Modeling and experimental research on temperature field of full-sized PDC bits in rock drilling and coring

To study the effect of drilling rig working parameters and rock type on the temperature of the polycrystalline diamond composite (PDC) bit, an analytical temperature calculation model was established, and the correctness of the analytical model was verified by numerical simulation analysis. Combined...

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Main Authors: Kangping Gao, Xinxin Xu, Shengjie Jiao, Zhongyu Li
Format: Article
Language:English
Published: Elsevier 2022-11-01
Series:Energy Reports
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S235248472201280X
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author Kangping Gao
Xinxin Xu
Shengjie Jiao
Zhongyu Li
author_facet Kangping Gao
Xinxin Xu
Shengjie Jiao
Zhongyu Li
author_sort Kangping Gao
collection DOAJ
description To study the effect of drilling rig working parameters and rock type on the temperature of the polycrystalline diamond composite (PDC) bit, an analytical temperature calculation model was established, and the correctness of the analytical model was verified by numerical simulation analysis. Combined with an infrared thermal imager, the temperature of PDC cutting teeth under different parameter combinations was qualitatively analyzed, and the sensitivity of cutting teeth temperature to different parameters was discussed through an orthogonal test. The research results show that increasing the rotational speed and rate of penetration (ROP) value causes more severe shearing and friction of the bit, thereby increasing the temperature of the cutting teeth. The experimental results are consistent with the simulation results. Under the same working parameters, the maximum temperature of the bit when drilling granite is about 1.5 times that of curbs and 2 times that of artificial rocks. Finally, the orthogonal test analysis found that the cutting teeth temperature has a high sensitivity to rock type and ROP value, with a weight of 48% and 32.9%, respectively; also, the index has a general sensitivity to the rotation speed, with a weight of 19.1%. The research results provide a certain reference value for the reasonable selection of the working parameters of the drilling rig.
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spelling doaj.art-65338dbacc1549399c1c746eb7befa792023-02-21T05:12:20ZengElsevierEnergy Reports2352-48472022-11-01889288938Modeling and experimental research on temperature field of full-sized PDC bits in rock drilling and coringKangping Gao0Xinxin Xu1Shengjie Jiao2Zhongyu Li3National Engineering Laboratory for Highway Maintenance Equipment, Chang’an University, Xi’an 710064, ChinaNational Engineering Laboratory for Highway Maintenance Equipment, Chang’an University, Xi’an 710064, China; Henan Gaoyuan Maintenance Technology of Highway Co., Ltd., Xinxiang 453003, China; Key Laboratory of Intelligent Manufacturing of Construction Machinery, Anhui 230009, China; Correspondence to: National Engineering Laboratory for Highway Maintenance Equipment, Chang’an University, Nan Er Huan Zhong Duan, Xi’an 710064, Shaanxi China.National Engineering Laboratory for Highway Maintenance Equipment, Chang’an University, Xi’an 710064, ChinaHenan Gaoyuan Maintenance Technology of Highway Co., Ltd., Xinxiang 453003, ChinaTo study the effect of drilling rig working parameters and rock type on the temperature of the polycrystalline diamond composite (PDC) bit, an analytical temperature calculation model was established, and the correctness of the analytical model was verified by numerical simulation analysis. Combined with an infrared thermal imager, the temperature of PDC cutting teeth under different parameter combinations was qualitatively analyzed, and the sensitivity of cutting teeth temperature to different parameters was discussed through an orthogonal test. The research results show that increasing the rotational speed and rate of penetration (ROP) value causes more severe shearing and friction of the bit, thereby increasing the temperature of the cutting teeth. The experimental results are consistent with the simulation results. Under the same working parameters, the maximum temperature of the bit when drilling granite is about 1.5 times that of curbs and 2 times that of artificial rocks. Finally, the orthogonal test analysis found that the cutting teeth temperature has a high sensitivity to rock type and ROP value, with a weight of 48% and 32.9%, respectively; also, the index has a general sensitivity to the rotation speed, with a weight of 19.1%. The research results provide a certain reference value for the reasonable selection of the working parameters of the drilling rig.http://www.sciencedirect.com/science/article/pii/S235248472201280XFull-size PDC bitTemperature field analysisOrthogonal testSensitivity analysisRock typeWorking parameters
spellingShingle Kangping Gao
Xinxin Xu
Shengjie Jiao
Zhongyu Li
Modeling and experimental research on temperature field of full-sized PDC bits in rock drilling and coring
Energy Reports
Full-size PDC bit
Temperature field analysis
Orthogonal test
Sensitivity analysis
Rock type
Working parameters
title Modeling and experimental research on temperature field of full-sized PDC bits in rock drilling and coring
title_full Modeling and experimental research on temperature field of full-sized PDC bits in rock drilling and coring
title_fullStr Modeling and experimental research on temperature field of full-sized PDC bits in rock drilling and coring
title_full_unstemmed Modeling and experimental research on temperature field of full-sized PDC bits in rock drilling and coring
title_short Modeling and experimental research on temperature field of full-sized PDC bits in rock drilling and coring
title_sort modeling and experimental research on temperature field of full sized pdc bits in rock drilling and coring
topic Full-size PDC bit
Temperature field analysis
Orthogonal test
Sensitivity analysis
Rock type
Working parameters
url http://www.sciencedirect.com/science/article/pii/S235248472201280X
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