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1.
对2008年夏季在西北冰洋172°~143.6°W的楚科奇海及其北部海区对粒度分级叶绿素a和初级生产力现场观测资料,对观测区的空间分布特征进行了研究.结果表明,观测海区表层叶绿素a浓度为0.013~19.367 μg/dm3,平均值为0.677士2.2661 μg/dm3,次表层水叶绿素a浓度高于其它水层.水柱叶绿素a...  相似文献   

2.
2004年春季长江河口水体与沉积物表层的叶绿素a浓度分布   总被引:3,自引:0,他引:3  
2004年5月7日至12日在31°~31.8°N、122.5°E以西到海水上溯至0盐度的长江河口进行14个站位叶绿素a浓度的现场观测,其中N1~N3、M1~M3、S1~S3和R6这10个观测站用3条渔船在4天内进行潮周期的涨憩、落急、落憩、涨急、涨憩5个潮时的准同步周日采样观测;对S2、S3、R2、R3、M3、N2和N3这7个位于长江入海口门站位进行表层泥样的叶绿素a浓度观测。结果表明,观测海区表层海水叶绿素a浓度为0.230~11.500μg/dm3,平均值为(1.514±1.712)μg/dm3,高值出现在观测海区东北部的长江冲淡水稀释区,表层海水叶绿素a浓度平面分布从该区的东北部向西南方向逐渐降低,离岸越近叶绿素a浓度越低,低值出现在长江口门内和测区西南部的广阔浑水区域;底层叶绿素a浓度为0.291~2.620μg/dm3,平均值为(1.186±0.531)μg/dm3,其变化幅度与平均浓度均明显低于表层。在涨憩、落急、落憩、涨急和涨憩5个潮周期中水柱平均叶绿素a浓度为1.198~1.910μg/dm3,涨憩和落急潮时,叶绿素a浓度自表层向底层逐渐下降;落憩和涨急潮时,表层的平均叶绿素a浓度略低于中层和底层。2004年春季观测海区叶绿素a浓度与往年夏季和秋季的观测结果相近,但明显高于冬季。表层沉积物叶绿素a浓度为(0.089±0.052)μg/g(湿重),仅占其上方水体平均叶绿素a浓度的极少部分,两者具有良好的相关性。  相似文献   

3.
北冰洋浮冰区湍流通量观测试验及参数化研究   总被引:3,自引:2,他引:1       下载免费PDF全文
利用2008年8月21~29日我国第3次北极考察期间在北冰洋海区(84°27′N,143°37′W~85°13′N,147°20′W)冰站观测的湍流资料及相关资料,对海冰近地层湍流通量及其特征参数进行了研究.结果表明:观测期间浮冰近地层始终存在逆温和逆湿层.这与我们以前(1999年在75°N和2003年在78°N)的观...  相似文献   

4.
通过对南沙永暑礁夏季观测资料的统计分析,发现了南沙海区西南大风产生的基本规律,通过分析南沙西南大风与南海和西太平洋热带气旋、辐合带、赤道高压、西南低压、孟加拉湾季风槽、越赤道气流、东风急流等天气系统的关系,得出了几点结论:( 1 ) 10°N 以北南海有热带气旋活动或南海 ITCZ 上的扰动不断加强,作为西南入流气流的通道,南沙海区一般可出现西南大风;( 2 ) 西太平洋台风西移到 125°E 以西,纬度在 15°N~25°N 之间,继续靠近南海且有台风槽向南海伸展时,南沙海区将出现西南大风;( 3 ) 西南低槽的南压加强再结合赤道高压的加强可使南沙海区产生大风;( 4 ) 孟加拉湾低槽前的西南风向东扩展且纬度较低时,南半球低空越赤道气流逐渐加强时以及南海南部高空东风明显增强时,南海可出现西南大风;( 5 ) 只要有以上 4 种形势中的任一种形势出现,再加上观测到云图上南沙海区附近有明显成片的对流云发展时,即可预报南沙有西南大风,其平均风力一般 6 ~ 7 级,阵风 8 ~ 10 级。  相似文献   

5.
应用WOA13季节平均数据和BELLHOP模型,在季节、声源频率等因素确定的情况下,分10 m表面声源和250 m水下声源,分析北大西洋冬季东、西部海区的声波导情况。在给出不同海区位置的声速场和声波导具体信息的基础上,研究其规律:最小声速值和声道轴深度由直布罗陀海峡向外递减扩散,表层声速值和声速梯度由南向北递减,声跃层存在于低纬度海区,混合层在低纬度通常在100 m以内,在高纬度增加至100 m以上。10 m深度表面声源的汇聚区反转深度随纬度增加逐渐减少,西部海区深于东部海区;西部海区的汇聚区跨度大于东部海区,东西部跨度最大值出现在25°N和15°N,传播损失基本一致。250 m水下声源的汇聚区反转深度浅于10 m深度表面声源时,同样是西部海区大于东部海区,汇聚区跨度呈低-高-低规律,东西部跨度最大值出现在35°N和25°N;东部海区25°N以南、西部海区15°N以南,不同接收深度上的传播损失差异较大,以北差异较小。同时简要叙述了声影区对目标探测的影响。  相似文献   

6.
汪金涛  陈新军  高峰  雷林 《海洋与湖沼》2014,45(6):1185-1191
东南太平洋茎柔鱼(Dosidicus gigas)是短生命周期种类,其资源量极易受到海洋环境变化的影响。根据2003—2012年我国鱿钓船在东南太平洋的生产统计数据,以及茎柔鱼栖息地的海表温度(SST)、海面高度(SSH)、叶绿素a浓度(chl a)数据,利用相关性分析法分析茎柔鱼资源丰度和补充量(以单位捕捞努力量渔获量为指标,t/d)与栖息海域20°S—20°N、110°W—70°W的SST、SSH、chl a浓度的相关性,获取相关系数大的关键海区位置,同时加入茎柔鱼产卵场、索饵场最适表层水温范围占总面积的比例(分别用PS、PF表示)两个参数,建立三种基于主要环境因子的误差反向传播(EBP)神经网络资源补充量预报模型,进行了比较。结果表明:茎柔鱼资源丰度与SST、SSH、chl a浓度的相关系数最大值海域为7月份的Point1(13°N,102°W)海区、9月份的Point3(11°N,102°W)海区和3月份的Point5(8°S,107°W)海区;资源补充量与SST、SSH、chl a浓度的相关系数最大值海域为6月份的Point2(8°N,103.5°W)海区、2月份的Point4(12°N,97.5°W)海区和10月份的Point6(10°S,93.5°W)海区。EBP神经网络预报模型结果认为:基于产卵环境关键影响因子的方案2(以Point2的SST、Point4的SSH、Point6的chl a浓度、PS作为模型输入因子)和基于全部环境关键影响因子的方案3(以Point1与Point2的SST、Point3与Point4的SSH、Point5与Point6的chl a浓度、PS、PF作为模型输入因子)的两种神经网络预报模型均方误差较小,其准确率可达90%左右。  相似文献   

7.
利用山东惠民国家基准气候站2018年12月—2019年11月的黑碳质量浓度、常规气象观测资料以及GDAS数据,研究了该地区黑碳气溶胶的变化特征,并基于后向轨迹模型对其潜在源区进行了分析。研究结果表明:1)观测期间,黑碳质量浓度平均值为3.22μg·m~(-3),季节变化呈冬、春季高,夏、秋季低的特点;春、夏、秋季黑碳质量浓度的高频值在2μg·m~(-3)以内,冬季的高频值在6μg·m~(-3)以上。2)黑碳质量浓度日变化呈双峰结构,峰值分别出现在06:00—08:00和19:00—21:00,谷值出现于13:00—15:00。3)降雨和风对黑碳质量浓度有明显影响。非降雨期黑碳质量浓度是降雨期的2.8倍;当风速小于3 m·s~(-1)时,黑碳质量浓度随风速增大而减小;冬季在西南西方向、春季在正南方向过来的气团易造成黑碳质量浓度高污染。4)惠民气流输送的季节变化特征明显。春、秋、冬季来自鲁中、河北和苏北等周边地区的气流所占比例较高,对应黑碳质量浓度高值;夏季来自海洋方向的气流占比较高,对应的黑碳质量浓度较低。  相似文献   

8.
东印度洋海—气二氧化碳分压差及其通量研究   总被引:4,自引:1,他引:4  
本文研究了第七、八次中国南极科学考察航渡中所观测到的海-气二氧化碳分压资料。结果表明,航线上20°N以北、20°~40°S之间及60°S以南的海域是大气二氧化碳的汇区,其间碳通量平均约为5.17mg/(m2·h);20°N至20°S及40°~60°S则为大气二氧化碳的源区,其间碳通量平均约为3.70mg/(m2·h)。  相似文献   

9.
针对现阶段BDS星座在我国周边海区的服务性能评估问题,给出星座可用性和星座覆盖性评估指标及计算公式,对基于格网划分的太平洋、印度洋评估海区作系统性测试分析.评估数据表明,BDS星座在60°S~60°N,150°~180°E和60°S~30°N,40°~70°E海区服务性能达到合格以上;评估海区在经度上由150°E向东、70°E向西,纬度上由高纬度至低纬度地区,BDS星座服务性能逐渐变差;部分海区及部分历元下BDS服务性能可达到优、良级别.该评估结果确定了BDS星座在海上服务性能达到各等级的海区范围,可为BDS在海上应用的拓展提供一定参考.  相似文献   

10.
利用Argo资料计算了准全球海洋夏季的混合层深度(MLD),并与Levitus资料计算所得的MLD进行了比较.结果表明,用Argo资料计算的全球夏季MLD总体上比Levitus资料的大.低纬20°S~20°N以及南半球40°~60°S等区域Levitus资料计算的MLD大部分明显小于Argo资料计算的MLD;北半球40°~60°N等区域Levitus资料计算的MLD略小于Argo资料的;而20°~40°N以及20°~40°S等混合层较浅的海区以及纬度高于60°N以及60°S的海区2种资料计算的MLD差别不大.南大洋MLD非常大,其中小部分海域用Levitus资料计算的MLD比Argo资料计算的MLD大100 m以上.  相似文献   

11.
The Arctic Ocean is connected to the Pacific by the Bering Sea and the Bering Strait. During the 4th Chinese National Arctic Research Expedition, measurements of carbon tetrachloride (CCl4) were used to estimate ventilation time-scales and anthropogenic CO2 (Cant) concentrations in the Arctic Ocean and Bering Sea based on the transit time distribution method. The profile distribution showed that there was a high-CCl4 tongue entering through the Canada Basin in the intermediate layer (27.6?<?σθ?<?28), at latitudes between 78 and 85°N, which may be related to the inflow of Atlantic water. Between stations B09 and B10, upwelling appeared to occur near the continental slope in the Bering Sea. The ventilation time scales (mean ages) for deep and bottom water in the Arctic Ocean (~?230–380 years) were shorter than in the Bering Sea (~?430–970 years). Higher mean ages show that ventilation processes are weaker in the intermediate water of the Bering Sea than in the Arctic Ocean. The mean Cant column inventory in the upper 4000 m was higher (60–82 mol m?2) in the Arctic Ocean compared to the Bering Sea (35–48 mol m?2).  相似文献   

12.
Studies have been performed on a transect along 130°30′ E from the Lena River delta (71°60′ N) to the continental slope and adjacent deepwater area (78°22′ N) of the Laptev Sea in September 2015. The structure of phytoplankton communities has distinct latitudinal zoning. The southern part of the shelf (southward of 73°10′ N), the most desalinated by riverine discharge, houses a phytoplankton community with a biomass of 175–840 mg/m2, domination of freshwater Aulacoseira diatoms, and significant contribution of green algae (both in abundance and biomass). The northern border for the distribution range of the southern complex of phytoplankton species lies between the 8 and 18 psu isohalines (~73°10′ N). The continental slope and deepwater areas of the Laptev Sea (north of 77°30′ N), with a salinity of >27 psu in the upper mixed layer, are populated by the community prevalently composed of Chaetoceros and Rhizosolenia diatoms, very abundant in the Arctic, and dinoflagellates. The phytoplankton number in this area fall in the range of 430–1100 × 106 cell/m2, and the biomass, in the range of 3600 mg/m2. A moderate desalinating impact of the Lena River discharge is observed in the outer shelf area between 73°20′ and 77°30′ N; the salinity in the upper mixed layer is 18–24 psu. The phytocenosis in this area has a mosaic spatial structure with between-station variation in the shares of different alga groups in the community, cell number of 117–1200 × 106 cells/m2, and a biomass of 1600–3600 mg/m2. As is shown, local inflow of “fresh” nutrients to the euphotic layer in the fall season leads to mass growth of diatoms.  相似文献   

13.
The meridional energy transport into high latitudes of the Northern Hemisphere is an important climate-forming factor in the Arctic. This work presents the results of calculating the meridional energy flux across 70° N based on the Integrated Global Radiosonde Archive (IGRA) data from the radio sounding of the atmosphere. The long-term mean energy flux over the period 1992–2007 in the layer from the Earth’s surface to 30 hPa is 70.6 W m?2. The fraction of the sensible heat flux is 23.2 W m?2, i.e., 33% of the total energy flux; the fraction of the latent heat flux is 28.0 W m?2 (40% of the total energy flux); the fraction of the potential energy is 20.0 W m?2 (27%); and the fraction of the kinetic energy is 0.53 W m?2, i.e., less than 1% of the total energy flux. The vertical structure of the flux shows that the main energy transport into the Arctic takes place in the middle troposphere-lower stratosphere layer, whereas the energy is transported mainly out of the Arctic in the lower troposphere, which agrees well with the schematic notion about the polar circulation cell. The spatial structure of the flux shows that the key regions with a positive (directed into the Arctic) energy flux are located in the vicinity of 160° E (the northwestern part of Eurasia, Pacific sector) and 50° W (Greenland sector). The regions with a negative (directed out of the Arctic) energy flux are located near 120° W (Canadian Arctic Archipelago) and from 20° E to 90° E (Atlantic sector). In the period from 1992 to 2007, the meridional energy transport into the Arctic weakened by ?0.26 W m?2 yr?1. The changes were mutually correlated; namely, positive and negative energy fluxes weakened in amplitude, almost without changing their locations.  相似文献   

14.
Inflow of Atlantic water (AW) from Fram Strait and the Barents Sea into the Arctic Ocean conditions the intermediate (100–1000 m) waters of the Arctic Ocean Eurasian margins. While over the Siberian margin the Fram Strait AW branch (FSBW) has exhibited continuous dramatic warming beginning in 2004, the tendency of the Barents Sea AW branch (BSBW) has remained poorly known. Here we document the contrary cooling tendency of the BSBW through the analysis of observational data collected from the icebreaker Kapitan Dranitsyn over the continental slope of the Eurasian Basin in 2005 and 2006. The CTD data from the R.V. Polarstern cruise in 1995 were used as a reference point for evaluating external atmospheric and sea-ice forcing and oxygen isotope analysis. Our data show that in 2006 the BSBW core was saltier (by ~0.037), cooler (by ~0.41 °C), denser (by ~0.04 kg/m3), deeper (by 150–200 m), and relatively better ventilated (by 7–8 μmol/kg of dissolved oxygen, or by 1.1–1.7% of saturation) compared with 2005. We hypothesize that the shift of the meridional wind from off-shore to on-shore direction during the BSBW translation through the Barents and northern Kara seas results in longer surface residence time for the BSBW sampled in 2006 compared with samples from 2005. The cooler, more saline, and better-ventilated BSBW sampled in 2006 may result from longer upstream translation through the Barents and northern Kara seas where the BSBW was modified by sea-ice formation and interaction with atmosphere. The data for stable oxygen isotopes from 1995 and 2006 reveals amplified brine modification of the BSBW core sampled downstream in 2006, which supports the assumption of an increased upstream residence time as indicated by wind patterns and dissolved oxygen values.  相似文献   

15.
Due to its unique geological location, the Bering Sea is an ideal place to investigate the water exchange and ecosystem connectivity of the Pacific Ocean–Arctic Ocean and subarctic–Arctic region. Based on a number of summer surveys(July to September, 2010, 2012 and 2014), macrobenthic communities and their spatial-temporal patterns are exhibited for the majority of the Bering Sea(53°59′–64°36′N). The results show that the macrobenthic communities were dominated by northern cold-water species and immigrant eurythermic species, and the communities assumed a dispersed and patchy distribution pattern. Polychaetes(Scoloplos armiger), crustaceans(Ceradocus capensis) and sea urchins(Echinarachnius parma) were the main dominant groups in the shallow shelves; the sea star(Ctenodiscus crispatus) and the brittle star(Ophiura sarsii) were the main dominant groups in the continental slope; whereas small polychaetes(Prionospio malmgreni) dominated the basin area. Sediment type, water depth, and currents were the major factors affecting the structure and spatial distribution of the macrobenthic communities. Compared with other seas, the shallow areas of the Bering Sea showed an extremely high-standing biomass. In particular, the northern shelf area(north of St. Lawrence Islands and west of 170°W),which is primarily controlled by Anadyr Water, is an undersea oasis. In contrast, a deficiency in the downward transport of particulate organic carbon has resulted in a desert-like seabed in the basin area. By comparing our results to previous studies, we found that macrobenthic communities of the Bering Sea have undergone significant structural changes in recent decades, resulting in a decrease in abundance and an increase in biomass.In addition, populations of amphipods and bivalves in the northern shelves have decreased significantly and have been gradually replaced by other species. These changes might be associated with advanced seasonal ice melting,changes in organic carbon input, and global warming, indicating that large-scale ecosystem changes have been occurring in the Bering Sea.  相似文献   

16.
Spring phytoplankton bloom in the fronts of the East China Sea   总被引:2,自引:0,他引:2  
Frontal areas between warm and saline waters of the Kuroshio currents and colder and diluted waters of the East China Sea (ECS) influenced by the Changjiang River were identified from the satellite thermal imagery and hydrological data obtained from the Coastal Ocean Process Experiment (COPEX) cruise during the period between March 1st and 10th, 1997. High chlorophyll concentrations appeared in the fronts of the East China Seas with the highest chlorophyll-a concentration in the southwestern area of Jeju Island (~2.9 mg/m3) and the eastern area of the Changjiang River Mouth (~2.8 mg/m3). Vertical structures of temperature, salinity and density were similar, showing the fronts between ECS and Kuroshio waters. The water column was well mixed in the shelf waters and was stratified around the fronts. It is inferred that the optimal condition for light utilization and nutrients induced both from the coastal and deep waters enhances the high phytoplankton productivity in the fronts of the ECS. In addition, the high chlorophyll-a in the fronts seems to have been associated with the water column stability as well.  相似文献   

17.
《Marine Chemistry》2002,80(1):11-26
Profiles of particulate and dissolved 234Th (t1/2=24.1 days) in seawater and particulate 234Th collected in drifting traps were analyzed in the Barents Sea at five stations during the ALV3 cruise (from June 28 to July 12, 1999) along a transect from 78°15′N–34°09′E to 73°49′N–31°43′E. 234Th/238U disequilibrium was observed at all locations. 234Th data measured in suspended and trapped particles were used to calibrate the catchment efficiency of the sediment traps. Model-derived 234Th fluxes were similar to 234Th fluxes measured in sediment traps based on a steady-state 234Th model. This suggests that the sediment traps were not subject to large trapping efficiency problems (collection efficiency ranges from 70% to 100% for four traps). The export flux of particulate organic carbon (POC) can be calculated from the model-derived export flux of 234Th and the POC/234Th ratio. POC/234Th ratios measured in suspended and trapped particles were very different (52.0±9.9 and 5.3±2.2 μmol dpm−1, respectively). The agreement between calculated and measured POC fluxes when the POC/234Th ratio of trapped particles was used confirms that the POC/234Th ratio in trap particles is representative of sinking particles. Large discrepancies were observed between calculated and measured POC fluxes when the POC/234Th ratio of suspended particles was used. In the Barents Sea, vertical POC fluxes are higher than POC fluxes estimated in the central Arctic Ocean and the Beaufort Sea and lower than those calculated in the Northeast Water Polynya and the Chukchi Sea. We suggest that the latter fluxes may have been strongly overestimated, because they were based on high POC/234Th ratios measured on suspended particles. It seems that POC fluxes cannot be reliably derived from thorium budgets without measuring the POC/234Th ratio of sediment trap material or of large filtered particles.  相似文献   

18.
As part of the 2002 Western Arctic Shelf–Basin Interactions (SBI) project, spatio-temporal variability of dissolved inorganic carbon (DIC) was employed to determine rates of net community production (NCP) for the Chukchi and western Beaufort Sea shelf and slope, and Canada Basin of the Arctic Ocean. Seasonal and spatial distributions of DIC were characterized for all water masses (e.g., mixed layer, halocline waters, Atlantic layer, and deep Arctic Ocean) of the Chukchi Sea region during field investigations in spring (5 May–15 June 2002) and summer (15 July–25 August 2002). Between these periods, high rates of phytoplankton production resulted in large drawdown of inorganic nutrients and DIC in the Polar Mixed Layer (PML) and in the shallow depths of the Upper Halocline Layer (UHL). The highest rates of NCP (1000–2850 mg C m−2 d−1) occurred on the shelf in the Barrow Canyon region of the Chukchi Sea and east of Barrow in the western Beaufort Sea. A total NCP rate of 8.9–17.8×1012 g for the growing season was estimated for the eastern Chukchi Sea shelf and slope region. Very low inorganic nutrient concentrations and low rates of NCP (<15–25 mg C m−2 d−1) estimated for the mixed layer of the adjacent Arctic Ocean basin indicate that this area is perennially oligotrophic.  相似文献   

19.
鲐鱼(Scomber japonicus)是西北太平洋的重要捕捞对象,其分布易受环境变化的影响。为定量分析海表温度和叶绿素浓度等影响因子对渔场分布的作用,文章采用产量重心、地统计插值和广义加性模型等方法,结合2017年西北太平洋2艘灯光敷网渔船的渔捞日志和海洋环境数据,探究该海域的渔场分布变化。研究结果表明:鲐鱼产量和单位捕捞努力量渔获量(CPUE)呈先上升后下降的趋势,其中7月的产量最高,9月的CPUE最高;产量重心于4-9月由SW方向向NE方向移动,并于9-12月返回SW方向;鲐鱼渔场的最适海表温度为14℃~16℃,最适叶绿素a浓度为0.4~1.0 mg/m3;叶绿素a浓度对渔场分布无显著影响,可能与鲐鱼摄食对象的特性有关。  相似文献   

20.
渤海小型底栖动物生物量的初步研究   总被引:15,自引:1,他引:15  
主要以线虫、桡足类、双壳类、多毛类和动吻5个类群对渤海小型底栖动物的生物量进行了估算,并对其水平分布进行了研究.结果表明,3个航次平均,渤海小型底栖动物年生物量为(干重)0.404g/(m2·a);1998年9~10月和1999年4~5月2个航次中小型底栖动物生物量的水平分布主要表现为渤海中东部和海峡口站位的生物量明显高于其他站位,但在1999年航次,海峡口靠近海岸的站位生物量下降,位于莱洲湾B1站位生物量明显上升.依据小型底栖动物的年生产力P=9B,估算渤海小型底栖动物的年平均生产力为(干重)3.636g/(m2·a).还对渤海小型底栖动物生物量与世界其他海域的进行了比较,认为渤海小型底栖动物生物量的数值与其他海域生物量的数值接近,但略偏低.就不同学者研究所得的线虫平均个体干重进行了比较研究.  相似文献   

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