氮气泡沫吞吐的控水增油机理
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“十三五”国家科技重大专项“低渗-致密油藏高效提高采收率新技术”(项目编号 2017ZX05009-004)和“海外重点油气田开发钻采关键技术”(项目编号 2017ZX05032-004)。


Mechanism of Nitrogen Foam Preventing Edge-water Coning in Huff-n-Puff Well
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    摘要:

    对于存在边水的复杂断块油藏,无法实现远距离的泡沫堵水调剖,而泡沫吞吐刚好解决了这一问题。为了明确吞吐井的泡沫控水增油作用机理,在评价泡沫体系的性能、动态吸附性能及封堵性能的基础上,通过物理模拟实验对比氮气体系、起泡剂+稳泡剂体系及氮气泡沫吞吐的实施效果,分析氮气、起泡剂及稳泡剂各自在氮气泡沫吞吐中所发挥的作用,明确氮气泡沫吞吐控水增油机理。研究结果表明:所选的氮气泡沫体系与目标地层适应性良好,在矿化度4176 mg/L、温度85℃下与原油的界面张力为1.097 mN/m,泡沫综合指数为14750 mL·min,阻力因子在地层渗透率 500×10-3~ 1500×10-3 μm2情况下为 26~ 103。氮气泡沫吞吐的作用机理如下:氮气的保压增能作用贯穿始终,并且占主导地位;起泡剂+稳泡剂能控制氮气的气窜,与氮气形成泡沫扩大波及体积;泡沫的形成发挥了独有的选择性封堵作用,良好的控抑了边水。图 4表3参 24

    Abstract:

    For the complex fault block reservoir with edge water,it is impossible for foam displacement to prevent edge-water coning because of such a long distance,while the foam huff-n-puff just can solve this problem. In order to confine the mechanism of foam suppression for edge water in huff-n-puff wells,the effect of nitrogen,surfactant and polymer should be known clearly. The foam system’s stability,adsorption properties and sealing performance was evaluated,then a related experimental model was developed to evaluate the effectiveness of nitrogen foam preventing edge water coning in huff-n-puff wells by comparing with that of single nitrogen system and surfactant-polymer system. The experimental results showed that the selected nitrogen foam system had good adaptability with the formation. The interfacial tension between the system and the simulated oil was 1.097 mN/m and the foam index was 14750 mL·min at the temperature of 85℃ and salinity 4176 of mg/L. The resistance factor was 26—103 correspond to the formation permeability of 500×10-3—1500×10-3 μm2. The main mechanism of nitrogen foam in puff and huff wells was as follows,the injection of nitrogen could keep the reservoir’s pressure in a high level;the injection of surfactant and polymer could control the gas flow of nitrogen and reduce oil and water interfacial tension to a certain extent. When the foam is shaped by mixture of gas and liquid,the before-mentioned shortages of gas,surfactant and polymer would be canceled because of their co-reaction,which made nitrogen foam have its own superiority in preventing edge water coning in puff and huff wells.

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赵凤兰 ,付忠凤 ,郝宏达 ,侯吉瑞 ,张 蒙 ,鲁国用 ,王 鹏 .氮气泡沫吞吐的控水增油机理[J].油田化学,2018,35(3):451-457.
ZHAO Fenglan, FU Zhongfeng, HAO Hongda, HOU Jirui, ZHANG Meng, LU Gouyong, WANG Peng . Mechanism of Nitrogen Foam Preventing Edge-water Coning in Huff-n-Puff Well[J]. OILFIELD CHEMISTRY,2018,35(3):451-457.

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  • 在线发布日期: 2018-10-22
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