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1.
2007年6月经由专项航次对黄海冷水团及邻近海域共48个站位(北黄海17个,南黄海31个1的小型底栖动物组成、丰度和生物量及沉积环境进行了研究。所调查站位的小型底栖动物平均丰度达(2195±1599)ind/10cm^2,平均生物量为(1843±1291)μg dwt/10cm^2,冷水团内的平均丰度较冷水团外站位低约...  相似文献   

2.
通过分析2011年8月的出海调查数据,绘制了不同断面上的温度分布图及调查海域底部的温度分布图,基本了解了黄海冷水团西边界的空间分布特征;根据热力学及流体力学的基本理论,在忽略热量传递次要项的前提下,通过计算海水在输运过程中的"冷量"损失,得到了黄海冷水在输运过程中的温度变化情况;进一步结合青岛地区海水源热泵技术的具体应用情况,分析探讨了黄海冷水团的开发利用前景。结果表明:黄海冷水团边缘距离岸边较近,约20~40km,在冷水输运过程中"冷量"损失较小,管道内部末端水温仅升高5℃~6℃,并且青岛地区已经具备相对成熟的海水温差能利用技术,这些都为黄海冷水团的开发利用提供了理论与现实基础。  相似文献   

3.
黄海冷水团演变过程及其与邻近水团关系的分析   总被引:43,自引:12,他引:43  
黄海冷水团是出现在黄海的一种独特的水文现象.文中利用覆盖整个黄海的GDEM三维水温资料,结合近期一些大型调查所获得的有关观测研究结果,首先较系统地分析了黄海冷水团的形成和演变过程,并对冷水团3个冷中心的季节演变提出了一些与前不同的认识.同时,通过对黄海冷水团形成、发展和消亡与该海域温跃层演变关系的分析,进一步揭示了黄海冷水团演变的机理.然后,探讨了黄海冷水团演变过程中与青岛和仁川东南海域冷水团以及东海北部底层冷水的关系.分析表明,在黄海冷水团发展的鼎盛时期,青岛冷水团和仁川东南海域冷水团以及东海北部底层冷水皆包络其中.  相似文献   

4.
以金枪鱼碎肉为原料, 采用双酶分步水解法制备高F值酶解液, 通过Box-Behnken试验设计, 分别确定两步酶解的最佳条件, 酶解液经活性炭静态吸附去除游离芳香族氨基酸, 对脱芳后的酶解液进行氨基酸组成分析并测定F值。结果表明, 胃蛋白酶为第一步水解用酶, 酶解的最佳工艺条件为酶用量650U/g, 料水比1∶7(g/mL), 温度35.9℃; 风味蛋白酶为第二步水解用酶, 酶解的最佳工艺条件为酶用量50700U/g, pH 6.51, 温度51℃, 最终水解度达到36.87%±0.54%; 酶解液在pH 3.0, 温度35℃条件下, 经5%(质量体积分数)的活性炭吸附时间3h后, 脱芳率达到63.18%, F值为30.33, 符合高F值肽的要求。  相似文献   

5.
北黄海冷水团温、盐多年变化特征及影响因素   总被引:5,自引:2,他引:5  
基于1976~1999年的海洋调查资料,主要研究了北黄海冷水团温、盐的多年变化特征,并结合该时间区间内黄河径流量及海洋站的气温、风速等资料探讨影响北黄海冷水团温、盐变化的因素.结果表明,北黄海冷水团在这24 a间温度稍呈上升趋势(0.005℃/a),盐度升降趋势则不明显.其温度主要受冬季气温影响,黑潮现象会使温度变异.盐度主要受黄海暖流、渤海热通量、海域冬季大风的共同作用;黄河径流量可能不是影响北黄海冷水团盐度变化的主要因素,但其径流量的大幅度变化也会影响北黄海冷水团的盐度变化趋势.  相似文献   

6.
北黄海冷水团对獐子岛微微型浮游生物分布的影响   总被引:2,自引:1,他引:2  
Picoplankton distribution around the Zhangzi Island(northern Yellow Sea)was investigated by monthly observation from July 2009 to June 2010.Three picoplankton populations were discriminated by flow cytometry,namely Synechococcus,picoeukaryotes and heterotrophic prokaryotes.In summer(from July to September),the edge of the northern Yellow Sea Cold Water Mass(NYSCWM)resulting from water column stratification was observed.In the NYSCWM,picoplankton(including Synechococcus,picoeukaryotes and heterotrophic prokaryotes)distributed synchronically with extremely high abundance in the thermocline(20 m)in July and August(especially in August),whereas in the bottom zone of the NYSCWM(below 30 m),picoplankton abundance was quite low.Synechococcus,picoeukaryotes and heterotrophic prokaryotes showed similar response to the NYSCWM,indicating they had similar regulating mechanism under the influence of NYSCWM.Whereas in the non-NYSCWM,Synechococcus,picoeukaryotes and heterotrophic prokaryotes exhibited different distribution patterns,suggesting they had different controlling mechanisms.Statistical analysis indicated that temperature,nutrients(NO3–and PO43–)and ciliate were important factors in regulating picoplankton distribution.The results in this study suggested that the physical event NYSCWM,had strong influence on picoplankton distribution around the Zhangzi Island in the northern Yellow Sea.  相似文献   

7.
黄海冷水团附近沉积物中的趋磁细菌及磁小体的特性研究   总被引:3,自引:0,他引:3  
对黄海冷水团附近海域的沉积物进行了富集、荧光显微镜观察、电镜观察,并对其中大小均匀、形状规则的高密度颗粒进行了能谱分析。结果显示,在黄海冷水团附近有趋磁细菌和磁小体的存在。  相似文献   

8.
南黄海冷水中心内外夏季大型底栖动物群落分析   总被引:2,自引:2,他引:2  
根据1959年、2004年和2012年夏季航次的调查数据,研究南黄海冷水中心内、外大型底栖动物群落结构及年际变化。使用Shannon-Wiener多样性指数、Pielou均匀度指数、Margalef丰富度指数,平均分类差异指数以及丰度生物量比较曲线(abundance-biomass comparison curves,ABC Curves)分析群落的组成与变化,使用相对重要性指数(index of relative importance,IRI)分析群落中的优势种和重要种。研究结果显示,3个航次共鉴定大型底栖动物112种,隶属18纲69科80属;其中冷水中心(Yellow Sea cold water mass core,YSCWMC)内33种,隶属16纲65科75属;冷水中心外87种,隶属7纲30科36属。两因素方差分析(Two-way ANOVA)结果显示三航次间时空尺度上冷水中心内、外的H′、J′和d的差异均不显著,物种丰度和物种生物量也未发生明显的改变。冷水中心内部群落的H′、J′和d变化幅度较冷水中心外部群落小,表明相较冷水中心外的群落,冷水中心内的群落结构较为稳定。分类差异变异指数及ABC曲线分析也显示冷水中心内、外的群落状况良好。通过比较冷水中心内、外物种组成发现冷水中心内软体动物(Mollusk)种类最多,其丰度和生物量在冷水中心内优势明显,且三个航次间软体动物物种改变较小。冷水中心内群落中的多毛类动物(Polychaeta)和棘皮动物(Echinodermata)虽在各年份分别占据优势种地位,丰度极高,但种类极少。冷水中心外群落中的多毛类动物和棘皮动物占据绝对优势,无论是种类数还是生物量都较其他种类高。在调查航次总生物量中,冷水中心内的软体动物生物量占总生物量的38%,而冷水中心外的仅占总生物量的3%,说明软体动物较为适宜生活在低温、高盐的冷水环境中。三年间分析调查显示冷水中心内软体动物的重要种及常见种有薄索足蛤(Thyasira tokunagai)、秀丽波纹蛤(Raetellops pulchella)、短吻蛤(Periploma sp.)、胡桃蛤(Nucula sp.)和日本梯形蛤(Portlandia japonica)。冷水中心对于大型底栖动物中软体动物的生长繁殖具有重要的保护作用,能够维持其群落结构的稳定。  相似文献   

9.
2006年10月在黄海冷水团海域的三个站点开展了微型异养鞭毛虫、异养细菌和蓝细菌的密度和生物量调查,进行了微型异养鞭毛虫的现场摄食实验,通过荧光标记细菌法和消化系数法获得该海区微型异养鞭毛虫对异养细菌和蓝细菌的摄食率,并估算了微型异养鞭毛虫对异养细菌和蓝细菌现存量及生产力的摄食压。结果显示,微型异养鞭毛虫、异养细菌和蓝细菌的密度分别为036×103~113×103,039×106~113×106和004×104~374×104cells/cm3,温跃层以上明显高于底层。微型异养鞭毛虫对异养细菌的摄食率为533~1489个/(HF·h),对蓝细菌的摄食率为026×102~2310×10-2cells/(HF·h),摄食率随深度而下降。微型异养鞭毛虫每天能消耗927%~3308%的异养细菌现存量和812%~1609%的蓝细菌现存量。同时,微型异养鞭毛虫对异养细菌和蓝细菌的日摄食量各占它们生产力的266%~1310%和812%~1609%。研究表明微型异养鞭毛虫的摄食可能不是秋季黄海冷水团海域浮游细菌及其生产力的主归宿。  相似文献   

10.
采用14C与15 N核素示踪方法,于2008年12月—2009年1月对东海和南海北部海域的初级生产力和新生产力的分布进行了研究,并对其环境制约机制进行了初步探讨。结果表明:调查海域叶绿素a质量浓度在空间分布上呈近岸高、外海低,表层高、真光层底部低的分布趋势。东海海域的积分初级生产力(IPP)和积分新生产力(INP)均低于南海北部海域,f比值为东海海域>南海北部海域,东海海域新生产力(NP)对初级生产力(PP)的贡献大于南海北部海域。浮游植物对氨盐的吸收速率(ρNH4)显著大于对硝酸盐的吸收速率(ρNO3)(P<0.05)。水柱平均新生产力与环境参数的相关性分析结果表明,营养盐是影响冬季调查海域新生产力的主要因素,温度和盐度为次要因素。  相似文献   

11.
黄海冷水团的化学水文学特征   总被引:1,自引:1,他引:1  
Based on the field data obtained during summer cruises in 2006, the overall perspective of chemical and hydrographic characteristics of the Yellow Sea Cold Water Mass(YSCWM) are discussed through the crossYSCWM transect profiles and horizontal distributions of hydrological and chemical variables, with emphasis on the differences between the northern Yellow Sea Cold Water Mass(NYSCWM) and the southern Yellow Sea Cold Water Mass(SYSCWM). The results show that YSCWM is characterized by low temperature(10°C) and dissolved oxygen(DO) concentration, high salinity(32.0) and nutrient concentrations. Compared to the SYSCWM, the NYSCWM possesses lower values of temperature, salinity and nutrient concentrations but higher values of DO.Also its smaller variation ranges of variables(except for temperature) demonstrate that NYSCWM is more uniform than that of SYSCWM. In addition, thermocline is more intensive in the SYSCWM than that of NYSCWM.Furthermore, DO and Chl a maxima appear at the depth of 30 m in the SYSCWM, while these phenomena are not obvious in the NYSCWM.  相似文献   

12.
黄海冷水团海域浮游植物磷胁迫的季节变动   总被引:2,自引:0,他引:2  
The Yellow Sea is located between the China Mainland and the Korean Peninsula, representing a typical shallow epicontinental sea. The Yellow Sea Cold Water Mass(YSCWM) is one of the most important physical features in the Yellow Sea. The characteristics of vertical profiles and seasonal variations of biogenic elements in the YSCWM may lead the variations of nutrient availability(e.g., phosphorus) and phosphorus stress of phytoplankton. In this study, the authors surveyed the seasonal variations of phytoplankton phosphorus stress with emphasis on the effect of the YSCWM during the four cruises in April and October 2006, March and August 2007. Using both bulk and single-cell alkaline phosphatase activity(APA) assays, this study evaluated phosphorus status of phytoplankton community, succession of phytoplankton community and ecophysiological responses of phytoplankton to phosphorus in the typical region of the YSCWM. With the occurrence of the YSCWM, especially the variations of concentration of dissolved inorganic phosphorus(DIP), the results of bulk APA appeared corresponding seasonal variations. Along Transects A and B, the mean APA in August was the highest, and that in March was the lowest. According to the ELF-labeled assay's results, seasonal variations of the ELF-labeled percentages within dominant species indicated that diatoms were dominant in March, April and October, while dinoflagellates were dominant in August. During the four cruises, the ELF-labeled percentages of diatoms except Paralia sulcata showed that diatoms were not phosphorus deficient in April 2006 at all, but suffered from severe phosphorus stress in August 2007. In comparison, the ELF-labeled percentages of dinoflagellates were all above 50% during the four time series, which meant dinoflagellates such as Alexandrium and Scrippsiella, sustained perennial phosphorus stress.  相似文献   

13.
黄海冷水团水域浮游植物群落粒级结构的季节变化   总被引:4,自引:0,他引:4  
根据2006—2007年度4个季节航次的实测资料,分析了黄海冷水团水域浮游植物叶绿素及其粒级结构的时空分布特征及季节变化规律,结果表明,在研究海域30 m以浅叶绿素总量的平均含量从高到低的顺序为:春季的(1.01 mg/m3)、夏季的(0.81 mg/m3)、秋季(0.72 mg/m3)、冬季(0.68 mg/m3);在叶绿素浓度大于1 mg/m3和小于1 mg/m3的区域浮游植物粒级结构差异较大,在整个研究海域,粒径较小的微型和微微型浮游植物对总生物量的贡献始终占主导(65%),粒径较大的小型浮游植物在冬季和春季贡献率相对较高;从季节尺度看,浮游植物的平均粒级指数从大到小的顺序为:春季的(15.47μm),冬季的(11.08μm),秋季的(8.61μm),夏季的(6.52μm);尽管不同季节水文和化学环境差异显著,但是不同粒径浮游植物的贡献率随总生物量的变化表现出一致性的规律。对环境因子与叶绿素分布的相关分析表明,浮游植物的生长在夏季主要受到营养盐来源的限制,冬季主要受到水体混合引起的光照限制,秋季可能受到磷酸盐和水体混合的共同限制。浮游植物粒级结构的分布格局主要是由各组分在不同环境中的资源竞争优势决定的。  相似文献   

14.
The Yellow Sea Cold Water Mass(YSCWM) is one of the important water mass in the Yellow Sea(YS).It is distributed in the lower layer in the Yellow Sea central trough with the temperature less than 10 C and the salinity lower than 33.0.To understand the variability of the YSCWM,the hydrographic data obtained in April and August during 2009–2011 are analyzed in the southeastern Yellow Sea.In August 2011,relatively warm and saline water compared with that in 2009 and 2010 was detected in the lower layer in the Yellow Sea central area.Although the typhoon passed before the cruise,the salinity in the Yellow Sea central trough is much higher than the previous season.It means that the saline event cannot be explained by the typhoon but only by the intrusion of saline water during the previous winter.In April 2011,actually,warm and saline water(T >10 C,S >34) was observed in the deepest water depth of the southeastern area of the Yellow Sea.The wind data show that the northerly wind in 2011 winter is stronger than in 2009 and 2010 winter season.The strong northerly wind can trigger the intrusion of warm and saline Yellow Sea Warm Current.Therefore,it is proposed that the strong northerly wind in winter season leads to the intrusion of the Yellow Sea Warm Current into the Yellow Sea central trough and influenced a variability of the YSCWM in summer.  相似文献   

15.
北黄海冷水团温度年际变化研究   总被引:4,自引:2,他引:4  
本文基于1976—2006年国家标准断面(大连—成山头)调查资料,结合ECMWF气温、风速以及辐射等再分析资料,研究了北黄海冷水团的低温中心以及北部锋面的年际变化规律,并对其与气候年际变化信号的关系做了相关性分析以及EOF分析,研究了影响北黄海冷水团的诸多因素。研究结果表明,北黄海冷水团及其北部锋面强度存在明显的年际变化特征,北黄海冷水团中心最低温度具有升温趋势,北部锋面强度具有减弱趋势。分析发现,前冬海温,当地气温,经向风场以及辐射通量都对来年北黄海冷水团的强度存在影响,东亚冬季风的年际变异是影响北黄海冷水团温度年际变化的主要机制,El Nio、La Nia事件成熟期滞后于北黄海冷水团最低温度的相对低值、高值出现,ENSO通过与东亚冬季风的相互作用与北黄海冷水团相联系。  相似文献   

16.
黄海冷水团上升流对叶绿素垂向分布的影响   总被引:8,自引:0,他引:8  
利用黄海冷水团物理-生态耦合模式,对冷水团水域叶绿素垂向分布的季节变化进行了数值模拟研究。物理模式为冷水团热动力模型,生态模式主要考虑叶绿素,营养盐和食植浮游动物基本状态变量的耦合方程。研究结果表明,黄海冷水团上升流对叶绿素垂向分布的夏季上层结构具有显著影响。整个夏季,受上升流的影响,叶绿素垂向分布最大值的位置向海面抬升,量值增大,混合层叶绿素的平均浓度增加,与实测资料比较表明,考虑冷水团上升流的影响比不考虑上升流与实测结果符合要好。  相似文献   

17.
Samples were collected with a plankton net in the four seasonal cruises during 2006-2007 to study the seasonal variability of the zooplankton community in the southwest part of Huanghai Sea Cold Water Mass (HSCWM, Yellow Sea Cold Water Mass). The spatial and temporal variations of zooplankton species composition, biomass, abundance and biodiversity were examined. A total of 122 zooplankton species and 30 pelagic larvae were identified in the four cruises. Calanus sinicus and Aidanosagitta crassa were the most dominant species, and Themisto gaudichaudi and Euphausia pacifica were widely distributed in the HSCWM area. The spatial patterns of non-gelatinous zooplankton (removing the high water content groups) were similar to those of the total zooplankton biomass in autumn, but different significantly in the other three seasons. The seasonal means of zooplankton biomass in spring and summer were much higher than that in autumn and winter. The total zooplankton abundance averaged 283.5 ind./m~3 in spring (highest), 192.5 ind./m~3 in summer, 165.5 ind./m~3 in autumn and 65.9 ind./m~3 in winter (lowest), and the non-gelatinous groups contributed the most total abundance. Correlation analysis suggests that the non-gelatinous zooplankton biomass and abundance had a significant positive correlation in the whole year, but the relationship was insignificant between the total zooplankton biomass and abundance in spring and summer. The diversity index H of zooplankton community averaged 1.88 in this study, which was somewhat higher than historical results. Relatively low diversity in summer was related to the high dominance of Calanus sinicus, probably due to the strongest effect of the HSCWM in this season.  相似文献   

18.
A study was carried out to investigate the grazing pressure of heterotrophic nanoflagellates(HNF) on bacteria assemblages in the Yellow Sea Cold Water Mass(YSCWM) area in October, 2006. The results show that the HNF abundance ranges from 303 to 1 388 mL-1, with a mean of 884 mL-1. The HNF biomass is equivalent to 10.6%–115.6% of that of the bacteria. The maximum abundance of the HNF generally occurred in the upper 30 m water layer, with a vertical distribution pattern of surface layer abundance greater than middle layer abundance, then bottom layer abundance. The hydrological data show that the YSCWM is located in the northeastern part of the study area, typically 40 m beneath the surface. A weak correlation is found between the abundances of HNF and bacteria in both the YSCWM and its above water layer. One-way ANOVA analysis reveals that the abundance of HNF and bacteria differs between inside the YSCWM and in the above water mass. The ingestion rates of the HNF on bacteria was 8.02±3.43 h-1 in average. The grazing rate only represented 22.75%±6.91% of bacterial biomass or 6.55%+4.24% of bacterial production, implying that the HNF grazing was not the major factor contributing to the bacterial loss in the YSCWM areas.  相似文献   

19.
黄海冷水团大型鲑科鱼类养殖研究进展与展望   总被引:2,自引:0,他引:2  
黄海中部洼地的深层存在一个巨大的夏季冷水团,面积约13万km^2,水质优良,可以利用现代海洋装备在此海域养殖大型鲑科鱼类。中国海洋大学黄海冷水团鲑鱼养殖团队研发了养殖工船,概念性地设计了海浪能驱动的5万m^3的全潜式钢构网箱"深蓝1号"和约17万m^3的养殖-能源-管理于一体的"深蓝2号"智能钢构网箱,成功地完成了黄海冷水团鲑科鱼类养殖技术路线的验证。为实现规模化安全生产,仍需对养殖容量与黄海冷水团变动、适养种类及其育种、养殖技术、病害防治、饲料研发、机械化生产与智能化管理等进行深入研究。  相似文献   

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