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天然气管道氮气干燥置换工艺及实际应用 被引量:7

Nitrogen Dry Replacement Technology in Natural Gas Pipeline and its Practical Application
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摘要 天然气管道干燥技术常应用在天然气管道的施工中,主要是解决管道中积存水分的问题。天然气管道氮气置换中使用的高纯氮气水露点低,可以在氮气置换的同时,凭借低露点氮气对水分的吸附能力,达到对管道进行干燥的目的。探讨了在理想状态下,低露点高纯氮气吸附管道中的水分的干燥方法,并参考干燥置换管道实例,对取得的试验数据进行分析得出了相关的试验结论。 Drying technology of the natural gas pipeline is usually used in gas pipeline construction, which is mainly used to solve the problem of water accumulation in the pipelines. The dew point of high-purity nitrogen used in nitrogen replacement in natural gas pipelines is low. Thus, using the water adsorption ability of the low-dew-point nitrogen, it can reach the purpose of drying the pipelines during the nitrogen replacement. This article discusses the drying method for absorbing water in gas pipelines using low-dew-point nitrogen in ideal condition. And referring to the examples of pipeline drying replacement, correlative results are obtained by analyzing the experimental data.
出处 《石油与天然气化工》 CAS CSCD 2011年第3期325-328,222,共4页 Chemical engineering of oil & gas
关键词 管道干燥 氮气置换 高纯氮 低露点 pipeline drying nitrogen replacement
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  • 1Natural gas - Gas chromatographic requirements for hydrocarbon dewpoint calculation. ISO 23874 - 2006
  • 2Gas analysis - Determination of the water dew point of natural gas - Cooled surface condensation hygrometers. ISO 6327
  • 3Natural gas - Sampling guidelines. ISO 10715 : 1997
  • 4Natural gas - Hydrocarbon dew point and Hydrocarbon content. ISO/TR 11150:2007
  • 5Natural gas - Calibration of chilled mirror type instruments for hydrocarbon dew point( liquid formation ), International Standardization Organization/Natural Gas Committee( ISO/TC193 ),ISO/PDTR 2,2008
  • 6Cowper C J. Natural gas hydrocarbon dewpoint;comparison of measurement and calculation methods. 2nd Gas Analysis Symposium and Exhibition, Maastricht, 2002
  • 7Brown A, Milton M, Vargha G, Mounce R, Cowper C, Stokes A, Benton A, Bannister M, Ridge A, Lander D, Laughton A, Comparison of methods for the measurement of hydrocarbon dew point of natural gas. NPL REPORT AS 3 ,ISSN 1754- 2928. National Physical Laboratory Teddington, United Kingdom ,2007
  • 8Collett T S, Kuuskraa V A. Hydrates contain vast store of world gas resourees [J]. Oil&Gas, 1998: 90-95.
  • 9Goel N. In situ methane hydrate dissociation with carbon dioxide sequestration: Current knowledge and issues. Journal of Petroleum Science and Engineering, 2006, 51:169-184.
  • 10Adisasmito S, Frank R J, Sloan E D. Hydrates of carbon dioxide and methane mixtures[J]. J. Chem. Eng. Data, 1991, 36: 68-71.

共引文献40

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  • 1王志华,陶志钧,周伟国.不停输管道施工技术研究[J].上海煤气,2006(5):13-15. 被引量:6
  • 2薛继军,张鹏云,王俊奇,曾学军,武喜怀.输气管道投产置换过程气体混合规律研究[J].天然气工业,2006,26(12):147-149. 被引量:13
  • 3国家经济贸易委员会.SY/6150.1—2.03钢制管道封堵技术规程第1部分:塞式、筒式封堵[s].北京:石油工业出版社,2003.
  • 4复天宇.符线通球沾宵T.艺在石化仓储行业的应用[J].中国石油和化工秘准与质设,2011(7).
  • 5Taylor G I. Dispersion of soluble matter in solvent flowing slow- ly through a tube [J]. Proc. Roy. Soe. A, 1953,219 (1137) 186 --2o3.
  • 6Taylor G I. The dispersion of matter in turbulent flow through a pipe[J].Proc. Roy. Soc. A, 1954(223):446 468.
  • 7Ekambara K, Joshi J B. Axial mixing in laminar pipe flows [J]. Chemical Engineering Science, 2004 (59) : 3929-- 3944.
  • 8Johnson J E. Pipeline Purging Principles and Practice[J] Jour nal of Offshore Mechanics and Arctic Enginnering, 1998,2 (10) : 249--256.
  • 9刘凯,马丽敏,邹德福,陈志东.清管器应用技术的发展[J].管道技术与设备,2007(5):41-42. 被引量:27
  • 10国家能源局.钢制管道封堵技术规程第一部分:塞式、筒式封堵SY/T6150.1-20116.2.1.

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