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81.
渤海湾天津近岸海域水环境空间变异分析   总被引:6,自引:0,他引:6       下载免费PDF全文
朱琳  聂红涛  陶建华 《海洋学报》2007,29(6):134-140
由于海岸带的地理条件和海洋动力特性的复杂性以及人类开发活动对海岸带的影响,近岸海域的生态环境系统在空间分布上有很大的变异性.基于现场实测资料,建立系统的空间变异分析模型,对海岸带生态环境空间变化规律进行分析,可以充分了解不同区域的污染特征和变化趋势.应用所构建的空间变异分析模型对渤海湾天津近岸海域的水环境特性进行分析,结合对应年份的入海流量及其变化,分析了天津渤海湾海岸带污染的主因子和区域水环境的分布特征,结果可以对海洋功能区的划分和水环境综合评价结果进行验证和补充.  相似文献   
82.
本文研究浙江近海1970年到1992年鲐鱼渔获量变化与Elnino现象的关系,结合捕捞强度,长江中下游汛期(4—9月)降水量距平年际变化综合分析,探讨浙江近海鲐鱼渔获量变动规律,为合理开发渔业资源提供科学依据。  相似文献   
83.
1 .IntroductionTheglobalairtemperatureroseabout 0 .5~ 0 .6°Coverthepast 2 0thcentury ,andtheglobalmeansealevelincreasedbyabout2 0cmduringtheperiod .Theregionalmeansealevelriseswiththerisingglobalmeansealevel.Zuoetal.( 1 997)indicatedthatthemeanrisingrateofabsolutemeansealevelalongtheChinacoastontheassumptionofunifiedisostaticdatumis 2mm a .Woodworth( 1 999)analyzedsealevelspanning 1 76 8tothepresentinLiverpool,andobtainedaseculartrendforheperiodupto 1 880of0 .39± 0 .1 7mm a ,andatrendfort…  相似文献   
84.
五个短蛸群体等位基因酶的遗传变异   总被引:11,自引:1,他引:11  
采用水平淀粉凝胶电泳技术研究了山东沿海莱州(LZ),烟台(YT)、青岛(QD),日照(RZ)和大连(DL)五地短蛸自然群体的等位基因酶遗传变异。分析了AAT,ALP,EST,GRS,G6PD,SDH,CAT,SOD,IDH,GPI,PGM,G3PD,MPI,ME,MDH,CK,AK等同工酶在短蛸外套肌和肝脏组织中的表达情况,并对同工酶进行了生化遗传分析,LZ,YT,QD,RZ,DL五个群体的多态位点比例分别为15%,5%,10%,10%,10%(P0.99),群体平均杂合度观测值分别为0.024,0.001,0.009,0.007,0.006,平均位点有效等位基因数分别为1.200,1.022,1.061,1.103,1.077。结果表明,LZ群体的遗传多样性较高,同时,各群体中普遍存在杂合子缺失现象,对五个群体的遗传距离进行聚类分析,构建了系统树图。  相似文献   
85.
86.
Density, biomass and community structure of macrofauna were estimated together with several sediment characteristics at seven stations ranging from 208 m to 4460 m water depth along the OMEX transect in the Goban Spur area (NE Atlantic) during three seasons (October 1993, May 1994, and August 1995). Median grain size decreased with increasing water depth and showed no differences between the seasons. The percentages of organic carbon and total nitrogen were highest at mid-slope depths (1000 to 1500 m), and were significantly higher in August at the upper part of the slope to a depth of 1500 m. The C:N ratio in the surface layer amounted to 7 to 8 in May, 10 to 12 in August and 14 to 17 in October at all stations (except the deepest at 4460 m, where it was 11 in May and August), indicating arrival of fresh phytodetritus in May, and therefore seasonality in food input to the benthos. Densities of macrofauna decreased exponentially with increasing water depth. Significantly higher densities of macrofauna were found in May at the upper part of the slope to a depth of 1500 m. These differences were mainly due to high numbers of postlarvae of echinoids at the shallowest station and ophiuroids at the deeper stations. Biomass values also decreased with increasing water depth, but biomass was relatively high at the 1000 m station and low at 1500 m, due to relatively high and low mean weights of the individual macrofaunal specimens. No significant differences in biomass were found between the seasons. Respiration was high (15 to 20 mgC·m−2·d−1) in May at the upper part of the slope to a depth of 1000 m and low (1–3 mg C·m−2·d−1) at the deeper part. At the shallowest stations to a depth of 1000 m respiration was highest in May, at the mid-slope stations (1400–2200 m) it was highest in August, whereas the deepest stations (3600 to 4500 m) did not show any differences in respiration rates. In conclusion; seasonal variation in organic input is reflected in denstiy, community structure and activity of the macrofauna along the continental slope in the NE Atlantic.  相似文献   
87.
长江口羽状锋海区浮游植物的生态研究:—昼夜分布动态   总被引:5,自引:0,他引:5  
本文对长江口羽状锋海区浮游植物的昼夜变动进行了初步研究,结果表明,浮游植物数量的昼夜变化明显,潮汐作用是影响数量昼夜分布变化的主导因素,同时也与该地区浮游植物的水平分布有着密切的联系。  相似文献   
88.
徐映深  高中和 《台湾海峡》1992,11(4):368-371
上元-坑园牡蛎礁位于高潮位以下3m,主要成分为长牡蛎和近江牡蛎,其~(14)C年龄为3043±82a,B.P.。据此推算出罗源湾一带海岸处于缓慢上升状态,速率为1.15mm/a。根据上元-坑园牡蛎礁的上述特征,并结合断块差异升降运动的表现,作者认为这一地区中、晚全新世以来以“陆动型”海平面变化占主导地位。  相似文献   
89.
根据2002年8月7~8日对虾工厂化养成中后期A、B代表池的实测数据,分析讨论了该时期养殖水体中环境要素的变化特征及其相互关系.结果表明:研究水体水温、盐度和溶解氧含量适宜.日变化幅度不大.但pH值略为偏低,而COD值明显偏高.与该时期投饵量大,残饵及排泄物明显增加有关.但对A池来说,生物作用的影响占主导地位,而对B池而言.则以化学过程影响为主.  相似文献   
90.
In order to investigate the validity of buoy-observed sea surface temperature (SST), we installed special instruments to measure near-surface ocean temperature on the TRITON buoy moored at 2.07°N, 138.06°E from 2 to 13 March 2004, in addition to a standard buoy sensor for the regular SST measurement at 1.5-m depth. Large diurnal SST variations were observed during this period, and the variations of the temperatures at about 0.3-m depth could be approximately simulated by a one-dimensional numerical model. However, there was a notable discrepancy between the buoy-observed 1.5-m-depth SST (SST1.5m) and the corresponding model-simulated temperature only during the daytime when the diurnal rise was large. The evaluation of the heat balance in the sea surface layer showed that the diurnal rise of the SST1.5m in these cases could not be accounted for by solar heating alone. We examined the depth of the SST1.5m sensor and the near-surface temperature observed from a ship near the buoy, and came to the conclusion that the solar heating of the buoy hull and/or a disturbance in the temperature field around the buoy hull would contribute to the excessive diurnal rise of the SST1.5m observed with the TRITON buoy. However, the temperature around the hull was not sufficiently homogenized, as suggested in a previous paper. For the diurnal rise of the SST1.5m exceeding 0.5 K, the daytime buoy data became doubtful, through dynamics that remain to be clarified. A simple formula is proposed to correct the unexpected diurnal amplitude of the buoy SST1.5m.  相似文献   
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