Editorial office of ACTA PETROLEI SINICA ›› 2013, Vol. 34 ›› Issue (2): 312-322.DOI: 10.7623/syxb201302013
• Petroleum Exploration • Previous Articles Next Articles
ZHU Yixiang SHI Guangren
Received:2012-07-04
Revised:2012-10-28
Online:2013-03-25
Published:2013-01-31
朱怡翔 石广仁
通讯作者:
朱怡翔
作者简介:朱怡翔,男,1960年2月生,1982年获合肥工业大学学士学位,2004年获中国地质大学(北京)博士学位,现为中国石油勘探开发研究院教授级高级工程师、博士生导师,主要从事储层地质、地震和测井的综合表征和预测、复杂岩性储层的测井评价等研究工作。
基金资助:国家重大基础研究发展计划(973)项目“高效天然气藏形成分布与凝析、低效气藏经济开发的基础研究”(2008CB209100)资助。
ZHU Yixiang SHI Guangren. Identification of lithologic characteristics of volcanic rocks by support vector machine[J]. Editorial office of ACTA PETROLEI SINICA, 2013, 34(2): 312-322.
朱怡翔 石广仁. 火山岩岩性的支持向量机识别[J]. 石油学报, 2013, 34(2): 312-322.
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| [1] 范宜仁,黄隆基,代诗华.交会图技术在火山岩岩性与裂缝识别中的应用[J].测井技术,1999,23(1):53-56,64.Fan Yiren,Huang Longji,Dai Shihua.Application of crossplot technique to the determination of lithology composition and fracture identification of igneous rock[J].Well Logging Technology,1999,23(1):53-56,64.[2] 王拥军,周雪峰,吴海忠,等.火山岩岩性识别新技术[J].断块油气田,2006,13(3):86-88.Wang Yongjun,Zhou Xuefeng,Wu Haizhong,et al.A new technique of lithologic identification for volcanics[J].Fault-block Oil & Gas Field,2006,13(3):86-88.[3] 赵新建,胡刚,张梦宁,等.火山岩岩性识别方法研究[J].国外测井技术,2011,31(6):28-30,33.Zhao Xinjian,Hu Gang,Zhang Mengning,et al.A study on lithology identification methods for volcanic rocks[J].World Well Logging Technology,2011,31(6):28-30,33.[4] 刘传平,郑建东,杨景强.徐深气田深层火山岩测井岩性识别方法[J].石油学报,2006,27(增刊):62-65.Liu Chuanping,Zheng Jiandong,Yang Jingqiang.Lithology identification of well logging for deep volcanic reservoir in Xushen Gas Field[J].Acta Petrolei Sinica,2006,27(S1):62-65.[5] 于代国,孙建孟,王焕增,等.测井识别岩性新方法--支持向量机方法[J].大庆石油地质与开发,2005,24(5):93-95.Yu Daiguo,Sun Jianmeng,Wang Huanzeng,et al.A new method for logging lithology identification:SVM[J].Petroleum Geology & Oilfield Development in Daqing,2005,24(5):93-95.[6] 李新虎.基于不同测井曲线参数集的支持向量机岩性识别对比[J].煤田地质与勘探,2007,35(7):72-76,80.Li Xinhu.Lithology identification methods contrast based on support vector machines at different well logging parameter[J].Coal Geology & Exploration,2007,35(7):72-76,80.[7] 马海,王延江,胡睿,等.测井岩性识别新方法研究[J].地球物理学进展,2009,24(1):263-269.Ma Hai,Wang Yanjiang,Hu Rui,et al.A novel method for well logging lithologic identification[J].Progress in Geophysics,2009,24(1):263-269.[8] 文政,高松洋,毕广武.支持向量机在复杂岩性测井识别中的应用[J].大庆石油地质与开发,2009,28(2):134-137.Wen Zheng,Gao Songyang,Bi Guangwu.Application of support vector machine (SVM)in complex lithology identification by well logging[J].Petroleum Geology & Oilfield Development in Daqing,2009,28(2):134-137.[9] 钟仪华,李榕.基于主成分分析的最小二乘支持向量机岩性识别方法[J].测井技术,2009,33(5):425-429.Zhong Yihua,Li Rong.Application of principal component analysis and least square support vector machine to lithology identification[J].Well Logging Technology,2009,33(5):425-429.[10] 程国建,郭瑞华.PSO-LSSVM分类模型在岩性识别中的应用[J].西安石油大学学报:自然科学版,2010,25(1):96-99.Cheng Guojian,Guo Ruihua.Application of PSO-LSSVM classification model in logging lithology recognition[J].Journal of Xi'an Shiyou University:Natural Science Edition,2010,25(1):96-99.[11] 张莹,潘保芝.支持向量机与微电阻率成像测井识别火山岩岩性[J].物探与化探,2011,35(5):634-638,642.Zhang Ying,Pan Baozhi.The application of SVM and FMI to the lithologic identification of volcanic rocks[J].Geophysical and Geochemical Exploration,2011,35(5):634-638,642.[12] LeMaitre R W.A proposal by the IUGS subcommission on the systematics of igneous rocks for a chemical classification of volcanic rocks based on total alkali silica (TAS)diagram[J].Australian Journal of Earth Science,1984,31(2):243-255.[13] 邱家骧.国际地科联火成岩分类学分委会推荐的火山岩分类简介[J].现代地质,1991,5(4):457-468.Qiu Jiaxiang.Brief introduction of a classification of volcanic rocks recommendations of the IUGS subcommission on the systematics of igneous rocks[J].Geoscience,1991,5(4):457-468.[14] Song Xinmin,Zhu Yixiang,Liu Qinghuai,et al.Identification and distribution of natural fractures[R].SPE 50877,1998.[15] 雍世和,洪有密.测井资料综合解释与数字处理[M].北京:石油工业出版社,1982:305-306.Yong Shihe,Hong Youmi.Integrated interpretation and digital processing of well logging data[M].Beijing:Petroleum Industry Press,1982:305-306.[16] 石广仁,张光亚,石骁騑.多地质因素的勘探目标优选--人工神经网络法与多元回归分析法比较研究[J].石油学报,2002,23(5):19-22.Shi Guangren,Zhang Guangya,Shi Xiaofeng.Optimization of exploration prospects based on multi-geological factors:comparison of methods between artificial neural network and multiple regression analysis[J].Acta Petrolei Sinica,2002,23(5):19-22.[17] Shi Guangren,Zhou Xingxi,Zhang Guangya,et al.The use of artificial neural network analysis and multiple regression for trap quality evaluation:a case study of the northern Kuqa depression of Tarim Basin in western China[J].Marine and Petroleum Geology,2004,21(3):411-420.[18] 石广仁.地学数据挖掘与知识发现[M].北京:石油工业出版社,2012:34-86.Shi Guangren.Data mining and knowledge discovery for geosciences[M].Beijing:Petroleum Industry Press,2012:34-86.[19] Shi Guangren.Four classifiers used in data mining and knowledge discovery for petroleum exploration and development[J].Advances in Petroleum Exploration and Development,2011,2(2):12-23.[20] Vapnik V N.统计学习理论的本质[M].张学工,译.北京:清华大学出版社,2000:85-205.Vapnik V N.The nature of statistical learning theory[M].Translated by Zhang Xuegong.Beijing:Tsinghua University Press,2000:85-205.[21] Cristianini N,Shawe-Taylor J.支持向量机导论[M].李国正,王猛,曾华军,译.北京:电子工业出版社,2004:8-149.Cristianini N,Shawe-Taylor J.An introduction to support vector machines[M].Translated by Li Guozheng,Wang Meng,Zeng Huajun.Beijing:Publishing House of Electronics Industry,2004:8-149.[22] Schlkopf B,Smola A J,Williamson R C,et al.New support vector algorithms[J].Neural Computation,2000,12(5):1207-1245.[23] 石广仁.支持向量机在多地质因素分析中的应用[J].石油学报,2008,29(2):195-198.Shi Guangren.Application of support vector machine to multi-geological-factors analysis[J].Acta Petrolei Sinica,2008,29(2):195-198.[24] 李洪奇,郭海峰,郭海敏,等.复杂储层测井评价数据挖掘方法研究[J].石油学报,2009,30(4):542-549.Li Hongqi,Guo Haifeng,Guo Haimin,et al.An approach of data mining for evaluation of complex formation using well logs[J].Acta Petrolei Sinica,2009,30(4):542-549.[25] Shi G R.The use of support vector machine for oil and gas identification in low-porosity and low-permeability reservoirs[J].International Journal of Mathematical Modeling and Numerical Optimization,2009,1(1/2):75-87.[26] 石广仁.数据挖掘在石油勘探数据库中的应用前景[J].中国石油勘探,2009,14(1):60-64.Shi Guangren.Prospect of the application of data mining in petroleum exploration databases[J].China Petroleum Exploration,2009,14(1):60-64. |
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