澳大利亚加里里盆地煤层气控气因素及富集区预测Controlling factors of coalbed methane and accumulation areas in Galilee basin in Australia
谷峰,李乐忠,俞益新,苏展,葛岩,郝岩,刘晓健
GU Feng,LI Lezhong,YU Yixin,SU Zhan,GE Yan,HAO Yan,LIU Xiaojian
摘要(Abstract):
加里里盆地为澳大利亚东部主要的含煤盆地,也是其煤层气勘探开发的主要区块。通过煤质特征、气源条件、构造演化、盖层条件和水文条件等对煤层气富集的主控因素和富集区进行研究。结果表明,该区煤质及生气能力相当,白垩纪中期煤层开始持续生气;白垩纪晚期的区域构造抬升使气藏遭到破坏;扇三角洲主扇体间的局部泥岩相对发育,可形成良好盖层;靠近盆地中心存在地层水滞留区,地层水矿化度高,氯化钙型为主,对煤层气保存有利,含气量和氮气组分也显示含气性变好。因此,良好局部盖层的发育和滞水环境是该区煤层气富集的主控因素;Hulton-Road构造东北、Marathon单斜以东区域及中部Berly突起以北部分区域煤层的富气条件好,是煤层气的富集区。
Galilee basin is the main coal basin in eastern Australia and also the important area of coalbed methane exploration and development. Through the coal quality, gas source, structure evolution, sealing conditions and hydrology conditions, main gas control factors and accumulation areas were studied. The researches show that coal quality and the ability of generating gas are not variable, coal began generating gas continuously from Mid-Cretaceous; the tectonic movement in Late Cretaceous destroyed the gas accumulation; mudstone is more developed in the area between the fluvial fans, forming good cap; water retention area was formed near the center of the basin, the salinity is higher and the formation water is mainly of calcium chloride type, which are benefit for the gas preservation; the nitrogen proportion of the desorbed gas and gas content also show that the gas-bearing property is better. Development of good local cap and water retention environment are the main gas controlling factors of coalbed methane accumulation. The gas accumulation conditions are better in the northeast of Hulton-Road structure, the east of Marathon monoclinic and the north of Berly uplift in the central basin are the coalbed methane accumulation areas.
关键词(KeyWords):
煤层气;主控气因素;富集区;澳大利亚加里里盆地
coalbed methane;main gas controlling factors;accumulation areas;Galilee basin in Australia
基金项目(Foundation):
作者(Author):
谷峰,李乐忠,俞益新,苏展,葛岩,郝岩,刘晓健
GU Feng,LI Lezhong,YU Yixin,SU Zhan,GE Yan,HAO Yan,LIU Xiaojian
参考文献(References):
- [1]桂宝林.六盘水地区煤层气地质特征及富集高产控制因素[J].石油学报,1999,20(3):31–37.GUI Baolin.Geological characteristics and enrichment controlling factors of coalbed methane in Liupanshui region[J].Acta Petrolei Sinica,1999,20(3):31–37.
- [2]高波,马玉贞,陶明信,等.煤层气富集高产的主控因素[J].沉积学报,2003,21(2):345–348.GAO Bo,MA Yuzhen,TAO Mingxin,et al.Main controlling factors analysis of enrichment condition of coalbed methane[J].Acta Sedimentologica Sinica,2003,21(2):345–348.
- [3]闫宝珍,王延斌,丰庆泰,等.基于地质主控因素的沁水盆地煤层气富集划分[J].煤炭学报,2008,33(10):1102–1106.YAN Baozhen,WANG Yanbin,FENG Qingtai,et al.Coalbed methane enrichment classifications of Qinshui basin based on geological key controlling factors[J].Journal of China Coal Society,2008,33(10):1102–1106.
- [4]雷怀玉,孙钦平,孙斌,等.二连盆地霍林河地区低煤阶煤层气成藏条件及主控因素[J].天然气工业,2010,30(6),26–31.LEI Huaiyu,SUN Qinping,SUN Bin,et al.Conditions and major controlling factors of coalbed methane accumulation in coal reservoirs with low coal rank in the Huolinhe area,Erlian basin[J].Natural Gas Industry,2010,30(6):26–31.
- [5]刘洪林,王红岩,赵群,等.吐哈盆地低煤阶煤层气地质特征与成藏控制因素研究[J].地质学报,2010,84(1):133–137.LIU Honglin,WANG Hongyan,ZHAO Qun,et al.Geological characteristics of coalbed methane and controlling factors of accumulation in the Tuha coal basin[J].Acta Geologica Sinica,2010,84(1):133–137.
- [6]王勃,姜波,王红岩,等.低煤阶煤层气藏水文地质条件的物理模拟[J].煤炭学报,2007,32(3):258–260.WANG Bo,JIANG Bo,WANG Hongyan,et al.Hydro-geological condition physical simulation of the low rank coalbed methane reservoir formation[J].Journal of China Coal Society,2007,32(3):258–260.
- [7]秦勇.中国煤层气地质研究进展与述评[J].高校地质学报,2003,9(3):339–358.QIN Yong.Advances and reviews on research of coalbed gas geology in China[J].Geological Journal of China Universities,2003,9(3):339–358.
- [8]宋岩,柳少波,赵文军,等.煤层气藏边界类型、成藏主控因素及富集区预测[J].天然气工业,2009,29(10),5–9.SONG Yan,LIU Shaobo,ZHAO Wenjun,et al.Coalbed gas reservoirs:boundary types,main controlling factors of gas pooling,and forecast of gas-rich areas[J].Natural Gas Industry,2009,29(10):5–9.
- [9]高敏,蔡文渊,罗安银,等.用测井资料评价煤储层顶底板封盖性的方法[J].中国煤层气,2012,9(5):29–33.GAO Min,CAI Wenyuan,LUO Anyin,et al.Methods for evaluating capping capacity of roof and floor of coal reservoir with logging data[J].China Coalbed Methane,2012,9(5):29–33.
- [10]蔚远江.准噶尔盆地低煤级煤储层及煤层气成藏初步研究[D].北京:中国地质大学,2003.
- [11]ALLEN J P,FIELDING C R.Sedimentology and stratigraphic architecture of the Late Permian Betts Creek beds,Queensland,Australia[J].Sedimentary Geology,2007,202(1):5–34.
- [12]ALLEN J P,FIELDING C R.Sequence architecture within a low accommodation setting:An example from the Permian of the Galilee and Bowen basins,Queensland,Australia[J].AAPG Bulletin,2007,91(11):1503–1539.
- [13]秦胜飞,宋岩,唐修义,等.水动力条件对煤层气含量的影响—煤层气滞留水控气论[J].天然气地球科学,2005,16(2):149–152.QIN Shengfei,SONG Yan,TANG Xiuyi,et al.The influence on coalbed gas content by hydrodynamics-The stagnant groundwater controlling[J].Natural Gas Geoscience,2005,16(2):149–152.
- [14]叶建平,武强,王子和,等.水文地质条件对煤层气赋存的控制作用[J].煤炭学报,2001,26(5):459–462.YE Jianping,WU Qiang,WANG Zihe,et al.Controlled characteristics of hydrogeological conditions on the coalbed methane migration and accumulation[J].Journal of China Coal Society,2001,26(5):459–462.
- [15]俞益新,邢云,唐玄,等.澳大利亚东部聚煤盆地煤层气成藏差异性研究[J].资源与产业,2014,16(1):51–59.YU Yixin,XING Yun,TANG Xuan,et al.Difference in coalbed methane accumulation in eastern Australia’s coal basins[J].Resources and Industries,2014,16(1):51–59.
- [16]HABERMEHL M A.The great Artesian basin,Australia[J].BMR Journal of Australian Geology and Geophysics,1980,5(1):9–38.
- [17]陈恭洋.潜江凹陷南部地层水化学特征与油气成藏的关系[J].江汉石油学院学报,2003,25(3):15–19.CHEN Gongyang.Relationships between formation water chemical characteristics and hydrocarbon generation in the south of Qianjiang depression[J].Journal of Jianghan Petroleum Institute,2003,25(3):15–19.
- [18]RADKE B M,FERGUSON J,CRESSWELL R G,et al.Hydrochemistry and implied hydrodynamics of the Cadna-owieHooray aquifer,Great Artesian Basin[M].Canberra:Bureau of Rural Sciences,2000.
文章评论(Comment):
|
||||||||||||||||||
|
||||||||||||||||||
- 煤层气
- 主控气因素
- 富集区
- 澳大利亚加里里盆地
coalbed methane - main gas controlling factors
- accumulation areas
- Galilee basin in Australia