The Performance and Failure Mechanism of Drill Bit in Granite Formation Drilling

被引:0
作者
Weiji Liu
Kaichuang Deng
Rui Li
Lei Li
Xiaohua Zhu
Shuchun Gong
机构
[1] Southwest Petroleum University,School of Mechatronic Engineering
[2] Southwest Petroleum University,Geothermal Energy Research Center
[3] China National Offshore Oil Corporation,undefined
[4] Zhanjiang Branch,undefined
[5] CNPC Baoji Oilfield Machinery Co.,undefined
[6] Ltd,undefined
来源
Arabian Journal for Science and Engineering | 2023年 / 48卷
关键词
Granite; Rock-breaking indoor experiment; Bit failure; Field application;
D O I
暂无
中图分类号
学科分类号
摘要
As a new energy resource with great development potential, the exploitation of hot dry rock geothermal resources is increasing around the world. However, the drilled formations, such as granite and other rocks with high hardness and wear resistance, seriously restrict the drilling efficiency. Polycrystalline diamond compact (PDC) bit, cone bit and PDC-cone composite bit are mainly used for geothermal drilling, but there is a lack of research on the drilling conditions of these bits to compare their advantages and disadvantages horizontally. This paper conducted rock-breaking experiment of granite under normal temperature and pressure using full-sized bit and analyzed weight on bit, torque and axial, radical and circumferential acceleration of three types of bits. This paper analyzed the cutting marks at the bottom of the rock and the wear of the bits, which can reflect the possible failure mode of bits in the process of drilling. Moreover, the monitored data from sandstone to granite in two wells numbered XX34-3-1 and XXB-1-1 and the wear and failure degree of three types of bits are discussed. Indoor experiments and field applications have proved that PDC bit has the highest rate of penetration (ROP) with the largest wear degree in granite formation. The wear of tri-cone bit is smallest but its drilling efficiency is low. The ROP and wear of PDC-cone composite bit are between the two kinds of bits mentioned above. This paper can be used to analyze the adaptability of drill bits and recommend drill bit types when drilling in granite formation.
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页码:9477 / 9492
页数:15
相关论文
共 186 条
[1]  
Kaygusuz K(2002)Geothermal energy: power for a sustainable future Energy Sour. 24 937-947
[2]  
Kaygusuz A(2008)Global geothermal energy scenario by 2040 Energy Sour. Part A. 30 1890-1895
[3]  
Demirbas AH(2015)A review of geothermal energy resources, development, and applications in china: current status and prospects Energy 93 466-483
[4]  
Zhu J(2020)Experimental research on the permeability of fractured-subsequently-filled granite under high temperature-high pressure and the application to HDR geothermal mining Renew. Energy 153 499-508
[5]  
Hu K(2018)Influence of normal and shear stress on the hydraulic transmissivity of thin cracks in a tight quartz sandstone, a granite, and a shale J. Geophys. Res-Sol Earth 153 1262-1285
[6]  
Lu X(2015)Estimating cost and time of wellbore drilling for engineered geothermal systems (EGS) - considering uncertainties Geothermics 53 85-99
[7]  
Huang X(2016)Uncertainty analysis of geothermal well drilling and completion costs Geothermics 64 382-391
[8]  
Liu K(2020)Electrical breakdown experiment and numerical simulation method of rock-breaking machanism of plasma electric pulse drilling Acta Petrolei Sinica. 41 1146-1162
[9]  
Wu X(2019)Numerical analysis of characteristics of reaction in hydrothermal jet drilling for geothermal energy Geothermics 77 62-74
[10]  
Yin W(2020)On microwave drilling of metal-based materials at 2.45 GHz Appl. Phys. A-Mater. 126 1-11