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海上溢油油膜厚度实验室模拟和理论模型对比研究   总被引:1,自引:0,他引:1  
溢油量是衡量溢油规模的关键指标,是处理溢油事故的重要依据。油膜厚度是确定溢油量的基本前提,是一个尚未解决的国际难题。实验室中模拟了不同阶段和不同环境条件下扩展油膜的厚度变化特征。结果表明,实验室模拟与理论模型分析具有基本一致的变化趋势,扩展速度与扩展时间成反比;温度是影响油膜厚度的重要因素,相同条件下,温度越高,油膜厚度越小;海水盐度会影响溢油扩展,但这种影响并未延伸到对油膜厚度的控制上。由于实验室模拟限定在平静海面条件下,并未考虑风和海流等扩展中不容忽视的因素,故与理论构建模型相比系数相差较大。通过对比分析,前期构建的理论模型更能准确地反映海洋溢油的实际情况,加之在实例验证中的较高准确性,该模型具有业务化实施和广泛推广的潜力。  相似文献   
2.
With sulfide increasingly recognized as an important parameter to assess the oxidation-reduction level in aqueous environment, research on its geochemical behavior is becoming important. Water samples collected in Bohai Sea(1–19 August, 2010), Yellow Sea(20–30 November, 2010) and East China Sea(3–17 June, 2010 and 1–10 November, 2010) were used to determine the occurrence and distribution of dissolved sulfide by methylene blue spectrophotometric method. Results show that:(1) horizontally, concentration of dissolved sulfide significantly varied from the coastal region to the open sea and profoundly influenced by physical processes. High values occurred in the river-sea boundary zone "marginal filter" due to rich riverine input, frequent upwelling and active exchange in shelf edge. Terrestrial input from adjacent rivers and the current cycling contributed to the high sulfide appeared in western Bohai Sea, eastern Shandong Peninsula, and northeast of Changjiang(Yangtze) River estuary. Especially, relative higher sulfide values occurred in Yellow Sea, which is consistent with the variation of salinity largely due to the hydrodynamic feature;(2) vertically, measurement of dissolved sulfide in bottom water was higher and more variable than that in surface water caused by the wind-induced resuspension and dissimilatory sulfate reduction. Moreover, nutrient-type profile clearly identified that oxidation plays a major role in the biogeochemistry cycle of sulfide in water;(3) seasonally, investigation for East China Sea in June and November reflected seasonal variation of Changjiang River Diluted Water, Kuroshio Current, and Taiwan Warm Current. Concentration in June was much higher than that sampled in November at most stations. Mean concentration of dissolved sulfide varied seasonally from 2.26 μg/L(June) to 1.16 μg/L(November) in surface and 3.00 μg/L(June) to 1.56 μg/L(November) in bottom. Progress in the field is slow and more effort is needed to ensure the accuracy and reliability of determination and estimate the natural or anthropogenic contribution of dissolved sulfide in ecosystems.  相似文献   
3.
长江口邻近海域水团特征与影响范围的季节变化   总被引:2,自引:0,他引:2  
吴晓丹  宋金明  李学刚 《海洋科学》2014,38(12):110-119
基于2009年—2011年调查资料,研究长江口及其邻近海域水体温度和盐度时空分布特征,剖析该海域水团特征与影响范围的季节变化。结果表明,从春末到秋初,长江水以高温形式向外海扩展,秋末至翌年春初,径流水以低温形式从河口流向东南。西北部海区受黄海冷水团影响,水温较低,东北部受南黄海西部逆时针环流影响,盐度较低,东南部海区受黑潮及分支台湾暖流影响,呈高温高盐状态。受径流量和季风季节差异,长江冲淡水影响一般夏季最强,扩展范围最大,秋末冬初最弱。其双向延伸趋势在夏季有最清晰表现,一支自河口向东北方向延伸,指向南黄海中部,一支穿过杭州湾口及舟山群岛一带沿岸南下,或自长江口向东南方向扩展。温度垂向变化表明夏季存在上升流,并明确处于以31.5°N,122.67°E为中心,在经纬方向上各达1°范围内。  相似文献   
4.
海上溢油近年来已成为恶化海洋生态环境、导致重大海洋资源损失的一种重要海洋灾害.海面溢油量是评价海上溢油事故威胁程度和确定溢油事故等级的重要指标,而溢油面积和油膜厚度的准确获得是评估溢油量的基础.文中系统总结了当今国内外海洋溢油面积和油膜厚度的监测方法,认为航空遥感和卫星遥感技术是获取海上油膜面积的有效手段,基于光学遥感和超声波原理的激光声学遥感器是最具发展潜力的油膜厚度测量技术.此外,通过构建油膜扩展模型来估算油膜厚度也不失为一种简单而有效的方法,其最大特点是应用范围广,不受时空、气候条件影响,实例分析验证结果有很高的准确性(高达96%),这种方法将有望于业务化监测运行来获取油膜厚度,从而比较准确地获得溢油量.  相似文献   
5.
Dissolved selenium in the Changjiang(Yangtze) Estuary and its adjacent waters was determined by hydride generation atomic fluorescence spectrometry to elucidate the source, behavior in estuary, adsorption-desorption process and biological role. In surface water, Se(IV) concentration ranged 0.05–1.14 nmol/L and Se(VI) concentration varied 0.01–1.20 nmol/L, with the means of 0.76 and 0.49 nmol/L, respectively. In bottom water, Se(IV) content varied 0.03–0.27 nmol/L and Se(VI) content ranged 0.04–0.85 nmol/L, with the averages of 0.10 and 0.40 nmol/L, respectively. High level of Se(IV) was observed near the shore with a significant decrease towards the open sea, suggesting the continental input from the adjacent rivers. Large value of Se(VI) was found in bottom water, reflecting the release from suspended sediment. Besides, high value appeared in the same latitude of the Changjiang Estuary and Hangzhou Bay illustrated the effect of lateral mixing and the long-distance transport of selenium. Se(VI), more soluble, occupied higher percentage in aqueous environment. The presence of Se(IV) resulted from the degradation of residue and the reduction of Se(VI) under anaerobic condition. The positive relationship to suspended particulate material(SPM) and negative correlation to depth indicated that Se(IV) tended to be released from the high density particulate matter. Instead, Se(VI) content did not significantly relate to SPM since it generally formed inner-sphere complex to iron hydroxide. Se(IV) content negatively varied to salinity and largely depended on the freshwater dilution and physical mixing. While, Se(VI) level deviated from the dilution line due to the in situ biogeochemical process such as removal via phytoplankton uptake and inputs via organic matter regeneration. As the essential element, Se(IV) was confirmed more bioavailable to phytoplankton growth than Se(VI), and moreover, seemed to be more related to phosphorus than to nitrogen.  相似文献   
6.
With the implementation of the GEOTRACES program, the biogeochemical cycle and distribution of tellurium (Te) in marine environments are becoming increasing environmental concerns. In this study, the concentration of dissolved Te in the Changjiang (Yangtze) River estuary and nearby waters was determined in May 2009 by hydride-generation atomic fluorescence spectrometry to elucidate the abundance, dominant species, distribution, and relationship with environmental factors. Results show that: (1) dissolved Te was low owing to its low abundance in the Earth's crust, high insolubility in water, and strong affinity to particulate matter; (2) Te(IV) and Te(VI) predominated in surface water. Te(VI) was the dominant species in bottom water, and Te(IV) was the minor species; (3) Horizontally, resulting from low phytoplankton metabolism and the weak reduction from Te(VI) to Te(IV) in the shore, Te(IV) was concentrated in the central zone instead of the coastal region. However, Te(VI) was abundant near the mouth of the Changjiang River where the Changjiang water is diluted and in the area to the south where the Taiwan Warm Current invaded. In the adsorption-desorption process, Te(IV) was negatively related to suspended paniculate matter (SPM), indicating that it was adsorbed by particulate matter. While for Te(VI), the positive correlation with SPM suggested that it was desorbed from the solid phase. In the estuary, dissolved Te had a negative correlation to salinity. However, it deviated from the dilution line in high-salinity regions due to the invasion of the Taiwan Warm Current and the mineralization of organic matter. The relationship between Te(IV) and SPM nutrients indicated that it was more bioavailable and more related to phosphorus than to nitrogen. Progress in the field is slow and more research is needed to quantify the input of Te to the estuary and evaluate the biochemical role of organisms.  相似文献   
7.
南黄海水体富营养化日益加剧,作为我国绿潮孕育和暴发的主要场所,其水体富营养化的形成演变机制仍未完全清楚。为解析该区沉积物中营养元素磷(P)的释放特征和对水体富营养化的潜在贡献,采用改进的连续浸取法(SEDEX)分析了表层沉积中磷的含量水平和赋存形态,探讨了其生物有效性和对水体富营养化态势的影响。研究表明:总磷(TP)平均值为514 mg/kg,处于轻度污染,以无机磷(IP)为主要赋存形态(76.39%),有机磷(OP)次之,IP又以Ca-P为主(30.17%)。各形态磷平均贡献依次为OP>Ca-P>De-P>Fe-P>Ex-P。Ca-P和De-P属于生物不可利用磷,在沉积物中稳定性较强,在较粗粒径沉积物中含量较高。Ex-P和Fe-P易吸附于细颗粒沉积物表面,pH、温度、水体动力和氧化还原条件等是影响其吸附-释放的主要因素,南黄海海水酸化将促进Ex-P和Fe-P向海水释放,加剧海水富营养化程度。OP变化趋势显示,近岸以陆源输入为主,远岸生物过程具有重要贡献。南黄海生物有效磷(BAP:Ex-P+Fe-P+OP)平均值为240.1 mg/kg,占TP的46.4%,表明...  相似文献   
8.
渤海主要渔业资源结构的演变分析   总被引:2,自引:0,他引:2  
通过对现有资料的系统分析,简化了渤海生态系统食物网,并剖析了近50年来渤海主要渔业资源结构的变化特征,这对进一步阐明渤海生态系统动力学的变化特征以及研究渔业资源衰退的原因有重要的科学意义。研究表明,渤海主要鱼类可聚为4类:游泳动物食性鱼类、底栖动物食性鱼类、浮游动物食性鱼类和腐屑食性鱼类,在此基础上渤海生态系统食物网可简化为3条食物链:浮游植物→浮游动物→浮游动物食性鱼类→游泳动物食性鱼类(第一条食物链);浮游植物和碎屑→底栖动物→底栖动物食性鱼类和头足类→游泳动物食性鱼类(第二条食物链);碎屑→腐屑食性鱼类(第三条食物链)。20世纪50年代末以来,第一条食物链渔业资源已取代第二条食物链渔业资源成为最主要的渔业资源,第三条食物链渔业资源生物量百分比呈上升趋势,近年来已成为继第一条食物链渔业资源的第二大类渔业资源。渔业捕捞、渤海次级生产力结构的变化以及各渔业资源生物自身生长和繁殖特点的不同是导致渤海主要渔业资源结构变化的重要因素。  相似文献   
9.
海洋环境中的溢油风化过程   总被引:1,自引:0,他引:1  
<正>随着石油工业和海上石油开发的迅速发展,水上石油运输日益繁忙,因海损、触礁、机械故障、人为操作不当等导致的石油溢油事故也日益增多,特别是大规模的溢油事故,其污染危害之严重,已为举世瞩目。研究溢油进入海洋环境后的行为,对于确定预警方案和相应治理措施具有重要意义。  相似文献   
10.
海洋溢油油膜厚度影响因素理论模型的构建   总被引:4,自引:0,他引:4  
溢油扩展过程中油膜厚度的准确获得是进行溢油量估算和损失评估中需要解决的关键科学问题,通过揭示溢油扩展中油膜厚度的理论变化特征来获得油膜厚度随溢油性质和海洋环境条件变化的定量关系,构建海洋溢油油膜厚度影响因素理论模型,对溢油量估算至关重要。依据Lehr提出的油膜椭圆扩展模型构建了油膜厚度随溢油性质和海洋环境条件变化的定量关系,剖析了溢油扩展过程中油膜厚度的变化特征。油膜厚度在溢油发生后最初2小时内会迅速减小,此后衰减速度逐渐减小直至趋于稳定。对于原油来说,通常在6~7h内会达到最小油膜厚度,扩展终止。溢油密度对油膜厚度的影响表现为密度大的溢油初始厚度大,达到平衡的时间也较长;风速对于油膜扩展的影响巨大,风速越大越有利于油膜的扩展,油膜厚度越小;温度也通过影响溢油油膜密度来影响油膜厚度的变化,一定范围内,高温促进油膜的扩展,加快油膜厚度的变化速度。除溢油密度、风速和温度外,溢油方式、海流、潮汐和溢油时间等因素也会影响油膜厚度的变化。  相似文献   
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