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991.
992.
在天然气水合物的地震资料解释过程中,常规(叠加和偏移)地震剖面上难以识别BSR、水合物成矿带以及游离气带的位置。通过多年的实践,笔者认为AVO(Amplitude Versus Offset)反演、波阻抗反演、地震瞬时属性和能量半衰时剖面,能够较好地揭示水合物的地球物理异常特征,从而给识别水合物和划分水合物的存在区域提供了有力的证据。  相似文献   
993.
1 Introduction In recent years rapid economic developmentbadly needs energy resources. Exploration andexploitation of more kinds of energy resources shouldbe intensified to meet this need. According to presentliterature, oil/gas fields, coal fields as we…  相似文献   
994.
995.
Abstract:  Pre-contact Māori regarded land and water as a single entity, with a common regime of resource management practices. Underpinning these was a world-view that involved unique spiritual concepts, the most important of which was mauri: the notion that a body of water had its own life-force. Waters were classified according to the state of their mauri. The paper outlines traditional approaches and how they are applied today.  相似文献   
996.
新疆油气资源开发前景展望   总被引:1,自引:0,他引:1  
康玉柱 《干旱区地理》2006,29(2):163-169
新疆主要沉积盆地有30多个,总面积90×104km2,油气资源十分丰富,油气资源量365×108t。虽然经过50多年油气勘探历程,已发现80多个油气田,但勘探潜力巨大。笔者从目前勘探形势,油气勘探阶段,资源转化率、形成大油气田地质条件及油气资源发展战略等方面进一步论述新疆是我国油气资源主要接替区。  相似文献   
997.
俄罗斯和中亚五国地域辽阔,土地、森林、水、能源等自然资源丰富,尤其是有色金属矿藏,种类配套齐全,在世界都占有重要地位。俄罗斯和中亚五国与中国在地缘、历史和文化等多方面有着悠久的历史,具有资源开发、经贸合作和科技交流的国际背景和有利条件。俄罗斯和中亚五国十分重视资源开发和原料出口,向主要经济合作伙伴推销资源产品,并很快引起许多国家,尤其是经济发展较快国家的重视。在未来的几年中,中国与俄罗斯和中亚五国在土地、电力、建材、机械、畜牧业、信息、交通等领域都有着广阔的合作空间。可以说,中国与俄罗斯和中亚五国及其辐射地区市场潜力巨大,待开发的领域空白点较多,特别是里海、西伯利亚的石油和天然气,是21世纪全球最具能源开发前景的地区,而能源勘探与开采领域则是我们未来需要重点发展合作的领域。但是,中亚国家的原料型经济倾向,参与世界经济一体化程度不足,生产和社会基础薄弱,这些问题都阻碍着中亚国家的可持续发展。特别是中亚国家的加工工业和轻工业相对落后,大部分日用消费品依靠进口。这是我国在中亚区域经济合作中充分发挥市场优势、加工业优势的有利条件。所以,资源和经济技术的互补性,对发展中国与中亚五国和俄罗斯双边的区域经济合作都将起到积极作用。展望21世纪的俄罗斯、中亚五国与中国的经贸合作关系,根据俄罗斯和中亚各国资源状况实地调查和统计资料等,对区域资源开发现状与潜力进行了分析,对共同面对的问题,合作的基础和条件及合作前景,都进行了探讨。  相似文献   
998.
产业结构演进与山区自然资源贡献度排序   总被引:3,自引:1,他引:2  
王青  姚寿福  张宇  周后珍 《山地学报》2004,22(3):292-297
通过建立资源与产业结构演进的一般模式,系统论述山区自然资源对区域发展的贡献.研究表明就经济增长的贡献度而言,传统意义上曾经在山区经济发展中起关键作用的矿产资源、耕地资源、衣食类及轻工业原料类生物资源,其地位和作用正在下降;而特色生物资源、旅游资源、水能资源正成为21世纪前期推动山区发展的新动力.进一步的定量分析表明,新时期山区资源对社会经济发展的重要度(贡献度)排序如下生物资源(0.239)>旅游资源(0.204)>水资源(0.198)>土地资源(0.175)>矿产资源(0.095)>气候资源(0.089),这一排序结果亦可作为实施与确定中国山区资源开发优先次序的参考依据之一.  相似文献   
999.
Sustaining a developed economy and expanding a developing one require the use of large volumes of natural aggregate. Almost all human activity (commercial, recreational, or leisure) is transacted in or on facilities constructed from natural aggregate. In our urban and suburban worlds, we are almost totally dependent on supplies of water collected behind dams and transported through aqueducts made from concrete. Natural aggregate is essential to the facilities that produce energy—hydroelectric dams and coal-fired powerplants. Ironically, the utility created for mankind by the use of natural aggregate is rarely compared favorably with the environmental impacts of mining it. Instead, the empty quarries and pits are seen as large negative environmental consequences. At the root of this disassociation is the philosophy of environmentalism, which flavors our perceptions of the excavation, processing, and distribution of natural aggregate. The two end-member ideas in this philosophy are ecocentrism and anthropocentrism. Ecocentrism takes the position that the natural world is a organism whose arteries are the rivers—their flow must not be altered. The soil is another vital organ and must not be covered with concrete and asphalt. The motto of the ecocentrist is man must live more lightly on the land. The anthropocentrist wants clean water and air and an uncluttered landscape for human use. Mining is allowed and even encouraged, but dust and noise from quarry and pit operations must be minimized. The large volume of truck traffic is viewed as a real menace to human life and should be regulated and isolated. The environmental problems that the producers of natural aggregate (crushed stone and sand and gravel) face today are mostly difficult social and political concerns associated with the large holes dug in the ground and the large volume of heavy truck traffic associated with quarry and pit operations. These concerns have increased in recent years as society's demand for living space has encroached on the sites of production; in other words, the act of production has engendered condemnation. Many other environmental problems that are associated with dust and noise and blasting from quarry and pit operations have been reduced through the efficient use of technology. Recycling concrete in buildings, bridges, and roads and asphaltic pavements will ultimately reduce the demand for virgin natural aggregate. The impact created by the large holes in the ground required for the mining of natural aggregate can be greatly reduced by planning their reclamation before mining begins.  相似文献   
1000.
The recent earthquakes in California and Japan have shown the fundamental role that the road infrastructure plays in emergencies. In fact, only the maintenance of a sufficient level of efficiency can help to quickly reach the affected areas and thus avoid further serious consequences. The necessity of guaranteeing the functionality of the transport network during seismic events therefore requires seismic risk planning extended also to the road infrastructures in order to support the management of post-earthquake emergencies. Analogously it is fundamentally important to have analysis instruments of the road system able to preventatively evaluate the effects of earthquakes in order to identify possible emergencies, therefore preparing a program of intervention to reduce seismic risk on road networks. This paper proposes a methodology for the evaluation of seismic risk of road infrastructures according to the following points:Study of seismic hazard of the site for the definition of a seismic scenario using attenuation models in relation to historical seismology and the geological and tectonic characteristics of the territory;Analysis of the direct exposure connected to the probability of the presence of road users on the different parts of the network directly exposed to the seismic event;Analysis of the indirect exposure relative to the distribution of the population and the infrastructures for which post-earthquake accessibility must be guaranteed;Evaluation of the functional vulnerability in relation to the potential replaceability of damaged stretches considering network configuration and geometrical characteristics;Evaluation of structural vulnerability of the stretch correlated to the characteristics (structural, mechanical, technological, etc.) of the different components (bridges, embankments, trenches, tunnels) that make up the stretches obtained by the use of correctly elaborated tables for each component.The determination of global risk indexes of the single stretches and of the network, evaluated by means of a relationship between the ascertained parameters derived from the investigation of the previous points, provides the necessary information for the definition of mitigation measures to reduce the risk and for management planning before and after disaster. The proposed methodology, which has already been applied to a restricted area, is currently being applied to the province of Catania (Sicily, Italy), which is one of the geographical regions of highest seismic risk in Europe, and its future extension to all of eastern Sicily is foreseeable.  相似文献   
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