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石油钻井技术

作者:高长虹
出版社:科学出版社出版时间:2017-06-01
开本: 32开 页数: 149
本类榜单:工业技术销量榜
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石油钻井技术 版权信息

石油钻井技术 本书特色

从事石油钻井工作的技术人员大学院校学生从事石油钻井工作的技术人员大学院校学生本书从旋转钻井系统和顶部钻井系统出发,进而阐述钻头工作原理,钻井液的功能和压降计算方法,套管设计方法,水平井技术,钻井技术难题等重点内容。不仅覆盖了传统钻井作业的所有重点技术,同时也包括了钻井技术的新进展,如顶部驱动技术和旋转导向技术。从钻井设备出发,循序渐进讲述了完整的钻井过程。

石油钻井技术 内容简介

高长虹著的《石油钻井技术(英文版)》从旋转钻井系统和顶部钻井系统出发,进而阐述钻头工作原理,钻井液的功能和压降计算方法,套管设计方法,水平井技术,钻井技术难题等重点内容。不仅覆盖了传统钻井作业的所有重点技术,同时也包括了钻井技术的新进展,如顶部驱动技术和旋转导向技术。从钻井设备出发,循序渐进讲述了完整的钻井过程。本书适用于从事石油钻井工作的技术人员大学院校学生从事石油钻井工作的技术人员大学院校学生。

石油钻井技术 目录

PrefaceChapter 1 Drilling systems1.1 Hoisting system1.1.1 Draw—works and wire rope1.1.2 Crown block and traveling block1.2 Rotary system1.2.1 Kelly and kelly bushing1.2.2 Swivel1.2.3 Drillpipe and drill collar1.2.4 Drill bits1.2.5 Other accessories on drill string1.3 Mud circulation system1.4 Solid control equipment1.4.1 Shale shaker1.4.2 Desander and desilter1.5 Well control equipment1.6 Efficiency of hoisting system1.7 Top drive systemChapter 2 Drilling mud2.1 Types of drilling fluid2.1.1 Water—based mud (WBM)2.1.2 Oil—based mud (OBM)2.1.3 Synthetic—based mud (SBM)2.2 Mud density calculations2.3 Basics of Newtonian and non—Newtonian fluid2.4 Laminar flow of Bingham plastic fluid in pipe2.5 Laminar flow of Bingham plastic fluid in annulus2.6 Turbulent flow ofmud in annulus2.7 Flow through nozzles2.8 Mud measurements2.8.1 Mud density2.8.2 Mud viscosity2.8.3 Mud filtrate loss2.8.4 Other measurementsChapter 3 Casing design3.1 Overburden stress3.2 Pore pressure3.3 Fracture pressure3.4 Introduction to casing3.5 Casing setting depth3.6 Casing size selection3.7 Casing grades selectionChapter 4 Directional drilling4.1 Reasons for drilling directional wells4.2 Geometry of directional well4.3 Deflection tools4.4 Trajectory designChapter 5 Mud hydraulics5.1 Flow rate capacity requirement5.2 Pressure requirement5.3 Mud hydraulics optimization5.3.1 Maximum bit horsepower criterion5.3.2 Maximumjet impact force criterion5.3.3 Maximum nozzle velocity criterion5.4 DiscussionsChapter 6 Underbalanced drilling6.1 Benefits of underbalanced drilling6.2 How to achieve underbalanced condition6.3 Underbalanced drilling operations6.4 Surface equipment for underbalanced drillingChapter 7 Cementing and perforation7.1 Functions of cement7.2 Selection of cement grades7.3 Preparing the cement7.4 Cementing the well7.5 Well perforationChapter 8 Drilling problems and drilling costs8.1 Stuck pipe8.2 Shale sloughing8.3 Lost circulation8.4 Well kick8.5 Drilling costs8.5.1 Leases8.5.2 Site preparation8.5.3 Well drilling8.5.4 Rig mobilization85.5 Miscellaneous costsChapter 9 Properties of hydrocarbon and rock9.1 Phase behavior9.1.1 Oil reservoir9.1.2 Gas reservoir9.2 Properties ofnatural gas9.2.1 Ideal gas law9.2.2 Properties ofreal gas9.2.3 Compressibility of gas9.2.4 Gas formation volume factor9.2.5 Gas viscosity9.3 Properties ofcrude oil9.3.1 Oil specific gravity9.3.2 API gravity9.3.3 Solution gas oil ratio9.3.4 Oil formation volume factor9.3.5 Oil viscosity9.4 Basic rock properties9.4.1 Porosity94.2 Permeability9.4.3 Electrical conductivity and resistivityMain ReferencesAppendix AAppendix BAppendix CAppendix D
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石油钻井技术 作者简介

Changhong Gao received his degrees in petroleum engineering from China University of Petroleum, University of Tulsa and Curtin University. He worked for Sinopec as a field engineer and research engineer. He also taught at United Arab Emirates University, University of Aberdeen and Petroleum Institute of Abu Dhabi. In 2013, he was elected Taishan Scholar by Shandong province government, as well as Yellow River Delta Scholar by Dongying city government. His teaching and research interests include drilling mud, production system design and enhanced oil recovery. He has published more than 30 journal papers and presented a few papers at SPE and APPEA conferences.

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