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METHOD FOR DEVELOPMENT OF A DOMANIC OIL RESERVOIR

机译:油田油藏开发方法

摘要

FIELD: oil and gas industry.;SUBSTANCE: invention relates to oil industry and can be used in development of low-permeability Domanic oil carbonate reservoirs using injection of acid and hydraulic fracturing of formation (HFF). Proposed method comprises drilling of wells with extraction of core in productive stratum, laboratory analysis of core, acid treatment and proppant hydraulic fracturing – HFF in said wells using packers, extraction of products from wells. According to the drilled wells data the geomechanical parameters of the rock and the stress vector in the formation are determined, a hydrogeomechanical model of the formation is constructed, in all wells in each of oil-saturated interlayers of formation there performed separately is acid treatment, using two-packer layout, wherein volumes of pumped acid composition into each of interlayers are set inversely proportional to their permeability, product is withdrawn from wells as average daily flow rate of each well drops to value of 20–60 % of the maximum daily production rate of oil produced after acid treatment. In these wells there performed is mini-HFF, changes in stress vectors in formation are determined, hydrogeomechanical model is adapted to obtained data collected after drilling and operation – extraction of oil and water, pressure and change of stresses in formation, proppant HFF is carried out using hydraulic fracturing fluid with viscosity of up to 80 cP, scenario of further development of formation by all wells with achievement of maximum oil yield is calculated, operations are repeated after occurrence of data on mini-HFF on all wells, thus on each of iterations, specifying hydrogeomechanical model of formation.;EFFECT: technical result is higher oil recovery of formation.;7 cl
机译:技术领域本发明涉及石油工业,并且可以用于通过注入酸和地层的水力压裂(HFF)来开发低渗透性的杜曼碳酸盐岩碳酸盐岩储层。拟议的方法包括在生产层中开采岩心,在岩心中进行实验室分析,酸处理和支撑剂水力压裂–使用封隔器在上述油井中进行HFF钻井,从油井中开采产品。根据钻井数据,确定岩层的地质力学参数和地层中的应力矢量,构造地层的水文力学模型,在每个油饱和层中间层的所有井中分别进行酸处理,使用两层装箱布局,其中将泵送至每个中间层的酸成分的体积与它们的渗透率成反比,将产品从井中抽出,因为每个井的平均日流量下降到最大日产量的20–60%酸处理后产生油的速度。在这些井中,进行了微型HFF,确定了地层中的应力矢量的变化,对水文地质力学模型进行了调整,以获取钻井和作业后收集的数据–提取油和水,压力和地层中的应力变化,进行了支撑剂HFF使用粘度高达80 cP的水力压裂液,计算出所有油井进一步开发的地层,并实现了最大采油量,在所有油井的mini-HFF数据出现后重复操作,因此效果:技术成果是提高了地层的采油率; 7 cl

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