Experimental Investigation of Possible Scale Formations during Water Injection Process with an Emphasis on the Role of Reservoir Rock

سال انتشار: 1390
نوع سند: مقاله کنفرانسی
زبان: انگلیسی
مشاهده: 560

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شناسه ملی سند علمی:

ICHEC07_642

تاریخ نمایه سازی: 25 فروردین 1394

چکیده مقاله:

Water incompatibility is one of important aspects of water injection projects that may cause severe formation damage and permeability impairment in case of poor design. It can lead to reduction inpermeability and injectivity and consequently rise in costs of operation and work over. Therefore,a suitable study on compatibility of injection and formation waters prior to filed application seems mandatory. This paper investigates this phenomenon in two parts; first, formation and injectionwaters are put together at high pressure and temperature representative of the reservoir conditionsthen the changes in water compositions and the types of scales precipitated are investigated. Second, the effect of presence of reservoir rock on the scale precipitation of formation andinjection water mixtures is investigated. According the results, the presence of reservoir rock plays an important role in scale formation andprecipitation. In other words, the scale precipitations caused by changes in thermodynamic conditions could be different for the case in contact with reservoir rock from the case not incontact with it. Here, scales of calcium carbonate type and, in case of high sulfate concentrationcases, scales of calcium sulfate type could be observed because of calcite structure of the rocks considered. Finally, the experiments of core flooding in addition to static experiments (jar tests) to investigate water compatibility issue seem necessary

نویسندگان

Saeed Abbasi

Research Institute of Petroleum Industry, Department of Exploration & Production, EOR Studies Center

Hassan Gholghandashti

Research Institute of Petroleum Industry, Department of Exploration & Production, EOR Studies Center

Abbas Shahrabadi

Research Institute of Petroleum Industry, Department of Exploration & Production, EOR Studies Center

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