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计算空气-氮气钻井最小气体体积流量的新方法
引用本文:柳贡慧,刘伟.计算空气-氮气钻井最小气体体积流量的新方法[J].石油学报,2008,29(4):629-632.
作者姓名:柳贡慧  刘伟
作者单位:1. 中国石油大学教育部石油工程重点实验室, 北京, 102249;2. 中国石油勘探开发研究院, 北京, 100083
摘    要:目前对空气-氮气钻井最小气体体积流量的计算方法仅适用于岩屑不受碰撞作用力的理想情况下的携岩要求,而实际所需的体积流量往往高于该方法的计算结果,主要原因可能是未考虑岩屑多次碰撞、重复破碎造成的能量损耗.引入了岩屑重复破碎概念,根据井底和井口岩屑粒径的变化,确定了岩屑重复破碎能耗.并据此对Angel模型进行了修正,得到一种更加准确地确定气体钻井最小气体体积流量的新方法.利用该方法可以更加清晰、准确地描述气体钻井过程中气-固流动状态及沿程压力损失,从而更好地选择设备及节约钻井成本.

关 键 词:空气-氮气钻井  气体体积流量  计算方法  气-固流动状态  岩屑  重复破碎  压力损失  
收稿时间:2007-9-21
修稿时间:2007-11-18  

A new method for calculating the minimum volumetric flow rate of air in air-nitrogen drilling
LIU Gonghui,LIU Wei.A new method for calculating the minimum volumetric flow rate of air in air-nitrogen drilling[J].Acta Petrolei Sinica,2008,29(4):629-632.
Authors:LIU Gonghui  LIU Wei
Affiliation:1. Key Laboratory for Petroleum Engineering of the Ministry of Education, China University of Petroleum, Beijing 102249, China;2. PetroChina Exploration and Development Research Institute, Beijing 100083, China
Abstract:The existing calculation methods for the minimum volumetric flow rate of air are only suitable for carrying drilling cuttings without considering any impacts on drilling cuttings during air-nitrogen drilling. The actual volumetric flow rate needed in drilling is often bigger than the value calculated by these methods. The error might come from ignorance of the energy consumption in the repeated fragmentation of drilling cuttings caused by multiple impacts. The conception of repeated fragmentation of cuttings was introduced. The energy consumption in repeated fragmentation of cuttings would be determined according to the difference of particle size between well head and bottom hole. By modifying the Angel model, a new method for calculating the minimum volumetric flow rate of air was deduced. The flow situation and pressure loss of air and solid would be described more exactly using the modified Angel model. Consequently, it is a better way for choosing the surface equipments and saving the drilling cost.
Keywords:air-nitrogen drilling  volumetric flow rate of air  calculation method  air-solid flow situation  cuttings  repeated fragmentation  pressure loss
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