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1.
The CTD (conductivity, temperature and depth) data collected by six China-Korea joint cruises during 1996-1998 and the climatological data suggest that the seasonal variability of average salinity in the Yellow Sea (Sa) presents a general sinusoid pattern. To study the mechanism of the variability, annual cycles of Sa were simulated and a theoretical analysis based on the governing equations was reported.Three main factors are responsible for the variability: the Yellow Sea Warm Current (YSWC), the Changji-ang (Yangtze) River diluted water (YRDW) and the evaporation minus precipitation (E-P). From December to the next May, the variability of Sa is mainly controlled by the salt transportation of the YSWC. But in early July, the YSWC is overtaken and replaced by the YRDW which then becomes the most important controller in summer. From late September to November, the E-P gradually took the lead. The mass exchange north of the 37癗 line is not significant.  相似文献   

2.
黄河三角洲南部冲洪积扇区浅层地下水由于长期大量开发利用,早已形成了区域性漏斗群。通过对漏斗区地下水赋存条件和调蓄条件的分析,提出了由新建的引黄主干渠引黄河水,采用河渠、坑塘内施工回灌引渗,以及丰水期大气降水地表径流拦蓄引渗和引黄河水引渗回灌联合调度的方案,并从调蓄资源增量、调蓄可行性和调蓄效益等方面进行了论证。  相似文献   

3.
对菏泽黄泛平原地区浅层地下水资源潜力进行了分析,采用地下水开采潜力指数法来分析开采程度的强弱,判定其开采潜力。全区浅层地下水尚处于正均衡状态,属有开采潜力区。为保持区内地下水资源的可持续利用,将全区按照科学合理的采、补、控、改等原则分为增源区、增采区、节水区和咸水改造利用区分区。  相似文献   

4.
We investigated the abundance of different picophytoplankton groups and the phytoplankton pigment ratio in relation to environmental factors such as nutrients and suspended solids along a salinity gradient in the Changjiang River Estuary.The average numbers of Synechococcus spp.(Syn) and picoeukaryotes (Euk) were (2.7 ±5.1)×l03 and (1.1±1.4)×l03 cells mL-1,respectively.Prochlorococcus spp.(Pro) was only found in the high-salinity brackish water with the concentration of 3.0× 10^3 cells mL-1.Syn and Euk numbers both tended to increase offshore and Syn showed a larger variation in cell abundance than Euk.The contribution of picophytoplankton to total phytoplankton biomass increased with increasing salinity and decreasing nutrient concentrations from the estuary to the open ocean.The response of different picophytoplankton groups to environmental variables was different.Water temperature was more important in its control over Euk than over Syn,while nutrients were more important in their influence over Syn than over Euk.Phytoplankton pigment ratios were different in the three different ecological zones along the salinity gradient (i.e.,freshwater zone with 0-5 range,fresh and saline water mixing zone with 5-20 range,and high-salinity brackish water zone with 20-32 range),where three different phytoplankton communities were discovered,suggesting that phytoplankton pigment ratios can be considered as a complementary indicator of phytoplankton community structure in the Changjiang River Estuary.  相似文献   

5.
A modified lower trophic ecosystem model(NEMURO) is coupled with a three-dimensional hydrodynamic model for an application in the central Yellow Sea. The model is used to simulate the horizontal distributions and annual cycles of chlorophyll-a and nutrients with results consistent with historical observations. Generally, during the winter background and spring bloom periods, the exchange with neighboring waters constitutes the primary sources of nutrients. Howerver, during the winter background period, the input of silicate from the layer deeper than 50 m is the most important source that contributes up to 60% to the total sources. During the spring bloom period, the transport across the thermocline makes significant contribution to the input of phosphate and silicate. During the post spring bloom period, the relative contribution of relevant processes varies for different nutrients. For ammonium, atmospheric deposition, excretion of zooplankton and decomposition of particulate and dissolved nitrogen make similar contributions. For phosphate and silicate, the dominant input is the transport across the thermocline, accounting for 62% and 68% of the total sources, respectively. The N/P ratio averaged annually and over the whole southern Yellow Sea is up to 51.8, indicating the potential of P limitation in this region. The important influence of large scale sea water circulation is revealed by both the estimated fluxes and the corresponding N/P ratio of nutrients across a section linking the northeastern bank of the Changjiang River and Cheju Island. During the winter background period, the input of nitrate, ammonium, phosphate and silicate by the Yellow Sea Warm Current is estimated to be 4.6×1010, 2.3×1010, 2.0×109 and 1.2×1010 mol, respectively.  相似文献   

6.
温度和盐度对军曹鱼幼鱼生长与抗氧化酶活性的影响   总被引:2,自引:0,他引:2  
在实验室条件下,采用两因素交叉分组的方法,初步研究了环境因子(温度和盐度)对军曹鱼幼鱼肌肉抗氧化酶比活力的影响。温度设3个水平(26、29、32),盐度设4个水平(11、19、27、35),两个因素按其各自水平共产生12种组合。军曹鱼幼鱼在玻璃钢水槽内养殖20d后取样测定超氧化物歧化酶(SOD)、过氧化氢酶(CAT)和谷胱甘肽过氧化物酶(GPX)的比活力。结果表明:盐度因子诱导了军曹鱼的抗氧化应激反应,抗氧化酶活力随盐度降低而升高,SOD、CAT和GPX比活力分别从35时的17.74±3.38、19.44±2.66和13.70±2.99U/mg上升到11时的30.14±1.76、35.63±10.59和17.44±4.32U/mg;温度、盐度及因素间的交互作用对SOD和CAT比活力有显著影响(P<0.05);温度对GPX比活力无显著影响(P>0.05),而盐度及因素间的交互作用对GPX比活力影响显著(P<0.05)。  相似文献   

7.
基于遥感长时间序列的分析能够得到更加科学、完整、全面的特征规律,本文以黄河三角洲为研究区域,开展了生态指数遥感估算及分析研究。基于Google Earth Engine (GEE)分析了2000年以来逐年度归一化植被指数(NDVI)、湿度指数(Wet)、盐分指数(SI3)、遥感生态指数(RSEI),获得了完整、细致长时间序列的分析结果。考虑到黄河三角洲的区域特点,引入了盐分指数(SI3)与遥感生态指数(RSEI)相结合的评价分析方法。研究发现,自2011年以来研究区的生态环境指数呈上升趋势,生态环境持续改善。  相似文献   

8.
潍坊市北部的寿光、寒亭、昌邑等沿海地区,80年代初期就已形成地下水水位下降漏斗,导致海咸水对淡水含水层的入侵.本文根据监测资料,对该区海咸水入侵发展现状、危害程度及形成原因进行了探讨,并提出了防治对策.  相似文献   

9.
黄河三角洲盐渍土区土地整理实施及绩效评价   总被引:2,自引:1,他引:1  
该文以垦利县永安镇五村片省级土地整理项目为例,在对土地整理规划设计、实施管理和效益评价的基础上,提出了黄河三角洲盐渍土区土地整理项目绩效评价的重点内容、主要指标和基本思路,对于丰富黄河三角洲盐渍土区土地整理理论,规范和指导黄河三角洲盐渍土区土地整理实践具有重要的指导和现实意义。  相似文献   

10.
1 INTRODUCTION The Yellow Sea and the East China Sea are typical coastal Case-II waters with high sediment load and complicate optical properties. The total absorption coefficient of sea water is one of the main parameters influencing the calculation of o…  相似文献   

11.
从砂土路基液化机理人手,结合黄河三角洲地区地基土工程地质特征,对该地区路基砂土液化做现场振动试验,找出影响砂土路基液化的影响因素,主要内因有土体的密实度、含水量和土体中是否存在软弱区;主要外因有荷载的大小、作用时间和荷载频率。并针对砂土液化的内外因,结合青银高速公路强夯处理案例展开分析,提出了处理方法。  相似文献   

12.
生态环境状况评价是区域生态环境保护与管理的重要基础,脆弱生态区则是当前关注的热点区域。该文选择黄河三角洲脆弱生态核心区,利用3S(RS、GIS、GPS)数据、统计数据、野外实测数据等多元数据,构建并提取了7个反映生态环境状况的评价指标,用层次分析法确定各指标权重,以200m边长网格作为评价单元,通过指标叠加获取各单元分值,进而将生态环境状况划分为优、良、中、差、劣6个等级,得到了垦利区生态环境状况的评价结果,并进行了生态环境分区与分析。结果显示,垦利区的生态环境状况总体较差,生态环境状况优、良的比例仅占7.7%,差、劣的等级则占61.5%,生态环境状况从东北沿海向西南内陆呈变好趋势。与利用国家规程的评价结果相比,该研究能更加细致合理反映研究区生态环境等级变化。垦利区生态环境划分为稳定区、过渡区和脆弱区3个区,各区主要土地利用类型分别为耕地、盐荒地和滩涂,占各区面积的36.84%、31.85%和47.37%,生态环境稳定区要强化农田基本建设,控制建设用地规模,同时加强区内盐荒地的开发利用;生态环境过渡区应提高耕地集约化利用程度,加大土壤盐渍化改良力度,提高地表植被覆盖;生态环境脆弱区应适度水产养殖规模,防止海水侵蚀,加强天然林草地的保护。  相似文献   

13.
黄河三角洲地区靠近渤海湾,遍布滩涂湿地资源,生态环境比较复杂。该文通过建立“生态敏感性生态压力度”概念模型,构建生态环境脆弱性评价指标体系,通过数据标准化将指标统一量纲,最后根据数学模型计算评价区生态环境脆弱性指数,并分为5个等级。经计算,西北部沿海地区生态环境脆弱性等级较高,主要指湿地及盐渍化比较集中的东营市北部地区,南部地区相对较低,尤其是远离海岸线的地区。并针对评价中存在的问题进行了讨论。  相似文献   

14.
在收集分析大量最新资料基础上,阐述了黄河下游(山东段)存在的水质污染、地下水资源短缺,以及地面沉降、地裂缝、地面塌陷、砂土液化、土壤盐渍化、黄河堤防河道稳定性等主要生态环境地质问题,并提出了区内主要生态环境地质问题的防治对策,这对黄河下游(山东段)国土资源开发、防灾、黄河"治黄"与防洪减灾、地质生态环境保护及管理等,具有较高的参考价值。  相似文献   

15.
Thethreatagainstthecoastallowlandcausedbysea-levelriseisoneofthefocusesoftheworid'sat-tention.Thebestestimatevalueofglobaltheoreticalsea-levelriseinthe2lstcenturyisO.66m(SCOR,l99l)byworldwideauthoritativeorganizationsuchasIPCC(IntergovernmentPanelofClimateChange)etal.ThecrustofChangiiangDeltaissubsiding.Theaveragesubsidencerateinthelast2OOOaisl.2mm/a(PANetal.,l985).TheislandsoftheChangiiangRivermouthareaccumulatinglowlandislandsandtheirnat-uralelevationisbelowthehightidallevelofsprin…  相似文献   

16.
17.
Dilution incubations and Calanus sinicus addition incubations were simultaneously conducted at five stations in the Yellow Sea in June of 2004 to evaluate the impact of microzooplankton and Calanus sinicus on phytoplankton based on the Chlorophyll a (Chl-a) levels. The Chl-a growth rates (k) ranged from 0.60–1.67 d−1, while microzooplankton grazed the Chl-a at rates (g) of 0.29–0.62 dt-1. The addition of C. sinicus enhanced the Chl-a growth rate (Z) by 0.004–0.037 d−1 ind.−1 L. C. sinicus abundance ranged from 84.1–160.9 ind. m−3, which occupied 90.7%–99.1% of the copepod (>500 μm) population. The in-situ increase in phytoplankton by C. sinicus community was estimated to be 0.000 4–0.005 9 d−1. These results showed that microzooplankton were the main grazers of phytoplankton, while C. sinicus induced a slight increase in the levels of phytoplankton.  相似文献   

18.
The distributions of two ubiquitous fouling cheilostome bryozoans,Cryptosula pallasiana(Moll,1803)and W atersipora sp.,on a ship moored for almost six years in Qingdao Bay show diff erences with respect to illumination,C ryptosula being dominant on the side of the ship which was exposed to the sun and Watersipora dominating on the other side which was in shadow for most of the time.Competitive interactions for substrate space were nearly always won by Watersipora,which succeeded in overgrowing the edges of C ryptosula colonies regardless of the side of the ship.Reasons for the superiority of W atersipora in spatial competition with Cryptosula could include faster growth rate and the stronger feeding currents created by the larger lophophores of Watersipora.  相似文献   

19.
Since 2002, an artificial water and sediment regulation(AWSR) has been carried out, which largely reduced water and sediment discharged from the Yellow River into the Bohai Sea. Although the sediment transport in the Yellow River Mouth(YRM) has been observed and modeled intensively since AWSR, but preferentially for the non-storm conditions. In this study, a three-dimensional current-wave-sediment coupled model, DHI-MIKE numerical model, was used to examine the seasonal suspended-sediment transport in the YRM after the AWSR. Results show that the seasonal distribution of suspended-sediments in the YRM is dominated by wind and wave rather than river input. The major transport pathway of suspended-sediments is from the western Laizhou Bay to the Bohai Strait during the winter monsoon, especially in storm events. In addition, about 66% of the river sediments deposit within 30 km of the YRM, which is smaller than previous estimations. It suggests that the YRM has been eroded in recent decades.  相似文献   

20.
山东省海(咸)水入侵主要有面状、带状、脉状或树枝状和越流等4种入侵方式。气候、地形地貌、地质与水文地质、风暴潮是发生海(咸)水入侵的自然因素;地下水超采、上游修建蓄水工程、发展海水养殖、扩建盐田、河道采砂和海岸带工程建设等人为因素是诱发海(咸)水入侵的主要原因。提出了工程措施和非工程措施两种防治海(咸)水入侵的对策。  相似文献   

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