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   reservoir geochemistry 的翻译结果: 查询用时:0.008秒
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reservoir geochemistry
相关语句
  油藏地球化学
     Fluid inclusion has important application in reservoir geochemistry.
     流体包裹体在油藏地球化学研究中有着重要的应用价值。
短句来源
     A Study on Theory Base of Reservoir Geochemistry
     浅谈油藏地球化学研究的理论基础
短句来源
     A Study on the Productivity Contribution of Single Horizon in Multiple Horizons Exploitation by Reservoir Geochemistry
     混采油层产能贡献的油藏地球化学研究
短句来源
     Application of reservoir geochemistry in the Shenjiapu Faulted Block Oilfield
     油藏地球化学在沈家铺断块油田的应用
短句来源
     APPLICATION OF RESERVOIR GEOCHEMISTRY IN THE EVALUATION OF XINZHAN RESERVOIR
     油藏地球化学在新站油气藏评价中的应用
短句来源
更多       
  储层地球化学
     FRACTURED RESERVOIR GEOCHEMISTRY
     裂缝储层地球化学
短句来源
     THE PRINCIPLE OF PETROLEUM RESERVOIR GEOCHEMISTRY AND ITS APPLICATION
     石油储层地球化学的原理及应用
短句来源
     Inclusions in different occurrences are actually the different forms of the same process that takes place in the different structures of a rock. Our study is significant to the reservoir geochemistry,the mechanism of fluid inclusion and application of organic inclusions in exploration and evaluation of oil and gas resource.
     不同赋存状态的有机包裹体实际上是同一过程在不同岩石构造部位的不同表现形式.指出这项研究对于开展储层地球化学和矿物包裹体形成机制研究的重要意义和对于油气勘探和评价的重要作用。
短句来源
     The reservoir geochemistry is used to analyse reservoir fluid heterogeneity in Yacheng 13 1 gasfield,and the mixed gas sources of the field are studied in combination with homogenization temperature of fluid inclusions and organic facies of source rocks.
     采用储层地球化学研究方法 ,分析了崖 13- 1气田储层流体的非均质性 ,结合包裹体均一温度及源岩有机相分析结果 ,研究了崖 13- 1气田天然气的混源特征。
短句来源
  藏地球化学
     Fluid inclusion has important application in reservoir geochemistry.
     流体包裹体在油藏地球化学研究中有着重要的应用价值。
短句来源
     A Study on Theory Base of Reservoir Geochemistry
     浅谈油藏地球化学研究的理论基础
短句来源
     A Study on the Productivity Contribution of Single Horizon in Multiple Horizons Exploitation by Reservoir Geochemistry
     混采油层产能贡献的油藏地球化学研究
短句来源
     Application of reservoir geochemistry in the Shenjiapu Faulted Block Oilfield
     油藏地球化学在沈家铺断块油田的应用
短句来源
     APPLICATION OF RESERVOIR GEOCHEMISTRY IN THE EVALUATION OF XINZHAN RESERVOIR
     油藏地球化学在新站油气藏评价中的应用
短句来源
更多       
  “reservoir geochemistry”译为未确定词的双语例句
     (4)the simulation of the reservoir geochemistry. The paper also describes the methods of the study of fractured reservoir geochemistry.
     实验地球化学方法、热力学理论计算方法和计算机模拟方法,经讨论认为这一新的研究方向将会改变裂缝储层研究的格局。 裂缝,储层,地球化学
短句来源
     Based on synthetic analyses of trap timing, reservoir geochemistry (gas maturity correlation), hydrocarbon fluid inclusions, dew-point pressure and oil/gas-water contact evolution, 3 periods of the formation and filling history of oil and natural gas reservoirs in the Kuche petroleum system are discerned, i.e. early-middle Kangcun period (17~10 Ma), late Kangcun to early-middle Kuche period (10~3 Ma) and late Kuche to Xiyu period (3~1 Ma).
     其主要成藏期有 3期 :即晚第三纪康村早中期 (17~ 10Ma)、康村晚期—库车早中期 (10~ 3Ma)、库车晚期—第四纪西域期 (3~ 1Ma)。
短句来源
     The history of hydrocarbon-filling and migrating in the hinterland of the basin were reconstructed by hydrocarbon-generating modeling combined with reservoir geochemistry analyses.
     盆地腹部油气藏形成与演化是一个受多源、多期次油气充注与再次调整的复杂过程。
短句来源
     Applications of reservoir geochemistry to field exploration mainly cover geochemical study for migration, time for reservoir forming, and recognition of paleo-oil/water contacts, etc.
     在油气勘探领域的应用主要包括烃运移方向的地球化学研究、烃成藏时间及期次的确定、古油水界面的判别等;
短句来源
     In view of the limitations of the chromatogram fingerprint technique in studying biodegraded heavy oil,this paper discusses the application of ultraviolet spectrum technique in the oil reservoir geochemistry.
     鉴于用色谱指纹法研究生物降解稠油油藏的连通性和监测二层合采井产能贡献方面有一定局限性(此类油藏缺少正构烷烃,色谱定量定性分析困难),讨论了紫外光谱技术在油藏(特别是生物降解稠油藏)地球化学研究中的应用。
短句来源
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  reservoir geochemistry
Reservoir geochemistry of the Tazhong Oilfield in the Tarim Basin, China, Part II.
      
Reservoir geochemistry of the Tazhong oilfield in the Tarim Basin, China, Part I.
      
Reservoir geochemistry of the Kuche petroleum system in the Tarim Basin, China
      
Reservoir geochemistry evolved during the late 1980s and early 1990s during one of the many downturns in exploration activity.
      
Nevertheless, the knowledge about petro leum processes, reservoir geochemistry and petroleum system characteristics is minimal.
      


The mechanism of organic inclusions may be quite different from that of inorganic inclusions,the organic inclusions may be mainly formed from the process of oil-rock interaction. A study on the new mechanism,this paper shows that the inclusions within the cracks,secondary enlargement edges of quartz and between minerals in the fragmental resevoirs are the result of oil-rock interaction. They are formed when oil and gas, especially the carboxylic acid anions in them dissolve quartz,aluminosilicate...

The mechanism of organic inclusions may be quite different from that of inorganic inclusions,the organic inclusions may be mainly formed from the process of oil-rock interaction. A study on the new mechanism,this paper shows that the inclusions within the cracks,secondary enlargement edges of quartz and between minerals in the fragmental resevoirs are the result of oil-rock interaction. They are formed when oil and gas, especially the carboxylic acid anions in them dissolve quartz,aluminosilicate and carbonate and form a certain space in which oil and gas infill.Inclusions in different occurrences are actually the different forms of the same process that takes place in the different structures of a rock.Our study is significant to the reservoir geochemistry,the mechanism of fluid inclusion and application of organic inclusions in exploration and evaluation of oil and gas resource.

有机包裹体的形成与一般无机包裹体的形成可有较大区别,它除了可在矿物结晶过程中形成(象无机包裹体)外,更重要的成因是它可在与岩石相互作用过程中形成。笔者着重对这种新的形成机制进行了分析研究.经研究表明,赋存于碎屑岩储层中石英裂隙、加大边及粒间包裹体,是由于油气(特别是羧酸)溶解了石英及铝硅酸盐、碳酸盐形成一定空间后,油气充填其中再封闭而成的。这是油一岩反应的结果。不同赋存状态的有机包裹体实际上是同一过程在不同岩石构造部位的不同表现形式.指出这项研究对于开展储层地球化学和矿物包裹体形成机制研究的重要意义和对于油气勘探和评价的重要作用。

This paper discusses four problems concerning fractured reservoir geochemistry:(1)the chemical thermodynamics and the properties of the reservoirs;(2) the water-rock-oil interactions and the character of the oil;(3)the evolution of the reservoirs and the structure geochemistry;(4)the simulation of the reservoir geochemistry.The paper also describes the methods of the study of fractured reservoir geochemistry.

论述了裂缝储层地球化学在以下四个方面的研究内容:储层化学热力学及储层性质、水-岩-油反应及原油性质、储层运动学特征及构造地球化学和储层地球化学模拟,并介绍了下列三大研究方法;实验地球化学方法、热力学理论计算方法和计算机模拟方法,经讨论认为这一新的研究方向将会改变裂缝储层研究的格局。裂缝,储层,地球化学

Petroleum reservoir geochemistry,which is a new frontier discipline,has re-cently become an important means in petroliferous characterization studies.Of these stud-ies the reservoir fluid heterogeneity study is the focus of the current investigation. In addi-tion to biodegradation and water washing effects,compositional variation in petroleum ac-cumulation may be interpreted as being due to source facies and maturity variation inpetroleum charge feeding the accumulation.Recognition of compositional...

Petroleum reservoir geochemistry,which is a new frontier discipline,has re-cently become an important means in petroliferous characterization studies.Of these stud-ies the reservoir fluid heterogeneity study is the focus of the current investigation. In addi-tion to biodegradation and water washing effects,compositional variation in petroleum ac-cumulation may be interpreted as being due to source facies and maturity variation inpetroleum charge feeding the accumulation.Recognition of compositional heterogeneitieswithin the oil column of individual fields may not only provide a basis for the reconstruc-tion of reservoir filling history,but may also have important implications for improvingpetroleum production. This ultimately results in lower risks for exploration prospects andlower costs for field development.To a large extent,the characteristics of reservoir fluidare determined by geochemical analyses of oil,gas and core extracts, The theme of thispaper can be applied from the early stages of exploration to the end of field production.

储层地球化学是一门新兴的地学边缘学科,近几年,它已成为评价储层含油特征的重要手段,其核心内容是研究储层流体的非均质性。储层中石油组成的变化除由生物降解和水洗引起外,油源岩相和成熟度的变化同样能造成石油组成的非均质性。识别储层流体的非均质性不仅是重建油气聚集史的基础,而且还能为石油开发提供重要信息。这样能降低勘探目标的风险和油田开发费用。储层流体特征的旧纳依赖于油气、岩心抽提物的地化分析,其研究成果在勘探早期到油田生产结束过程中都能得到应用。

 
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