世界地质    2017 36 (1): 217-225   ISSN: 1004-5589  CN: 22-1111/P  

浅部流体对花岗岩储集空间改造作用实验研究
丁歌1, 朱占平1, 禚志博1, 宋土顺2
1. 吉林大学 地球科学学院, 长春 130061;
2. 华北理工大学 矿业工程学院, 河北 唐山 063009
收稿日期 2016-03-05  修回日期 2016-12-20  网络版发布日期 null
参考文献  

[1] 周心怀,胡志伟,韦阿娟,等.渤海海域蓬莱9-1大型复合油田潜山发育演化及其控藏作用[J].大地构造与成矿学,2015,39(4):680-690. ZHOU Xin-huai,HU Zhi-wei,WEI A-juan,et al.Tectonic origin and evolution and their controls on accumulation of Penglai 9-1 large composite oilfield buried hill in Bohai sea[J]. Geotectonica et Metallogenia, 2015,39(4):680-690.
[2] 夏庆龙,周心怀,王昕,等.渤海蓬莱9-1大型复合油田地质特征与发现意义[J].石油学报,2013,39(12):15-23. XIA Qing-long,ZHOU Xin-huai, WANG Xin,et al. Geological characteristics and discovery significance of large-scale and compound oilfield of Penglai 9-1 in bohai[J].Acta Petrolei Sinica,2013,39(12):15-23.
[3] 曾志刚.花岗岩-流体相互作用的实验研究进展[J].地质地球化学,1997(4):121-125. ZENG Zhi-gang.Advances in experimental studies on granite-fluid interactions[J].Geology Geochemistry,1997(4):121-125.
[4] 宋土顺,刘立,刘娜,等.酸性流体作用下长石的稳定性及数值模拟[J].吉林大学学报:地球科学版,2015,45(7):1519-1925. SONG Tu-shun,LIU Li,LIU Na,et al.The stability of the acidic fluid under the action of feldspar and numerical simulation[J].Journal of Jilin University:Earth Science Edition,2015,45(7):1519-1925.
[5] 宋子新,钱祥麟.花岗岩成因机制研究综述[J].地质科技情报,1996,15(3):19-25. SONG Zi-xin,QIAN Xiang-lin.On the formation mechanism of granite:a review[J].Geological Science and Technology Information,1996,15(3):19-25.
[6] 蔡春芳,梅博文,马亭,等.塔里木盆地流体-岩石相互作用研究[M]. 北京:北京地质出版社,1997:149-152. CAI Chun-fang,MEI Bo-wen,MA Ting,et al.Study on the interaction of fluid-rock in Tarim Basin[M].Beijing:Beijing geological publishing house,1997:149-152.
[7] 曲希玉,刘立,胡大千,等.CO2流体对含片钠铝石砂岩改造作用的实验研究[J].吉林大学学报:地球科学版,2007, 37(4):690-696. QU Xi-yu,LIU Li,HU Da-qian,et al.Study on the dawsonite sandstones reformation with CO2 fluid[J].Journal of Jilin University:Earth Science Edition,2007,37(4):690-696.
[8] 宋土顺,曲希玉,刘红艳.岩屑长石砂岩与CO2流体在水热条件下的相互作用[J].矿物岩石,2012,32(3):19-24. SONG Tu-shun,QU Xi-yu,LIU Hong-yan.Lithic feldspathic sandstone and CO2 under hydrothermal fluid interaction[J]. Journal of Mineralogy and Petrology,2012,32(3):19-24.
[9] 刘立,杨庆杰,于军民.大气水-砂岩的相互作用[J].世界地质,1999,18(2):47-52. LIU Li,YANG Qing-jie,YU Jun-min. The interaction of meteoric water-sandstone[J].Global Geology, 1999,18(2):47-52.
[10] 臧春艳,王渝,齐玉民,等.地质流体对砂岩储层黏土矿物的影响:以渤海海域古近系为例[J].世界地质,2015,34(3):766-773. ZANG Chun-yan,WANG Yu,QI Yu-min,et al.Influences of geological fluids on clay minerals in sandstone reservoirs:a case study of Paleogene in Bohai Sea[J]. Global Geology, 2015,34(3):766-773.
[11] 姜伟,曲希玉,肖洪,等.钾长石-CO2相互作用水热实验研究[J].世界地质,2014,33(4):975-980. JIANG Wei,QU Xi-yu,XIAO Hong,et al.Research on interactively hydrothermal experiment between potassium feldspar and CO2[J]. Global Geology,2014,33(4):975-980.
[12] Wang X Y,Zeng Z G,Chen S.Rare earth elements in hydrothermal fluids from Kueishantao, off northeastern Taiwan:indicators of shallow-water, sub-seafloor hydrothermal processes[J].Chinese Science Bulletin,2013,58(19):1874-1883.
[13] Wang R C, Zhao G T,Wang D Z, et al. Differentiation and accumulation of fluids in A-type granites:evidence from accessory mineral study[J]. Science Bulletin,2000,45(17):1609-1613.
[14] 伍英.黑云母向绿泥石转化过程中微观形态及光性特征[J].内蒙古石油化工,2009(10):5-7. WU Ying. Optics and micro-shape characters in the process of biotite transforming to chlorite[J].Inner Mongolia Petrochemical,2009(10):5-7.


通讯作者: 朱占平(1971-),男,博士,副教授,从事沉积学与石油地质学研究.E-mail:zhuzp@jlu.edu.cn