首页> 外文会议>SPE Hydraulic Fracturing Technology Conference and Exhibition >Visual Analysis on the Effects of Fracture-Surface Characteristics and Rock Type on Proppant Transport in Vertical Fractures
【24h】

Visual Analysis on the Effects of Fracture-Surface Characteristics and Rock Type on Proppant Transport in Vertical Fractures

机译:骨折 - 表面特性和岩石型对垂直骨折支线运输影响的视觉分析

获取原文

摘要

The fracture-surface characteristics (such as roughness and fractal dimensions) may greatly affect the proppant transport during hydraulic fracturing operation. Few researches have focused on investigating the proppant transport in vertical fracture with actual surface characteristics. As a continuation of our previous study (Huang et al. 2017), we qualitatively investigatethe migration of proppants in rough and vertical fractures by considering the effects of surface characteristics and rock type on the instantaneous transport and areal spreading of proppant in the fractures. We fractured different types of tight rocks (including limestone, marble, tight sandstone, and granite) with Brazilian test and molded them to manufacture 20×20cm transparent replicas with an aperture of 1 mm. We characterized the surface characteristics of these rock samples with different fractal dimensions. Subsequently, dyed fracturing fluid with or without proppant loading was injected into the rough vertical fracture. In each test, we monitored the inlet pressure continuously while the proppants were being transported in the fracture. The process was videotaped to monitor the proppant distribution in the rough fracture. Different from our previous study (Huang et al. 2017), a higher injection rate is used in this present study. The experimental results obtained in this study further consolidate the many findings reported in our recent study (Huang et al. 2017): in rough and narrow fracture, the surface roughness plays a pivotal role in affecting how proppants settle in the fracture as well as where the proppants settle in the fracture. Roughness of the vertical fractures tends to significantly enhance the vertical placement of proppants in the fracture, leading to a much higher proppant-filling ratio in a rough fracture than in a smooth fracture. Interestingly, in addition to the bridging effect observed in Huang et al. (2017), a previously formed proppants cluster can be broken up under a higher-rate slurry flow. The bridging of proppants and its subsequent breaking up can recursively occur during the high-rate slurry flow, resulting in fluctuations in the proppant filling ratios as well as fluctuations in the pressure profiles recorded in the inlet of the fracture model. The roughness of fracture models not only affects how much area of the fracture is being occupied by the proppants in the fracture, but also affects how tightly the proppants are filling up the fracture. Different types of rock have different surface characteristics, leading to the observed differences with regard to how the proppants migrate, settle down and fill up the fractures. No definite correlation could be established between any of the fractal numbers and the relative coverage of proppants in the fracture. More experiments, however, need to be conducted to reach more concrete conclusions in this regard.
机译:断裂表面特性(例如,粗糙度和分形维数)可以极大地影响水力压裂操作过程中支撑剂传输。少数研究都集中在调查垂直裂缝中的支撑剂运输与实际的表面特性。正如我们以前研究的延续(黄等人2017年),我们考虑的表面特性和瞬时传输岩石类型的影响,面积在裂缝蔓延支撑剂在粗糙和垂直裂缝支撑剂的定性investigatethe迁移。我们断裂不同类型的紧岩(包括石灰岩,大理石,致密砂岩和花岗石)与巴西测试的成型他们制造20×20厘米透明副本以1mm的孔。我们的特点这些岩石样本具有不同的分形维数的表面特性。接着,有或没有支撑剂装载染色的压裂流体被注入到粗垂直裂缝。在每个测试中,我们连续监测的入口压力而被支撑剂在裂缝中被运输。该过程被录影监测该粗糙裂隙支撑剂分布。从我们以前的研究(Huang等人2017年)不同的是,较高的注射率在本研究中使用。在这项研究中获得的实验结果进一步巩固我们在最近的研究报告在大量的调查结果(Huang等人2017年):在粗糙和狭窄的裂缝,表面粗糙度在影响着举足轻重的作用,支撑剂在裂缝中如何解决,以及在哪里支撑剂沉降在裂缝中。的垂直裂缝的粗糙度趋于显著提高在裂缝的支撑剂的垂直位置,导致高得多的支撑剂的填充率在一个粗略的断裂比在光滑断裂。有趣的是,除了桥接效应在Huang等人观察到。 (2017),先前形成的支撑剂集群可以较高的速率浆体流量下被分解。可以在高速率的浆液流期间发生递归的支撑剂和其随后分手的桥接,从而在支撑剂充填率的波动,以及在记录在裂缝模型的入口中的压力分布的波动。骨折模型的粗糙度不仅影响如何骨折的多区域由支撑剂在裂缝中被占用,而且还影响了如何紧紧的支撑剂填充裂缝。不同类型的岩石具有不同的表面特性,从而导致对于观察到的差异,如何支撑剂迁移,安顿下来,填补了骨折。没有明确的相关性可以任意形维数和裂缝支撑剂的相对覆盖范围之间建立。更多的实验,然而,要进行必要在这方面达成更为具体的结论。

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