论文
发表论文90余篇,其中SCI收录52篇(ESI全球TOP1%高被引论文2篇)、中国知网学术精要高被引论文1篇。
[1] Zhao, X, Zhang, H, Wang, S, et al. Characterization and performance evaluation of modified apatite ore as a new acid-soluble weighting agent for drilling fluids[J]. SPE Journal, 2024, 29(1): 55-63. (SCI、EI收录)
[2] Zhao X, Geng Q, Zhang Z, et al. Phase change material microcapsules for smart temperature regulation of drilling fluids for gas hydrate reservoirs[J]. Energy, 2023, 263: 125715.(SCI、EI收录)
[3] Zhao X, Fang Q, Qiu Z, et al. Experimental investigation on hydrate anti-agglomerant for oil-free systems in the production pipe of marine natural gas hydrates[J]. Energy, 2022, 242: 122973.(SCI、EI收录)
[4] Zhao X, Qiu Z, Gao J, et al. Mechanism and effect of nanoparticles on controlling fines migration in unconsolidated sandstone formations[J]. SPE Journal, 2021, 26(6): 3819-3831.(SCI、EI收录)
[5] Zhao X, Qiu Z, Zhang Z, et al. Relationship between the gas hydrate suppression temperature and water activity in the presence of thermodynamic hydrate inhibitor[J]. Fuel, 2020, 264: 116776.(SCI、EI收录)
[6] Zhao X, Qiu Z, Zhao C, et al. Inhibitory effect of water-based drilling fluid on methane hydrate dissociation[J]. Chemical Engineering Science, 2019, 199: 113-122.(SCI、EI收录)
[7] Zhao X, Qiu Z, Sun B, et al. Formation damage mechanisms associated with drilling and completion fluids for deepwater reservoirs[J]. Journal of Petroleum Science and Engineering, 2019, 173: 112-121.(SCI、EI收录)
[8] Zhao X, Qiu Z, Wang M, et al. Experimental investigation of the effect of drilling fluid on wellbore stability in shallow unconsolidated formations in deep water[J]. Journal of Petroleum Science and Engineering, 2019, 175: 595-603. (SCI、EI收录)
[9] Zhao X, Qiu Z, Huang W, et al. Mechanism and method for controlling low-temperature rheology of water-based drilling fluids in deepwater drilling[J]. Journal of Petroleum Science and Engineering, 2017, 154: 405-416. (SCI、EI收录)
[10] Zhao X, Qiu Z, Zhou G, et al. Synergism of thermodynamic hydrate inhibitors on the performance of poly (vinyl pyrrolidone) in deepwater drilling fluid[J]. Journal of Natural Gas Science and Engineering, 2015, 23: 47-54.(SCI、EI收录)
[11] Zhao X, Qiu Z, Huang W. Characterization of kinetics of hydrate formation in the presence of kinetic hydrate inhibitors during deepwater drilling[J]. Journal of Natural Gas Science and Engineering, 2015, 22: 270-278.(SCI、EI收录)
[12] Zhao X, Qiu Z, Wang M, et al. Performance Evaluation of a Highly Inhibitive Water-Based Drilling Fluid for Ultralow Temperature Wells[J]. Journal of Energy Resources Technology, 2018, 140(1): 012906.(SCI、EI收录)
[13] Zhao X, Qiu Z, Zhang Y, et al. Zwitterionic Polymer P (AM-DMC-AMPS) as a Low-Molecular-Weight Encapsulator in Deepwater Drilling Fluid[J]. Applied Sciences, 2017, 7(6): 594.(SCI收录)
[14] Zhao X, Qiu Z, Huang W, et al. Multifunctional properties of polyglycol in deepwater drilling fluids[J]. Chemistry and Technology of Fuels and Oils, 2014, 50(3): 233-239.(SCI、EI收录)
[15] 赵欣,邱正松,黄维安,等.天然气水合物热力学抑制剂作用机制及优化设计[J].石油学报,2015,36(6):760-766.(EI收录)
[16] 赵欣,邱正松,江琳,等.深水钻井液高效水合物抑制剂研究[J].中国石油大学学报(自然科学版),2013,37(6):159-164.(EI收录)
[17] 赵欣,李孙博,马永乐,等.一种海域天然气水合物钻井用相变控温微胶囊[J].天然气工业,2023,43(7):72-78.(EI收录)
[18] 赵欣,耿麒,邱正松,等.深水高孔高渗储层免破胶钻井完井液技术[J]. 天然气工业,2021,41(4):107-114.(EI收录)
[19] 赵欣,邱正松,江琳,等.动力学抑制剂作用下天然气水合物生成过程的实验分析[J].天然气工业,2014,34(2):105-110.(EI收录)
[20] 赵欣,邱正松,张永君,等.复合盐层井壁失稳机理及防塌钻井液技术[J].中南大学学报(自然科学版),2016,47(11):3832-3838.(EI收录)
[21] Zhao X, Qiu Z, Xu J, et al. Flat-rheology oil-based drilling fluid for deepwater drilling[J]. International Journal of Heat and Technology, 2017, 35(1): 19-24.(EI收录)
[22] Zhao X, Qiu Z, Zhou G, et al. Experimental Study on Methane Hydrate Inhibitors for Hydrate Control in Deep-sea Drilling[A]. The Twenty-fifth International Offshore and Polar Engineering Conference[C]. California: ISOPE, 2015.(EI收录)
[23] Zhao X, Qiu Z, Wang M, et al. Reservoir Protection Strategy and a High Performance Drill-In Fluid for Deepwater Wells in the South China Sea[A]. SPE Deepwater Drilling and Completions Conference[C], Galveston: SPE 180294, 2016.(EI收录)
[24] Zhao X, Qiu Z, Wang M, et al. Silicate and Aluminum-Based Drilling Fluids for Stabilizing the Wellbore in Deepwater Drilling[A]. The Twenty-ninth International Offshore and Polar Engineering Conference[C]. California: ISOPE, 2019.(EI收录)
[25] 赵欣,孙昊,邱正松,等.复合盐层多元协同稳定井壁钻井液技术[J].深圳大学学报理工版,2022,39(6):668-674.
[26] 赵欣,邱正松,石秉忠,等.深水聚胺高性能钻井液试验研究[J].石油钻探技术,2013,41(3):35-39.
[27] 赵欣,邱正松,黄维安,等.油基钻井液低温特性实验研究[J].钻井液与完井液,2013,30(3):17-19.
[28] 赵欣,邱正松,邢希金,等.深水钻井液添加剂抑制气体水合物生成实验[J].石油化工高等学校学报,2013,26(5):42-45.
[29] 赵欣,邱正松,高永会,等.缅甸西海岸深水气田水基钻井液优化设计[J].石油钻探技术,2015,43(4):13-18.
[30] Fang Q, Zhao X, Li S, et al. Effect of Surfactants with Different Hydrophilic–Lipophilic Balance on the Cohesive Force between Cyclopentane Hydrate Particles[J]. Journal of Marine Science and Engineering, 2022, 10(9): 1255.(通讯作者,SCI收录)
[31] Fang Q, Zhao X, Sun H, et al. Formation-Damage Mechanism and Gel-Breaker-Free Drill-In Fluid for Carbonate Reservoir[J]. Gels, 2022, 8(9): 565. (通讯作者,SCI收录)
[32] Yuan S, Zhao X, Cheng R, et al. Molecular simulation on adsorption of hydration inhibitor N1, N1’-(ethane-1, 2-diethyl) bis (N1-(2-aminoethyl) ethane-1, 2-diamine onto Montmorillonite[J]. Clay Minerals, 2023.(通讯作者,SCI收录)
[33] Farhadian A, Shadloo A, Zhao X, et al. Challenges and advantages of using environmentally friendly kinetic gas hydrate inhibitors for flow assurance application: A comprehensive review[J]. Fuel, 2023, 336: 127055.(通讯作者,SCI、EI收录)
[34] 邱正松, 高健, 赵欣, 等. 深水疏松砂岩储层微粒运移损害的控制方法[J]. 石油学报, 2022, 43(7): 1016. (通讯作者,EI收录)
[35] Li J, Qiu Z, Zhong H, Zhao X, et al. Effects of water-based drilling fluid on properties of mud cake and wellbore stability[J]. Journal of Petroleum Science and Engineering, 2022, 208: 109704.(通讯作者,SCI、EI收录)
[36] Li J, Qiu Z, Zhao X, et al. Effect of different parameters on sealing performance of lost circulation process with dynamic fracture aperture testing apparatus[J]. Journal of Petroleum Science and Engineering, 2020: 193: 107357.(通讯作者,SCI、EI收录)
[37] 邱正松,赵欣.深水钻井液技术现状与发展趋势[J].特种油气藏,2013,20(3):1-7.
[38] Xu J, Qiu Z, Zhao X, et al. Hydrophobic modified polymer based silica nanocomposite for improving shale stability in water-based drilling fluids[J]. Journal of Petroleum Science and Engineering, 2017, 153: 325-330.(SCI、EI收录)
[39] Xu J, Qiu Z, Zhao X, et al. Synthesis and characterization of shale stabilizer based on polyethylene glycol grafted nano-silica composite in water-based drilling fluids[J]. Journal of Petroleum Science and Engineering, 2018, 163: 371-377. (SCI、EI收录)
[40] Xu J, Qiu Z, Zhao X, et al. A polymer microsphere emulsion as a high-performance shale stabilizer for water-based drilling fluids[J]. RSC Advances, 2018, 8(37): 20852-20861. (SCI、EI收录)
[41] Xu J, Qiu Z, Zhao X, et al. Application of Nano‐Polymer Emulsion for Inhibiting Shale Self‐Imbibition in Water‐Based Drilling Fluids[J]. Journal of Surfactants and Detergents, 2018, 21(1): 155-164. (SCI、EI收录)
[42] Xu J, Qiu Z, Zhao X, et al. Study of 1-Octyl-3-methylimidazolium bromide for inhibiting shale hydration and dispersion[J]. Journal of Petroleum Science and Engineering, 2019, 177: 208-214.(SCI、EI收录)
[43] Bao D, Qiu Z, Zhao X, et al. Experimental investigation of sealing ability of lost circulation materials using the test apparatus with long fracture slot[J]. Journal of Petroleum Science and Engineering, 2019, 183: 106396.(SCI、EI收录)
[44] Zhang Y, Qiu Z, Zhao X, et al. Preparation and characterization of intelligent temperature-control microcapsules for natural gas hydrate bearing sediment[J]. Journal of Molecular Liquids, 2021: 117436.(SCI收录)
[45] Zhang Y, Qiu Z, Zhao X, et al. Experimental study on ultra-low temperature drilling fluid in Arctic permafrost[J]. Polar Science, 2021, 28: 100645.(SCI、EI收录)
[46] Zang X, Qiu Z, Zhong H, Zhao X, et al. Fracture surface morphology characterization and its influence on plugging performance of granular lost circulation materials[J]. Geoenergy Science and Engineering. 2023,230: 212189.(SCI、EI收录)
[47] Li J, Qiu Z, Zhong H, Zhao X, et al. The thermal and chemical effect on wellbore strengthening treatment in shale formation[J]. Journal of Natural Gas Science and Engineering, 2020, 74: 103102.(SCI、EI收录)
[48] Li J, Qiu Z, Zhong H, Zhao X, et al. Optimizing selection method of continuous particle size distribution for lost circulation by dynamic fracture width evaluation device[J]. Journal of Petroleum Science and Engineering, 2021, 200: 108304.(SCI、EI收录)
[49] Wang D, Qiu Z, Zhong H, Zhao X, et al. Performance control of high temperature and high density drilling fluid based on fractal grading theory[J]. Geoenergy Science and Engineering, 2023, 221: 211377.
[50] Wang D, Qiu Z, Zhong H, Zhao X, et al. Measurement of specific surface area of barite in drilling fluid and its applications[J]. Petroleum Science and Technology, 2022: 1-17.
[51] Li J, Qiu Z, Zhong H, Zhao X, et al. Parametric study on near-wellbore fracture geometry for wellbore strengthening in anisotropic formation[J]. Journal of Petroleum Science and Engineering, 2020, 184: 106549.(SCI、EI收录)
[52] Huang W, Qiu Z, Cui M, Zhao X. Development and evaluation of an electropositive wellbore stabilizer with flexible adaptability for drilling strongly hydratable shales[J]. Petroleum Science, 2015, 12(3): 458-469.(SCI收录)
[53] Xu J, Qiu Z, Huang W, Zhao X, et al. Preparation and performance properties of polymer latex SDNL in water-based drilling fluids for drilling troublesome shale formations[J]. Journal of Natural Gas Science and Engineering, 2017, 37: 462-470.(SCI、EI收录)
[54] Li J, Qiu Z, Zhong H, Zhao X, et al. Coupled CFD-DEM analysis of parameters on bridging in the fracture during lost circulation[J]. Journal of Petroleum Science and Engineering, 2019: 106501.(SCI、EI收录)
[55] Qiu Z, Xu J, Yang P, Zhao X, et al. Effect of Amphiphilic Polymer/Nano-Silica Composite on Shale Stability for Water-Based Muds[J]. Applied Sciences, 2018, 8(10): 1839.(SCI收录)
[56] Geng T, Qiu Z, Zhao C, Zhang L, Zhao X. Rheological study on the invert emulsion fluids with organoclay at high aged temperatures[J]. Colloids and Surfaces A: Physicochemical and Engineering Aspects, 2019, 573: 211-221.(SCI、EI收录)
[57] Qiu Z, Li J, Zhong H, Zhao X, Huang W. Parametric study of fracture interference effects on fracture geometry for wellbore strengthening[J]. Energy Sources, Part A: Recovery, Utilization, and Environmental Effects, 2019: 1-18.(SCI收录)
[58] Zhang Y, Qiu Z, Li G, Zhong H, Zhao X, et al. Analysis of Interactions between water and shale by Water Activity[J]. Journal of Natural Gas Science and Engineering, 2020: 103372.
[59] Zhang Y, Qiu Z, Mu J, Ma Y, Zhao X, et al. Intelligent Temperature-Control of Drilling Fluid in Natural Gas Hydrate Formation by Nano-Silica/Modified n-Alkane Microcapsules[J]. Nanomaterials, 2021, 11(9): 2370.
[60] Guo P, Qiu Z, Zang X, Zhong H, Zhao X. Epoxy resin microencapsulated by complex coacervation as physical-chemical synergetic lost circulation control material[J]. Energy, 2024, 293: 130630.
[61] 邱正松,张玉彬,赵欣,等. 海洋天然气水合物地层钻井液优化实验研究[J]. 天然气工业,2019,39(12):104-109.(EI收录)
[62] 邱正松,徐加放,赵欣,等.深水钻井液关键技术研究[J].石油钻探技术,2011,39(2):27-34.
[63] 暴丹,邱正松,赵欣,等.基于温敏形状记忆特性的智能化堵漏材料研究展望[J] .钻井液与完井液,36(3):265-272.
[64] 耿铁,邱正松,汤志川,赵欣,苗海龙.深水钻井抗高温强抑制水基钻井液研制与应用[J]. 石油钻探技术,2019,47(3):82-88.
[65] 邱正松,董兵强,钟汉毅,王伟吉,赵欣.页岩储层保护用O/W纳米乳液的制备[J].化工学报,2015,66(11):4565-4571.(EI收录)
[66] 邱正松,刘扣其,曹杰,赵欣.新型内相油基钻井液性能实验研究[J].钻井液与完井液,2014,31(2):24-27.
[67] 邱正松,刘扣其,曹杰,赵欣,罗洋.NH4Ca(NO3)3内相油基钻井液性能探讨[J].油田化学,2014,31(2):163-166.
[68] 杨一凡,邱正松,李佳,赵欣,钟汉毅,等.渤中19-6深部潜山高温气层保护钻井液技术[J].钻井液与完井液,2020,37(4):476-481.