• Kendong 32 fault block is a typical heavy oil reservoir with loose sandstone.

    垦东32属于典型疏松砂岩稠油油藏

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  • Aimed at offshore heavy oil reservoir, on the basis of technological feasibility, a new model of developing offshore heavy oil reservoir is presented for more benefits.

    海上稠油油藏为对象,技术可行性前提,从提高开发效益的角度出发,提出加速该类型油藏开采的模式

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  • Method Deduce economical recoverable reserve of heavy oil reservoir under thermal production with the principle of investment vs. returns.

    方法利用投入产出原理推导热采稠油油藏经济储量计算方法。

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  • Purpose To improve the development result of horizontal Wells in super heavy oil reservoir.

    目的提高超稠油油藏水平井开发效果

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  • Super heavy oil reservoir potential at rim of Du 212 block Shuyi district of Liaohe oilfield has not been developed.

    辽河一区212部部分超稠油储量尚未动用,该油藏原油粘度大,油层薄。

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  • On these concepts, oil & gas migration regularities in heavy oil reservoir and its numerical simulation are performed accurately.

    为研究稠油油藏油气运移规律准确进行油藏数值模拟提供理论基础。

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  • Fault block of east Shan 6 in Shanjiasi oilfield is a typical super heavy oil reservoir.

    单家油田6典型超稠油油藏

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  • Heavy oil reservoir of loose sand is of large porosity, loose cementation and higher clay content.

    疏松砂岩稠油油藏孔隙度胶结疏松,粘土矿物含量偏高。

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  • Steamflooding is the main important stage in the thermal recovery of heavy oil reservoir, which can further enhance the recovery of heavy oil.

    蒸汽稠油油藏经过蒸汽吞吐开采后进一步提高原油采收率主要阶段

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  • This paper analyzed laboratory experiment results of oil displacement efficiencies of both water and steam drive in heavy oil reservoir by using basic knowledge and method of reservoir engineering.

    利用油藏工程基本知识基本方法,对稠油油藏蒸汽组驱效率室内实验结果进行了分析

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  • The Wangzhuang oilfield belong to heavy oil reservoir of strong sensitivity.

    王庄油田稠油油藏

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  • The heavy oil reservoir of Liao Oilfield is unconsolidated sandstone reservoir, its oil viscosity is very high, sanding is serious.

    辽河油田部分稠油油藏地质结构疏松原油粘度较高、出状况较为严重;

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  • Purpose To determine oil recovery factor and recoverable reserves of heavy oil reservoir developed by steam injection.

    目的确定稠油油藏蒸汽开发原油采收率可采储量

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  • Application of research result in the field has obtained favorable development effect, successfully realized industrial development of high water sensitivity heavy oil reservoir.

    研究成果应用现场后,取得了较好的开发效果成功地实现了稠油油藏工业化开发。

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  • The development effectiveness of water flooding for the heavy oil reservoir with edge water is poor because of the high oil viscosity, high mobility ratio and the invasion of edge water.

    注水开发多年的普通稠油油藏原油粘度高流度,加之油藏非均质边水入侵的影响,注水开发效果差。

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  • This method can be used for conventional heavy oil reservoir to calculate ultimate drainage radius and reasonable well spacing through starting pressure gradient.

    将研究结果应用普通稠油油藏,给出了利用启动压力梯度确定极限油半径合理距的理论计算方法

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  • On the basis of study and analysis of sand production mechanism in heavy oil reservoir of fault block Wa 82, the strategy of composite treatment is proposed.

    82稠油油藏机理研究分析基础上,提出了综合治理该块出砂问题的策略

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  • In heavy oil reservoir with active edge and bottom water. the incursion of edge and bottom water has a serious impact on the production performances during steam huff and puff.

    具有活跃稠油油藏蒸汽吞吐过程中,边底水侵入开采动态带来严重影响

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  • The technical recoverable reserve of developed ultra heavy oil reservoir is obtained by using iterative method and mathematical model.

    采用迭代通过数学推导,得到已开发超稠油油藏技术可采储量

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  • Wangzhuang oilfield is a typical representative of water-sensitive heavy oil reservoir. The change of water sensitivity during thermal recovery process directly relates to oilfield development scheme.

    王庄油田性稠油油藏典型代表过程中的变化直接关系油田开发方式的选择。

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  • Huanxi heavy oil reservoir is a sand stone formation, with grain pores as the main storage space.

    西稠油油藏砂岩油气藏,是以颗粒孔隙为主的孔隙型储集层。

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  • The laboratory experiment presents that chemical agent injection with steam is the effective means for improving recovery factor of heavy oil reservoir.

    室内实验表明蒸汽注入化学提高稠油油藏采收率有效手段

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  • This paper studies effect of water-rock reaction on heavy oil reservoir during steam soaking in single well by modeling changement of quartz particle in autoclave under thermal recovery condition.

    利用高压釜模拟条件石英颗粒变化情况,研究单井吞吐过程中水岩反应稠油储层影响

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  • The technical development limits for strong water-sensitive heavy oil reservoir were suggested based on the development results of reservoir numerical simulation and laboratory experiments.

    为了有效动用稠油油藏储量,在室内试验基础利用油藏数值模拟技术开展了强水敏稠油油藏的动用界限研究。

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  • The shallow heavy oil reservoir in Kelamyi is sandstone reservoir.

    克拉玛依浅层稠油胶结疏松,油井易于出砂。

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  • Method Using reservoir engineering and incorporating field tests, horizontal steam huff and puff for super heavy oil reservoir is studied.

    方法应用油藏工程技术结合矿场试验进行超稠油水平井蒸汽吞吐研究。

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  • The theory od seepage flow in multilateral well was studied, but the theory of multilateral well in some special reservoir (as heavy oil reservoir) is not reported openly.

    国内外学者对分支渗流理论进行了一定的研究,目前多分支井特殊油藏稠油油藏)中渗流理论的研究未见公开的报道。

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  • Steam stimulation is the main type to exploit heavy oil reservoir and its own defects lead to a series of problems with the exploitation continuing especially in.

    蒸汽吞吐目前开发稠油油藏主要方法,随着开采的进行,特别是到了中后期,由于蒸汽吞吐开采自身缺陷导致一系列问题的出现。

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  • The edge and bottom water energy is sufficient in the heavy oil reservoir of Shanjiasi oil field, and its steam soak process is complicated.

    单家油田稠油油藏能量充足蒸汽吞吐过程较复杂。

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  • The edge and bottom water energy is sufficient in the heavy oil reservoir of Shanjiasi oil field, and its steam soak process is complicated.

    单家油田稠油油藏能量充足蒸汽吞吐过程较复杂。

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