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sw8-9-3井混注可降解纤维压裂施工分析

Analysis on theFracturing Treatment with Reducible Fiber in SW8-9-3
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摘要 为解决压后返排支撑剂回流问题,对东北分公司sw 8-9-3井进行了全程纤维加砂施工。现场实验和文献调研证明,纤维可提高压裂液携砂能力,有利于提高支撑缝长,改善裂缝中支撑剂的分布剖面。该井后不关井直接进行压裂液快速返排,排液时间显著缩短,返排效率高。加入纤维可以减缓支撑剂的沉降速度,提高悬砂性能,因此可进一步考虑减少聚合物等增粘剂的加入量,最大限度保护储层,优化导流能力,提高产量。 In order to deal with the flowback of proppant,fiber was introduced into the entire stimulation treatment of the well sw8-9-3 in the Northeast Branch of Sinopec.Both field experiment and the document have demonstrated that fiber can enhance proppant carrying capacity of the fracturing fluid,and also increase the propped fracture length and improve the proppant distribution in the fracture.In this well,the fluid began flowback immediately after the treatment without shut-in.In this way,the flowback time has been significantly shorted,but the fluid recovery increased.As the fiber can decrease proppant settling rate and improve the proppant carrying capacity,the polymer can be further reduced,which will facilitate to protect the formation,to improve the conductivity and to enhance the production.
出处 《内蒙古石油化工》 CAS 2012年第11期19-20,共2页 Inner Mongolia Petrochemical Industry
基金 国家科技支撑计划项目"低(超低)渗油气田高效增产改造和提高采收率技术与产业化示范"(2007BAB17B03)
关键词 水力压裂 可降解纤维 支撑剂回流 Hydraulic Fracturing Reducible Fiber Proppant Flowback
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  • 1管保山,汪义发,何治武,杜彪,刘静.CJ2-3型可回收低分子量瓜尔胶压裂液的开发[J].油田化学,2006,23(1):27-31. 被引量:49
  • 2庄照锋,张士诚,张劲,马新仿,秦钰铭.硼交联羟丙基瓜尔胶压裂液回收再用可行性研究[J].油田化学,2006,23(2):120-123. 被引量:48
  • 3Romero J, Feraud J P. Stability of proppant pack reinforced with fiber for proppant flowback control[ Z]. SPE 31093, 1996.
  • 4Cantu L A, Boyd P A. Lab and field evaluation of a combined fluid loss control additive and gel breaker for fracturing flulds[J]]. Sot: Petrol Engrs Production Engng, 1990, 5(3) :253 -260.
  • 5Parker M, Slabaugh B, Waiters H,et al. New hydraulic fracturing-fluid technology increases production in the Barnett shale and reduces impact on the environment [Z]. SPE 80 912,2003,
  • 6管保山,李静群,赵振峰,等.低渗透油气藏增产技术新进展[M].安徽舒城:石油工业出版社,2006:243-246.
  • 7Thomas R L, Brown J E. The impact of fracturing fluids on conductivity and performance in low-temperature wells [Z]. SPE 18 862.
  • 8Harris P C. Chemistry and rheology of borate crosslinked fluids at temperatures up to 300^·F[Z]. SPE 24 339.
  • 9Sharma M M, Gadde P B, Sullivan R,et al. Slick water and hybrid fracs in the bossier: some lessons learnt [Z]. SPE 89 876,2003.
  • 10Asadi M, Woodroof R W, Malone W S, et al, Monitoring fracturing fluid flowback with chemical tracers: a field case study[Z]. SPE77 750,2002.

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