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Copyright © 2020 Meishan Wang et al. This is an open access article distributed under the Creative Commons Attribution License (the “License”), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited. Notwithstanding the ProQuest Terms and Conditions, you may use this content in accordance with the terms of the License. http://creativecommons.org/licenses/by/4.0/

Abstract

The accurate prediction of build rate of rotary steerable system (RSS) is the prerequisite for the precise control of wellbore trajectory and optimal design of the steerable tool. Push-the-bit RSS refers to a steerable drilling system that controls well trajectory through adjustment of stretch length of pushing block. Based on this feature, a three-dimensional mechanical model of push-the-bit RSS is established on the basis of the conventional steerable tool mechanical model while considering pushing force. Meanwhile, the effects of bit cutting performance and formation anisotropy are considered. Next, the lateral force method, inclination trend angle method, and ultimate build rate method based on zero lateral force are analyzed and a new ultimate build rate method based on zero lateral drilling penetration is built. A conversion coefficient is introduced to reflect the ratio of actual build rate to theoretical build rate. At last, the new model is applied to a case study. The new method is superior to other previous methods, because the effects of bit-rock interaction and actual drilling process are sufficiently considered. The influence mechanism of build rate includes “leverage effect,” “pendulum effect,” and “pushing effect.” The build rate of steerable tool is a comprehensive outcome of various effects, of which the “pushing effect” plays a dominant role. With the increase of weight on bit (WOB), the proportion of “leverage effect” increases, while the proportion of “pushing effect” decreases, and therefore the build rate decreases.

Details

Title
Prediction Model of Build Rate of Push-the-Bit Rotary Steerable System
Author
Wang, Meishan 1 ; Li, Xiaojun 2 ; Wang, Ge 3 ; Huang, Wenjun 3   VIAFID ORCID Logo  ; Fan, Yongtao 4 ; Luo, Wei 2 ; Zhang, Jiange 5 ; Zhang, Junfeng 2 ; Shi, Xiaolei 3 

 Science and Technology Information Department, CNPC Oilfield Service Co., Ltd., Beijing 102206, China 
 Engineering Technology Research Institute, CNPC XIBU Drilling Engineering Co., Ltd., Urumqi 830000, China; Well Logging Technology Research Institute, China Petroleum Logging Co., Ltd., Beijing 102206, China 
 School of Petroleum Engineering, China University of Petroleum-Beijing, Beijing 102249, China 
 Well Logging Technology Research Institute, China Petroleum Logging Co., Ltd., Beijing 102206, China; Engineering Technology Research Institute, CNPC BOHAI Drilling Engineering Co., Ltd., Tianjin 300457, China 
 Well Logging Technology Research Institute, China Petroleum Logging Co., Ltd., Beijing 102206, China; Logging While Drilling Center, China Petroleum Logging Co., Ltd., Xi’an 710000, China 
Editor
Francesc Pozo
Publication year
2020
Publication date
2020
Publisher
John Wiley & Sons, Inc.
ISSN
1024123X
e-ISSN
15635147
Source type
Scholarly Journal
Language of publication
English
ProQuest document ID
2407984046
Copyright
Copyright © 2020 Meishan Wang et al. This is an open access article distributed under the Creative Commons Attribution License (the “License”), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited. Notwithstanding the ProQuest Terms and Conditions, you may use this content in accordance with the terms of the License. http://creativecommons.org/licenses/by/4.0/