Analysis on the weight-on-bit transmission efficiency of the static push-the-bit rotary steerable system

Now, the static push-the-bit rotary steerable system (SRSS) developed in China is being put into field tests and primary applications. During its normal drilling, higher frictional forces generated by the static pushing forces of the rotary ribs on the wellbore wall influence the weight-on-bit (WOB)...

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Main Authors: Yucai Shi, Zhixiang Teng, Jing Bai, Zhichuan Guan, Qingcheng Liu, Heng Wang
Format: Article
Language:English
Published: KeAi Communications Co., Ltd. 2019-06-01
Series:Natural Gas Industry B
Online Access:http://www.sciencedirect.com/science/article/pii/S235285401930049X
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spelling doaj-f63ca0a27be346229956f39f9bbd22502021-02-02T08:30:46ZengKeAi Communications Co., Ltd.Natural Gas Industry B2352-85402019-06-0163250256Analysis on the weight-on-bit transmission efficiency of the static push-the-bit rotary steerable systemYucai Shi0Zhixiang Teng1Jing Bai2Zhichuan Guan3Qingcheng Liu4Heng Wang5School of Petroleum Engineering, China University of Petroleum (East China), Qingdao, Shandong 266580, ChinaSchool of Petroleum Engineering, China University of Petroleum (East China), Qingdao, Shandong 266580, China; Corresponding author.Drilling & Production Technology Research Institute, CNPC Chuanqing Drilling Engineering Co., Ltd., Guanghan, Sichuan 618300, ChinaSchool of Petroleum Engineering, China University of Petroleum (East China), Qingdao, Shandong 266580, ChinaAerospace Science and Industry Inertial Technology Co., Ltd., Beijing 100074, ChinaSchool of Petroleum Engineering, China University of Petroleum (East China), Qingdao, Shandong 266580, ChinaNow, the static push-the-bit rotary steerable system (SRSS) developed in China is being put into field tests and primary applications. During its normal drilling, higher frictional forces generated by the static pushing forces of the rotary ribs on the wellbore wall influence the weight-on-bit (WOB) transmission efficiency and the rate of penetration (ROP). In this paper, analytical models of the WOB transmission efficiency were established for the wellbore wall with and without ladders respectively based on the structure and working principle of the SRSS. And the variation rules of the WOB transmission efficiency with the nominal WOB, the frictional coefficient of wellbore wall, the pushing force and the front chamfer of the steerable rib were analyzed. And the following research results were obtained. First, the nominal WOB of this SRSS has to satisfy the minimum requirement and it is conducive to the increase of WOB transmission efficiency by increasing the nominal WOB appropriately. Second, whether there are ladders on the wellbore wall or not, the WOB transmission efficiency decreases as the total pushing forces of steerable ribs and the frictional coefficient of wellbore wall increase. And the WOB transmission efficiency in the case of wellbore wall with ladders is much lower than that without ladders. Third, if there are ladders on the wellbore wall, the front chamfer of steerable rib has a significant effect on the WOB transmission efficiency. The larger the front chamfer is, the lower the WOB transmission efficiency is (even self-locking). In conclusion, the research results play an important role in guiding the rational selection and control of the WOB at drilling site. Keywords: Rotary steerable system (RSS), Static push-the-bit, Weight-on-bit (WOB), Transmission efficiency, Self-locking of steerable rib, Frictional coefficient of wellbore wall, Pushing force of the steerable ribhttp://www.sciencedirect.com/science/article/pii/S235285401930049X
collection DOAJ
language English
format Article
sources DOAJ
author Yucai Shi
Zhixiang Teng
Jing Bai
Zhichuan Guan
Qingcheng Liu
Heng Wang
spellingShingle Yucai Shi
Zhixiang Teng
Jing Bai
Zhichuan Guan
Qingcheng Liu
Heng Wang
Analysis on the weight-on-bit transmission efficiency of the static push-the-bit rotary steerable system
Natural Gas Industry B
author_facet Yucai Shi
Zhixiang Teng
Jing Bai
Zhichuan Guan
Qingcheng Liu
Heng Wang
author_sort Yucai Shi
title Analysis on the weight-on-bit transmission efficiency of the static push-the-bit rotary steerable system
title_short Analysis on the weight-on-bit transmission efficiency of the static push-the-bit rotary steerable system
title_full Analysis on the weight-on-bit transmission efficiency of the static push-the-bit rotary steerable system
title_fullStr Analysis on the weight-on-bit transmission efficiency of the static push-the-bit rotary steerable system
title_full_unstemmed Analysis on the weight-on-bit transmission efficiency of the static push-the-bit rotary steerable system
title_sort analysis on the weight-on-bit transmission efficiency of the static push-the-bit rotary steerable system
publisher KeAi Communications Co., Ltd.
series Natural Gas Industry B
issn 2352-8540
publishDate 2019-06-01
description Now, the static push-the-bit rotary steerable system (SRSS) developed in China is being put into field tests and primary applications. During its normal drilling, higher frictional forces generated by the static pushing forces of the rotary ribs on the wellbore wall influence the weight-on-bit (WOB) transmission efficiency and the rate of penetration (ROP). In this paper, analytical models of the WOB transmission efficiency were established for the wellbore wall with and without ladders respectively based on the structure and working principle of the SRSS. And the variation rules of the WOB transmission efficiency with the nominal WOB, the frictional coefficient of wellbore wall, the pushing force and the front chamfer of the steerable rib were analyzed. And the following research results were obtained. First, the nominal WOB of this SRSS has to satisfy the minimum requirement and it is conducive to the increase of WOB transmission efficiency by increasing the nominal WOB appropriately. Second, whether there are ladders on the wellbore wall or not, the WOB transmission efficiency decreases as the total pushing forces of steerable ribs and the frictional coefficient of wellbore wall increase. And the WOB transmission efficiency in the case of wellbore wall with ladders is much lower than that without ladders. Third, if there are ladders on the wellbore wall, the front chamfer of steerable rib has a significant effect on the WOB transmission efficiency. The larger the front chamfer is, the lower the WOB transmission efficiency is (even self-locking). In conclusion, the research results play an important role in guiding the rational selection and control of the WOB at drilling site. Keywords: Rotary steerable system (RSS), Static push-the-bit, Weight-on-bit (WOB), Transmission efficiency, Self-locking of steerable rib, Frictional coefficient of wellbore wall, Pushing force of the steerable rib
url http://www.sciencedirect.com/science/article/pii/S235285401930049X
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