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首页> 外文期刊>Journal of Petroleum Exploration and Production Technology >Utilization of produced condensate for enhanced oil recovery: a case study for the forest reserve field in Trinidad
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Utilization of produced condensate for enhanced oil recovery: a case study for the forest reserve field in Trinidad

机译:生产冷凝物的利用以增强储油 - 恢复:特立尼达森林储备场的案例研究

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The current global economic trends of low commodity prices for hydrocarbons, competition due to the emergence of?shale?oil and?gas, as well as the decline in production from mature oilfields in Trinidad and Tobago (TT) have fuelled the need for the implementation of efficient and enhanced oil recovery methods.?Of particular concern locally is the issue of decreasing oil production and increasing production costs in mature oil fields due to the prevalence of organic deposits (paraffin or asphaltenes), which results in the coating of production tubing causing the plugging of surface equipment, pipelines, perforations and pore spaces in the geological formation. Major deposition compound paraffins and asphaltene are soluble in condensate, which is relatively cheap and is produced as a by-product and flared in TT, and it is already used as a pipeline diluent and cleaner for deposits. The strategy of utilizing this “waste” solvent as an economical and environmentally friendly strategy for EOR was worth investigation. The FR 1346 RD well was selected for evaluation, and a pilot test was conducted using the compositional reservoir simulation model (CMG–GEM). Laboratory studies were conducted using a constructed pressure permeability flow chamber, and results from the device indicated that an asphaltene plug decreased the permeability by approximately 24%, but after treatment with condensate, there was an improvement in permeability of approximately 10% (300?md to 420?md). Tuning of the simulation model incorporating the laboratory-derived permeability data resulted in an increase in production rate to 35 bopd, which matched very closely with the field pilot well test result of an increase of 46% (from 20 to 39 bopd) when the condensate soak was performed. This increase translated in an overall gain of 30,531 bbls of oil associated with a financial gain of approximately $4.7 MM TT per well over the 16-year period. Injection types including condensate, carbon dioxide and nitrogen yielded the production of the same order. This study offers compelling evidence that the use of produced condensate in EOR is an economically and environmentally friendly strategy in TT.
机译:目前碳氢化合物低商品价格的全球经济趋势,由于出现的竞争?页岩?石油和?天然气,以及特立尼达和多巴哥(TT)的成熟油田的生产下降促进了实施高效且增强的石油回收方法。局部特别令人担忧是由于有机沉积物(石蜡或沥青质)的患病率降低了石油生产和成熟油田的生产成本,这导致生产管道涂层导致生产管道涂层在地质形成中堵塞表面设备,管道,穿孔和孔隙空间。主要沉积化合物石蜡和沥青质可溶于冷凝物,其相对便宜,并以副产物制备并在TT中爆发,并且已经用作管道稀释剂和沉积物的清洁剂。利用这种“废物”溶剂作为一种对EOR经济和环保策略的策略值得调查。选择FR 1346 RD井进行评估,使用组成储层模拟模型(CMG-GEM)进行导频试验。使用构造的压力流动性流动室进行实验室研究,并且该装置的结果表明沥青质塞将渗透率降低约24%,但在用冷凝物处理后,渗透性约为10%(300Ωmd到420?MD)。调整包含实验室导出的渗透性数据的仿真模型导致生产率增加到35个BOPD,这与现场先导井测试结果非常紧密地匹配,凝结物时增加46%(从20至39个BOPD)浸泡了。这一增加在30,531个石油的总增益中,在16年期间每台井的财政收益约为4.7毫米。注射类型包括冷凝物,二氧化碳和氮气产生相同顺序的产生。本研究提供了令人兴奋的证据表明EOR中生产的冷凝水在TT中的使用是一种经济和环保的策略。

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