首页> 外文会议>SPE Oklahoma City Oil and Gas Symposium >Investigate The Rheological Behavior of High Viscosity Friction Reducer Fracture Fluid and Its Impact on Proppant Static Settling Velocity
【24h】

Investigate The Rheological Behavior of High Viscosity Friction Reducer Fracture Fluid and Its Impact on Proppant Static Settling Velocity

机译:探讨高粘度摩擦减速器断裂流体的流变行为及其对支撑剂静态沉降速度的影响

获取原文

摘要

The recent and rapid success of using high viscosity friction reducers (HVFRs) in hydraulic fracturing treatments is due to several advantages over other fracture fluids (e.g. linear gel), which include better proppant carrying capability, induce more complex fracture system network with higher fracture length, and overall lower costs due to fewer chemicals and less equipment on location. However, some concerns remain, like how HVFRs rheological properties can have impact on proppant transport into fractures. The objective of this study is to provide a comprehensive understanding of the influence the rheological characterization of HVFRs have on proppant static settling velocity within hydraulic fracturing process. To address these concerns, comprehensive rheological tests including viscosity profile, elasticity profile, and thermal stability were conducted for both HVFR and linear gel. In the steady shear-viscosity measurement, viscosity behavior versus a wide range of shear rates was studied. Moreover, the influence of elasticity was examined by performing oscillatory-shear tests over the range of frequencies. Normal stress was the other elasticity factor examined to evaluate elastic properties. Also, the Weissenberg number was calculated to determine the elastic to viscous forces. Lastly, quantitative and qualitative measurements were carried out to study proppant settling velocity in the fluids made from HVFRs and linear gel. The results of rheological measurement reveal that a lower concentration of HVFR-2 loading at 2gpt has approximately more than 8 times the viscosity of linear gel loading at 20ppt. Elastic measurement exposes that generally HVFRs have a much higher relaxation time compared to linear gel. Interestingly, the normal stress N1 of HVFR-2, 2gpt was over 3 times that of linear gel loading 20ppt. This could conclude that linear gel fracture fluids have weak elastic characterization compared to HVFR. The results also concluded that at 80 C° linear gel has a weak thermal stability while HVFR-2 loses its properties only slightly with increasing temperature. HVFR-2 showed better proppant settling velocity relative to guar-based fluids. The reduction on proppant settling velocity exceed 75% when HVFR-2 loading at 2gpt was used compared to 20ppt of linear gel. Even though much work was performed to understand the proppant settling velocity, not much experimental work has investigated the HVFR behavior on the static proppant settling velocity measurements. This paper will provide a better understanding of the distinct changes of the mechanical characterization on the HVFRs which could be used as guidance for fracture engineers to design and select better high viscous friction reducers.
机译:在液压压裂处理中使用高粘度摩擦减速剂(HVFR)的最近和快速成功是由于其他骨折流体(例如线性凝胶)的若干优点,包括更好的支撑剂承载能力,诱导更复杂的骨折系统网络具有更高的裂缝长度,并且由于较少的化学品和较少的地点的设备而降低成本。然而,一些担忧仍然存在,类似HVFRS流变性能如何对支撑剂转运变成骨折产生影响。本研究的目的是提供对影响HVFRS对液压压裂过程中的支撑剂静沉降速度的影响的全面了解。为了解决这些问题,对于HVFR和线性凝胶,对包括粘度曲线,弹性分布和热稳定性的综合流变测试。在稳定的剪切粘度测量中,研究了粘度行为与广泛的剪切速率。此外,通过在频率范围内执行振荡剪切测试来检查弹性的影响。正常应力是检查弹性特性的其他弹性因子。此外,计算了Weissenberg次数以确定弹性到粘性力。最后,进行了定量和定性测量,以研究由HVFRS和线性凝胶制成的流体中的支撑剂沉降速度。流变测量结果表明,在2GPT时较低浓度的HVFR-2负载率在20pPT下具有线性凝胶负载粘度的大约超过8倍。弹性测量暴露于与线性凝胶相比,通常HVFRS具有更高的弛豫时间。有趣的是,HVFR-2的正常应激N1,2GPT的正常应激N1超过线性凝胶负载20ppt的3倍。这可以得出结论,与HVFR相比,线性凝胶断裂液具有弱弹性表征。结果还得出结论,在80c°的线性凝胶中具有弱热稳定性,而HVFR-2仅略微略微失去其性质。 HVFR-2显示相对于瓜尔基流体的更好的支撑剂沉降速度。与20ppt的线性凝胶相比,使用HVFR-2加载时,支撑剂沉降速度的降低超过75%。尽管进行了许多工作来了解支撑剂稳定速度,但实验工作并不多,研究了静态支撑剂稳定速度测量的HVFR行为。本文将更好地理解HVFR对HVFR的不同变化,可用作裂缝工程师设计和选择更好的高粘性摩擦减速器的指导。

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