相似文献/References:
[1]曹银萍,黄宇曦,于凯强,等. 基于ANSYS Workbench完井管柱流固耦合振动固有频率分析[J].油气井测试,2018,27(01):1.[doi:10.19680/j.cnki.1004-4388.2018.01.001]
CAO Yinping,HUANG Yuxi,YU Kaiqiang,et al. Natural frequency analysis for fluidsolid coupling vibration of completion string based on ANSYS workbench[J].Well Testing,2018,27(05):1.[doi:10.19680/j.cnki.1004-4388.2018.01.001]
[2]高 超,艾 昆,高 辉,等. 基于施工压力曲线的综合滤失系数测试方法及压裂参数优化[J].油气井测试,2018,27(01):8.[doi:10.19680/j.cnki.1004-4388.2018.01.002]
GAO Chao,AI Kun,GAO Hui,et al.Test method of total leak-off coefficient and optimization of fracturing parameters based on operation pressure curves[J].Well Testing,2018,27(05):8.[doi:10.19680/j.cnki.1004-4388.2018.01.002]
[3]周小林,高志华,张 冲.龙凤山气田大通径免钻桥塞分段压裂先导试验[J].油气井测试,2018,27(01):62.[doi:10.19680/j.cnki.1004-4388.2018.01.010]
ZHOU Xiaolin,GAO Zhihua,ZHANG Chong. Pilot tests of staged fracturing involving largediameter drillfree bridge plugs in the Longfengshan gas field[J].Well Testing,2018,27(05):62.[doi:10.19680/j.cnki.1004-4388.2018.01.010]
[4]魏 聪,陈宝新,刘 敏,等. 基于反褶积技术的S气井不稳定试井解释[J].油气井测试,2018,27(01):73.[doi:10.19680/j.cnki.1004-4388.2018.01.012]
WEI Cong,CHEN Baoxin,LIU Min,et al. Interpretation of pressure transient well testing data of S gas well based on deconvolution technique[J].Well Testing,2018,27(05):73.[doi:10.19680/j.cnki.1004-4388.2018.01.012]
[5]张中宝.塔河油田深抽杆式泵一体化管柱工艺[J].油气井测试,2018,27(02):27.[doi:10.19680/j.cnki.1004-4388.2018.02.005]
ZHANG Zhongbao.Deep integrated rod pumping string applied in Tahe Oilfield[J].Well Testing,2018,27(05):27.[doi:10.19680/j.cnki.1004-4388.2018.02.005]
[6]李军贤.地层出砂井测试工艺优化[J].油气井测试,2018,27(02):47.[doi:10.19680/j.cnki.1004-4388.2018.02.008]
LI Junxian.Optimization of testing techniques for wells with formation sand production[J].Well Testing,2018,27(05):47.[doi:10.19680/j.cnki.1004-4388.2018.02.008]
[7]张 毅,于丽敏,任勇强,等.一种新型可降解压裂封隔器坐封球[J].油气井测试,2018,27(02):53.[doi:10.19680/j.cnki.1004-4388.2018.02.009]
ZHANG Yi,YU Limin,REN Yongqiang,et al.A new type of degradable setting ball for fracturing packers[J].Well Testing,2018,27(05):53.[doi:10.19680/j.cnki.1004-4388.2018.02.009]
[8]褚春波,郭 权,黄小云,等.有限元分析径向水力压裂裂缝扩展影响因素[J].油气井测试,2018,27(02):59.[doi:10.19680/j.cnki.1004-4388.2018.02.010]
CHU Chunbo,GUO Quan,HUANG Xiaoyun,et al.Finiteelement analysis on influencing factors for propagation of fractures induced in radial jet hydraulic fracturing[J].Well Testing,2018,27(05):59.[doi:10.19680/j.cnki.1004-4388.2018.02.010]
[9]庞伟.酸性气藏深井产能试井方法[J].油气井测试,2018,27(02):67.[doi:10.19680/j.cnki.1004-4388.2018.02.011]
PANG Wei.Deliverability test method for deep sour gas wells[J].Well Testing,2018,27(05):67.[doi:10.19680/j.cnki.1004-4388.2018.02.011]
[10]梁 斌,谭先红,焦松杰,等.东海低孔低渗气田气井压裂投产后“一点法”产能方程[J].油气井测试,2018,27(02):73.[doi:10.19680/j.cnki.1004-4388.2018.02.012]
LIANG Bin,TAN Xianhong,JIAO Songjie,et al.“Singlepoint” productivity equation for fractured gas wells in lowporosity and lowpermeability reservoirs, East China Sea[J].Well Testing,2018,27(05):73.[doi:10.19680/j.cnki.1004-4388.2018.02.012]
[11]田向东,康 露,杨 志,等.海上油气井快速诱喷测试技术[J].油气井测试,2018,27(02):41.[doi:10.19680/j.cnki.1004-4388.2018.02.007]
TIAN Xiangdong,KANG Lu,YANG Zhi,et al.Fast testing of induced flows in offshore oil/gas wells[J].Well Testing,2018,27(05):41.[doi:10.19680/j.cnki.1004-4388.2018.02.007]
[12]王鑫鑫,霍丽丽,张辉,等. 利用地层测试资料指导低渗透砂岩储层压裂改造选层[J].油气井测试,2020,29(05):54.[doi:10.19680/j.cnki.1004-4388.2020.05.010]
WANG Xinxin,HUO Lili,ZHANG Hui,et al. Application of formation test data to guide fracturing candidate for lowpermeability sandstone reservoirs[J].Well Testing,2020,29(05):54.[doi:10.19680/j.cnki.1004-4388.2020.05.010]
[13]邢晓光,方正,张辉,等.智能分层射流泵排液技术[J].油气井测试,2021,30(01):21.[doi:10.19680/j.cnki.1004-4388.2021.01.004]
XING Xiaoguang,FANG Zheng,ZHANG Hui,et al. Discharge technology of intelligent stratified jet pump[J].Well Testing,2021,30(05):21.[doi:10.19680/j.cnki.1004-4388.2021.01.004]
[14]范俊强,周亮,周元杰,等. 超高温地层测试密封系统的研制[J].油气井测试,2021,30(06):16.[doi:10.19680/j.cnki.1004-4388.2021.06.003]
FAN Junqiang,ZHOU Liang,ZHOU Yuanjie,et al. Development of sealing system for ultrahigh temperature formation testing[J].Well Testing,2021,30(05):16.[doi:10.19680/j.cnki.1004-4388.2021.06.003]
[15]王海兵,王新强,周胤男,等. 柴达木盆地深井五阀一封地层测试工艺[J].油气井测试,2022,31(05):23.[doi:10.19680/j.cnki.1004-4388.2022.05.005]
[J].Well Testing,2022,31(05):23.[doi:10.19680/j.cnki.1004-4388.2022.05.005]
[16]林炳南,赵洪涛,徐杨,等. TCP+APR联作射孔负压值设计及校正方法[J].油气井测试,2022,31(05):28.[doi:10.19680/j.cnki.1004-4388.2022.05.006]
[J].Well Testing,2022,31(05):28.[doi:10.19680/j.cnki.1004-4388.2022.05.006]
[17]李申达,张亚明,王永军,等. 基于地层测试的冀东油田钻井液体系合理性评价[J].油气井测试,2023,32(01):63.[doi:10. 19680/ j. cnki. 1004-4388. 2023. 01. 011]
[J].Well Testing,2023,32(05):63.[doi:10. 19680/ j. cnki. 1004-4388. 2023. 01. 011]
[18]张金煌,杜连龙,张兴华,等. 海上深层潜山长裸眼地层测试技术[J].油气井测试,2024,33(01):19.[doi:10.19680/j.cnki.1004-4388.2024.01.004]
[J].Well Testing,2024,33(05):19.[doi:10.19680/j.cnki.1004-4388.2024.01.004]
[19]毛军. 一种新型一次关井测试阀的研制[J].油气井测试,2024,33(03):13.[doi:10.19680/j.cnki.1004-4388.2024.03.003]
[J].Well Testing,2024,33(05):13.[doi:10.19680/j.cnki.1004-4388.2024.03.003]
[20]雷鹏,邵振鹏,李俊杰,等. 井下声波信号沿油管传输特性试验[J].油气井测试,2024,33(03):19.[doi:10.19680/j.cnki.1004-4388.2024.03.004]
[J].Well Testing,2024,33(05):19.[doi:10.19680/j.cnki.1004-4388.2024.03.004]