Research and application of integrated technology of chemical sand control and stratified water injection in offshore oilfields injection well

Yugang Zhou, Shunchao Zhao, Huaxiao Wu, Baobing Shang, Fang Tao, Huaxing Chen, Wang Yufei, Ya-dong Qi, Pang Ming
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Abstract

This paper proposes an integrated technology of chemical sand control and stratified water injection in water injection well, which enlarge the inner diameter of injection well and achieve flexible stratification. The technology realizes completion by chemical sand control. The ceramsite whose surface has been treated by crosslinking agent is injected into the well and form a cement layer with a thickness of 3-5 cm. This layer can be used as a barrier to retain sand and provide channels for fluids. Then, the stratified injection string is run to realize the stratification of the injection reservoir. The position and quantity of the stratification are designed can adjust flexibly. This technology has been successfully applied in the Bohai Oilfield. The conventional sand control and injection technology makes it difficult for the actual injection rate to reach the target value. After applying the integrated technology, for a directional well with a bore diameter of 9.625 in, the maximum inner diameter can reach 7 in. The number of injection layers exceeds 5, and the actual injection volume meets the designed rate. Besides, the water cut of the beneficiary well decreases, and the oil production rate increases.
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海上油田注水井化学防砂与分层注水一体化技术研究与应用
提出了注水井化学防砂与分层注水一体化技术,扩大了注水井内径,实现了柔性分层。该技术通过化学防砂实现完井。将表面经交联剂处理过的陶粒注入井中,形成厚度为3-5 cm的水泥层。这一层可以用作阻挡砂粒的屏障,并为流体提供通道。然后下入分层注入管柱,实现注入储层分层。分层位置和分层数量的设计可灵活调整。该技术已在渤海油田成功应用。常规防砂注砂技术使实际注砂量难以达到目标值。应用集成技术后,对于井径9.625 in的定向井,最大内径可达7 in。注入层数超过5层,实际注入量满足设计速率。同时,受益井含水率降低,产油量提高。
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