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作 者:苏雪霞[1] 周亚贤[1] 钟灵[1] 李保慧[1] 候美玲[1]
机构地区:[1]中国石化中原石油勘探局钻井工程技术研究院,濮阳457001
出 处:《精细石油化工进展》2010年第2期4-6,共3页Advances in Fine Petrochemicals
摘 要:通过对发泡剂、稳泡剂和辅助稳泡剂的优选,确定了无固相微泡沫压井液最佳配方:清水+(0.7%~1.0%)稳泡剂HCC-1+(0.3%~0.5%)发泡剂AS-1/OP-10+(0.8%~2.0%)辅助稳泡剂WDJ+(1.0%~2.0%)增粘型降滤失剂+2.0%其他处理剂,该压井液的密度在0.7~1.0g/cm3之间可调。室内研究表明,该压井液具有良好的流变性和抑制性、较强的耐温抗盐能力,及较好的稳定性、油气层保护性、防膨防爆和防漏堵漏性能。By optimising foaming agent, foam stabilizer and subsidiary foam stabilizer, the optimal formula of a solid-free micro foam control fluid was determined as follows: fresh water + (0. 7%-1.0% ) foam stabilizer HCC-1 + (0.3%-0.5%) foaming agent AS-1/OP-10 + (0.8%-2.0%) subsidiary foam stabilizer WDJ + (1.0%-2.0%) tackifying fluid loss control agent + 2. 0% other treatment agents. The density of the control fluid was adjustable between 0.7 g/cm^3 to 1.0 g/cm^3. The result of laboratory experiment showed that the control fluid possessed good rheological property and inhibition, strong temperature resistance and salt tolerance, and good stability, oil-gas reservoir protection,expansion and explosion protection,and leak resistant and plugging performance.
分 类 号:TE39[石油与天然气工程—油气田开发工程]
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