相似文献/References:
[1]张慧宇. 致密气藏试井异常资料产能计算新方法[J].油气井测试,2019,28(02):1.[doi:10.19680/j.cnki.1004-4388.2019.02.001]
ZHANG Huiyu.A new method of productivity calculation for wells with abnormal testing data in tight gas reservoir[J].Well Testing,2019,28(06):1.[doi:10.19680/j.cnki.1004-4388.2019.02.001]
[2]蒋国斌,才庆,杨景海,等.基于大规模多段压裂水平井返排数据的压裂效果[J].油气井测试,2019,28(02):14.[doi:10.19680/j.cnki.1004-4388.2019.02.003]
JIANG Guobin,CAI Qing,YANG Jinghai,et al. Fracturing effect evaluation method based on flowback data of horizontal well with largescale multistage fracturing[J].Well Testing,2019,28(06):14.[doi:10.19680/j.cnki.1004-4388.2019.02.003]
[3]刘长印.焦石坝地区页岩气水平井压裂快速选段方法[J].油气井测试,2019,28(06):9.[doi:10.19680/j.cnki.1004-4388.2019.06.002]
LIU Changyin.Rapid fracturing layer selecting method for horizontal shale gas wells in Jiaoshiba area[J].Well Testing,2019,28(06):9.[doi:10.19680/j.cnki.1004-4388.2019.06.002]
[4]曾凌翔.页岩气水平井增产改造关键参数分析[J].油气井测试,2020,29(05):27.[doi:10.19680/j.cnki.1004-4388.2020.05.005]
ZENG Lingxiang.Analysis of key stimulation parameters for shale gas horizontal wells[J].Well Testing,2020,29(06):27.[doi:10.19680/j.cnki.1004-4388.2020.05.005]
[5]常青,刘音,卢伟,等.微量物质示踪剂对页岩油水平井压后排液诊断技术[J].油气井测试,2021,30(03):32.[doi:10.19680/j.cnki.1004-4388.2021.03.006]
CHANG Qing,LIU Yin,LU Wei,et al. Diagnostic technology of trace substance tracer for backflow liquid after fracturing in shale oil[J].Well Testing,2021,30(06):32.[doi:10.19680/j.cnki.1004-4388.2021.03.006]
[6]徐健. 不动管柱多级压裂水平井产能评价方法[J].油气井测试,2021,30(03):52.[doi:10.19680/j.cnki.1004-4388.2021.03.009]
XU Jian. Productivity evaluation method of multistage fractured horizontal well with fixed string[J].Well Testing,2021,30(06):52.[doi:10.19680/j.cnki.1004-4388.2021.03.009]
[7]邸德家,郭肖,何祖清,等.智能示踪剂产出剖面测试技术[J].油气井测试,2021,30(04):44.[doi:10.19680/j.cnki.1004-4388.2021.04.008]
DI Dejia,GUO Xiao,HE Zuqing,et al. Intelligent tracer production profile testing technology[J].Well Testing,2021,30(06):44.[doi:10.19680/j.cnki.1004-4388.2021.04.008]
[8]古永红,吕杨,王文雄,等. 低渗砂岩气藏水平井分段压裂裂缝位置优选[J].油气井测试,2021,30(04):73.[doi:10.19680/j.cnki.1004-4388.2021.04.013]
GU Yonghong,LYU Yang,WANG Wenxiong,et al.Optimization of fracture location for staged fracturing of horizontal wells in low permeability sandstone gas reservoirs[J].Well Testing,2021,30(06):73.[doi:10.19680/j.cnki.1004-4388.2021.04.013]
[9]邓有根,郑波,李一朋,等. 牛东火山岩油藏水平井重复压裂技术[J].油气井测试,2021,30(05):32.[doi:10.19680/j.cnki.1004-4388.2021.05.006]
DENG Yougen,ZHENG Bo,LI Yipeng,et al. Refracturing technology for horizontal wells in Niudong volcanic oil reservoir[J].Well Testing,2021,30(06):32.[doi:10.19680/j.cnki.1004-4388.2021.05.006]
[10]屈孝和,李长江,苏茂,等.连续油管水平井分段测试技术[J].油气井测试,2021,30(05):68.[doi:10.19680/j.cnki.1004-4388.2021.05.012]
QU Xiaohe,LI Changjiang,SU Mao,et al. Segmented testing technology for horizontal wells with coiled tubing[J].Well Testing,2021,30(06):68.[doi:10.19680/j.cnki.1004-4388.2021.05.012]
[11]夏富国,夏玉琴,张冲,等.免钻桥塞在致密气藏储层改造中的适应性评价[J].油气井测试,2018,27(06):63.[doi:10.19680/j.cnki.1004-4388.2018.06.011]
[J].Well Testing,2018,27(06):63.[doi:10.19680/j.cnki.1004-4388.2018.06.011]