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METHOD OF OIL AND GAS CONDENSATE MULTIPAY FIELD DEVELOPMENT

机译:油气凝析多油田开发方法

摘要

FIELD: oil and gas industry.;SUBSTANCE: method of oil and gas condensate multipay field development includes based on the basis of seismic data and exploratory and operation drilling data identification of depths of occurrence, areas and net pays, plotting of subsurface maps, performance of detailed cross-borehole correlation with specification of boundaries for claying, bed thinning and tectonic disturbance, determination of permeability and porosity of collectors against data of standard and special experiments with core material, determination of initial pressure and temperature in the stratum against data of measurements made with a depth gage and of initial composition and properties of the hydrocarbon system saturating the stratum against results of laboratory researches of gas condensate characteristic, in process of commercial operation monitoring of the deposit development indices including measurement of bottomhole pressure and temperature, consumption rates of gaseous and liquid phases in the production system, field pipeline transfer and preparation of hydrocarbon products, performance of gas dynamic, gas condensate surveys and downwhole logging. Thereafter analysis of the development monitoring results is made, a numerical filtration model of the deposit is created on the basis of compositional approach and the model is adapted in two stages. Each of stages represents an exact algorithm excluding impact of each subsequent adaption step to results of the previous one. At the first stage material balance of hydrocarbon pseudo components is set for the deposit envisaging compliance with precise volume and mass production of the formation gas at the facility as a whole considering values of formation pressure. At the second stage the model is set for data of long-term operation of wells. At that values of bottomhole and wellhead pressure, group production of the formation gas are used as parameters for quality control of the model. Additional parameters of control include distribution of production by wells considering results of gas condensate surveys, inflow profile in compliance with bottomhole logging, values of formation pressure by wells, which are received on the basis of hydrodynamic research data. Upon adaption of the model in the above way and specification of characteristics of filtration and phase transitions in oil and gas condensate systems the model is started to calculate forecast of the development cost-performance ratio and, in result, basing on this model process modes for operation of wells, loops and gas processing facilities are defined against production levels for short-term and long-term prospects ensuring high final recovery factors of hydrocarbon products.;EFFECT: improving accuracy for determination of optimal process mode for operation of wells, loops and gas processing facilities against production levels for short-term and long-term prospects.
机译:领域:石油和天然气凝析油多油气田的开发方法包括基于地震数据以及勘探和作业钻探数据的识别深度,面积和净油气量,地下地图的绘制,性能详细的跨孔相关性与黏土边界层规范,层间变薄和构造扰动,根据岩心材料的标准和特殊实验数据确定集热器的渗透率和孔隙度,根据测量数据确定地层中的初始压力和温度在工业生产过程中,对矿床发育指数进行监测,包括测量井底压力和温度,降低碳氢化合物的消耗率,并采用深度计和烃类系统的初始组成和特性制成的饱和烃层。气态和锂生产系统的换油阶段,油气管道的输送和碳氢化合物产品的制备,气体动态性能,凝析气勘测和井下测井。此后,对开发监测结果进行分析,在组成方法的基础上建立了矿床的数值过滤模型,并在两个阶段对模型进行了调整。每个阶段代表一个精确的算法,不包括每个后续适应步骤对前一个结果的影响。在第一阶段,为沉积物设定烃类假组分的物料平衡,以考虑到整个地层设备在考虑地层压力值的情况下符合精确体积和大量生产地层气体的要求。在第二阶段,为井的长期运行数据设置模型。在井底压力和井口压力的那个值下,地层气的成组产量用作模型质量控制的参数。控制的其他参数包括:考虑天然气凝析物调查结果的井的产量分布;符合井底测井的流入曲线;基于水动力研究数据接收的井地层压力值。在以上述方式对模型进行了修改并确定了油气凝析气系统的过滤特性和相变特性之后,该模型便开始计算开发成本效益比的预测值,并因此基于该模型的处理模式根据短期和长期前景的生产水平定义井,环路和天然气处理设施的运行,以确保烃类产品的最终最终采收率高;效果:提高确定井,环路和天然气的最佳工艺模式的准确性天然气生产设施的短期和长期前景。

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