首页> 外文会议>SPE Brasil Offshore Conference >Using a Friction Pressure Reducer to Extend the Operational Pumping Windowin Horizontal Open Hole Gravel Packing
【24h】

Using a Friction Pressure Reducer to Extend the Operational Pumping Windowin Horizontal Open Hole Gravel Packing

机译:使用摩擦压力减压器将操作泵送窗口延伸到水平开孔砾石填料中

获取原文
获取外文期刊封面目录资料

摘要

The Horizontal Open Hole Gravel Pack (HOHGP) is the preferred completion method employed in Campos and Espirito Santobasins, offshore Brazil. To pack the well, the proppant is pumped such that the alpha wave is propagated from the heel to the toe ofthe well and the beta wave then propagates from the toe to the heel. During the alpha and beta waves, the carrier fluid is divertedinto and must travel through the narrow annulus between the screen base-pipe and wash-pipe to the toe, where the perforated basepipe is located. This diversion raises the friction pressure significantly. When pumping the beta wave, the friction rises even morebecause the fluid must travel through the gravel placed during the alpha wave before it can flow through the screen. The surface pressure required to overcome this high friction pressure can reach or exceed the formation fracture pressure,resulting in early termination of the gravel pack placement due to severe fluid leakoff to the formation. Some solutions areavailable, but the preferred method of dealing with pressure increases when performing HOHGP offshore Brazil is the ultra-lightweight (ULW) proppants and BOP open (return through the flow line). However, in some cases when the extended horizontalsection is associated with a low fracture gradient and washed out zones, the pumping window expansion provided by ULWproppants and BOP open can be still not enough to perform the job comfortably. In such scenario a friction pressure reducer (FPR)was introduced to avoid pressure increases while pumping the gravel pack. The FPR can also minimize friction pressure increasesin wells packed using intermediate-density ceramic gravels. This paper describes 3 successful case histories of circulation tests and HOHGP performed with FPR added to the completionfluid. The focuses are the challenges faced, lessons learned and advantages of using the FPR to extend the safe pumping window.
机译:水平开孔砾石包(HOHGP)是Campos和Espirito Santobasins,海上巴西的首选完成方法。为了打包井,泵浦支撑剂,使得α波从鞋跟传播到井的脚趾,然后β波从脚趾传播到鞋跟。在α和β波期间,载体流体是Divertedinto,必须穿过屏幕基管和洗涤管之间的窄环行进到脚趾之间,其中穿孔基础所在的脚趾。这种转移显着提高了摩擦力压力。泵送β波时,摩擦甚至升高,因为流体必须穿过在α波期间放置在α波期间的砾石行驶之前它流过屏幕。克服这种高摩擦压力所需的表面压力可以达到或超过形成裂缝压力,导致砾石包装的早期终止由于严重的液体泄漏到形成。一些解决方案区分,但在执行HOHGP海上巴西时,处理压力的首选方法是超轻便(ULW)支撑剂和BOP打开(通过流量返回)。然而,在一些情况下,当延长的水平梯度与低断裂梯度相关并冲出区域时,Ulwproppants和Bop开放提供的泵送窗口膨胀可能仍然不足以舒适地执行工作。在这种情况下,引入摩擦压力减压器(FPR)以避免在泵送砾石包装的同时增加压力。 FPR还可以最小化使用中间密度陶瓷砾石填充孔的摩擦力增加。本文介绍了3个成功的循环试验历史历史,并使用FPR进行了HOHGP,添加到ComplifionFluid。重点是面临的挑战,经验教训和使用FPR延伸安全泵送窗口的优点。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号