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1.
黄海溶解氧垂直分布最大值的成因   总被引:1,自引:0,他引:1  
本文对黄海溶解氧垂直分布中最大值的成因进行了探讨.认为:浮游植物春花期光合作用产生的大量氧,是溶解氧垂直分布最大值得以在春季(5月)形成的基础;而良好的温、密跃层的存在是氧最大值得以形成的必要条件,夏季叶绿素最大值层中较强的光合作用,是氧最大值在夏季得以维持甚至增强的主要原因.提出:黄海春、夏季溶解氧垂直分布中的最大值并非主要由冬季保持而来.  相似文献   

2.
Frontal upwelling is an important phenomenon in summer in the Yellow Sea (YS) and plays an essential role in the distribution of nutrients and biological species. In this paper, a three-dimensional hydrodynamic model is applied to investigate the characteristics and influencing factors of frontal upwelling in the YS. The results show that the strength and distribution of frontal upwelling are largely dependent on the topography and bottom temperature fronts. The frontal upwelling in the YS is stronger and narrower near the eastern coast than near the western coast due to the steeper shelf slope. Moreover, external forcings, such as the meridional wind speed and air temperature in summer and the air temperature in the preceding winter and spring, have certain influences on the strength of frontal upwelling. An increase in air temperature in the previous winter and spring weakens the frontal upwelling in summer; in contrast, an increase in air temperature in summer strengthens the frontal upwelling. When the southerly wind in summer increases, the upwelling intensifies in the western YS and weakens in the eastern YS. The air temperature influences the strength of upwelling by changing the baroclinicity in the frontal region. Furthermore, the meridional wind speed in summer affects frontal upwelling via Ekman pumping.  相似文献   

3.
以黄海海域为研究区,通过动电位极化曲线法获取了出海实测的EH36钢材在2017年8月及12月黄海43个站位的初期腐蚀速率的数据,并以地统计学方法对数据进行分析,探索研究区内EH36钢材的腐蚀速率的空间分布及其变异特征,绘制初期腐蚀速率预测图。结果表明:初期腐蚀速率的分布状况在夏季、冬季呈现不同的特征,夏季分布呈现近岸低、远岸高,中心高、周围低的特点,冬季分布呈现中心及东南部分低、周围高的特征。同时,统计分析表明, EH36钢在黄海的平均初期腐蚀速率,夏季为0.11 mm/a,冬季为0.25 mm/a,并且在夏季和冬季里, EH36钢在黄海初期腐蚀速率分布的空间变异特征明显,空间自相关性强,其中8月的块金值/基台值为0.062,12月的块金值/基台值为0.138,变程在100 km左右。  相似文献   

4.
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   

5.
The sea surface temperature (SST) of the East China Sea (ECS) increased in the past decades,which may have a great impact on the ecosystem of the ECS,including the changes in plankton-population structure.In this paper,the changes in peaked abundance of Calanus sinicus in the Changjiang River (Yangtze River) Estuary were compared between 1959 and 2002,based on the data collected from the seasonally oceanographic cruises and those performed in spring of 2005.It was much higher in spring compared with that in other seasons both in 1959 and 2002.Furthermore,in spring 2005,the time for occurrence and decrease of the peaked C.sinicus abundance advanced about one month, accompanying the increase in the sea surface water temperature (SST).It peaked in June and decreased in July in 1959,however,in 2005,it peaked in May and attenuated sharply in early June.The earlier decrease of peaked C.sinicus abundance may further deteriorate the ecosystem in the Changjiang River Estuary and north nearshore of the ECS.  相似文献   

6.
Temporal and spatial variability of phytoplankton pigment concentrations in the Japan Sea are described, using monthly mean composite images of the Coastal Zone Color Scanner (CZCS). In order to describe the seasonal changes of pigment concentration from the results of the empirical orthogonal function (EOF) analysis, we selected four areas in the south Japan Sea. The pigment concentrations in these areas show remarkable seasonal variations. Two annual blooms appear in spring and fall. The spring bloom starts in the Japan Sea in February and March, when critical depth (CRD) becomes equal to mixed layer depth (MLD). The spring bloom in the southern areas (April) occurs one month in advance of that in the northern areas (May). This indicates that the pigment concentrations in the southern areas may increase rapidly in comparison with the northern areas since the water temperature increases faster in spring in the southern than in the northern areas. The fall bloom appears first in the southwest region, then in the southeast and northeast regions, finally appearing in the northwest region. Fall bloom appears in November and December when MLD becomes equal to CRD. The fall bloom can be explained by deepening of MLD in the Japan Sea. The pigment concentrations in winter are higher than those in summer. The low pigment concentrations dominate in summer.  相似文献   

7.
中沙群岛主要由中沙大环礁和黄岩岛组成,其温盐分布对于本区渔业生产、航海保障和水下通讯等具有重要意义。尤其是春夏之交的季节转换时期,该海域水温和盐度及其相应的跃层特性存在显著的季节变化,掌握其季节变化特征具有重要现实意义。本文基于2019年5月(南海春夏季风转换期)中沙大环礁、黄岩岛和2020年6月(夏季风爆发期)中沙大环礁海域大面站调查数据分析,发现中沙大环礁海域水温和盐度分布特征在夏季风爆发前后具有显著的差异性,2个航次的温跃层分布也呈现出较大不同,2019年5月黄岩岛海域温盐中上层分布与中沙大环礁相似,但底层有所差异,跃层深度也较大。2020年6月中沙大环礁内水体升温较快,各层水温均高于2019年5月,其中以底层水体升温最为显著;2019年5月中沙大环礁内水温水平梯度较大,且随着水深加大水平梯度也越大,2020年6日水平温度梯度逐渐减小。2个航次的盐度分布与水温分布较为相似。结合调查时段的海表热通量变化和卫星高度计资料分析认为,2019年5月中沙大环礁西南部海洋吸热高于东北部,故表层水温西南高东北低;2020年6月至7月环礁西南部海洋吸热低于东北部,故表层水温西南低东北高。由于中尺度涡的作用,中沙大环礁区域局部产生低温高盐或高温低盐水,并导致2020年6月中沙大环礁大部分海域的温跃层加深。  相似文献   

8.
The localization of nitric oxide synthases (NOS) is dealed with in the developing gonads of amphioxus Branchiostoma belcheri tsingtauense. It was found by NADPH-diaphorase staining that (1) NOS activity was present in the nuclear membranes of germinal vesicles during the entire period ofoocyte development; (2) NOS was localized in both the nuclear membranes and the perinuclear region of cytoplasm in the vitellogenetic oocytes; (3) NOS was relocated in the cortical layer in the mature egg; (4) NOS activity was present in spermatocytes, but not in the spermatogonia in the middle of October; (5) NOS was detected in both spermatozoa and spermatids as well as spermatocytes during the breeding season. This is the first report on the distribution pattern of NOS in the developing gonads in protochordates. These results suggest a role for NOS in the functioning of the nuclear membranes and yolk synthesis during oogenesis and in cell division and differentiation during spermatogenesis.  相似文献   

9.
北黄海温盐分布季节变化特征分析   总被引:9,自引:1,他引:8  
利用2006~2007年夏冬春秋4个季节北黄海的大面调查资料,分析了4个季节北黄海温度和盐度大面以及典型断面分布特征,得出以下结论:2007年冷水团势力范围强于2006年,北黄海冷水团的形成受地形影响.黄海暖流冬春季较强,冬季最强,夏季最弱,秋季开始形成.鲁北沿岸流冬季最强,春季减弱,夏秋季消失,但夏季鲁北沿岸存在冬季鲁北沿岸流水的残余体,即鲁北沿岸水.辽南沿岸水4个季节都以低盐为特征,除夏季低盐中心位于庄河口外,其它3个季节低盐中心均位于调查区域的东北角.渤海与北黄海之间的水交换4个季节都存在.春季,断面盐跃层形成滞后于温跃层;秋季,断面盐跃层消失滞后于温跃层.  相似文献   

10.
东海黑潮区硝酸盐含量及其高值区的季节分布特征   总被引:1,自引:1,他引:0  
利用2010年NOAA发布的全球海域营养盐数据, 对东海黑潮区硝酸盐含量及其高值区的季节分布进行分析。结果表明: (1) 东海黑潮区NO3?-N平均浓度夏季最高、冬季最低, 陆架高、外海低, 硝酸盐浓度随深度而增高, 增高趋势秋季最强, 春季最弱。(2) 在东海黑潮区100—300m水层之间存在着硝酸盐跃层和深层水的涌升; 深层水涌升强度越大, 跃层位置深度越浅。(3) 在东海黑潮区, 从表层至深层的NO3?-N高值区主要分布在台湾东北海域、黑潮中段海域和九州西南海域, NO3?-N高值区和高值中心呈明显的季节性变化; 上述区域是今后东海黑潮区需要密切关注的海洋渔业资源丰富的海域。  相似文献   

11.
长江无机氮的分布变化和迁移   总被引:13,自引:3,他引:13       下载免费PDF全文
于1997年11—12月(枯水期)、1998年8月和10月(丰水期),对长江从金沙江至河口干流和主要支流、湖泊入江口各种形式的无机氮进行调查。结果表明,长江枯、丰期,干、支流NO3—N平均浓度变化很小,NO2—N、NH4—N浓度枯水期显著高于丰水期,支流高于干流;长江NO3—N、NH4—N和DIN在枯、丰期具有基本相似的迁移过程;长江水中无机N的迁移变化主要取决于NO3—N,NO3—N始终是三态无机N的主要存在形式,三态无机N处于较稳定的热力学平衡状态中;长江干流无机N与径流量呈正相关表明长江水中无机N主要来自于面源。  相似文献   

12.
We collected fishes and environmental variables in three zones (upper, middle and lower) of a small open tropical estuary during flood tide. The aim was to test for differences in fish assemblages along a gradient from freshwater to marine waters and to detect any seasonal variation in fishes and environmental variables across these zones. A total of 111 species (18 in the upper, 50 in the middle and 66 in the lower estuary) were recorded, forming three distinct fish assemblages, with the family Eleotridae dominating in the upper, Gerreidae in the middle, and Sciaenidae in the lower estuary. Only two species (Geophagus brasiliensis in the upper and the middle zones, and Eucinostomus argenteus in the middle and the lower zones) composed more than 1% of the total number of individuals in more than a single zone. Short‐term (tidal) changes in salinity in the middle estuary were associated with different assemblages in the three estuarine zones, even in winter, when the differences in salinity are lowest between the middle and the lower zones. Seasonal variation in salinity was irrelevant, except in a protected sidewater lagoon in the middle estuary. Low salinity seasonal change may be related to the lack of seasonal variation in the structure of fish assemblages in all estuarine zones.  相似文献   

13.
The Circulation in the Upper and Intermediate Layers of the South China Sea   总被引:4,自引:0,他引:4  
The circulation in the basin of the South China Sea is reproduced using a four-layer numerical model. Current fields in the second (upper) and third (intermediate) layers are emphasized. Three eddies coexist in the upper layer in summer. The circulation pattern in this layer is similar to that in the first (surface) layer. In winter, a cyclonic circulation occupies the entire basin of the South China Sea in the upper layer as in the surface layer. On the other hand, the circulation pattern in the intermediate layer is fairly different from that in upper two layers especially in winter. A double-gyre pattern appears in the intermediate layer during winter. The pattern is caused by the propagation of the baroclinic Rossby wave of the second mode. This wave is excited at onset of the winter monsoon wind. Such circulation pattern well explains the observed salinity distribution in the intermediate layer. Although the double-gyre pattern in the intermediate layer is revealed even in summer in this model, it is restricted in the western part of the basin. Besides, its current speed is small compared to that in winter.  相似文献   

14.
2012年1月在长江口北港、北槽和南槽水域纵断面开展枯季多船准同步观测,将获得的大小潮悬浮泥沙和盐度数据与1982年12月同水域调查结果进行对比分析。结果表明:2012年长江口最大浑浊带枯季悬沙浓度比1982年减小了约50%;北港、北槽、南槽相近测点的大潮垂向平均悬沙浓度相较于1982年分别减小了43%、60%和40%,2012年长江口表层平均悬沙浓度与1982年相比减少了约53%。北港断面浑浊带核心与1982年浑浊带核心位置相近;北槽浑浊带核心向内迁移;南槽浑浊带核心位置向外迁移。2012年与1982年枯季遥感反演的长江口同水域表层悬浮泥沙浓度也明显降低。在30年来入海泥沙持续减少背景下,长江口3条入海主汊的最大浑浊带特征依旧显著,径流与潮流的此消彼长、径流的季节分配不同以及口内汊道分流分沙比的变化影响了长江口最大浑浊带核心的移动,浑浊带悬沙浓度最高的地段也是盐度梯度最高的地区。  相似文献   

15.
本文根据1982年4月至1983年5月在大连湾周年生态调查中获得的资料,分析了大连湾浮游桡足类的数量分布和季节变化。结果表明,大连湾共有浮游桡足类22种,其中优势种大网为中华哲水蚤Calanussinicus;中网为小拟哲水蚤Parucalanusparvus、拟长腹剑水蚤Oithonasimilis、短角长腹剑水蚤Oithonabrevicornis。桡足类总量年高峰,大、中同各有2次,最高峰分别为2月和8月。本文还讨论了几种环境因素对浮游桡足类分布的影响。  相似文献   

16.
钦州湾潮流特征分析   总被引:9,自引:0,他引:9  
根据1994年5月和11—12月两个航次的调查及近年有关海湾的海流观测资料,分析了钦州湾的潮流特征,观测资料来自分布于该海湾东中西三个航道及相关区域的8个测站。钦州湾涨落潮流特征:落潮流速大于涨潮流速:东部最大涨落潮流速小于西部:夏季落潮流总是大于冬季:龙门水道附近的流速最大,而其余区域的流速相对较小。外湾(钦州湾)余流,是气旋式环流:水体东进而西出。从湾内来的泥沙和污染物质,主要从西部进入外海;中、东槽是主要“进水”通道,外海低泥沙含量、少污染物质的清洁水从这里潮流而上。因此,与西部相比,东部盐度高,水质清洁,底质重金属含量少。  相似文献   

17.
厦门港湾蟹类的分布   总被引:2,自引:1,他引:2  
蔡尔西 《台湾海峡》1990,9(2):166-171
本文根据我所1980年8月至1981年10月厦门港湾海洋环境综合调查,选取其季度月(11,2,5,8月)资料,研究该港湾蟹类的种类组成、数量分布与季节变化。  相似文献   

18.
利用催化动力学分光光度法和两步提取法对2011年4月(春)、8月(夏)、10月(秋)和2012年1月(冬)桑沟湾海域溶解态无机锰(DIMn)和表层沉积物中的锰的含量进行测定。结果表明,桑沟湾4个季节(春季至冬季,后同)DIMn浓度呈现出近岸高、远岸低的分布特点,其平均浓度分别为(60.5±43.1) nmol/L、(42.0±30.5) nmol/L、(23.4±11.2) nmol/L和(18.2±13.5) nmol/L,呈现出明显的季节变化,即春季最高,夏季、秋季次之,冬季最低;与相邻的俚岛湾和爱莲湾相比,桑沟湾春季、夏季DIMn的浓度较高,秋季、冬季则没有显著性差异。桑沟湾表层沉积物中总Mn在4个季节的含量分别为(861±308) mg/kg、(915±322) mg/kg、(589±108) mg/kg、(653±185) mg/kg,表层沉积物中醋酸提取态Mn在4个季节的含量分别为(500±272) mg/kg、(502±232) mg/kg、(322±81) mg/kg、(345±91) mg/kg,两者均表现出近岸高、远岸低的分布特点。醋酸提取态Mn的含量在春季、夏季要显著高于秋季、冬季。悬浮颗粒物的吸附和浮游生物的利用是影响桑沟湾DIMn浓度与分布的重要因素。桑沟湾DIMn的源主要包括河流及地下水输送、大气输送、沉积物?水界面释放;汇主要包括养殖生物的清除、向黄海的输送等。简单箱式模型收支计算结果显示,桑沟湾DIMn的源略大于汇,表明除了养殖生物的清除和向黄海的输送,桑沟湾DIMn还存在其他汇。本研究的结果为桑沟湾DIMn的生物地球化学循环的深入认识提供了基础数据。  相似文献   

19.
两种虾、贝、藻综合养殖模式的初步比较   总被引:5,自引:0,他引:5  
利用太平洋牡蛎(Crassostrea gigas)和孔石莼(Ulva pertusavar)与凡纳滨对虾(Litopenaeus vannamei)以2种方式搭配放养,旨在查明其各自的生态特征及养殖效果。实验中对虾设2个放养密度,分别为17尾/m2和34尾/m2;牡蛎、石莼各设1个放养密度,分别为1 700 g/m2,140 g/m2。实验结果表明,经过50 d的实验,2个密度下对虾的生长均是混养明显快于分养模式(高密度混养与分养对虾体重分别为(7.04±0.19)g,(5.20±0.22)g;低密度混养与分养对虾体重分别为(7.89±0.34)g,(5.66±0.30)g)。总产量也是混养模式稍高于分养模式[高密度混养与分养对虾产量分别为(330.92±8.91)g,(189.47±8.05)g;低密度混养与分养对虾产量分别为(264.97±11.46)g,(135.82±7.27)g]。混养模式水体中的浮游植物的含量高于分室循环水模式中的含量,其它水化学指标间没有明显差异。分养循环水模式下虾室中水体过清、透明度过高,从而导致水中光照强度和光色的变化可能是其中对虾生长较慢的主要原因。  相似文献   

20.
以分析季节对大西洋声传播的影响为研究目的,应用WOA13季节平均数据和Mackenzie声速经验公式,分析了大西洋声道轴和表层声速值的四季分布情况,再利用BELLHOP水声学数值模型,在设定的声源频率1 000 Hz和掠射角15°~-15°情况下,仿真计算选用位置点5 m深度声源的四季声传播情况,研究结果表明:按照实际的季节,大西洋会聚区波导的反转深度,冬季最小,春季增大,夏季最大,秋季再减小.在中低纬度的典型声速剖面下,夏季会聚区跨度最大,秋季和冬季递减,春季最小,第一会聚区的四季跨度差在1 km内.在高纬度的正梯度声速剖面下,夏季声传播距离最远,秋季减小,冬季最近,春季增大,且传播距离的差别较大.各变化规律均以四季循环更替的形式出现.  相似文献   

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