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Design and Practice of Steam Flooding on Anisotropic Heavy-oil Reservoir with Edge-bottom Water

机译:顶部底水蒸汽洪水蒸汽洪水的设计与实践

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Liaohe block J is a super heavy oil reservoir with relatively strong anisotropy and active edge-bottom water condition. After more than two decades of huff and puff production, the block now reaches a low production rate period, and the local part of the block also encounters serious edge-bottom water invasion. Now steam flooding is used as a switching method to invert the production decline tendency. Applied with thermal recovery process and numerical simulation method, reservoir pressure at flooding conversion, pressure control in steam flooding, injection-production parameters and well pattern are used to optimize the key techniques of steam flooding design. The design results are as follows: the reservoir pressure at flooding conversion as well as during steam flooding process should be controlled below 5 Mpa; the unit volume steam injection rate is 1.65t/d.hm~2.m and the bottom-hole steam quality of injecter is no less than 53%; the injection-production ratio is 1.1:1 and inversed 9 point pattern with a 83m well space is used. The steam flooding pilot has been carried out for more than 2 years and obtains favorable benefits.
机译:辽河块J是一种超重的油藏,具有相对强大的各向异性和主动边缘水条件。经过二十多年的赫夫和泡芙生产,该街区现已达到低产量期,而街区的本地部分也遇到严重的边缘底水侵入。现在蒸汽洪水用作反转生产下降趋势的切换方法。应用热回收工艺和数值模拟方法,液化转换时的储层压力,蒸汽洪水压力控制,注射生产参数和井图案用于优化蒸汽洪水设计的关键技术。设计结果如下:洪水转换的储层压力以及蒸汽泛洪过程应低于5MPa;单位体积蒸汽注入速率为1.65t / d.hm〜2.m,注射器的底部蒸汽质量不低于53%;注射生产比率为1.1:1,使用具有83M井空间的逆9点图案。蒸汽洪水飞行员已经进行了超过2年,获得了有利的益处。

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