岩心核磁共振测量数据处理方法在北黄海东部坳陷中的应用

吴淑玉, 刘俊, 朱珠, 吴志强, 肖国林. 岩心核磁共振测量数据处理方法在北黄海东部坳陷中的应用[J]. 海洋地质与第四纪地质, 2012, 32(5): 149-156. doi: 10.3724/SP.J.1140.2012.05149
引用本文: 吴淑玉, 刘俊, 朱珠, 吴志强, 肖国林. 岩心核磁共振测量数据处理方法在北黄海东部坳陷中的应用[J]. 海洋地质与第四纪地质, 2012, 32(5): 149-156. doi: 10.3724/SP.J.1140.2012.05149
WU Shuyu, LIU Jun, ZHU Zhu, WU Zhiqiang, XIAO Guolin. APPLICATION OF CORE DATA PROCESSING METHOD FOR NMR MEASUREMENTS TO THE EASTERN DEPRESSION OF NORTH YELLOW SEA[J]. Marine Geology & Quaternary Geology, 2012, 32(5): 149-156. doi: 10.3724/SP.J.1140.2012.05149
Citation: WU Shuyu, LIU Jun, ZHU Zhu, WU Zhiqiang, XIAO Guolin. APPLICATION OF CORE DATA PROCESSING METHOD FOR NMR MEASUREMENTS TO THE EASTERN DEPRESSION OF NORTH YELLOW SEA[J]. Marine Geology & Quaternary Geology, 2012, 32(5): 149-156. doi: 10.3724/SP.J.1140.2012.05149

岩心核磁共振测量数据处理方法在北黄海东部坳陷中的应用

  • 基金项目:

    国家海洋局海底重点实验室基金(KLSG1102)

    国土资源部海洋油气资源和环境地质重点实验室基金(MRE201121,MRE201115)

详细信息
    作者简介: 吴淑玉(1985-),女,研究实习员,主要从事地震资料解释和反演工作,E-mail:hnwushuyu@163.com
  • 中图分类号: P631

APPLICATION OF CORE DATA PROCESSING METHOD FOR NMR MEASUREMENTS TO THE EASTERN DEPRESSION OF NORTH YELLOW SEA

  • 岩心核磁共振测井技术具有测量结果准确、对岩石结构无损害的优势,在油田勘探开发中应用越来越广泛。针对北黄海东部坳陷中、新生代有岩心核磁共振的资料进行解谱处理方法研究,确定了预处理、解谱和地层参数求取方法与流程,实现了岩心核磁共振资料解谱处理。根据最优解谱方法得到有效孔隙度、可动流体孔隙度、束缚水孔隙度和渗透率等地层参数。
  • 加载中
  • [1]

    刘春杨,卢双舫,薛海涛,等.用核磁共振和常规测井资料预测毛细管压力曲线方法[J].测井技术,2010,34(6):597-600.

    [LIU Chunyang, LU Shuang fang, XUE Haitao, et al. On predicting capillary pressure curve with NMR and conventional log data[J]. Well Logging Technology, 2010,34(6):597-600.]

    [2]

    李春霞,彭洪立.CMR核磁共振测井资料处理与定性解释[J].石油仪器,2010,24(1):63-68.

    [LI Chunxia, PENG Hongli. CMR NMR logging data processing and explanation[J]. Petroleum Instruments, 2010, 24(1):63-68.]

    [3]

    郭公建,谷长春.水驱油孔隙动用规律的核磁共振实验研究[J]. 西安石油大学学报:自然科学版,2005,20(5):45-48.

    [GUO Gongjian, GU Changchun. Experimental study of active pore distribution during water driving by using NMR[J]. Journal of Xi'an Petroleum University (Natural Science Edition), 2005,20(5):45-48.]

    [4]

    Brown R J S, Fatt I. Measurement of fractional wettability of oil fields' rocks by the nuclear magnetic relaxation method[J]. SPE-743-G Society of Petroleum Engineers,1956.

    [5]

    Brown R J S, Gamson B w. Nuclear magnetism logging[J]. Petrol. Trans. AIMS, 1960(219):199-207.

    [6]

    Seevers D O. A nuclear magnetic method for determining the permeability of sandstones[J].SPWLA 7th Annual Logging Symposium, 1966.

    [7]

    Timur A. An investigation of permeability, porosity and residual water saturation relationships[J]. Society of Professional Well Log Analysts, 1968.

    [8]

    Timur A. Producible porosity and permeability of sandstone investigated through nuclear magnetic resonance principles[J]. The Log Analyst, January-February, 1969:3-11.

    [9]

    Timur A. Pulsed nuclear magnetic resonance studies of porosity, moveable fluid, and permeability of sandstones[J].Journal of Petroleum Technology, 1969, 21:775-786.

    [10]

    Kleinberg R L, Vinegar H J. NMR properties of reservoir fluids[J]. The Log Analyst, 1996, 37:20-32.

    [11]

    Kleinberg R L, Straley C, Kenyon W E, et al. Nuclear magnetic resonance of rocks:T1 vs T2[R].SPE 26470,1993:553-563.

    [12]

    Arschall D, Gardner J S. Method for correlating NMR relaxometry and mercury injection data[J]. Proceedings of the International Symposium of Society of Core Analysts, paper 9511, 1995.

    [13]

    Chen S, Arro R, Minetto C, et al. Method for computing swi and bvi from NMR logs[J]. SPWLA 39th Annual Logging Symposium, 1998.

    [14]

    Stefan Menger, Manfred Prammer. Can NMR porosity replace conventional porosity in formation evaluation?[R]. SPWLA 39th Annual Logging Symposium, 1998.

    [15]

    Crowe M B, LaTorraca G A, Dunn K J, et al. Measuring residual oil saturation in west Texas using NMR[J]. SPWLA 38th Annual Logging Symposium, 1997.

    [16]

    Edward E Clerke, Donald E Hartman, John P Horkowitz, et al. Residual oil saturation measurement in carbonates with pulsed NMR logs[J]. The Log Analyst, 1997.

    [17]

    R Akkurt M G, Prammer, Numar, et al. Selection of optimal acquisition parameters for MRIL logs[J].The Log Analyst, 1996.

    [18]

    Akkurt R, Mardon D, Gardner J S, et al. Enhanced diffusion:expanding the range of NMR direct hydrocarbon-typing applications[J]. SPWLA 39th Annual Logging Symposium, 1998.

    [19]

    Akkurt Ridvan, Marschall Dave, Eyvazzadeh Ramsin et al. Determination of residual oil saturation using enhanced diffusion[J]. SPE-49014,1998:267-277.

    [20]

    肖立志,杜有如,叶朝辉. 岩石的核磁共振自旋密度微成像[J].物理化学学报,1995(3):120-131.[XIAO Lizhi, DU Youru, YE Zhaohui. The rock NMR spin density micro-imaging[J]. Journal of Chemical Physics, 1995

    (3):120-131.]

    [21]

    肖立志.核磁共振成象测井[J].测井技术,1995,19(4):284-293.

    [XIAO Lizhi. Magnetic resonance imaging logging[J]. Well Logging Technology, 1995, 19(4):284-293.]

    [22]

    运华云,赵文杰,刘兵开,等.利用T2分布进行岩石孔隙结构研究[J].测井技术,2002,26(1):18-21.

    [LIAN Yunhua, ZHAO Wenjie, LIU Bingkai, et al. Researching rock pore structure with T2distribution[J]. Well Logging Technology, 2002, 26(1):18-21.]

    [23]

    刘堂宴,马在田,傅容珊.核磁共振谱的岩石孔喉结构分析[J].地球物理学进展,2003,18(4):328-333.

    [LIU Tangyan, MA Zaitian, FU Rongshan. NMR spectrum analysis of rock pore structure[J]. Progress in Geophysics, 2003,18(4):328-333.]

    [24]

    何雨丹,毛志强,肖立志,等.核磁共振T2分布评价岩石孔径分布的改进方法[J].地球物理学报,2005,48(2):737-742.

    [HE Yudan, MAO Zhiqiang, XIAO Lizhi,et al. An improved method of using NMR T2 distribution to evaluate pore size distribution[J]. Chinese Journal of Geophysics, 2005, 48(2):737-742.]

    [25]

    李艳,范宜仁,邓少贵,等.核磁共振岩心实验研究储层孔隙结构[J].勘探地球物理进展,2008,31(2):129-132.

    [LI Yan, FAN Yiren, DENG Shaogui,et al. NMR Core experimental study of reservoir pore structure[J]. Progress in Exploration Geophysics,2008,31(2):129-132.]

    [26]

    李海波,朱巨义,郭和坤. 核磁共振T2谱换算孔隙半径分布方法研究[J].波谱学杂志,2008,25(2):273-279.

    [LI Haibo, ZHU Juyi, GUO Heshen. NMR T2spectrum methods for calculating pore radius distribution[J]. Chinese Journal of Magnetic Resonance, 2008, 25(2):273-279.]

    [27]

    Masak P C, Bouton J, Prammer M G, et al. Field test results and applications of the downhole magnetic resonance fluid analyzer[J].SPWLA 43th Annual Logging Symposium, 2002.

    [28]

    Prammer M G,Bouton J, Chandler R N, et al. Theory and operation of a new, multi-volume, NMR logging system[C].SPWLA 40th Annual Logging Symposium, 1999.

    [29]

    Menger S,Prammer M G, Drack E D. Calculation of combined T1 and T2 spectra from NMR logging data[C].SPWLA 40th Annual Logging Symposium, 1999.

    [30]

    肖立志. 核磁共振成像测井与岩石核磁共振及其应[M].北京:科学出版社,1998:46-48,174-177.

    [XIAO Lizhi. NMR Imaging Logging and Rock's Magnetic Resonance and Its Applications[M]. Beijing:Science Press, 1998:46-48,174-177.]

    [31]

    肖立志,石红兵.低场核磁共振岩心分析及其在测井解释中的应用[J].测井技术,1998,22(1):42-49.

    [XIAO Lizhi, SHI Hongbing. The low field NMR core analysis and its application in logging interpretation[J]. Well Logging Technology, 1998, 22(1):42-49.]

    [32]

    王忠东,肖立志,刘堂宴.核磁共振弛豫信号多指数反演新方法及其应用[J].中国科学D辑,2003,33(4):323-332.

    [WANG Zhongdong, XIAO Lizhi, LIU Tangyan. The NMR relaxation signal new multi-exponential inversion method and its application[J]. Science in China (Series D),2003, 33(4):323-332.]

    [33]

    王为民,李培,叶朝辉. 核磁共振弛豫信号的多指数反演[J].中国科学,2001,31(8):730-736.

    [WANG Weimin,LI Pei,YE Chaohui. NMR relaxation signal multi exponential inversion[J]. Science China, 2001,31(8):730-736.]

    [34]

    王才志,李宁.Cif-2002平台下的核磁共振测井解谱方法研究[J].测井技术,2002,26(5):360-363.

    [WANG Caizhi, LI Ning. Under the Cif-2002 platform NMR logging method study[J]. Well Logging Technology, 2002, 26(5):360-363]

    [35]

    翁爱华,李舟波,奠修文,等. 核磁共振测井数据高分辨率反演方法研究[J].测井技术,2002,26(6):445-469.

    [WENG Aihua, LI Zhoubo, DIAN Xiuwen, et al. High resolution inversion of NMR logging data study[J]. Well Logging Technology, 2002, 26(6):445-469.]

  • 加载中
计量
  • 文章访问数:  918
  • PDF下载数:  1
  • 施引文献:  0
出版历程
收稿日期:  2011-09-17
修回日期:  2011-12-09

目录