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71.
弧后盆地的形成与演化探讨:以东亚陆缘区为例   总被引:3,自引:2,他引:3  
通过对弧后盆地大地构造体制的讨论,作者认为基属活化作用的产物根据地质,地球物理,地球化学等资料的分析,作者提出结论认为,由于东亚岛弧系岩石圈的均衡作用及海沟外侧冷却大洋岩石圈块体的下沉拖曳牵引等作用,使软流圈在岛弧系下方发生分异,这种分异作用带动东亚陆缘向东扩张,从而产生弧后的张开。  相似文献   
72.
A preliminary study of carbon system in the East China Sea   总被引:1,自引:0,他引:1  
In the central part of the East China Sea, the activity of CO2 in the surface water and total carbonate, pH and alkalinity in the water column were determined in winter and autumn of 1993. The activity of CO2 in the continental shelf water was about 50 ppm lower than that of surface air. This decrease corresponds to the absorption of about 40 gC/m2/yr of atmospheric CO2 in the coastal zone or 1 GtC/yr in the global continental shelf, if this rate is applicable to entire coastal seas. The normalized total carbonate contents were higher in the water near the coast and near the bottom. This increase toward the bottom may be due to the organic matter deposited on the bottom. This conclusion is supported by the distribution of pH. The normalized alkalinity distribution also showed higher values in the near-coast water, but in the surface water, indicating the supply of bicarbonate from river water. The residence time of the East China Sea water, including the Yellow Sea water, has been calculated to be about 0.8 yr from the excess alkalinity and the alkalinity input. Using this residence time and the excess carbonate, we can estimate that the amount of dissolved carbonate transported from the coastal zone to the oceanic basin is about 70 gC/m2/yr or 2 GtC/yr/area-of-global-continental-shelf. This also means that the rivers transport carbon to the oceans at a rate of 30 gC/m2/yr of the coastal sea or 0.8 GtC/yr/ area-of-global shelf, the carbon consisting of dissolved inorganic carbonate and terrestrial organic carbon decomposed on the continental shelf.  相似文献   
73.
北黄海盆地区域地质特征   总被引:6,自引:1,他引:6  
北黄海盆地位于黄海的北部,由于勘探程度低,研究投入少,使得它成为我国迄今为止尚未发现油气的惟一海区。随着我国在南黄海盆地和朝鲜在北黄海盆地东部发现油气,如何实现北黄海盆地油气突破,成为我们研究的焦点。结合该区现有资料和前人研究成果,对北黄海盆地的地球物理场和地质构造特征进行了全面的论述,并在此基础上,对该区油气资源远景作了初步评价。  相似文献   
74.
通过对建林边滩沉积物粒度分布、粒度参数及水体流变性质的分析,阐述了黄河三角洲上河道水流属于牵引流范畴,与低含沙水流无本质上的差别,并探讨沉积物搬运和沉积的基本特征。  相似文献   
75.
从山羊寨哺乳动物化石看柳江盆地洞穴堆积的时代与环境   总被引:3,自引:0,他引:3  
山羊寨洞穴堆积是河北省秦皇岛“柳江盆地地质遗迹自然保护区”众多溶洞的洞穴堆积之一,其中含有大量的哺乳动物化石。经发掘整理与鉴定,采用生物地层学和哺乳动物生活习性对比分析方法,确定其时代为Qp^2.3,晚于辽宁营口“金牛山下组动物群”,早于河北“迁安爪村动物群”和内蒙古“萨拉乌苏动物群”,其特征反映了中国华北与东北过渡地带中更新世晚期至晚更新世早期的哺乳动物面貌,并反映出当时区内森林、森林草原、草原和水域条件等生态环境的多次时空变化。如此众多哺乳动物化石的发现增加了保护区遗迹资源的多样性和保护价值;为该区洞穴堆积的时代与沉积环境研究提供了依据;改变了区内洞穴堆积仅为中更新世地层的认识。  相似文献   
76.
南沙群岛西南陆架区条尾鲱鲤资源状况研究   总被引:1,自引:0,他引:1  
黄梓荣 《台湾海峡》2006,25(2):273-278
根据2003年南沙群岛西南陆架区春秋两季调查资料,分析南沙群岛西南陆架区条尾鲱鲤的资源现状.结果表明,渔获率有明显的季节变动,秋季(1.76kg/h)高于春季(0.08kg/h),春季密集分布于91~100m水深,秋季密集分布于71~80m水深.其群体组成也有季节差异,春季的平均体长、平均体重大于秋季,春季优势体长组为101~110mm,秋季优势体长组为91~100mm,渔获中不足1龄鱼占多数,其资源密度及现存资源量分别为12.02kg/km^2 和880.82t,现存资源量只有原始资源量的54.92%,该鱼种资源已接近衰退状态.文中并讨论合理利用该资源的措施.  相似文献   
77.
“八五”、“九五”期间我国天然气探明储量幅度增长,大中型气田分布规律的深化研究密切关系到天然气储量的增长势头。克拉通盆地下层序古隆起控气理论和上层序非构造圈闭控气机理是克拉通大中型气田富集分布的基本规律,前陆盆地是我国富气盆地类型之一,其冲断带下盘大型造圈闭群、前缘斜坡岩性尖灭区带与浅层次生气藏、前缘隆起上的断块圈闭群等是该类盆地有利的天然气富集区带。依据充分的地质资料,结合我国天然气勘探实际,提  相似文献   
78.
苏北盐城凹陷复合含油气系统   总被引:1,自引:0,他引:1  
苏北盐城凹陷含油气系统可划分为上、下2个复合含油气系统。上复合含油气系统,即Pz、K2p、K2t(生)-K2t、E1f1(储)一E1f1 E1f2(盖),古生界、中生界浦口组和泰州组为烃源岩层,泰州组和阜宁组一段为储集层,阜宁组一段顶部至二段暗色泥岩为区域盖层,油气沿深大断裂运移,油气成藏关键时刻在古近纪晚期至新近纪早期,有利勘探区在深大断裂附近的中、新生界发育地区;下复合含油气系统,即Pz、K2p(生)-Pz、K2p(储)-K2p3 K2p4(盖),油气通过断层或不整合运移,油气大量生成的关键时刻为古近纪早期,该系统中气藏分布在古生界被中生界覆盖地区。  相似文献   
79.
The North Yellow Sea Basin ( NYSB ), which was developed on the basement of North China (Huabei) continental block, is a typical continental Mesozoic Cenozoic sedimentary basin in the sea area. Its Mesozoic basin is a residual basin, below which there is probably a larger Paleozoic sedimentary basin. The North Yellow Sea Basin comprises four sags and three uplifts. Of them, the eastern sag is a Mesozoic Cenozoic sedimentary sag in NYSB and has the biggest sediment thickness; the current Korean drilling wells are concentrated in the eastern sag. This sag is comparatively rich in oil and gas resources and thus has a relatively good petroleum prospect in the sea. The central sag has also accommodated thick Mesozoic-Cenozoic sediments. The latest research results show that there are three series of hydrocarbon source rocks in the North Yellow Sea Basin, namely, black shales of the Paleogene, Jurassic and Cretaceous. The principal hydrocarbon source rocks in NYSB are the Mesozoic black shale. According to the drilling data of Korea, the black shales of the Paleogene, Jurassic and Cretaceous have all come up to the standards of good and mature source rocks. The NYSB owns an intact system of oil generation, reservoir and capping rocks that can help hydrocarbon to form in the basin and thus it has the great potential of oil and gas. The vertical distribution of the hydrocarbon resources is mainly considered to be in the Cretaceous and then in the Jurassic.  相似文献   
80.
The eastern Mediterranean (Levantine Basin) hydrography and circulation are investigated by comparing the results of a high-resolution primitive equation model with observations. After a 10-year integration, the model is able to reproduce the major water masses and the circulation patterns of the eastern Mediterranean. Comparisons with the POEM hydrographical observations show good agreement. The vertical distribution of the water masses matches that of the observations quite well in terms of monthly mean. The model surface circulation is in agreement with circulation schemes derived from recent observations. Some well-known mesoscale features of the upper thermocline circulation are also realistically reproduced. In agreement with satellite observations, the model shows that high-energy mesoscale eddies dominate the upper thermocline circulation in the southern and the central parts of the Levantine Basin. Most of the Atlantic Water follows the north African coast and forms a strong coastal jet near the Libyan coast rather than forming the Mid-Mediterranean Jet described by several authors. The sub-basin circulation shows a strong seasonal signal. A strong and stable current flows along the isobaths in winter, becoming weaker and with more meanders in summer. The mesoscale eddies throughout the whole basin are more energetic in summer than in winter.  相似文献   
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