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Sand Control Testing for Steam Injection Wells

机译:蒸汽喷射井的防砂测试

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Injector wells in thermal field developments in Western Canada are usually completed by slotted liners. The purpose of liner installation is preventing sand production after a shut-in, keeping a stable wellbore, and providing an appropriate steam distribution. The objective of this paper is to quantify the role of slot width and slot density on the sanding performance of the liner in cycles of injection and shut-in in a SAGD injection well, through a series of laboratory sand control tests. A large-scale sand retention testing facility was developed and employed to conduct a series of tests on slotted liner coupons with different slot widths and densities. These tests were tailored to simulate steam injection and backflow during the shut-in. Three representative particle size distributions for the McMurray Formation were used in this study ranging from coarse to fine sand. The experimental set-up allows to measure the amount of produced sand. Since the produced sand in steam injection wells is not usually cleaned out, the acceptable threshold for sand production in the injector should be more conservative than the same for producer wells. Testing results indicate that the sand control performance of the liner is governed by the slot width and density, and formation particle size distribution. Results indicate a negligible amount of produced sand with gas backflow for a properly designed liner even at very high gas velocities. Historically, there has been little attention to the sand control design for injector wells. This work highlights the significance of slot density and slot width in the sand control performance for steam injection wells. The paper provides the basis for the proper design of an effective sand control in SAGD injectors.
机译:加拿大西部热场发育中的喷射器井通常由开槽衬垫完成。衬里安装的目的是防止后续的砂生产,保持稳定的井筒,并提供适当的蒸汽分布。本文的目的是通过一系列实验室砂对照测试量化槽宽和槽密度对注射液中的循环循环的打磨性能的作用。一个大型砂保留测试设备的开发和使用进行关于割缝衬券与不同的插槽宽度和密度一系列的测试。定制这些测试以在关闭期间模拟蒸汽喷射和回流。本研究中使用了用于MCMurray形成的三种代表性粒度分布,从粗砂范围内。实验装置允许测量产生的砂的量。由于蒸汽喷射井中的产生的砂通常不清洗出来,因此喷射器中的砂生产的可接受阈值应该比生产者井更保守。测试结果表明,衬里的砂控制性能由插槽宽度和密度,以及形成粒度分布管。结果表明,即使在非常高的气体速度下,具有适当设计的衬里的气体回流量的产生量忽略量。从历史上看,对喷射器井的沙子控制设计几乎没有关注。这项工作突出了槽密度和槽宽在蒸汽喷射井的砂控制性能中的重要性。本文提供了落实喷射器中有效砂控制的适当设计的基础。

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