 从而导致个体较小的介形类被忽略。文章根据2006年7—8月(夏季)和2006年12月—2007年1月(冬季)在南海西北部海域分别使用网目孔径为505μm和160μm浮游生物网采集的样品, 比较不同网目所获浮游介形类种类和丰度的差异, 分析介形类种类和丰度的分布特征, 探讨环境因素对其时空分布的影响。160μm网目采集的浮游介形类种类和丰度均高于505μm。基于160μm网目数据分析浮游介形类群落结构: 1) 鉴定浮游介形类32种, 其种数由近岸向外海递增, 等深线100m以浅海域的种数显著高于100m以深海域(p<0.01); 2) 夏季浮游介形类的丰度高于冬季, 夏季丰度高值区主要出现在雷州半岛东部和琼东近岸, 显著高于外海(p<0.05), 冬季介形类丰度分布较为均匀; 3) 优势种针刺真浮萤(Euconchoecia aculeata)是近岸高丰度的主要贡献种; 4) 介形类种数与温度和水深呈显著正相关, 丰度与叶绿素a浓度呈正相关, 而与温度和盐度呈负相关。夏季琼东沿岸上升流和粤西沿岸流有助于浮游介形类在雷州半岛和海南岛东部近岸海域形成较高的丰度, 最高达1252个·m-3。同时, 建议今后研究浮游介形类采用网目孔径小的浮游生物网进行采集以便全面评估其群落结构特征。  相似文献   

11.
东海西部陆架海域水团的季节特征分析   总被引:3,自引:1,他引:2  
On the basis of the CTD data and the modeling results in the winter and summer of 2009, the seasonal characteristics of the water masses in the western East China Sea shelf area were analyzed using a cluster analysis method. The results show that the distributions and temperature-salinity characteristics of the water masses in the study area are of distinct seasonal difference. In the western East China Sea shelf area, there are three water masses during winter, i.e., continental coastal water(CCW), Taiwan Warm Current surface water(TWCSW) and Yellow Sea mixing water(YSMW), but four ones during summer, i.e., the CCW, the TWCSW, Taiwan Warm Current deep water(TWCDW) and the YSMW. Of all, the CCW, the TWCSW and the TWCDW are all dominant water masses. The CCW, primarily characterized by a low salinity, has lower temperature, higher salinity and smaller spatial extent in winter than in summer. The TWCSW is warmer, fresher and smaller in summer than in winter, and it originates mostly from the Kuroshio surface water(KSW) northeast of Taiwan, China and less from the Taiwan Strait water during winter, but it consists of the strait water and the KSW during summer. The TWCDW is characterized by a low temperature and a high salinity, and originates completely in the Kuroshio subsurface water northeast of Taiwan.  相似文献   

12.
长江口及其邻近海域CDOM光谱吸收特性分析   总被引:3,自引:0,他引:3  
研究了长江口及其邻近海域有色可溶性有机物(CDOM)的光吸收特性,分析了CDOM浓度(吸收系数a(440))、光谱斜率(Sg)与盐度的关系。结果表明:长江口及其邻近海域CDOM的a(440)变化范围为0.21~0.85 m-1,平均值为0.44 m-1;Sg值的范围为0.013 3~0.016 7 nm-1,平均值为0.014 nm-1;a(440)的水平分布表现为长江口海区比外海区高,Sg的水平分布表现为长江口海区比外海区低,反映了长江口海区CDOM中的腐殖酸成分比外海区大。研究区内a(440)与盐度、Sg与盐度明显线性相关,表明CDOM在河口混合行为中呈保守行为,CDOM具有良好的保守性质。  相似文献   

13.
台湾海峡海表气溶胶干沉降通量研究   总被引:1,自引:0,他引:1  
在已改进的Williams模型中,应用GW03海表动力学粗糙度参数化方案,考虑波浪对干沉降速率的影响,结合卫星资料和再分析资料,计算了台湾海峡海表气溶胶干沉降速率,并利用2006~2007年走航观测结果计算了台湾海峡总悬浮颗粒物的入海通量.其结果表明:台湾海峡海表气溶胶干沉降速率及总悬浮颗粒物干沉降通量具有明显的时空变化特征.台湾海峡海表气溶胶干沉降速率范围为5.83~6.17 cm/s,平均值为6.00 cm/s.其中冬季气溶胶干沉降速率最大,平均值为6.08 cm/s;夏季气溶胶干沉降速率最小,平均值为5.85 cm/s.台湾海峡气溶胶总悬浮颗粒物的干沉降通量也呈现出冬季的高[均值为7.31μg/(m2.s)],夏季的低[均值为2.23μg/(m2.s)]的特征.从空间分布上看,台湾海峡海表气溶胶干沉降速率出现1个高值中心,位于台湾海峡北部海域.总悬浮颗粒物干沉降通量出现2个高值中心和1个低值中心,分别位于台湾海峡北部海域、汕头至厦门海域和南海中北部海域.  相似文献   

14.
东中国海环流及其季节变化的数值模拟   总被引:1,自引:0,他引:1  
关于东中国海环流的研究,国内外学者已做了大量的工作。早期科学家们主要依赖于对温盐资料和少数测流资料的分析研究对渤、黄、东海的环流结构有了较系统和深入的认识。东中国海环流是由一个气旋式的“流涡”组成,东侧主要是北上的黑潮-对马暖流-黄海暖流及其延伸部分;西侧为南下的沿岸流系。黑潮对东中国海环流的影响是如此之大,以致于除了某些局部区域外,上述海域主要流系的冬、夏季分布形式比较相似而无本质上的差异(胡敦欣等,1993)。但本文所研究海域正处于世界上最显著的季风区,冬、夏季盛行风向基本相反,过渡季节(春、秋季)风向多变,风力减弱;海洋热盐结构季节变化明显(如冬季混合强,而夏季层化明显等),这些因素都使得东中国海环流存在着较明显的季节变化。 自20世纪80年代以来,东中国海环流的数值模拟工作逐步展开,并已成为研究环流结构及其形成机制的强有力工具。但由于数值模式本身以及计算方案的缺陷(如有些学者用固定的风场、温盐场对东中国海环流进行诊断模拟等)和观测资料的不足,数值模拟的结果难以得到验证,渤、黄、东海的环流研究中仍有大量的问题存在争议,以待澄清。例如,台湾暖流的来源、流径;对马暖流的来源;夏季黄海暖流的流径以及黄海冷水团环流等均有不同的论述。对黄、东海环流季节变化的数值模拟工作也较少,多用冬、夏典型月份的风场强迫积分至稳定态,给出冬、夏季环流,这种做法值得商榷。三维环流模式很难在1个月内达到稳定态,尤其是夏季层化明显、风力减弱的情况下,非常定风场的影响更应引起人们的重视。 本文采用比较符合实际的计算方案,用年循环风场和海面热通量场为外强迫,对渤、黄、东海的环流及其季节变化进行了模拟,并对一些争议问题进行了探讨。  相似文献   

15.
We analyze a two-year time-series of chromophoric dissolved organic matter (CDOM) light absorption measurements in the upper 400 m of the water column at the BOUSSOLE site in the NW Mediterranean Sea. The seasonal dynamics of the CDOM light absorption coefficients at 440 nm (acdom(440)) is essentially characterized by (i) subsurface maxima forming in spring and progressively reinforcing throughout summer, (ii) impoverishment in the surface layer throughout summer and (iii) vertical homogeneity in winter. Seasonal variations of the spectral dependence of CDOM absorption, as described by the exponential slope value (Scdom), are characterized by highest values in summer and autumn at the surface and low values at the depths of acdom(440) subsurface maxima or just below them. Variations of acdom(440) are likely controlled by microbial digestion of phytoplankton cells, which leads to CDOM production, and by photochemical destruction (photobleaching), which leads to CDOM degradation. Photobleaching is also the main driver of Scdom variations. Consistently with previous observations, acdom(440) for a given chlorophyll a concentration is higher than expected from Case I waters bio-optical models. The total non-water light absorption budget shows that surface waters at the BOUSSOLE site are largely dominated by CDOM during all seasons but the algal bloom in March and April. These results improve the knowledge of CDOM absorption dynamics in the Mediterranean Sea, which is scarcely documented. In addition, they open the way to improved algorithms for the retrieval of CDOM absorption from field or satellite radiometric measurements.  相似文献   

16.
台湾海峡大气微量金属的化学特征及其入海通量   总被引:1,自引:1,他引:0  
2006~2007年,利用大容量气溶胶采样器在台湾海峡采集79个大气气溶胶样品.采用ICP—MS分析法测定了样品中Pb、Cu、Cd、V、Zn、Fe和Al等金属元素的含量.分析结果显示,台湾海峡大气微量金属含量呈现出明显的季节变化,对大部分元素而言,含量最低值出现在夏季,而最高值出现在冬季,气溶胶中微量金属的含量变化与海峡的气象条件等因素有关.通过富集因子、相关性分析和因子分析,对微量金属的来源进行了判别.台湾海峡大气微量金属的来源特征为:Cu、Pb、Cd、V主要来自污染源,而Al、Fe、Zn则主要来自地壳源.比较和分析了台湾海峡海域微量金属的大气与河流输入,Cu和Zn的大气输入低于九龙江和闽江的输入,而Pb、Cd的大气输入则超过了这2条河流的输入.  相似文献   

17.
台湾海峡西岸地面风气候变化分析   总被引:3,自引:0,他引:3  
利用1961—2005年台湾海峡西部沿岸平潭、崇武、东山及厦门等4个气象代表站的地面风观测资料,通过计算各代表站的年、季、月平均风速气候趋势系数和各风向频率趋势,较详细地分析了近45a来台湾海峡西部沿岸地面风的气候变化特征.结果表明:(1)近45a来各代表站年平均风速呈明显减小趋势,其中秋、冬、春季平均风速减小趋势明显,夏季风速减小趋势不明显.(2)海峡西部沿岸主导风向有沿海岸线由北向南顺转的特点.(3)海峡西部沿岸地面风速在上世纪80年代初存在着气候突变现象,80年代中期后年平均风速减小明显.  相似文献   

18.
通过测定有色溶解有机物(CDOM)的吸收光谱和荧光光谱研究了2015年3月和7月长江口盐度梯度下CDOM的分布、组成、来源及河口混合行为等。利用激发发射矩阵荧光光谱(EEMs)并结合平行因子分析(PARAFAC),研究了CDOM的荧光组分特征,共识别出两类4个荧光组分组成,即类腐殖质荧光组分C1(260,375/490 nm)、C2(365/440 nm)、C3(330/400 nm)及类蛋白质荧光组分C4(295/345 nm)。结果表明,3月和7月,4种荧光组分的分布模式与总荧光强度都基本一致:从口内到口外,先升高后降低,且4种组分都在河口呈现不保守混合行为,在最大浑浊带处存在添加过程,达到峰值,在口外有去除过程。3月腐殖化指数HIX范围在1.12~7.19,而7月HIX的范围在0.87~6.71;生物指数BIX在3月范围在0.76~1.11,7月为0.62~1.15,表明3月CDOM的腐殖化程度较7月高,而自生贡献比例较7月略低。3月吸收系数α(355)的平均值为0.55 m-1 ,7月的略高,为0.61 m-1,表明7月长江口CDOM的含量略高。光谱斜率比值SR的季节性变化不大,都是近岸低,远岸高,表明CDOM的平均分子质量从口内到口外在逐渐增加。  相似文献   

19.
Study on abundance variation of pteropods in the East China Sea   总被引:5,自引:0,他引:5  
1 Introduction Pteropoda, an order of marine pelagic mollusks, belongstoClassGastropoda,SubclassOpisthobranchia. The speciesofthisorder can be found all over the world buttheyareusuallyabundantinthecontinentalshelfand continental slope area. As fish diets…  相似文献   

20.
台湾海峡叶绿素a含量的季节变化特征   总被引:6,自引:2,他引:6  
张钒 《台湾海峡》2001,20(3):314-318
本文根据1983-1984年和1987-1988年在台湾海峡的调查结果,讨论了台湾海峡叶绿素a含量的季节变化特征。结果表明,台湾海峡叶绿素a含量的季节变化明显,但南北海区有着明显的差异,在台湾海峡北部,叶绿素a 含量峰值出现在春,秋季,在海峡南部,叶绿素a含量则在夏季呈持续高值特征,前者由浙闽沿岸流的输入而引发,后者则因上升流而产生,因此在台湾海峡,叶绿素a含量呈春,秋季北部高,夏季南部高的趋势。  相似文献   

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