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Scientific research and field applications of polymer flooding in heavy oil recovery

机译:聚合物驱在稠油开采中的科学研究与现场应用

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摘要

The heavy oil resources worldwide are estimated at 3,396 billion barrels. With depletion of light oil, we have to face the technical and economical challenges of developing heavy oil fields. Due to severe viscous fingering, the recoveries of heavy oil reservoirs are often below 20% or even 10%. Thermal methods have been successfully applied in many heavy oil fields. However, reservoirs at great depth or thin pay zones are not good candidates for thermal methods.According to past experiences, polymer flood was not recommended for oil viscosity higher than 100 centipoises. In recent years, polymer flood becomes a promising technology for heavy oil recovery thanks to the widespread use of horizontal wells. This paper highlights the research advances of polymer in heavy oil recovery since 1977. In laboratory tests, polymer achieved tertiary recovery of more than 20% for heavy oil. A few field cases in China, Canada, Turkey, Suriname and Oman are also reviewed and analysed. Some field pilots have shown positive results. Field experiences indicate the major challenge facing polymer flooding effectiveness is to maintain good viscosity of polymer solution.
机译:全世界的重油资源估计为3.396万亿桶。随着轻油的枯竭,我们必须面对开发重油田的技术和经济挑战。由于严重的粘性指法,稠油油藏的采收率通常低于20%甚至10%。导热方法已成功应用于许多重油领域。然而,深部或薄层产油层不是热学方法的理想选择。根据过去的经验,对于油粘度高于100厘泊的情况,不建议使用聚合物驱。近年来,由于水平井的广泛使用,聚合物驱成为重油采收的有前途的技术。本文着重介绍了自1977年以来聚合物在重油采收方面的研究进展。在实验室测试中,聚合物对重油的三次采收率超过20%。还对中国,加拿大,土耳其,苏里南和阿曼的一些实地案例进行了审查和分析。一些现场飞行员已经显示出积极的结果。现场经验表明,聚合物驱油效率面临的主要挑战是保持聚合物溶液的良好粘度。

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