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1.
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   

2.
1998年8月台湾海峡表层叶绿素a含量的分布特征   总被引:2,自引:0,他引:2  
根据1998年8月台湾海峡表层温度、盐度、叶绿素a的走航式观测结果 ,讨论了调查期间叶绿素a的分布特征。结果表明 ,夏季台湾海峡存在明显的上升流现象 ,表层较高的叶绿素a含量均位于低水温区。表层叶绿素a最大值出现在上升流区的边缘。作者认为这是上升流中心区与边缘区浮游植物的大量繁殖具有一定的“时间差”的缘故。台湾海峡24°N以南及以北海域 ,由于上升流强度的差异 ,表层叶绿素a的分布变化也明显不同。夏季 ,台湾海峡表层叶绿素a含量呈南高北低的趋势。  相似文献   

3.
1998年8月台湾海峡温度和叶绿素a含量的垂直分布特征   总被引:6,自引:1,他引:6  
根据1998年8月台湾海峡温度、盐度、叶绿素a的观测结果,讨论了调查期间叶绿素a的垂直分布特征,结果表明,夏季台湾海峡西部海域存在明显的上升流,较高的叶绿素a含量均位于低温高盐的涌升水中,叶绿素a最大值出现存在上升流区边缘、温跃层附近,台湾海峡东部海域由高温、低盐、低营养盐水占据,叶绿素a含量明显较海峡西部海域低。  相似文献   

4.
南海海域叶绿素浓度分布特征的卫星遥感分析   总被引:17,自引:5,他引:17  
陈楚群  施平  毛庆文 《热带海洋学报》2001,20(2):66-70,T001
介绍了第二代海洋水色传感器SeaWiFS资料的特点汲其基本处理方法,海水叶绿素浓度提取方法,对南海域表层海水叶绿素浓度分布的时空变化特征及其与营养物质和南海环流的关系进行了初步分析。  相似文献   

5.
台湾海峡1997年夏季和1998年冬季两航次颗粒有机碳研究   总被引:8,自引:0,他引:8  
1997~1998年台湾海峡两个航次的数据表明,颗粒有机碳(POC)的平均含量为0.120±0.009mg/dm3,表层POC浓度在夏季和冬季分别存在几个高值区。POC在随深度变化的剖面分布图中,最大值出现在10m层,底层水明显受再悬浮影响,这一剖面的变化规律普遍存在于整个海区及不同季节。夏季POC的深度变化幅度要显著大于冬季,这与垂直混合作用有关。POC与Chl-a相关性较差,暗示以Chl-a估算浮游植物的不确定性及POC产生及来源的复杂性。  相似文献   

6.
台湾海峡表层叶绿素a年变化特征的空间差异   总被引:6,自引:0,他引:6  
SeaWiFS(sea-viewing wide field-of-view sensor)数据自1997年9月开始发布以来,为世界各地开展水色遥感研究提供了丰富的信息源.遥感数据本身所具有的大范围、海量、易形成时间序列的优势不仅使其非常适合大尺度的时空变化研究,而且它为世界各地海洋提供的大量叶绿素分布数据,对于海洋生态系统浮游植物、初级生产力、中心渔场、碳循环、海流等相关研究都具有重要意义.目前国内外SeaWiFS水色遥感的应用研究已取得许多成果[1~3],并已成为各海区叶绿素数据获取的重要来源之一.  相似文献   

7.
台湾海峡表层叶绿素含量的季节、年际变化特征研究   总被引:4,自引:0,他引:4  
本文通过分析SeaWiFS海洋水色卫星提供的叶绿素资料,给出了台湾海峡表层叶绿素含量空间分布季节变化的完整图像.台湾海峡表层叶绿素含量的季节变化明显.海峡北部呈显著的春、秋“双峰”分布,而海峡南部则以夏、秋“双峰”结构为主.叶绿素含量高值主要位于福建省近岸海域,海峡西侧高于海峡东侧.此外,叶绿素含量的分布存在两个局地高值区,一个位于台湾浅滩附近,另一个位于台湾岛西北淡水河口以外海域.福建省近岸海域及台湾岛西北淡水河口附近的叶绿素含量高值区与地表径流携带较多的营养物质入海密切相关;而台湾浅滩附近的叶绿素含量高值受季节变异的海洋锋调制.进一步的分析表明,台湾海峡区域平均的叶绿素含量不仅具有周期约81 d和101 d的季节内振荡信号,还具有与ENSO指数呈显著负相关(-0.28)的周期约3 a的年际振荡信号.此外,台湾海峡区域平均的叶绿素含量具有逐年递增的长期演化趋势,速率达0.036 mg/(m3.a).  相似文献   

8.
从物理过程和营养输送方面讨论了2006~2007年台湾海峡及其邻近海域表层水叶绿素口含量的时空变化特征及其调控因素.结果表明,台湾海峡表层水体从南至北叶绿素。含量的季节变化存在着明显差异.在北部海区叶绿素口含量平均值以春季居高,冬季最低;中部海区以秋季最高,夏季最低;南部较反常,以冬季最高,夏季最低.浙闽沿岸流、海峡暖流及上升流所造成的营养盐输入方式的差异可能是决定海峡叶绿素口含量季节分布南北差异的关键因素.分析结果还表明,春、夏季叶绿素口含量的分布在南部和北部海域均主要受营养盐限制,秋季叶绿素口含量在南部和北部海域分别主要受到磷酸盐含量和水温的影响,冬季叶绿素α含量在南部和北部海域分别主要受到硝酸盐含量和水温的影响.  相似文献   

9.
台湾海峡北部冬季水文特性对叶绿素a分布变化的作用   总被引:3,自引:0,他引:3  
张钒  黄邦钦 《海洋科学》2000,24(10):1-3
营养盐是限制浮游植物生长的主要因素之一 ,但在冬季 ,温度也是浮游植物生长繁殖的控制因素。台湾海峡北部的水文情况复杂 ,低温低盐高营养盐的沿岸水与来自台湾海峡南部的高温高盐低营养盐水相互消长[1],必定影响海区内营养物质及温度的分布及变化 ,这势必对海区浮游植物的生长及叶绿素a的分布和变化起到重要的控制作用。本文根据1998年2月在台湾海峡北部的调查资料 ,研究了海区内重要水文特征对于叶绿素a分布变化的作用。1材料与方法1998年2月 ,福建海洋研究所与厦门大学联合在台湾海峡北部进行了综合性海洋调查。观测站…  相似文献   

10.
台湾海峡北部冬季水文特性对叶绿素α分布变化的作用   总被引:1,自引:2,他引:1  
张钒  黄邦钦 《海洋科学》2000,24(10):1-3
  相似文献   

11.
The variability of Chlorophyll-a (Chl-a) distribution derived from MODIS (on Aqua and Terra platforms) and MERIS sensors have been compared with SeaWiFS data in the Arabian Sea. MODIS Aqua has overestimated the SeaWiFS Chl-a within 25–32% in the coastal turbid (eutrophic) waters and underestimated in open ocean waters with error within 20%. However, there is no significant bias (?0.1 on log-scale) observed as the slope is well within 0.97-1.1 (log transformed). MODIS-Terra has underestimated the Chl-a concentration in open ocean waters by about 29–31%, which is higher than MODIS-Aqua. MODIS-Terra is observed to be more accurate than MODIS-Aqua in the coastal waters. MERIS is overestimating the SeaWiFS Chl-a with log RMS error of ~0.15 and log bias of ~0.13–0.2. The differences in the Chl-a estimates between each sensor are possibly due to differences in the sensor design, bio-optical algorithms and also due to the time differences between the satellites over passes. We have examined that the MERIS is performing similar to SeaWiFS and the MODIS-Aqua (Terra) data are reliable in open ocean (coastal) waters. However, Chl-a retrieval algorithms need to be improved especially for coastal turbid waters to continue with SeaWiFS data for long-term studies.  相似文献   

12.
根据1998年2-3月台湾海峡北部海区的CTD资料,进行各层次温度,盐度平面分布特征的分析,得到研究海区调查期间温,盐水平分布的以下几个特征;(1)在台湾海峡的西岸,存在一支由东北向西南流动的海水,其上层具有较低的温度和盐度;(2)在海峡的东部海域,有一支由西南向东北沿岸流动的海水,具有高温高盐的特性,可以向北延伸26°N附近海域。  相似文献   

13.
南海叶绿素浓度季节变化及空间分布特征研究   总被引:17,自引:8,他引:17  
以南海海域1997年10月至2002年9月SeaWiFS卫星遥感叶绿素浓度的资料为基础,分析了多年平均的南海叶绿素浓度的时空分布,初步分析结果表明,冬季南海大部分海域叶绿素浓度普遍较高,春季大部分海域较低;南海各个海区的叶绿素月平均最低浓度基本出现在春季的4月或5月,而最高浓度出现的月份却有不同的特征,在中央海盆区出现在12月,在广东沿岸海区出现在7月,在越南东南部近岸海域在8月和12月有两个最高值;在吕宋海峡的西部区域,尽管叶绿素浓度的最高值也出现在12月,但是叶绿素浓度的最低值却出现在夏季的7月.在空间上近岸区域的叶绿素浓度明显高于中央海盆区,西部海域普遍高于东部海域.南海叶绿素浓度的这一时空分布特征与流场(如上升流等)、海面温度场和风场等的变化有关,也与陆源物质的输入等关系密切.  相似文献   

14.
By analyzing, as an example, the data of observations of the Black Sea from the space in autumn 1998, we conclude that, in some cases, the atmospheric distortions manifest themselves in all measuring channels of SeaWiFS instruments and lead to significant errors in determining the concentration of chlorophyll according to the standard NASA algorithm. After additional rejection of the data with negative values of the spectral brightness of the sea surface at a wavelength of 412 nm, the results of evaluation the concentration of chlorophyll are in good agreement with the available data of direct measurements. We also present a detailed discussion of some specific features of operation of the NASA algorithm of atmospheric correction playing an important role in the interpretation of the data of observations of the Black Sea. __________ Translated from Morskoi Gidrofizicheskii Zhurnal, No. 2, pp. 68–79, March–April, 2008.  相似文献   

15.
The sea floor topography around Taiwan is characterized by the asymmetry of its shallow and flat shelves to the west and markedly deep troughs and basins to the south and east. Tectonics and sedimentation are major controls in forming the submarine physiographic features around Taiwan. Three Pliocene-Quaternary shelves are distributed north and west of Taiwan: East China Sea Shelf (passive margin shelf), the Taiwan Strait Shelf (foreland shelf), and Kaoping Shelf (island shelf) from north to south parallel to the strike of Taiwan orogen. Off northeastern Taiwan major morpho/tectonic features associated with plate subduction include E-W trending Ryukyu Trench, Yaeyama accretionary wedge, forearc basins, the Ryukyu Arcs, and the backarc basin of southern Okinawa Trough. Off eastern Taiwan lies the deep Huatung Basin on the Philippine Sea plate with a relatively flat floor, although several large submarine canyons are eroding and crossing the basin floor. Off southeastern Taiwan, the forearc region of the Luzon Arc has been deformed into five alternating N-S trending ridges and troughs during initial arc-continent collision. Among them, the submarine Hengchun Ridge is the seaward continuation of the Hengchun peninsula in southern Taiwan. Off southwestern Taiwan, the broad Kaoping Slope is the major submarine topographic feature with several noticeable submarine canyons. The Penghu Canyon separates this slope from the South China Sea Slope to the west and merges southwards into the Manila Trench in the northern South China Sea. Although most of sea floors of the Taiwan Strait are shallower than 60 m in water depth, there are three noticeable bathymetric lows and two highs in the Taiwan Strait. There exists a close relationship between hydrography and topography in the Taiwan Strait. The circulation of currents in the Taiwan Strait is strongly influenced by seasonal monsoon and semidiurnal tides. The Penghu Channel-Yunchang Ridge can be considered a modern tidal depositional system. The Taiwan Strait shelf has two phases of development. The early phase of the rift margin has developed during Paleoocene-Miocene and it has evolved to the foreland basin in Pliocene-Quaternary time. The present shelf morphology results mainly from combined effects of foreland subsidence and modern sedimentation overprinting that of the Late Pleistocene glaciation about 15,000 years ago.  相似文献   

16.
The sea floor topography around Taiwan is characterized by the asymmetry of its shallow and flat shelves to the west and markedly deep troughs and basins to the south and east. Tectonics and sedimentation are major controls in forming the submarine physiographic features around Taiwan. Three Pliocene-Quaternary shelves are distributed north and west of Taiwan: East China Sea Shelf (passive margin shelf), the Taiwan Strait Shelf (foreland shelf), and Kaoping Shelf (island shelf) from north to south parallel to the strike of Taiwan orogen. Off northeastern Taiwan major morpho/tectonic features associated with plate subduction include E-W trending Ryukyu Trench, Yaeyama accretionary wedge, forearc basins, the Ryukyu Arcs, and the backarc basin of southern Okinawa Trough. Off eastern Taiwan lies the deep Huatung Basin on the Philippine Sea plate with a relatively flat floor, although several large submarine canyons are eroding and crossing the basin floor. Off southeastern Taiwan, the forearc region of the Luzon Arc has been deformed into five alternating N-S trending ridges and troughs during initial arc-continent collision. Among them, the submarine Hengchun Ridge is the seaward continuation of the Hengchun peninsula in southern Taiwan. Off southwestern Taiwan, the broad Kaoping Slope is the major submarine topographic feature with several noticeable submarine canyons. The Penghu Canyon separates this slope from the South China Sea Slope to the west and merges southwards into the Manila Trench in the northern South China Sea. Although most of sea floors of the Taiwan Strait are shallower than 60?m in water depth, there are three noticeable bathymetric lows and two highs in the Taiwan Strait. There exists a close relationship between hydrography and topography in the Taiwan Strait. The circulation of currents in the Taiwan Strait is strongly influenced by seasonal monsoon and semidiurnal tides. The Penghu Channel-Yunchang Ridge can be considered a modern tidal depositional system. The Taiwan Strait shelf has two phases of development. The early phase of the rift margin has developed during Paleoocene-Miocene and it has evolved to the foreland basin in Pliocene-Quaternary time. The present shelf morphology results mainly from combined effects of foreland subsidence and modern sedimentation overprinting that of the Late Pleistocene glaciation about 15,000 years ago.  相似文献   

17.
香港近岸海域营养盐结构特征及其对浮游植物生长的影响   总被引:4,自引:1,他引:4  
本文利用2000年3月至2001年5月在香港近岸牛尾海海域(Porter Shelter, Hong Kong)14个航次的现场调查数据, 对水体中营养盐组成结构和叶绿素a含量进行了分析研究。结果表明, 该海域表层和底层水体中溶解无机氮(DIN, 包括NO3?-N+NO2?-N, NH4+-N)平均浓度范围分别为1.24—9.72mol/L及1.30—7.49mol/L, 均表现为冬季最高、秋季最低。不同季节表层水体中PO43?-P浓度范围为0.14—0.46mol/L, 夏季平均浓度最底; 底层 PO43?-P浓度变化不大, 但夏季仍低于其他季节。不同季节表层和底层水体中SiO32?-Si的变化趋势基本相似, 平均浓度范围分别为7.80—18.47mol/L 和8.13—16.87mol/L, 均在冬季最高, 其它季节差别不大。叶绿素 a分析结果显示, 表层水体高生物量大多出现在夏末秋初季节(如8月份), 春季(4月份)次之; 底层水体叶绿素 a秋季最高, 夏季次之。进一步分析了该海域营养盐对浮游植物生长的可能限制因子, 结果表明表层水体春季呈现氮–磷协同限制的可能性、夏季磷限制较明显, 秋季表现为显著的氮限制。底层水体春、夏季呈现氮–磷协同限制的趋势, 秋季也表现为明显的氮限制。冬季磷酸盐浓度相对氮、硅的含量较低, 但各种营养盐相对于浮游植物生长的最低阈值都比较丰富, 所以, 冬季表、底层水体中营养盐对浮游植物的生长均不形成限制因素。另外, 除了夏季表层水体外, 其它季节该水域浮游植物生长受溶解无机硅限制的可能性较少。  相似文献   

18.
通过2004年9月至10月对南海北部水域的现场调查,分析了表层海水中溶解氧、叶绿素a、pH值和营养盐等水质因子的空间分布分布特征,并讨论了它们之间的相互关系。结果表明:在南海北部海区的表层海水中,各水质因子在空间分布上大多呈现块状分布,且东西两侧的海水有较为明显的差异;海水中的溶解氧、pH值均表现出与海水温度相反的分布趋势;海水中的叶绿素a(Chla)和众多的水质因子表现出多元相关性,说明水体中浮游植物的生长繁殖是众多水质因子在南海北部综合作用的结果,而Chla和水体中亚硝酸盐的高相关性,说明南海北部水体中浮游植物的生长和亚硝酸盐有着比其他营养盐因子更为密切的联系。  相似文献   

19.
台湾南湾区秋末冬初海樽类的种类组成和数量分布   总被引:6,自引:0,他引:6  
根据2001年11月2--3日和12月8--10日在台湾南湾12个测站分别用2种圆锥形浮游生物网(长180cm,网口直径45cm,网目333μm或200μm)采集表层和底层的浮游动物样品,分析了南湾浮游海樽类的种类组成和数量分布,其鉴定海樽类16利,其中7种为台湾周围海域新记录。东方双尾纽鳃樽和小齿海樽为优势种。南湾海樽类的种类数及个体数量均以12月多于11月。讨论了水文条件与海樽类时空分布的关系,认为外海高盐水团足南湾冬季海樽类生态特征的主要制约因子。典型的高温高盐种大西洋火体虫、长吻纽鳃樽、安纽鳃樽、多手纽鳃樽、书氏纽鳃樽、羽环纽鳃樽和斑点纽鳃樽等可以作为外海高温高盐水入侵南湾的指标种。与邻近海域比较,秋冬季南湾与台湾岛以东海域海樽类的区系特征比与台湾海峡和南海北部更加相似。  相似文献   

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