钻采工程

人工井壁防砂树脂涂覆颗粒耐冲刷性能评价实验装置研制与应用

  • 张云飞 ,
  • 苏延辉 ,
  • 江安 ,
  • 郑晓斌 ,
  • 黄毓祥 ,
  • 崔国亮 ,
  • 王康男
展开
  • 1.中海油能源发展股份有限公司工程技术分公司,天津 300452;
    2.中国石油长庆油田分公司,陕西 西安 710000
张云飞(1988—),男,工程师,2012年毕业于中国石油大学(华东)材料物理专业,2015年毕业于该校石油与天然气工程专业,获硕士学位,现从事油田化学技术研究与应用工作。

收稿日期: 2020-11-20

  修回日期: 2021-10-29

  网络出版日期: 2023-01-10

基金资助

中海油能源发展重大科技专项“疏松砂岩过筛管压裂工艺技术优化研究”(HFZXKT-GJ20200103);中海油工程技术分公司项目“注水井人工井壁涂覆砂材料研究”(GCJSXMHT-E1906) 国家专利:一种化学防砂固结岩心耐冲刷实验评价装置,ZL202021307155.7

Development and Application of an Experimental Device for Evaluating the Scouring Resistance of Resin-coated Particles for Artificial Sidewall Sanding Control

  • Zhang Yunfei ,
  • Su Yanhui ,
  • Jiang An ,
  • Zheng Xiaobin ,
  • Huang Yuxiang ,
  • Cui Guoliang ,
  • Wang Kangnan
Expand
  • 1. Engineering Technology Branch, CNOOC Energy Technology & Services Limited, Tianjin 300452, China;
    2. PetroChina Changqing Oilfield Company, Xi′an, Shaanxi 710000, China

Received date: 2020-11-20

  Revised date: 2021-10-29

  Online published: 2023-01-10

摘要

树脂涂覆颗粒耐冲刷性是反映人工井壁防砂工艺有效性的重要指标,但目前尚没有专业设备能够对该指标进行评价。为此,研制了一种人工井壁防砂树脂涂覆颗粒耐冲刷性能评价实验装置,利用该实验装置可模拟冲刷排量、冲刷线速度、冲刷压差及冲刷时间等因素对人工井壁防砂树脂涂覆颗粒耐冲刷性的影响。利用该装置对海上某油田在用的2种树脂涂覆颗粒FQ-1和HY进行耐冲刷性能评价,实验结果与现场实际出砂现象基本一致,树脂涂覆颗粒HY耐冲刷性更强。根据实验结果,在后续人工井壁防砂中使用树脂涂覆颗粒HY,防砂效果良好。该实验装置的成功研制为人工井壁防砂树脂涂覆颗粒优选提供了一种新的评价手段,为人工井壁防砂技术在海上油田的大规模推广应用提供了技术支持。

本文引用格式

张云飞 , 苏延辉 , 江安 , 郑晓斌 , 黄毓祥 , 崔国亮 , 王康男 . 人工井壁防砂树脂涂覆颗粒耐冲刷性能评价实验装置研制与应用[J]. 特种油气藏, 2022 , 29(1) : 169 -174 . DOI: 10.3969/j.issn.1006-6535.2022.01.025

Abstract

The scouring resistance of resin-coated particles is an important indicator of the effectiveness of the artificial sidewall sanding control technology, but there is no professional equipment available to evaluate this indicator. Therefore, an experimental device for evaluating the erosion resistance of resin-coated particles for artificial sidewall sanding control was developed, which can simulate the effects of such factors as scouring displacement, linear scouring velocity, scouring pressure difference and scouring time on the scouring resistance of resin-coated particles for artificial sidewall. The device was applied to evaluate the scouring resistance of two types of resin-coated particles (FQ-1 and HY) used in an offshore oilfield. The experimental results were in general agreement with the actual sanding in the field, and the resin-coated particle HY was more resistant to scouring. According to the experimental results, the resin-coated particle HY was used in the subsequent sanding control of the artificial sidewall, achieving outstanding sanding control effect. The experimental device successfully developed provides a new evaluation method for the selection of resin-coated particles for artificial sidewall sanding control, and provides technical support for the large-scale promotion and application of artificial sidewall sanding control technology in offshore oilfields.

参考文献

[1] 范明福.低温油井覆膜砂人工井壁防砂技术与应用[J].科学技术与工程,2017,17(12):168-171.
FAN Mingfu.Investigation and application of coated sand artificial borehole wall sand control technology in low temperature oil well[J].Science Technology and Engineering,2017,17(12):168-171.
[2] 党杨斌,杨会洁,程亮,等.高强度人工井壁防砂工艺技术在跃进二号油田的实验[J].青海石油,2014,32(1):56-58.
DANG Yangbin,YANG Huijie,CHENG Liang,et al.Experiment of high-strength artificial sidewall sanding control technology in Yuejin2 Oilfield[J].Qinghai Shiyou,2014,32(1):56-58.
[3] 郑建军.渤海A油田出砂实验及应用研究[J].石油地质与工程,2020,34(3):95-98.
ZHENG Jianjun.Experiment and application of sand production of Bohai A Oilfield[J].Petroleum Geology & Engineering,2020,34(3):95-98.
[4] 李怀文,孙涛,王超,等.超低温新型树脂涂敷砂及人工井壁防砂技术[J].石油学报,2016,37(S2):112-116.
LI Huaiwen,SUN Tao,WANG Chao,et al.The new ultralow-temperature resin coated sand and artificial borehole wall sand control technology[J].Acta Petrolei Sinica,2016,37(S2):112-116.
[5] 何海峰.胜利海上疏松砂岩油藏分层防砂分层采油技术[J].石油钻探技术,2021,49(6):99-104.
HE Haifeng.Separate layer sand control and oil production technology in offshore unconsolidated sandstone reservoirs of Shengli Oilfield[J].Petroleum Drilling Techniques,2021,49(6):99-104.
[6] 周泓宇,万小进,吴绍伟,等.水平井控水砾石充填防砂技术研究[J].石油钻探技术,2021,49(1):101-106.
ZHOU Hongyu,WAN Xiaojin,WU Shaowei,et al.Study on the sand control technique for gravel packing with water control for horizontal wells[J].Petroleum Drilling Techniques,2021,49(1):101-106.
[7] 王力智,董长银,何海峰,等.非均相聚合物驱油藏防砂井近井挡砂介质堵塞机理实验研究[J].石油钻探技术,2020,48(5):92-99.
WANG Lizhi,DONG Changyin,HE Haifeng,et al.An experimental study on the plugging mechanisms of sand-preventing medium in the near-well zone of sand control wells in heterogeneous polymer-flooding reservoirs[J].Petroleum Drilling Techniques,2020,48(5):92-99.
[8] 付洪琼,郭小阳,瞿雄,等.一种添加环氧树脂乳液的优质固井水泥浆[J].天然气工业,2021,41(11):115-121.
FU Hongqiong,GUO Xiaoyang,QU Xiong,et al.High-quality cementing slurry with epoxy resin emulsion[J].Natural Gas Industry,2021,41(11):115-121.
[9] 李璐,西尔艾力·买买提,张茹,等.防砂技术现状及砾石充填防砂施工参数的优化[J].新疆石油天然气,2012,8(增刊1):59-65.
LI Lu,XIRALI Maimaiti,ZHANG Ru,et al.Study of the current sand control and optimized operational parameters in gravel pack completion[J].Xinjiang Oil & Gas,2012,8(S1):59-65.
[10] 张国荣,严锦根,郭雄华,等.孤东油田防砂堵水一体化技术研究与应用[J].石油钻采工艺,2001,23(2):69-72.
ZHANG Guorong,YAN Jin′gen,GUO Xionghua,et al.Study and application of sand control and water shutoff system technology in Gudong Oilfield[J].Oil Drilling & Production Technology,2001,23(2):69-72.
[11] 智勤功.分层挤压充填防砂工艺技术研究[D].青岛:中国石油大学(华东),2006.
ZHI Qingong.Separate-layer squeeze gravel packing sand control technology[D].Qingdao:China University of Petroleum(East China),2006.
[12] 林海,邓金根,谢涛,等.地层各向异性对硬脆性泥页岩井壁稳定性的影响[J].东北石油大学学报,2021,45(1):85-94.
LIN Hai,DENG Jin′gen,XIE Tao,et al.Effect of formation anisotropy on wellbore stability of hard brittle shale[J].Journal of Northeast Petroleum University,2021,45(1):85-94.
[13] 采油采气专业标准化委员.防砂用树脂性能评价方法:SY/T 6572—2003[S].北京:石油工业出版社,2003:3-7.
Committee of Standardization for Oil and Gas Production.Evaluation method of resin performance for sand control:SY/T 6572-2003[S].Beijing:Petroleum Industry Press,2003:3-7.
[14] 采油采气专业标准化委员.加固井壁和人工井壁防砂工艺作法:SY/T 5338—2011[S].北京:石油工业出版社,2011:3-8.
Committee of Standardization for Oil and Gas Production.Practice for sand control technology of strength and artificial borehole well:SY/T 5338-2011[S].Beijing:Petroleum Industry Press,2011:3-8.
[15] 王宝权.多功能防砂实验装置:200720173187.0[P].2008-8-6.
WANG Baoquan.Multifunctional sand control experimental device:200720173187.0[P].2008-8-6.
[16] 李玉光.化学防砂固砂评价实验装置:201310337863.3[P].2013-11-20.
LI Yuguang.Experimental device for chemical sand control and consolidation evaluation:201310337863.3[P].2013-11-20.
[17] 方舒.一种化学防砂剂的固结装置及固结方法:201710236803.0[P].2017-7-28.
FANG Shu.Consolidation device and method of a chemical sand control agent:201710236803.0[P].2017-7-28.
[18] 潘倩.一种化学防砂配砂及固砂评价实验装置:201621207773.8[P].2017-7-7.
PAN Qian.An experimental device for chemical sand control and sand consolidation evaluation:201621207773.8[P].2017-7-7.
[19] 王宝权,匡韶华,佟姗姗,等.树脂砂人工井壁防砂模拟实验研究[J].新疆石油科技,2014,24(3):23-26.
WANG Baoquan,KUANG Shaohua,TONG Shanshan,et al.Experimental study on simulation of artificial sidewall control with resin sand[J].Xinjiang Petroleum Science & Technology,2014,24(3):23-26.
[20] 刘晓强,孙海,吕爱民,等.考虑压裂液返排的致密气藏气水两相产能分析[J].东北石油大学学报,2020,44(2):103-112.
LIU Xiaoqiang,SUN Hai,LYU Aimin,et al.Gas-water two phased productivity analysis of tight gas reservoir based on fracturing fluid flowback data[J].Journal of Northeast Petroleum University,2020,44(2):103-112.
[21] 徐延涛,郭布民,陈玲,等.海上压裂返排液高效环保处理技术[J].石油地质与工程,2021,35(4):106-109.
XU Yantao,GUO Bumin,CHEN Ling,et al.High efficiency and environmental protection treatment technology for offshore fracturing flow-back fluid[J].Petroleum Geology & Engineering,2021,35(4):106-109.
[22] 魏文科,宋宏宇,李辉.月东油田防砂管柱打捞工艺及工具研究与实践[J].石油地质与工程,2021,35(2):122-126.
WEI Wenke,SONG Hongyu,LI Hui.Research and practice of fishing technology and tools for sand control string in Yuedong Oilfield[J].Petroleum Geology & Engineering,2021,35(2):122-126.
[23] 陈清,曹伟佳,田中原,等.自悬浮支撑剂覆膜材料对储层渗透率影响研究[J].石油化工高等学校学报,2020,33(1):42-47.
CHEN Qing,CAO Weijia,TIAN Zhongyuan,et al.Influence of material coated in self-suspending proppant on reservoir permeability[J].Journal of Petrochemical Universities,2020,33(1):42-47.
[24] 采油采气专业标准化委员.树脂涂敷砂技术要求:SY/T 5274—2016[S].北京:石油工业出版社,2017:7-8.
Committee of Standardization for Oil and Gas Production.Technical requirements for resin-coated sand:SY/T 5274-2016[S].Beijing:Petroleum Industry Press,2017:7-8.
文章导航

/