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INCREASING OF WELL INFILL DRILLING EFFICIENCY

机译:提高井眼钻井效率

摘要

FIELD: oil-and-gas industry.;SUBSTANCE: maps of unworked oil deposits and/or maps of current oil saturation and maps of distribution of current seam pressure are plotted proceeding from the data of well operation and analysis. Location and type of infilling wells are selected proceeding from complex analysis of said maps of unworked oil deposits and/or maps of current oil saturation and maps of distribution of current seam pressure. Location of operating infilling wells is selected in zones of localisation of unworked oil deposits with current seam pressure over 85-90% of initial value. Location of operating injection wells is selected in zones of localisation of unworked oil deposits with current seam pressure under 85-90% of initial value. Efficiency of drilling infilling wells is evaluated proceeding from predictive process indices for the entire deposit or its part including all designed infilling wells and adjacent drilled wells with the help of 3D geological production model of the deposit.;EFFECT: higher yield, more stable dynamics of oil production at lower costs.;1 ex, 7 dwg
机译:领域:石油和天然气行业;实体:从井的运行和分析数据开始绘制未加工油藏图和/或当前含油饱和度图和当前煤层压力分布图。从对所述未开采的油沉积物的图和/或当前油饱和度的图和当前煤层压力的分布图的复杂分析中选择填充井的位置和类型。在当前接缝压力超过初始值的85%至90%的未加工油藏局部区域中,选择可操作的填充井的位置。在当前接缝压力低于初始值的85%至90%的情况下,在未加工油藏的定位区域中选择正在运行的注入井的位置。借助沉积物的3D地质生产模型,从整个矿床或其部分(包括所有设计的填充井和相邻的钻探井)的预测过程指标出发,评估填充井的效率。效果:更高的产量,更稳定的开采动态以较低的成本生产石油; 1 ex,7 dwg

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