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过热蒸汽吞吐井注采工艺管柱配套应用
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作者 秦公民 全高志 +3 位作者 郝曲可 刘小创 付高庄 李汉文 《中国石油和化工标准与质量》 2012年第3期82-82,共1页
目前在井楼油田实施过热蒸汽注汽,以往采用的光油管注采工艺可能导致套管损坏,因此需采取井筒隔热保护措施。优化并配套应用过热蒸汽吞吐井注采工艺管柱,采取合适的井筒隔热工艺措施,一方面降低井筒热损失,提高热效率,另一方面保护套管... 目前在井楼油田实施过热蒸汽注汽,以往采用的光油管注采工艺可能导致套管损坏,因此需采取井筒隔热保护措施。优化并配套应用过热蒸汽吞吐井注采工艺管柱,采取合适的井筒隔热工艺措施,一方面降低井筒热损失,提高热效率,另一方面保护套管和水泥环安全。 展开更多
关键词 过注汽 采工艺 隔热工艺
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Effects of Reservoir Minerals and Chemical Agents on Aquathermolysis of Heavy Oil during Steam Injection 被引量:5
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作者 Zhang Xian Liu Yongjian +1 位作者 Fan Yingcai Che Hongchang 《China Petroleum Processing & Petrochemical Technology》 SCIE CAS 2010年第3期25-31,共7页
In order to effectively reduce the viscosity of heavy oil during steam injection, a catalyst system, consisting of reservoir minerals, nickel sulfate, and formic acid, was used to exert catalytic effect on aquathermol... In order to effectively reduce the viscosity of heavy oil during steam injection, a catalyst system, consisting of reservoir minerals, nickel sulfate, and formic acid, was used to exert catalytic effect on aquathermolysis of heavy crude oil extracted from the Liaohe oilfield. Experimental results indicated that all the reservoir minerals used in the experiment had catalytic effect on aquathermolysis and the oil viscosity reduction rate ranged from 24% to 36% after the aquathermolysis reaction. If nickel sulfate was used as the catalyst and added to the reaction system, the oil viscosity reduction rate could reach 50%. If formic acid was used as the hydrogen donor, the oil viscosity reduction rate could increase further, and could reach up to 71.8%. The aquathermolysis reaction of heavy oil under steam injection condition was affected by the reaction temperature, the reaction time, the dosage of minerals, the catalyst concentration, and the hydrogen donor. The experimental results showed that minerals, catalyst and hydrogen donor could work together to enhance aquathermolysis reaction of heavy oil in the presence of the high-temperature water vapor. 展开更多
关键词 heavy oil AQUATHERMOLYSIS CATALYSIS viscosity reduction
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