Genesis of Low Resistivity Limestone Reservoirs in Oilfield A of Syria
Xia Dongdong1, Sima Liqiang2, Zhang Qinghong1, Pang Wen1
1. Exploration and Production Research Institute of SINOPEC,Haidian,Beijing 100083,China
2. School of Geoscience and Technology,Southwset Petroleum University,Chengdu,Sichuan 610500,China
Xia Dongdong1, Sima Liqiang2, Zhang Qinghong1, Pang Wen1. Genesis of Low Resistivity Limestone Reservoirs in Oilfield A of Syria[J]. 西南石油大学学报(自然科学版), DOI: 10.11885/j.issn.1674-5086.2012.11.19.03.
[1] 廖明光,苏崇华,唐洪,等. W 油藏粘土矿物特征及
油层低阻成因[J]. 西南石油大学学报:自然科学版,
2010,32(5):70–74.
Liao Mingguang,Su Chonghua,Tang Hong,et al. Haracteristics
of clay minerals in W low resistivity reservoirs
and the genesis of low resistivity[J]. Journal of Southwest
Petroleum University:Science& Technology Edition,
2010,32(5):70–74.
[2] 张尚华,司马立强,颜其彬,等. 复杂碳酸盐岩储层测
井有效性评价[J]. 西南石油大学学报:自然科学版,
2011,33(2):84–88.
Zhang Shanghua,Sima Liqiang,Yan Qibin,et al. The logging
effectiveness evaluation of complex carbonate reservoirs[
J]. Journal of Southwest Petroleum University:Science
& Technology Edition,2011,33(2):84–88.
[3] 田亚铭,施泽进,李庭艳,等. 姬塬地区长8 油层组碳
酸盐胶结物特征与成因[J]. 西安石油大学学报:自然
科学版,2011,26(3):26–31.
Tian Yaming,Shi Zejin,Li Tingyan,et al. Characteristics
and origin of the carbonate cements of Chang 8 Member
in Jiyuan Area,Ordos Basin[J]. Journal of Xi′an Shiyou
University:Natural Science Edition,2011,26(3):
26–31.
[4] 杜旭东,顾伟康,周开凤,等. 低阻油气层成因分类和
评价及识别[J]. 世界地质,2004,23(3):255–260.
Du Xudong,Gu Weikang,Zhou Kaifeng,et al. Genetic
classification,evaluation and identification of low
resistivity pay zone[J]. World Geology,2004,23(3):
255–260.
[5] 孟繁星,向芳,李凤杰,等. 姬塬油田长9 油层组成岩
作用及孔隙演化特征[J]. 西安石油大学学报:自然科
学版,2012,27(4):7–12,18.
Meng Fanxing,Xiang Fang,Li Fengjie,et al. Diagenesis
and pore evolution of Chang 9 reservoir in Jiyuan Oilfield[
J]. Journal of Xi′an Shiyou University:Natural Science
Edition,2012,27(4):7–12,18.
[6] 李荣西,段立志,张少妮,等. 鄂尔多斯盆地低渗透油
气藏形成研究现状与展望[J]. 地球科学与环境学报,
2011,33(4):364–372.
Li Rongxi,Duan Lizhi,Zhang Shaoni,et al. Review
on oil/gas accumulation with low permeability in Ordos
Basin[J]. Journal of Earth Sciences and Environment,
2011,33(4):364–372.
[7] 吴金龙,孙建孟,耿生臣,等. 低电阻率油气层宏观
地质影响因素与微观机理的匹配关系[J]. 测井技术,
2005,29(5):461–464.
Wu Jinlong,Sun Jianmeng,Geng Shengchen,et al. Interaction
between geologic genesis and micro-geological
Causes in low-resistivity pay zones,Shengli Oilfield[J].
Well Logging Technology,2005,29(5):461–464.
[8] 陈学义,魏斌,陈艳,等. 辽河油田滩海地区低阻油层
成因及其精细解释[J]. 测井技术,2000,24(1):55–59.
Chen Xueyi,Wei Bin,Chen Yan,et al. Genesis of conductive
reservoir in the bleach zone of Liaohe Oilfield and
its fine interpretation[J]. Well Logging Technology,2000,
24(1):55–59.
[9] 回雪峰,吴锡令,谢庆宾,等. 大港油田原始低电阻
率油层地质成因分析[J]. 勘探地球物理进展,2003,
26(4):329–332.
Hui Xuefeng,Wu Xiling,Xie Qingbin,et al. The geologic
genesis of original low resistivity oil reservoirs in
Dagang Oilfield[J]. Progress in Exploration Geophysics,
2003,26(4):329–332.
[10] 谢然红. 低电阻率油气层测井解释方法[J]. 测井技术,
2001,25(3):199–203.
Xie Ranhong. Log interpretation method of oil & gas formation
with low resistivity[J]. Well Logging Technology,
2001,25(3):199–203.
[11] 胡英杰,肖承文,毛志强. 塔里木盆地低阻油层阳离子
交换量及含油饱和度评价[J]. 测井技术,2000,24(6):
407–409,419.
Hu Yingjie,Xiao Chengwen,Mao Zhiqiang. Evaluation
of cation exchange capacity and hydrocarbon saturation of
the low resistivity pay zone in Tarim Basin[J]. Well Logging
Technology,2000,24(6):407–409,419.
[12] 廖明光,唐洪,苏崇华,等. W 低阻油藏高不动水饱
和度的成因及对低阻油层的影响[J]. 石油实验地质,
2010,32(4):353–357,361.
Liao Mingguang,Tang Hong,Su Chonghua,et al. Genesis
of high immobile water saturation in the W resistivity
reservoirs and its influence on the low resistivity reservoir[
J]. Petroleum Geology & Experiment,2010,32(4):
353–357,361.
[13] 李长喜,唐良民,周灿灿,等. 欠平衡条件下深侧向测
井响应校正方法[J]. 石油勘探与开发,2008,35(6):
736–741.
Li Changxi,Tang Liangmin,Zhou Cancan,et al. A correction
method of deep laterolog responses under underbalanced
logging condition[J]. Petroleum Exploration and
Development,2008,35(6):736–741.
[14] 丁熊,谭秀成,周彦,等. 四川盆地中部嘉二段储层特
征及成因[J]. 成都理工大学学报:自然科学版,2012,
39(3):269–276.
Ding Xiong,Tan Xiucheng,Zhou Yan,et al. Characteristics
and genesis of reservoirs in lower Triassic Jialingjiang
Formation,central Sichuan Basin,China[J]. Journal of
Chengdu University of Technology:Science & Technology
Edition,2012,39(3):269–276.
[15] 胡文革. 塔里木盆地亚格列木组储层特征及控制因
素[J]. 成都理工大学学报:自然科学版,2011,38(4):
385–393.
Hu Wenge. Reservoir features and controlling factors of
Yageliemu Formation in Yakela,Tarim Basin,China[J].
Journal of Chengdu University of Technology:Science &
Technology Edition,2011,38(4):385–393.
[16] 臧士宾,郑永仙,孙玺,等. 低渗砂岩与微裂缝泥灰岩
储集层毛细管压力曲线特征对比[J]. 新疆石油地质,
2011,32(5):504–507.
Zang Shibin,Zheng Yongxian,Sun Xi,et al. Comparisons
of capillary pressure curves between low permeability
sandstone and micro-fractured marlstone[J]. Xinjiang
Petroleum Geology,2011,32(5):504–507.
[17] 何胜林,张海荣,陈嵘,等. 东方1–1 气田低电阻率气
层测井评价方法[J]. 天然气工业,2012,32(8):27–30.
He Shenglin,Zhang Hairong,Chen Rong,et al. Logging
evaluation methods for low-resistivity gas layers in
the Dongfang 1–1 Gas Field,Yinggehai Basin[J]. Natural
Gas Industry,2012,32(8):27–30.
[18] 邓毅林,吕磊,张静,等. 北非NK 地区上白垩统灰岩
裂缝油藏成藏因素[J]. 西南石油大学学报:自然科学
版,2012,34(2):24–28.
Deng Yilin,Lü Lei,Zhang Jing,et al. Controlling factors
of fractured limestone reservoir-forming of upper Cretaceous
in north Kairouan Region,Pelagian Basin,north
Africa[J]. Journal of Southwest Petroleum University:
Science & Technology Edition,2012,34(2):24–28.
[19] 叶兴树,吴国海. 板桥油田低电阻率油层成因机制分
析[J]. 西南石油大学学报:自然科学版,2010,32(5):
79–82.
Ye Xingshu,Wu Guohai. Genetic mechanism of low resistivity
reservoir in Banqiao oilfield[J]. Journal of Southwest
Petroleum University:Science & Technology Edition,
2010,32(5):79–82.