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Horizontal Wells 2019 Challenges and Opportunities最新文献

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Identification of Flow Zones by Spectral Noise Logging in Horizontal Wells at A Low Differential Pressure 低压差水平井频谱噪声测井识别流层
Pub Date : 2019-05-27 DOI: 10.3997/2214-4609.201901887
R. Minakhmetova, V. Pimantyev, S. Vasilyev, N. Boltunov, A. Shkaran
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引用次数: 1
Modern Technologies of Horizontal Wells Survey: Comparison of the Effectiveness of Methods, Technologies and Approaches 现代水平井测量技术:方法、技术和途径的有效性比较
Pub Date : 2019-05-27 DOI: 10.3997/2214-4609.201901873
I. Novikov
Summary Marker technologies for determining well flow profiles are made based on quantum reporter markers located in the polymer shell of the proppant or in the granulate used in the production liner. The data obtained with the dynamics of changes in the flow profile over time allows us to optimize the grid of the wells during field development. A marking agent containing quantum dots can be applied both to the proppant (in the case of multiple hydraulic fracturing) and integrated into cemented and non-cemented liners, for multibranch wells according to all TAML classifications. The marker research method for building well flow profiles based on markers has several advantages over traditional logging and allows solving the following tasks: • Building an inflow profile in wells with cemented and non-cemented liners without fracturing. • Create an inflow profile in wells with multiple hydraulic fracturing. • Determine the contribution of each zone or wellbore (in multibranch wells) to water and hydrocarbons. • Identification of high water cut formations. • Localization of remaining oil in the reservoir. • Increased oil recovery factor. • Further development of fields, considering the uneven use of oil in the reservoir.
用于确定井流曲线的标记技术是基于位于支撑剂聚合物外壳或生产尾管中使用的颗粒中的量子报告标记。随着时间的推移,流动剖面的动态变化数据使我们能够在油田开发过程中优化井网。含有量子点的标记剂既可以应用于支撑剂(在多次水力压裂的情况下),也可以集成到胶结和非胶结衬管中,适用于所有tam分类的多分支井。与传统测井相比,基于标记建立井流剖面的标记研究方法有以下几个优点:•在不压裂的情况下,在使用胶结和非胶结尾管的井中建立流入剖面。•创建多个水力压裂井的流入剖面图。确定每个层或井眼(在多分支井中)对水和碳氢化合物的贡献。•识别高含水地层。•油藏剩余油的定位。•提高采收率。•考虑到油藏中石油的不均匀使用,进一步开发油田。
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引用次数: 0
Petrophysical Rock Properties of Botuobinsky Horizon Based on Results of Studies in Vertical and Horizontal Wells of East-Siberian Field 基于东西伯利亚油田直井和水平井研究的Botuobinsky地层岩石物理性质
Pub Date : 2019-05-27 DOI: 10.3997/2214-4609.201901906
A. Fadeev, T. Dolganova
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引用次数: 0
Optimal Duration Planning of Well Tests for Horizontal and Fractured Wells 水平井和压裂井试井时间优化规划
Pub Date : 2019-05-27 DOI: 10.3997/2214-4609.201901885
P. Glechikov, S. Fedotov
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引用次数: 1
Development of Terrigenous Reservoirs Drilling and Completion Technology for Horizontal Wells 陆源油藏水平井钻完井技术发展
Pub Date : 2019-05-27 DOI: 10.3997/2214-4609.201901861
I. Nekrasova
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引用次数: 0
Advanced Inflow Profiling Technologies 先进的流入剖面技术
Pub Date : 2019-05-27 DOI: 10.3997/2214-4609.201901881
E. Pitsyura, R. Enikeev, D. Orlov, O. N. Zhuravlev, R. Umurzakov
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引用次数: 0
Approaches to Justifying Combined Development Systems Based on Technology Maps (A Case Study of Np8 and J2-6 Reservoirs of Novoportovskoye Oil and Gas Condensate Field) 基于技术图的联合开发系统论证方法(以Novoportovskoye凝析油田Np8、J2-6油藏为例)
Pub Date : 2019-05-27 DOI: 10.3997/2214-4609.201901862
R. Badgutdinov, I. V. Perevozkin
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引用次数: 0
Individual Fracture Evaluation in Multiple Hydraulically Fractured Horizontal Wells by Well Testing and Production Logging 用试井和生产测井评价多口水力压裂水平井的单条裂缝
Pub Date : 2019-05-27 DOI: 10.3997/2214-4609.201901853
E. Grishina, A. Buyanov
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引用次数: 1
Design of Logging-While-Drilling Data Quality Analysis Algorithms for A Geosteering Software Module 地质导向软件模块随钻测井数据质量分析算法设计
Pub Date : 2019-05-27 DOI: 10.3997/2214-4609.201901883
A. Perlova, A. Karimov
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引用次数: 0
Fault Interpretation in 3D Seismic Data and Their Verification with Horizontal Wells Data on the Example of the Caspian Sea Oil-Fields 三维地震资料断层解释及水平井资料验证——以里海油田为例
Pub Date : 2019-05-27 DOI: 10.3997/2214-4609.201901846
A. Gorban, I. Kerusov
Summary Logging while drilling does not allow for predicting in advance the approach to fault. Estimation of the fault displacement using borehole data is ambiguous in homogeneous formations without significant contrast of physical properties, or in the presence of lateral facies changes. Therefore, very important tasks of interpretation of seismic data are: fault identification and clarification of fault displacement. Detailed interpretation of seismic data in combination with borehole data reliably allows to identify faults, including small-scale (vertical displacement 3-5 meters ), to reveal spatial distribution of faults, to clarify fault displacement and thus to reduce the risks and uncertainties while drilling horizontal wells, and update the geological model of the field at the development stage.
随钻测井不能提前预测断层走向。在没有明显物理性质对比的均匀地层中,或者在存在侧向相变化的情况下,利用钻孔数据估计断层位移是不明确的。因此,地震资料解释的重要任务是:断层识别和断层位移的澄清。结合井眼数据对地震数据进行详细解释,可以可靠地识别断层,包括小尺度断层(垂直位移3-5米),揭示断层的空间分布,明确断层位移,从而降低水平井钻井的风险和不确定性,并在开发阶段更新油田的地质模型。
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引用次数: 0
期刊
Horizontal Wells 2019 Challenges and Opportunities
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