Innovative Bit Design Coupled with New Cutter Technology Improves PDC Bit Performance in Challenging Changbei Gas Field Application

2014 ◽  
Author(s):  
Li Yan ◽  
Xun Shan ◽  
Yeong Soon Seng ◽  
Kottapurath Suresh ◽  
Wang Ningbo ◽  
...  
Keyword(s):  
2012 ◽  
Vol 450-451 ◽  
pp. 1536-1539
Author(s):  
Cui Ping Nie ◽  
Deng Sheng Ye

Abstract: Usually we pay more attention on how to improve gas well cementing quality in engineering design and field operations, and there are so many studies on cement agents but few researches on cement slurry injection technology. The field practice proved that conventional cementing technology can not ensure the cementing quality especially in gas well and some abnormal pressure wells. Most of the study is concentrated on cement agents and some cementing aspects such as wellbore condition, casing centralization etc. All the factors analysis on cementing quality has pointed out that a combination of good agents and suitable measurements can improve cementing quality effectively. The essential factor in cementing is to enhance the displacement efficiency, but normal hole condition and casing centralization are the fundamental for cementing only. Pulsing cementing is the technology that it can improve the displacement efficiency especially in reservoir well interval, also it can shorten the period from initial to ultimate setting time for cement slurry or improve thickening characteristics, and then to inhibit the potential gas or water channeling. Based on systematically research, aiming at improving in 7″ liner cementing, where there are multi gas reservoirs in long interval in SiChuan special gas field, well was completed with upper 7″ liner and down lower 5″ liner, poor cementing bonding before this time. So we stressed on the study of a downhole low frequency self-excited hydraulic oscillation pulsing cementing drillable device and its application, its successful field utilization proved that it is an innovative tool, and it can improve cementing quality obviously.


2011 ◽  
Author(s):  
Jiandong Wang ◽  
Lineng Yang ◽  
Shengyin Song ◽  
Xiaoming Yi ◽  
Dongfeng Li ◽  
...  

1977 ◽  
Vol 29 (05) ◽  
pp. 552-560
Author(s):  
A.E. Trimble ◽  
W.E. DeRose

2011 ◽  
Author(s):  
Jiandong Wang ◽  
Lineng Yang ◽  
Shengyin Song ◽  
Xiaoming Yi ◽  
Dongfeng Li ◽  
...  

2020 ◽  
Vol 10 (8) ◽  
pp. 3711-3721
Author(s):  
Wei Luo ◽  
Qiang Wu

Abstract Wellbore compound blockage occurs in several wells of Yuanba gas field during production, which seriously affects the stable production. The prior treatment with inorganic acid injection does not show a good effect. Therefore, it is urgent to establish an effective blockage removal technology. In this work, the composition analysis of compound blockage samples is firstly carried out. Then, two types of acid solution and barite dissolvent for different types of wellbore blockage are developed. Finally, the corresponding crafts of wellbore blockage removal for different degrees of wellbore blockage are set up. Analysis results show that the inorganic components of blockages are mainly FeS2, CaCO3, BaSO4, and SiO2. The organic components of blockages are mainly the decomposition products of macromolecular materials and the asphaltene. There are differences in the components of blockages between different wells in Yuanba gas field. Some wells are the type of organic-based blockage, while others are the type of inorganic-based blockage. The field application shows that the developed wellbore compound blockage removal technology has successfully guided the in situ removal operation of eight wells in Yuanba gas field, ensuring the smooth completion of production task of this gas field. This effective blockage removal technology can be extended to similar ultra-deep and high-sulfur gas field.


Author(s):  
Ning Li ◽  
Xueqing Teng ◽  
Hongtao Liu ◽  
Duanrui Zhang ◽  
Bo Zhou ◽  
...  

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