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井下封堵球密封副接触应力建模与分析
引用本文:冯强,王瑶,李洪俊.井下封堵球密封副接触应力建模与分析[J].石油机械,2013,41(1):97-100.
作者姓名:冯强  王瑶  李洪俊
作者单位:中国石油集团渤海钻探工程有限公司工程技术研究院
摘    要:封堵球密封副的密封性能是井下作业成败的关键,密封副接触应力的大小反映其密封能力。针对井下封堵球密封副的密封原理,分别建立了密封副接触应力的物理模型和有限元模型,通过实例模拟对比了二者的计算结果,分析了密封副几何结构和密封副材料特性对接触应力的影响规律。分析结果表明,封堵球密封副的接触应力可通过物理模型法或有限元法计算,二者模拟结果近似程度高,偏差较小;物理模型法可以反映模拟参数对最大接触应力的连续影响关系,有限元法可以模拟接触应力在密封副上的分布;在相同工况下采用小半锥角设计或选用较高弹性模量的封堵球材料均可增大密封副的接触应力,从而提高密封性能。

关 键 词:封堵球  密封副  接触应力  井下工具  有限元模型  物理模型

Contact Stress Modeling and Analysis of Downhole Ball Sealer Seal Pair
Feng Qiang , Wang Yao , Li Hongjun.Contact Stress Modeling and Analysis of Downhole Ball Sealer Seal Pair[J].China Petroleum Machinery,2013,41(1):97-100.
Authors:Feng Qiang  Wang Yao  Li Hongjun
Affiliation:Feng Qiang Wang Yao Li Hongjun(Research Institute of Engineering Technology,Bohai Drilling Engineering Co.,Ltd.,CNPC)
Abstract:The sealability of ball sealer seal pair is the key to determining the success of downhole operation.The contact stress of seal pair reflects its sealing capacity.In light of the sealing principle of downhole ball sealer seal pair,the physical model and the finite element model of the seal pair contact stress were established respectively.The calculation results of both models were compared through example simulation.The law of the effects of the seal pair's geometric structure and material property on contact stress was analyzed.The analysis shows that the contact stress can be calculated by the physical model method or finite element method.Both simulation results are of high approximation and small deviation.The physical model method can reflect the continuous influencing relation of simulation parameters on the maximum contact stress.The finite element method can simulate the distribution of contact stress in seal pair.In similar operating conditions adoption of semi-coning design or selection of ball sealer material of high elastic model can increase the sealing capacity of seal pair and improve the sealability.
Keywords:ball sealer  seal pair  contact stress  downhole tool  finite element model  physical model
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