Citation: | LIU Tianen, ZHANG Haijun, YUAN Guangjie, LI Guotao, YIN Qiwu, CHEN Fei. Optimized and Fast Drilling Technologies for Horizontal Shale Oil Wells in the Cangdong Sag[J]. Petroleum Drilling Techniques, 2021, 49(4): 46-52. DOI: 10.11911/syztjs.2020127 |
[1] |
陶现林,徐泓,张莲,等. 涪陵页岩气水平井钻井提速技术[J]. 天然气技术与经济,2017,11(2):31–35.
TAO Xianlin, XU Hong, ZHANG Lian, et al. Improvement of drilling speed of Fuling shale gas horizontal well[J]. Natural Gas Technology and Economy, 2017, 11(2): 31–35.
|
[2] |
王建龙,齐昌利,柳鹤,等. 沧东凹陷致密油气藏水平井钻井关键技术[J]. 石油钻探技术,2019,47(5):11–16.
WANG Jianlong, QI Changli, LIU He, et al. Key technologies for drilling horizontal wells in tight oil and gas reservoirs in the Cangdong Sag[J]. Petroleum Drilling Techniques, 2019, 47(5): 11–16.
|
[3] |
周立宏,刘学伟,付大其,等. 陆相页岩油岩石可压裂性影响因素评价与应用:以沧东凹陷孔二段为例[J]. 中国石油勘探,2019,24(5):670–678. doi: 10.3969/j.issn.1672-7703.2019.05.013
ZHOU Lihong, LIU Xuewei, FU Daqi, et al. Evaluation and application of influencing factors on the fracturability of continental shale oil reservoir: a case study of Kong 2 Member in Cangdong Sag[J]. China Petroleum Exploration, 2019, 24(5): 670–678. doi: 10.3969/j.issn.1672-7703.2019.05.013
|
[4] |
彭齐,周英操,周波,等. 凸脊型非平面齿PDC钻头的研制与现场试验[J]. 石油钻探技术,2020,48(2):49–55. doi: 10.11911/syztjs.2020035
PENG Qi, ZHOU Yingcao, ZHOU Bo, et al. Development and field test of a non-planar cutter PDC bit with convex ridges[J]. Petroleum Drilling Techniques, 2020, 48(2): 49–55. doi: 10.11911/syztjs.2020035
|
[5] |
祝小林,杨灿,张鸥,等. 新型PDC钻头砾岩破岩技术及应用[J]. 石油机械,2019,47(6):28–32.
ZHU Xiaolin, YANG Can, ZHANG Ou, et al. Conglomerate rock breaking technology with new PDC cutter and its application[J]. China Petroleum Machinery, 2019, 47(6): 28–32.
|
[6] |
武强,齐昌利,郭俊磊,等. 页岩油水平井高效PDC 钻头设计及应用[J]. 设备管理与维修,2018(11):76–77.
WU Qiang, QI Changli, GUO Junlei, et al. Design and application of high efficiency PDC bit in shale oil horizontal well[J]. Plant Maintenance Engineering, 2018(11): 76–77.
|
[7] |
马振锋,于小龙,杨全枝,等. 陆相页岩气水平井钻井提速技术[J]. 非常规油气,2017,4(4):88–92, 87. doi: 10.3969/j.issn.2095-8471.2017.04.014
MA Zhenfeng, YU Xiaolong, YANG Quanzhi, et al. The technology of improving rate of penetration in continental shale gas horizontal well[J]. Unconventional Oil & Gas, 2017, 4(4): 88–92, 87. doi: 10.3969/j.issn.2095-8471.2017.04.014
|
[8] |
李淑森,王霞,高含. 苏里格气田水平井钻井提速技术分析与对策[J]. 钻采工艺,2012,35(5):115–117. doi: 10.3969/J.ISSN.1006-768X.2012.05.35
LI Shusen, WANG Xia, GAO Han. Analysis and countermeasure of drilling speed of horizontal well in Sulige Gas Field[J]. Drilling & Production Technology, 2012, 35(5): 115–117. doi: 10.3969/J.ISSN.1006-768X.2012.05.35
|
[9] |
李瑞营,王峰,陈绍云,等. 大庆深层钻井提速技术[J]. 石油钻探技术,2015,43(1):38–43.
LI Ruiying, WANG Feng, CHEN Shaoyun, et al. ROP improvement in deep formations in the Daqing Oilfield[J]. Petroleum Drilling Techniques, 2015, 43(1): 38–43.
|
[10] |
杨灿,王鹏,饶开波,等. 大港油田页岩油水平井钻井关键技术[J]. 石油钻探技术,2020,48(2):34–40. doi: 10.11911/syztjs.2020036
YANG Can, WANG Peng, RAO Kaibo, et al. Key technologies for drilling horizontal shale oil wells in the Dagang Oilfield[J]. Petroleum Drilling Techniques, 2020, 48(2): 34–40. doi: 10.11911/syztjs.2020036
|
[11] |
郑忠茂,刘天恩,周宝义,等. 浮力作用对大斜度井套管居中度的影响[J]. 石油钻采工艺,2017,39(3):313–318.
ZHENG Zhongmao, LIU Tianen, ZHOU Baoyi, et al. Effect of buoyance on casing central degree of high angle deviated well[J]. Oil Drilling & Production Technology, 2017, 39(3): 313–318.
|
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