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Well Placement and Operation Parameters Optimization of Horizontal Wells in the Development of the PK1 Reservoir of the Kharampurskoye Oil and Gas Condensate Field

机译:Kharampsskoye油气凝析田PK1储层发展中水平井的井放置和操作参数优化

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Work objective and subject: The main work objective is optimization of field development and well operations by providing recommendations on selection of optimal intervals for horizontal well placement and safe drawdown pressure limits in PK1 gas reservoir for minimizing risks of sand production.Up to 25% of the gas from the total recoverable reserves of gas assess of PJSC "NK "Ronseft" in the territory of Russian Federation is concentrated in PK1 formation,which makes it attractive for commercial field development.The uniqueness of the object is determined by the type of reservoir: highly porous and highly permeable weakly consolidated sandstone,which imposes a number of limitations on completion design and operating parameters.Used methods,technologies,process description: A significant volume of special studies has been carried out to enhance quality and credibility of geomechanical modeling results: broadband acoustic cross-dipole logging,formation micro-imagers,extended leak off tests,pressure tests and fluid sampling,coring for complex petrophysical and geomechanical lab experiments.Based on the obtained information 1D geomechanical models were calculated for several offset and reference wells and calibrated on drilling results of first horizontal wells in PK1 reservoir of the Kharampur field.According to the results of 1D geomechanical modeling,calculations of safe and critical drawdown pressure are made for sand potential prediction during production.Specialized core samples tests are planned and conducted(thick-wall core cylinder tests)to calibrate modeling results.Results and conclusions: Based on geomechanical model and the results of thick-wall core cylinder test,the values of safe and critical drawdown pressure along the wellbore were determined for initial reservoir conditions.It's defined that the planned interval of horizontal well placement in some parts of the study area is characterized by lower value of safe drawdown pressure(DD<2.5 atm.)than was planned in the preliminary field develompent strategy.To achieve the planned volumes of cumulative production,it is proposed to review the placement of horizontal wells in intervals and zones where the critical drawdown pressure corresponds with or may be higher than planned one.Novelty of work and achievements: As part of project implementation,at the planning stage of the field development strategy an expanded set of advanced logging and measurements was carried out on a number of offset and reference wells to increase the reliability of the petrophysical and geomechanical models.To confirm the results of drawdown pressure limits calculation on the basis of geomechanical parameters a new method developed and special lab experiments(thick-wall core cylinder tests)were conducted for predicting several states of the rock during loading-deformation process and estimate safe and critical drawdown pressure.The results of geomechanical modeling are used as a basis for project design documentation and will be used to calculate the optimal parameters of well operation and increase the efficiency of field development.
机译:工作客观和主题:主要工作目标是通过提供关于选择横向井放置和PK1气体储层的安全降压限制的最佳间隔选择,以使砂产量的风险最大限度地提高卫生灌注压力限制的建议来自俄罗斯联邦境内PJSC“NK”RONESEFT“的气体评估总储备的气体集中在PK1形成中,这使其对商业领域的发展具有吸引力。物体的独特性由水库的类型决定:高度多孔且高度渗透性弱良好的砂岩,这对完成设计和操作参数产生了许多限制。使用的方法,技术,过程描述:已经进行了大量的特殊研究,以提高地质力学建模结果的质量和可信度:宽带声学跨偶极测井,形成微成像仪,延伸泄漏复杂岩石物理和地质力学实验室实验中的核心,压力试验和流体采样。基于所获得的信息1D地质力学模型,用于几个偏移和参考井,并校准了Kharampur领域PK1储存器中第一水平井的钻探结果。根据1D地质力学建模的结果,在生产过程中,对砂电位预测进行了安全和关键拔线压力的计算。规划和进行(厚壁芯缸测试)的特殊核心样本测试以校准建模结果。结果和结论:基于地质力学模型和厚壁芯缸试验的结果,确定了初始储层条件的安全和临界缩小压力的值。它定义了研究区域某些部分的水平井放置的计划间隔以安全减压压力(DD <2.5 atm)的值较低的特征。计划在初步领域的开发策略中。要达到计划的累积产量,建议在间隔和区域中审查水平井的放置,其中临界降压对应于或可能高于计划的一个。成就:作为项目实施的一部分,在现场开发策略的规划阶段,在许多偏移和参考井上进行了扩展的高级测井和测量,以提高岩石物理和地质力学模型的可靠性。确认降压压力限制的结果基于地质力学参数计算,进行了新的方法和特殊的实验室实验(厚壁芯缸测试),用于在装载变形过程中预测岩石的几个状态,并估计安全和临界缩小压力。地质力学建模的结果用作项目设计Docume的基础ntation并将用于计算井运行的最佳参数,提高现场开发效率。

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