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牙轮-PDC复合钻头井底流场CFD模拟研究 被引量:11

Research on Bottomhole Flow Field CFD Simulation of Composite Roller-PDC Bit
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摘要 牙轮-PDC复合钻头是对硬地层采用碾压与刮切相结合破岩的一种新型钻头,随着其结构形式及破岩方法的改变,需要对其井底流场进行研究并提出新的水力结构设计。运用计算流体动力学理论,采用标准κ-ε模型以及封闭N-S湍流方程对某型复合钻头的井底流场进行了数值模拟计算,并分析了井底压力及流速、PDC刀翼齿面和牙轮体表面流速。研究结果表明,复合钻头设计原型的水力结构存在一定缺陷,可通过合理设计钻头体中心位置结构、调整中心喷嘴射流角度以及调整2个边喷嘴的设计来加以改进。 The composite roller-PDC bit is a new type of drill bit which conducts rock-breaking through rolling, scratching and cutting. With the change of its structural pattern and rock-breaking mode, it is necessary to make a study of its bottomhole flow field and put forward the new hydraulic design. Applying the theory of computational flu- id dynamics (CFD) , the closed N-S turbulence equation in the standard K-s model was adopted to conduct a nu- merical simulation calculation of the bottomhole flow field of some composite bit. The bottomhole pressure and flow- rate, PDC blade tooth face and roller surface flowrate were analyzed. The research findings show that there exists some defect with the hydraulic structure of the design prototype of composite bit. The design of central nozzle can be improved by rational design of the structure of bit center position and adjustment of central nozzle jet angle. Change of jet angle can adjust the design of two side nozzles.
出处 《石油机械》 北大核心 2013年第6期6-9,共4页 China Petroleum Machinery
基金 中国石油天然气集团公司"十二五"科技项目"复合钻头破岩新技术"(2011A-4201)
关键词 复合钻头 井底流场 中心喷嘴 边喷嘴 水力结构 CFD 数值模拟 composite bit bottomhole flow field central nozzle side nozzle hydraulic structure CFD numerical simulation
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