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Temporary plugging agent transport behavior within visualized multi-fracture created during TPDF in a horizontal well: An experimental study
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作者 Yu-Shi Zou Dian-Yu Li +4 位作者 Can Yang Yan-Chao Li Shi-Cheng Zhang Long-Qing Zou Xin-Fang Ma 《Petroleum Science》 2025年第9期3671-3687,共17页
Temporary plugging and diversion fracturing(TPDF)is widely used to promote the uniform and complex distribution of multi-clustered hydraulic fractures(HFs)in a horizontal well of the unconventional formations.However,... Temporary plugging and diversion fracturing(TPDF)is widely used to promote the uniform and complex distribution of multi-clustered hydraulic fractures(HFs)in a horizontal well of the unconventional formations.However,the migration behavior of temporary plugging agent(TPA),as a function of the concentration and particle size of TPA and cluster-perforation numbers,etc.,determining the effectiveness of this technique,remains unclear.Therefore,this study conducted innovatively a series of TPDF simulation experiments on transparent polymethyl methacrylate(PMMA)specimens(cubic block of 30 cm×30 cm×30 cm)to explore visually the migration behavior of TPA in multi-clustered HFs in a horizontal well.A laboratory hydraulic sandblasting perforation completion technique was implemented to simulate the multi-cluster perforations.All the distributions of wellbore,perforations,HFs,and TPA can be seen clearly inside the PMMA specimen post the experiment.The results show that there are four characteristic plugging positions for the TPA:mouth of HF,middle of HF,tip of HF,and the intersection of HFs.Small particle size TPA tends to migrate to the fracture tip for plugging,while large particle size TPA tends to plug at the fracture mouth.The migration of the TPA is influenced obviously by the morphology of the fracture wall.A smooth fracture wall is conducive to the migration of the TPA to the far end of HFs,but not conducive to generating the plugging zone and HF diversion.In contrast,a"leaf vein"fracture of rough wall is conducive to generating the plugging layer and the diversion of HFs,but not conducive to the migration of the TPA to the far end of HFs.The migration ability of TPA in a"shell"pattern is intermediate between the two above cases.Increasing TPA concentration can encourage TPA to migrate more quickly to the characteristic plugging position,and thereby to promote the creation of effective plugging and subsequently the multi-stage diversion of the HFs.Nevertheless,excessive concentration may cause the TPA to settle prematurely,affecting the propagation of the HFs to the far end.Increasing the number of clusters to a certain extent can encourage TPA to migrate into the HFs and form plugging,and promote the diversion.An evaluation system for the migration ability of granular TPA has been established,and it was calculated that when there is no plugging expectation target,the comprehensive migration ability of small particle size TPA is stronger than that of large particle size TPA.This research provides theoretical foundation for the optimization of temporary plugging parameters. 展开更多
关键词 temporary plugging and diversion fracturing(TPDF) Polymethyl methacrylate(PMMA) Multi-cluster perforation temporary plugging agent migration Visualization plugging position
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Enhancing uniformity of multi-fracture propagation by temporary plugging and diversion fracturing in a horizontal well with multicluster perforations
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作者 Xin Chang Shi-Long Teng +2 位作者 Xing-Yi Wang Yin-Tong Guo Chun-He Yang 《Petroleum Science》 2025年第9期3688-3708,共21页
Multi-stage and multi-cluster fracturing(MMF)is a crucial technology in unconventional oil and gas development,aiming to enhance production by creating extensive fracture networks.However,achieving uniform expansion o... Multi-stage and multi-cluster fracturing(MMF)is a crucial technology in unconventional oil and gas development,aiming to enhance production by creating extensive fracture networks.However,achieving uniform expansion of multi-cluster hydraulic fractures(HFs)in MMF remains a significant challenge.Field practice has shown that the use of temporary plugging and diversion fracturing(TPDF)can promote the balanced expansion of multi-cluster HFs.This study conducted TPDF experiments using a true triaxial fracturing simulation system setting a horizontal well completion with multi-cluster jetting perforations to investigate the equilibrium initiation and extension of multi-cluster fractures.The influence of key parameters,including cluster spacing,fracturing fluid viscosity,differential stress,and fracturing fluid injection rate,on fracture initiation and propagation was systematically examined.The results indicate that while close-spaced multi-cluster fracturing significantly increases the number of HFs,it also leads to uneven extension of HFs in their propagation.In contrast,TPDF demonstrates effectiveness in mitigating uneven HF extension,increasing the number of HFs,and creating a larger stimulated reservoir volume,ultimately leading to improved oil and gas well productivity.Moreover,under conditions of high differential stress,the differential stress within the formation exerts a stronger guiding effect in HFs,which are more closely aligned with the minimum principal stress.Low-viscosity fluids facilitate rapid and extensive fracture propagation within the rock formation.High-volume fluid injection,on the other hand,more comprehensively fills the formation.Therefore,employing lowviscosity and high-volume fracturing is advantageous for the initiation and extension of multi-cluster HFs. 展开更多
关键词 Non-uniformity of fracture propagation temporary plugging and diversion FRACTURING Multi-cluster hydraulic fracturing Fracture propagation
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Development of degradable pre-formed particle gel(DPPG)as temporary plugging agent for petroleum drilling and production 被引量:8
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作者 Dao-Yi Zhu Xing-Yu Fang +3 位作者 Ren-Xian Sun Zeng-Hao Xu Yang Liu Ji-Yang Liu 《Petroleum Science》 SCIE CAS CSCD 2021年第2期479-494,共16页
Temporary plugging agent(TPA)is widely used in many fields of petroleum reservoir drilling and production,such as temporary plugging while drilling and petroleum well stimulation by diverting in acidizing or fracturin... Temporary plugging agent(TPA)is widely used in many fields of petroleum reservoir drilling and production,such as temporary plugging while drilling and petroleum well stimulation by diverting in acidizing or fracturing operations.The commonly used TPA mainly includes hard particles,fibers,gels,and composite systems.However,current particles have many limitations in applications,such as insufficient plugging strength and slow degradation rate.In this paper,a degradable pre-formed particle gel(DPPG)was developed.Experimental results show that the DPPG has an excellent static swelling effect and self-degradation performance.With a decrease in the concentration of total monomers or cross-linker,the swelling volume of the synthesized DPPG gradually increases.However,the entire self-degradation time gradually decreases.The increase in 2-acrylamide-2-methylpropanesulfonic acid(AMPS)in the DPPG composition can significantly increase its swelling ratio and shorten the self-degradation time.Moreover,DPPG has excellent high-temperature resistance(150°C)and high-salinity resistance(200,000 mg/L NaCl).Core displacement results show that the DPPG has a perfect plugging effect in the porous media(the plugging pressure gradient was as high as 21.12 MPa),and the damage to the formation after degradation is incredibly minor.Therefore,the DPPG can be used as an up-and-coming TPA in oil fields. 展开更多
关键词 temporary plugging agents Pre-formed particle gel(PPG) Degradable PPG Petroleum drilling Petroleum production
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Plugging behaviors of temporary plugging particles in hydraulic fractures 被引量:4
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作者 GUO Jianchun ZHAN Li +5 位作者 LU Qianli QI Tianjun LIU Yuxuan WANG Xin CHEN Chi GOU Xinghao 《Petroleum Exploration and Development》 SCIE 2023年第2期464-472,共9页
Using the visualized experimental device of temporary plugging in hydraulic fractures, the plugging behaviors of temporary plugging particles with different sizes and concentrations in hydraulic fractures were experim... Using the visualized experimental device of temporary plugging in hydraulic fractures, the plugging behaviors of temporary plugging particles with different sizes and concentrations in hydraulic fractures were experimentally analyzed under the conditions of different carrier fluid displacements and viscosities. The results show that the greater the carrier fluid viscosity and displacement, the more difficult it is to form a plugging layer, and that the larger the size and concentration of the temporary plugging particle, the less difficult it is to form a plugging layer. When the ratio of particle size to fracture width is 0.45, the formation of the plugging layer is mainly controlled by the mass concentration of the temporary plugging particle and the viscosity of the carrier fluid, and a stable plugging layer cannot form if the mass concentration of the temporary plugging particle is less than 20 kg/m^(3)or the viscosity of the carrier fluid is greater than 3 mPa·s. When the ratio of particle size to fracture width is 0.60, the formation of the plugging layer is mainly controlled by the mass concentration of the temporary plugging particle, and a stable plugging layer cannot form if the mass concentration of the temporary plugging particle is less than 10 kg/m^(3). When the ratio of particle size to fracture width is 0.75, the formation of the plugging layer is basically not affected by other parameters, and a stable plugging layer can form within the experimental conditions. The formation process of plugging layer includes two stages and four modes. The main controlling factors affecting the formation mode are the ratio of particle size to fracture width, carrier fluid displacement and carrier fluid viscosity. 展开更多
关键词 hydraulic fracture temporary plugging and diversion temporary plugging particle plugging characteristics construction parameters combination
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Complex fracture propagation model and plugging timing optimization for temporary plugging fracturing in naturally fractured shale 被引量:4
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作者 TANG Xuanhe ZHU Haiyan +1 位作者 CHE Mingguang WANG Yonghui 《Petroleum Exploration and Development》 2023年第1期152-165,共14页
In this paper,a viscoelasticity-plastic damage constitutive equation for naturally fractured shale is deduced,coupling nonlinear tensile-shear mixed fracture mode.Dynamic perforation-erosion on fluid re-distribution a... In this paper,a viscoelasticity-plastic damage constitutive equation for naturally fractured shale is deduced,coupling nonlinear tensile-shear mixed fracture mode.Dynamic perforation-erosion on fluid re-distribution among multi-clusters are considered as well.DFN-FEM(discrete fracture network combined with finite element method)was developed to simulate the multi-cluster complex fractures propagation within temporary plugging fracturing(TPF).Numerical results are matched with field injection and micro-seismic monitoring data.Based on geomechanical characteristics of Weiyuan deep shale gas reservoir in Sichuan Basin,SW China,a multi-cluster complex fractures propagation model is built for TPF.To study complex fractures propagation and the permeability-enhanced region evolution,intersecting and competition mechanisms between the fractures before and after TPF treatment are revealed.Simulation results show that:fracture from middle cluster is restricted by the fractures from side-clusters,and side-clusters plugging is benefit for multi fractures propagation in uniformity;optimized TPF timing should be delayed within a higher density or strike of natural fractures;Within a reservoir-featured natural fractures distribution,optimized TPF timing for most clustered method is 2/3 of total fluid injection time as the optimal plugging time under different clustering modes. 展开更多
关键词 shale gas naturally fractured shale temporary plugging fracturing fracture propagation plugging timing discrete fracture network finite element method
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Numerical investigation of refracturing with/without temporarily plugging diverters in tight reservoirs 被引量:3
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作者 Xiao-Hua Wang Feng-Shou Zhang +4 位作者 Zi-Rui Yin Ding-Wei Weng Hong-Bo Liang Jun-Ping Zhou Bin Xu 《Petroleum Science》 SCIE CAS CSCD 2022年第5期2210-2226,共17页
Refracturing is an importa nt technique to tap the potential of reservoirs and boost production in depleted oil and gas fields.However,fracture propagation during refracturing,including both conventional refracturing ... Refracturing is an importa nt technique to tap the potential of reservoirs and boost production in depleted oil and gas fields.However,fracture propagation during refracturing,including both conventional refracturing and temporary-plugging refracturing remains poorly understood,especially for cases with non-uniform distribution of formation pressure due to long-term oil production and water injection.Therefore,taking pilot tests of refracturing with sidetracking horizontal wells in tight reservoirs in the Changqing Oilfield,China as an example,we establish a three-dimensional numerical model of conventional refracturing and a numerical model of temporary-plugging refracturing based on the discrete lattice method.Non-uniform distributions of formation pressure are imported in these models.We discuss the effects of key operating parameters such as injection rate,cluster spacing,and number of clusters on the propagation of multi-cluster fractures for conventional refracturing.For temporaryplugging refracturing,we examine the impacts of controlling factors such as the timing and number of temporary plugging on fracture propagation.In addition,we analyze a field case of temporaryplugging refracturing using well P3 in the Changqing Oilfield.The results show that fractures during re fracturing tend to propagate preferentially and dominantly in the depleted areas.Improved stimulation effect can be obtained with an optimal injection rate and a critical cluster spacing.The proposed model of temporary-plugging refracturing can well describe the temporary plugging of dominant existingfractures and the creation of new-fractures after fracturing fluid is forced to divert into other clusters from previous dominant clusters.Multiple temporary plugging can improve the balanced propagation of multi-cluster fractures and obtain the maximum fracture area.The established numerical model and research results provide theoretical guidance for the design and optimization of key operating parameters for refracturing,especially for temporary-plugging refracturing. 展开更多
关键词 Tight reservoir Hydraulic fracturing temporary plugging Discrete lattice method Multi-cluster fracturing
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Fracture propagation law of temporary plugging and diversion fracturing in shale reservoirs under completion experiments of horizontal well with multi-cluster sand jetting perforation 被引量:2
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作者 ZOU Yushi LI Yanchao +3 位作者 YANG Can ZHANG Shicheng MA Xinfang ZOU Longqing 《Petroleum Exploration and Development》 SCIE 2024年第3期715-726,共12页
This study conducted temporary plugging and diversion fracturing(TPDF)experiments using a true triaxial fracturing simulation system within a laboratory setting that replicated a lab-based horizontal well completion w... This study conducted temporary plugging and diversion fracturing(TPDF)experiments using a true triaxial fracturing simulation system within a laboratory setting that replicated a lab-based horizontal well completion with multi-cluster sand jetting perforation.The effects of temporary plugging agent(TPA)particle size,TPA concentration,single-cluster perforation number and cluster number on plugging pressure,multi-fracture diversion pattern and distribution of TPAs were investigated.A combination of TPAs with small particle sizes within the fracture and large particle sizes within the segment is conducive to increasing the plugging pressure and promoting the diversion of multi-fractures.The addition of fibers can quickly achieve ultra-high pressure,but it may lead to longitudinal fractures extending along the wellbore.The temporary plugging peak pressure increases with an increase in the concentration of the TPA,reaching a peak at a certain concentration,and further increases do not significantly improve the temporary plugging peak pressure.The breaking pressure and temporary plugging peak pressure show a decreasing trend with an increase in single-cluster perforation number.A lower number of single-cluster perforations is beneficial for increasing the breaking pressure and temporary plugging peak pressure,and it has a more significant control on the propagation of multi-cluster fractures.A lower number of clusters is not conducive to increasing the total number and complexity of artificial fractures,while a higher number of clusters makes it difficult to achieve effective plugging.The TPAs within the fracture is mainly concentrated in the complex fracture areas,especially at the intersections of fractures.Meanwhile,the TPAs within the segment are primarily distributed near the perforation cluster apertures which initiated complex fractures. 展开更多
关键词 shale temporary plugging and diversion fracturing multi-cluster sand jetting perforation distribution of temporary plugging agent fracture propagation law
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A bull-heading water control technique of thermo-sensitive temporary plugging agent 被引量:4
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作者 LIU Pingde WEI Falin +3 位作者 ZHANG Song ZHU Xiuyu WANG Longfei XIONG Chunming 《Petroleum Exploration and Development》 2018年第3期536-543,共8页
Aimed at the disadvantages of secondary damage to oil layers caused by the conventional bull-heading water control technique, a thermo-sensitive temporary plugging agent for water control was synthesized by water solu... Aimed at the disadvantages of secondary damage to oil layers caused by the conventional bull-heading water control technique, a thermo-sensitive temporary plugging agent for water control was synthesized by water solution polymerization and applied in the field with a new secondary temporary plugging technique. The optimization and performance evaluation of thermo-sensitive temporary plugging agent were carried out through laboratory experiments. The optimized formula is as follows:(6%-8%) acrylamide +(0.08%-0.12%) ammonium persulfate +(1.5%-2.0%) sepiolite +(0.5%-0.8%) polyethylene glycol diacrylate. The thermo-sensitive temporary plugging agent is suitable for formation temperatures of 70-90 ?C, it has high temporary plugging strength(5-40 k Pa), controllable degradation time(1-15 d), the apparent viscosity after degradation of less than 100 m Pa?S and the permeability recovery value of simulated cores of more than 95%. Based on the research results, secondary temporary plugging technique was used in a horizontal well in the Jidong Oilfield. After treatment, the well saw a drop of water cut to 27%, and now it has a water cut of 67%, its daily increased oil production was 4.8 t, and the cumulative oil increment was 750 t, demonstrating that the technique worked well in controlling water production and increasing oil production. 展开更多
关键词 bull-heading water control TECHNIQUE THERMO-SENSITIVE temporary plugging agent secondary temporary plugging TECHNIQUE thermal degradation property RESERVOIR protection
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Degradable preformed particle gel as temporary plugging agent for low-temperature unconventional petroleum reservoirs:Effect of molecular weight of the cross-linking agent 被引量:2
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作者 Hong-Jun Zhang Dao-Yi Zhu +8 位作者 Yong-Long Gong Jun-Hui Qin Xiao-Ning Liu Yuan-Hang Pi Qi Zhao Run-Tian Luo Wan-Sheng Wang Ke-Ke Zhi Zong-Jie Mu 《Petroleum Science》 SCIE CAS CSCD 2022年第6期3182-3193,共12页
The development of unconventional petroleum resources has gradually become an important succession for increasing oil production.However,the related engineers and researchers are paying more and more attention to the ... The development of unconventional petroleum resources has gradually become an important succession for increasing oil production.However,the related engineers and researchers are paying more and more attention to the application of temporary plugging agents(TPAs)for their efficient development.TPAs can expand the stimulated reservoir volume(SRV)and facilitate the flow of oil and gas to the bottom of the well.Particle-gels used as temporary plugging agents have the characteristics of the simple injection process,good deformation,high plugging strength,and complete self-degradation performance,which have been widely applied in recent years.In this paper,five samples of DPPG polymerized by different molecular weights of cross-linking agents were prepared.In addition,infrared spectroscopy analysis,differential calorimetry scanning(DSC)analysis,static particle gel swelling and degradation performance evaluation experiments,and dynamic temporary plugging performance experiments in cores were conducted at 34°C.Results show that as the molecular weight of the cross-linking agent(at 0.01 g)in the DPPG molecule decreased from 1,000 to 200 Da,the fewer cross-linking sites of DPPG,the looser the microscopic three-dimensional mesh structure formed.The swelling ratio increased from 7 to 33 times.However,the complete degradation time increased from 40 to 210 min.Moreover,the DSC results confirmed that the higher the molecular weight of the cross-linking agent,the worse is chemical stability and the more prone it to self-degradation.DPPG samples had good temporary plugging performance in reservoir cores.DPPGs prepared by the cross-linking agent with smaller molecular weight has a stronger swelling ratio,higher gel strength,and greater plugging strength in the core permeabilities.Moreover,the degraded DPPG is less damaging to the cores.However,their slower degradation rates take a slightly longer times to reach complete degradation.The results of this paper can provide new ideas and a theoretical basis for the development of particle gel-type temporary plugging agents(TPA)with controllable degradation time in low-temperature reservoirs.It can help to expand the application range of existing DPPG reservoir conditions. 展开更多
关键词 temporary plugging agent Preformed particle gel Degradable cross-linking agent Molecular weight Low-temperature reservoir
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Simulation of fracture control during temporary plugging at fracture openings in deep and ultra-deep shale-gas horizontal wells 被引量:1
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作者 Dongfeng Hu Lan Ren +3 位作者 Zhenxiang Li Jinzhou Zhao Ran Lin Tingxue Jiang 《Natural Gas Industry B》 2022年第5期487-496,共10页
When deep and ultra-deep shale gas well fracturing is carried out,multi-cluster fracturing can hardly realize synchronous initiation and propagation of hydraulic fractures due to the combined effects of heterogeneity ... When deep and ultra-deep shale gas well fracturing is carried out,multi-cluster fracturing can hardly realize synchronous initiation and propagation of hydraulic fractures due to the combined effects of heterogeneity of deep in-situ stress and"dense cluster"fracture arrangement,and the strong interference between fractures aggravates the unbalanced fracture propagation degree.Field practice proves that the fracture-opening temporary plugging fracturing technology can effectively control the unbalanced propagation of multiple fractures.In addition,the application effect of temporary plugging process can be improved by developing a method for simulating fracture control during fracture-opening temporary plugging fracturing of deep/ultra-deep shale-gas horizontal wells.Based on rock mechanics,elasticity mechanics,fluid mechanics and fracture propagation theory,combined with the flow distribution equation of horizontal-well multi-cluster fracturing and the plugging equation of temporary plugging balls,this paper establishes a fracture propagation model and a fracture control simulation method for the fracture-opening temporary plugging fracturing of deep/ultra-deep shale gas horizontal wells.Then,the influences of the number of temporary plugging balls and the times and timing of temporary plugging on temporary plugging control are simulated,and the influences of temporary plugging balls on fracture propagation morphology and SRV(stimulated reservoir volume)distribution are analyzed by taking Sinopec's one deep shale gas well in Dingshan-Dongxi structure of southeast Sichuan Basin as an example.And the following research results are obtained.First,fracture-opening temporary plugging can significantly promote the balanced propagation of multiple fractures,and the simulation confirms that the number of temporary plugging balls and the times and timing of temporary plugging play an important role in fracture control.Second,as the number of temporary plugging balls increase,the SRV increases firstly and then decreases,so there is an optimal number of temporary plugging balls.Third,increasing the times of temporary plugging can improve the fault tolerance rate of temporary plugging and diverting process,but it is necessary to increase the number of temporary plugging balls appropriately.Fourth,when the timing of temporary plugging is appropriate,the balanced propagation of multiple fractures is achieved and the maximum SRV is reached.In conclusion,this method is of great significance to optimizing the design of temporary plugging fracturing,improve the implementation level of field process and develop deep and ultra-deep shale gas efficiently. 展开更多
关键词 Deep and ultra-deep Shale gas Horizontal well temporary plugging fracturing Fracture control In-situ stress Heterogeneity Multi-cluster fracturing
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Transportation and sealing pattern of the temporary plugging ball at the spiral perforation in the horizontal well section
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作者 Qing-Hai Hu Wan Cheng +2 位作者 Zun-Cha Wang Yu-Zhao Shi Guang-Liang Jia 《Petroleum Science》 SCIE EI CAS CSCD 2024年第5期3288-3297,共10页
Multistage fracturing of horizontal wells is a critical technology for unconventional oil and gas reservoir stimulation. Ball-throwing temporary plugging fracturing is a new method for realizing uniform fracturing alo... Multistage fracturing of horizontal wells is a critical technology for unconventional oil and gas reservoir stimulation. Ball-throwing temporary plugging fracturing is a new method for realizing uniform fracturing along horizontal wells and plays an important role in increasing oil and gas production. However,the transportation and sealing law of temporary plugging balls(TPBs) in the perforation section of horizontal wells is still unclear. Using COMSOL computational fluid dynamics and a particle tracking module, we simulate the transportation process of TPBs in a horizontal wellbore and analyse the effects of the ball density, ball diameter, ball number, fracturing fluid injection rate, and viscosity on the plugging efficiency of TPB transportation. This study reveals that when the density of TPBs is close to that of the fracturing fluid and a moderate diameter of the TPB is used, the plugging efficiency can be substantially enhanced. The plugging efficiency is greater when the TPB number is close to twice the number of perforations and is lower when the number of TPBs is three times the number of perforations.Adjusting the fracturing fluid injection rate from low to high can control the position of the TPBs,improving plugging efficiency. As the viscosity of the fracturing fluid increases, the plugging efficiency of the perforations decreases near the borehole heel and increases near the borehole toe. In contrast, the plugging efficiency of the central perforation is almost unaffected by the fracturing fluid viscosity. This study can serve as a valuable reference for establishing the parameters for temporary plugging and fracturing. 展开更多
关键词 temporary plugging ball Horizontal well Multistage fracturing Spiral perforation Numerical simulation
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A new method of temporary plugging based on andreasen equation
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作者 Yuxue Sun Yanyu Qin Qiming Li 《Natural Science》 2011年第2期120-123,共4页
Based on the fractal nature of pore size in sandstone and grindingbody within a certain range and the Andreasen equation in theory, using the optimization theory of traditional tem- porary plugging agent for reference... Based on the fractal nature of pore size in sandstone and grindingbody within a certain range and the Andreasen equation in theory, using the optimization theory of traditional tem- porary plugging agent for reference, we established a new temporary plugging method for reservoir protection. This new method emphasizes on the formulation and optimization of solid filling particles and softening particles. It is good in easy operation and strong applicability. Indoor experiments with the natural core from Hailaer area were conducted using this new method. Compared with traditional methods, the filtration reduced significantly and the permeability recovery was improved greatly, which verified the rationality of this new method. 展开更多
关键词 temporary plugging Technology FORMATION DAMAGE PREVENTION Andreasen EQUATION
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Application of Temporary Plugging Technology in Liaohe Oilfield
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作者 ZHAOChunliang 《外文科技期刊数据库(文摘版)工程技术》 2022年第2期039-044,共6页
At present, the oil and water wells in Liaohe Oilfield have entered the middle and later stages of development. The pressure of the oil and water wells has decreased year by year and the contradiction between injectio... At present, the oil and water wells in Liaohe Oilfield have entered the middle and later stages of development. The pressure of the oil and water wells has decreased year by year and the contradiction between injection and production has become increasingly prominent. In order to maximize its recovery, various new processes and technologies have been widely applied in different oilfields. The loss of workover fluid during workover operation not only increases the dosage of workover fluid, but also causes more serious pollution to the oil layer (formation). Affect oil production after workover operation. 展开更多
关键词 temporary plugging process APPLICATION plugging agent
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Staged fracturing of horizontal shale gas wells with temporary plugging by sand filling
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作者 Liang Xing Zhu Juhui +4 位作者 Shi Xiaozhi Zhang Juncheng Liu Chen He Feng Li Ran 《Natural Gas Industry B》 2017年第2期134-140,共7页
Due to downhole complexities,shale-gas horizontal well fracturing in the Sichuan Basin suffered from casing deformation and failure to apply the technique of cable-conveyed perforation bridge plug.In view of these pro... Due to downhole complexities,shale-gas horizontal well fracturing in the Sichuan Basin suffered from casing deformation and failure to apply the technique of cable-conveyed perforation bridge plug.In view of these problems,a new technique of staged volume fracturing with temporary plugging by sand filling is employed.Based on theoretical analyses and field tests,a design of optimized parameters of coiled tubingconveyed multi-cluster sand-blasting perforation and temporary plugging by sand filling was proposed.It was applied in the horizontalWell ZJ-1 in which casing deformation occurred.The following results are achieved in field operations.First,this technique enables selective staged fracturing in horizontal sections.Second,this technique can realize massive staged fracturing credibly without mechanical plugging,with the operating efficiency equivalent to the conventional bridge plug staged fracturing.Third,full-hole is preserved after fracturing,thus it is possible to directly conduct an open flow test without time consumption of a wiper trip.The staged volume fracturing with temporary plugging by sand filling facilitated the 14-stage fracturing in Well ZJ-1,with similar SRV to that achieved by conventional bridge plug staged fracturing and higher gas yield than neighboring wells on the same well pad.Thus,a new and effective technique is presented in multi-cluster staged volume fracturing of shale gas horizontal wells. 展开更多
关键词 Multi-cluster sand-blasting perforation temporary plugging by sand filling Staged fracturing Volume fracturing Casing deformation Shale gas Horizontal well Zhaotong national shale gas demonstration zone
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孔隙型碳酸盐岩复合暂堵体积酸压技术探索
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作者 卢澍韬 高纯良 +4 位作者 罗洋 杨婷婷 顾明勇 张永 郭然 《中外能源》 2026年第1期61-65,共5页
针对孔隙型碳酸盐岩储层致密、缝洞弱且连通性差,常规酸压难以经济有效动用的问题,以合川地区茅口组弱云化储层为研究对象,从天然裂缝发育、地应力、岩石力学特征等方面分析体积酸压的可行性。储层天然裂缝较发育、脆性指数在0.43~0.6,... 针对孔隙型碳酸盐岩储层致密、缝洞弱且连通性差,常规酸压难以经济有效动用的问题,以合川地区茅口组弱云化储层为研究对象,从天然裂缝发育、地应力、岩石力学特征等方面分析体积酸压的可行性。储层天然裂缝较发育、脆性指数在0.43~0.6,为形成复杂裂缝提供了有利条件,但中等应力差限制了裂缝复杂程度。为此提出“深穿透、增复杂、强导流”的体积酸压思路,探索采用复合暂堵工艺并优化暂堵剂用量,通过真三轴物模实验、暂堵剂性能评价证明了可有效实现体积改造。优化形成了大规模、中高酸液比例、多级交替注入+复合暂堵改造工艺。在T33井采用酸性压裂液与胶凝酸4级交替注入+复合暂堵工艺,入地总液量1603m^(3),使用暂堵纤维100kg+暂堵颗粒125kg,酸压后试气产量达48.9×10^(4)m^(3)/d,较常规酸压提升220%以上,为同类储层酸压施工提供了借鉴。 展开更多
关键词 孔隙型碳酸盐岩 体积酸压 多级交替注入 复合暂堵 酸液比例 复杂裂缝
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大庆油田致密油藏水平井“体积压裂2.0”技术创新与应用
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作者 康凯 《中外能源》 2026年第1期54-60,共7页
长井段多级压裂水平井技术在北美地区致密油开发中获得成功应用。针对大庆油田致密油储层超低渗透、强非均质性等开发难题,经过十余年技术攻关,创新形成了以“段内多簇+小簇间距+限流射孔+暂堵转向+全石英砂组合+一体化滑溜水连续加砂... 长井段多级压裂水平井技术在北美地区致密油开发中获得成功应用。针对大庆油田致密油储层超低渗透、强非均质性等开发难题,经过十余年技术攻关,创新形成了以“段内多簇+小簇间距+限流射孔+暂堵转向+全石英砂组合+一体化滑溜水连续加砂”为核心的水平井“体积压裂2.0”技术。该技术突破了传统压裂技术单一裂缝改造的局限性,实现了致密油储层立体网络化改造。以S区块为研究对象,建立了适应大庆油田致密油储层地质特征的油藏概念模型,系统优化了体积压裂关键参数。研究确定最优技术组合为:段内多簇数3~5个,簇间距10~15m,限流射孔参数12~16孔/m,暂堵球粒径8~12mm,全石英砂组合,一体化滑溜水体系。试验井初期日产油量16.97t/d,较常规压裂技术提升57.1%,改造体积增加2.1倍,使致密油成为大庆油田新的增储领域。 展开更多
关键词 致密油藏 体积压裂2.0 段内多簇 暂堵转向 体积改造 水平井
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High-strength and self-degradable sodium alginate/polyacrylamide preformed particle gels for conformance control to enhance oil recovery 被引量:6
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作者 Xiao Zhang Jia-Nan Deng +11 位作者 Kai Yang Qian Li Sen-Yao Meng Xiu-Xia Sun Zhao-Zheng Song Yong-Dong Tian Sui-An Zhang Xin-Jia Liu Zhan-Yi Wang Xin-Yu Liu Gui-Wu Lu Zi-Long Liu 《Petroleum Science》 SCIE CAS CSCD 2022年第6期3149-3158,共10页
Excess water production has become an important issue in the oil and gas extraction process.Preformed particle gels(PPGs),show the capability to control the conformance and reduce excess water cut.However,conventional... Excess water production has become an important issue in the oil and gas extraction process.Preformed particle gels(PPGs),show the capability to control the conformance and reduce excess water cut.However,conventional PPGs have poor mechanical properties and their swollen particles are easily damaged by shearing force when passing through the fractures in formations,meanwhile PPGs can be also degraded into various byproducts,leading to permanent damage to the reservoir permeability after temporary plugging.Herein,a novel type of dual cross-linked PPGs(dPPGs)was designed and synthesized using sodium alginate(SA)and acrylamide(AAm),cross-linked with N,N’-methylenebisacrylamide(MBA)and Fe^(3+).Results show that dPPGs have excellent mechanical properties with a storage modulus up to 86,445 Pa,which is almost 20 times higher than other reported PPGs.Meanwhile,dPPGs can be completely degraded into liquid without any solid residues or byproducts and the viscosity of dPPGs degraded liquid was found to be lower than 5 mPa·s.A laboratory coreflooding test showed that the plugging efficiency of dPPGs was up to 99.83%on open fractures.The obtained results demonstrated that dPPGs could be used as economical and environment-friendly temporary plugging agent with high-strength,self-degradation,thermal stability,and salt stability,thus making it applicable to a wide range of conformance control to enhance oil recovery. 展开更多
关键词 Conformance control Sodium alginate Dual cross-linked temporary plugging agent high-strength Self-degradation
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深层油气层水力压裂化学暂堵剂研究进展及展望 被引量:1
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作者 戴彩丽 王子昭 +5 位作者 李琳 蒋田宇 刘津铭 董云博 赵明伟 吴一宁 《天然气工业》 北大核心 2025年第4期19-32,共14页
深层油气储层普遍具有埋藏深、温度高、压力大、非均质性强、地层流体特征复杂、自然产能低,岩石塑性强等特征,油气层暂堵压裂技术一般通过化学暂堵剂来实现压力转向开启新裂缝,从而有效提高储层的增产改造体积。暂堵剂性能对于深层油... 深层油气储层普遍具有埋藏深、温度高、压力大、非均质性强、地层流体特征复杂、自然产能低,岩石塑性强等特征,油气层暂堵压裂技术一般通过化学暂堵剂来实现压力转向开启新裂缝,从而有效提高储层的增产改造体积。暂堵剂性能对于深层油气水力压裂形成复杂缝网至关重要。为此,通过对现有深层油气化学暂堵压裂技术进行梳理和总结,结合各储层应用条件、施工工况提出了深层油气暂堵剂关键应用材料的使用要求,然后通过对各类深层油气储层暂堵材料的作用机理及现场应用调研,明晰了深层油气层水力压裂暂堵材料研发面临的挑战并对其技术发展方向进行了展望。研究结果表明:①现有深层油气层暂堵压裂技术针对不同储层特征已经形成了较为完善的施工工艺,缝口/缝内暂堵材料的性能要求主要集中在高温(>160℃)适应性、封堵后高承压能力(有效暂堵压力10~20 MPa)以及降解后低残渣率(降解率>99%);②现有缝口/缝内暂堵材料分别以金属合金及有机高分子类、树脂及凝胶类或复合类为主,室内岩心暂堵实验评价能够实现最高耐温160℃、缝口/缝内承压最高30 MPa/24.6 MPa;③针对耐温超160℃储层,暂堵材料研发主要面临高温封堵结构提前失效、混合致密承压材料降解后残渣率较高和暂堵压裂支撑裂缝导流能力差等问题,后续暂堵材料应从提升封堵结构致密性、优化暂堵剂结构、合理调整可降解材料中混合耐温材料占比等方面进行研发。结论认为,现有深层油气层暂堵转向压裂储层改造能力主要受关键暂堵材料影响,将来暂堵材料研发应向多功能、复合化方向发展,该成果可以为研发适用于超160℃油气层暂堵压裂关键材料提供理论指导。 展开更多
关键词 深层油气藏 水力压裂 暂堵转向 化学暂堵剂 非均质性 展望
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双模态暂堵储层保护增产技术的探索与实践
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作者 刘伟 杨斌 +4 位作者 王京光 何旺 许朝阳 张小平 贾俊 《钻采工艺》 北大核心 2025年第5期136-142,共7页
针对致密油藏开发中油层暂堵剂滞留伤害严重、返排效率低的技术难题,文章创新提出“油溶暂堵-可控降解双模态暂堵”协同技术。通过自研油溶性树脂基暂堵剂G386-OS(粒径:20~300μm,模拟地层条件下,油溶率≥99%)和pH、温度双响应型自降解... 针对致密油藏开发中油层暂堵剂滞留伤害严重、返排效率低的技术难题,文章创新提出“油溶暂堵-可控降解双模态暂堵”协同技术。通过自研油溶性树脂基暂堵剂G386-OS(粒径:20~300μm,模拟地层条件下,油溶率≥99%)和pH、温度双响应型自降解微球暂堵剂G307-MS(粒径:5~25μm,模拟地层条件下,240 h降解率65.3%~78.1%),由此构建油溶暂堵-可控降解双模态暂堵低伤害钻井液体系,形成了“近井带油溶解除+较深暂堵带自降解”的油层双重保护机制。实验评价表明:双模态暂堵体系使得鄂尔多斯盆地陇东侏罗系油层岩心钻井液瞬时封堵滤失量平均降低91.6%;暂堵率达到96.1%,渗透率恢复值达95.3%。该体系在陇东侏罗系油藏现场应用140余口井,日产液提高率14.0%~25.7%,日产油提高率29.2%~54.8%,成功解决了鄂尔多斯盆地陇东侏罗系油藏开发中的钻井液伤害难题,增产效果显著,为同类型致密油藏高效开发提供了新技术。 展开更多
关键词 侏罗系油层 油溶暂堵 自降解暂堵 储层保护钻井液 暂堵率
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绳结式暂堵剂高压暂堵矿场尺度试验
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作者 许江文 王明星 +3 位作者 吴宝成 谢勃勃 谭林 王博 《石油钻探技术》 北大核心 2025年第4期117-122,共6页
针对现有暂堵试验难以满足高温高压大尺度条件、试验结果对孔眼暂堵施工指导有限的问题,设计了大尺度高承压孔眼暂堵试验装置,综合考虑绳结式暂堵剂球结直径、储层温度及流体压力等因素,通过孔眼封堵试验揭示了暂堵规律,明确了球结直径... 针对现有暂堵试验难以满足高温高压大尺度条件、试验结果对孔眼暂堵施工指导有限的问题,设计了大尺度高承压孔眼暂堵试验装置,综合考虑绳结式暂堵剂球结直径、储层温度及流体压力等因素,通过孔眼封堵试验揭示了暂堵规律,明确了球结直径与孔眼直径的匹配关系及温度和压力对封堵效果的影响。研究结果表明:封堵直径12 mm的孔眼需球结直径15~22 mm的绳结式暂堵剂,封堵直径10 mm的孔眼需球结直径13~14 mm的绳结式暂堵剂,且绳结球结直径应比孔眼大3~5 mm;绳结式暂堵剂可有效封堵破裂盘及滑套孔眼,并在25 MPa压力下保持稳定封堵;当设定封堵压力20 MPa、温度40~95℃时,绳结式暂堵剂可维持5~7 d有效封堵。基于试验结果,建议采用适配尺寸的绳结式暂堵剂封堵优势进液射孔孔眼,促进段内多簇裂缝均衡起裂与扩展。研究结果为矿场暂堵施工优化设计提供了依据。 展开更多
关键词 绳结式暂堵剂 高承压 暂堵规律 矿场试验
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