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上扬子地区下寒武统黑色页岩矿物组成特征及其油气勘探意义被引量:17
2017年
下寒武统是上扬子地区海相页岩气藏的重要勘探层系之一,但受目的层埋藏深、钻井少、勘探效果不理想等因素的制约,尚存在着诸多影响勘探进展的地质问题。为此,基于X射线衍射、岩石薄片、普通扫描电镜及氩离子抛光—扫描电镜等资料,分析了该区下寒武统黑色页岩的矿物组成特征及其油气勘探意义。结果表明:①该区页岩组成以黏土矿物和石英为主,其次为碳酸盐矿物及长石,其中石英平均含量为44.60%,发育陆源石英和生物成因硅质2种类型,而黏土矿物平均含量为33.32%,以伊利石(I)含量最高、伊/蒙混层(I/S)含量不均且混层比低(一般为5%)、局部含绿泥石(C)及高岭石(K)为特征;②从该区页岩中可识别出I+I/S+C型、I+I/S+C^I+C过渡型、I+C型及I型4种黏土矿物组合类型,指示不同地区页岩成岩环境存在着差异;③矿物颗(晶)粒无序排列有利于粒间孔隙残存,长石向黏土矿物成岩蚀变可形成线状孔隙;④该区页岩的脆性指数一般都超过40%,具有良好的可压裂性,黔东南地区与川西南地区相比前者页岩脆性更好。
刘忠宝高波冯动军崔学慧杜伟汪洋李东晖
关键词:早寒武世矿物组成黏土矿物孔隙特征
海陆过渡相页岩气成藏特征初探:以湘中坳陷二叠系为例被引量:49
2016年
通过对湘中坳陷邵阳市泉塘村、隆回县北山和邵阳市黄亭等地露头观察及涟源县龙场建新村和涟源县七星街龙潭组、大隆组页岩露头剖面实测、取样和测试分析,重点研究了二叠系页岩龙潭组和大隆组页岩的地化特征、储层特征、含气特征,建立了页岩岩性-岩矿-地化-物性-含气性综合剖面。研究区龙潭组和大隆组页岩干酪根显微组分以壳质组为主,镜质组和惰质组含量较少,有机碳含量大于2%的占样品总数的40%以上,纵向上主要分布在龙潭组上部和大隆组下部,成熟度分布在1.10%~2.22%,平均为1.42%,处在成熟-高成熟阶段。储层微观类型主要有矿物质孔和微裂缝,次要类型为有机质气孔,其中矿物质孔包括残留粒间孔隙、粒间溶蚀孔、粒内溶蚀孔和粒内孔隙。综合分析上二叠统龙潭组-大隆组泥页岩层系厚度、有机碳含量等指标,结合油气显示分析认为,页岩气有利的富集层段为大隆组下部-龙潭组上部厚约80m的优质泥页岩,具备良好的页岩气勘探潜力。值得注意的是,在四川盆地内部的二叠系页岩在地化指标、矿物组成、储层特征和含气量等页岩气成藏条件与湘中地区大致相同,且具有生烃高峰期晚,抬升幅度小等特征,发现了以二叠系泥页岩为源岩的普光等大气田,是海陆过渡相页岩气勘探研究需要注意的地区和领域。
包书景林拓聂海宽任收麦
关键词:页岩气二叠系
东营凹陷古近系沙河街组四段上亚段细粒沉积岩沉积环境及控制因素被引量:25
2016年
探究细粒沉积岩沉积环境及其控制因素有助于从成因上把握泥页岩储层的特征与分布,从而更有效指导非常规油气勘探。岩心观察、薄片分析、X-射线衍射实验及地球化学分析发现,东营凹陷沙河街组四段上亚段细粒沉积岩沉积环境要素中,气候、水深及还原性变化由4个阶段组成且整体呈现旋回性。其中第2个阶段受海侵影响,盐度从异常高值逐渐降低。细粒沉积岩发育的主控因素包括物源、气候、水体物理化学条件、构造作用及突发事件等:研究区母岩包括变质岩、沉积岩(碳酸盐岩与石英砂岩等)及火成岩,经风化提供黏土、碳酸盐及粉砂作为细粒沉积岩的物质基础;气候及水体物理化学条件的旋回性导致了细粒沉积岩垂向上的规律变化;构造作用通过控制沉积相而影响细粒沉积岩的展布;突发事件(浊流等)亦影响细粒沉积岩的发育。
吴靖姜在兴童金环杨璐李积聂海宽
关键词:沉积环境东营凹陷
适用于高温高压条件的等温吸附曲线方程被引量:3
2020年
如何描述高温高压下页岩储层的吸附特征,以及如何利用实验室测定的一个温度下的等温吸附曲线,预测其他温度条件下的等温吸附曲线,对页岩气藏的开发评价具有重要意义。基于DR吸附势模型,建立了适用于高温高压条件下的等温吸附曲线方程,同时该方程可以很好地预测不同温度条件下的等温吸附曲线。利用该方法,对鄂尔多斯盆地页岩120℃、30 MPa等温吸附实验数据取得了很好的拟合效果,同时预测出20~100℃吸附曲线。预测结果表明温度对绝对吸附量的最大吸附量没有影响,仅影响绝对吸附量随压力变化的增长速度,但温度会大幅影响过剩吸附量的最大值和高压时的下降趋势。
彭泽阳龙胜祥张永贵张永贵王濡岳
关键词:页岩气高温
Depositional environment of shale in Wufeng and Longmaxi Formations, Sichuan Basin被引量:4
2017年
Formation of organic-rich shale was controlled by depositional processes and environment condition.According to petrology,mineralogy,fossil composition and sedimentary structure,seven lithofacies of shale were identified in the Wufeng Formation to Longmaxi Formation,e.g.,siliceous shale,silty shale,argillaceous shale,calcareous shale,shell-bearing argillaceous limestone/calcareous mudstone,siltstonefine sandstone and bentonite.For shale in the Wufeng and Longmaxi Formations,the depositional mode was not only the suspension deposition under the low-energy hydrodynamic condition,but also the biogenic deposition,the storm deposition and the bottom current deposition indicated by large amount of siliceous biological fossils,biological detritus with size graded structure,silt laminations,lenticular bedding,ripple cross-bedding and other sedimentary structures.Trace element analysis suggested that the siliceous shale in theWufeng Formation and the lower part of Longmaxi Formation was developed in the oxygen-dysoxic/anoxic depositional environment,which was rich in organic matters;then due to influence of the sea level gradually decline and bottom current,the silty and argillaceous shales were formed,and the oxygen-dysoxic/anoxic depositional environment was destroyed,gradually leading to the worse preservation condition of organic matter.
Jianhua ZhaoZhijun JinZhenkui JinXin WenYikai GengCaina YanHaikuan Nie
Physical Mechanism of Organic Matter-Mineral Interaction in Longmaxi Shale,Sichuan Basin,China被引量:8
2016年
Objective Shale gas is as an important kind of unconventional natural gas,with a great resource potential,and its exploration and development has attracted much attention around the world.Organic matter(OM)pores are a common constituent in shales and form the dominant pore network of many shale gas systems.
ZHAO JianhuaJIN ZhijunJIN ZhenkuiWEN XinGENG Yikai
上扬子地区下寒武统页岩沉积相类型及分布特征被引量:64
2017年
通过露头、岩心、薄片、矿物X衍射、氩离子抛光、扫描电镜及钻井资料的综合研究,在上扬子地区寒武系梅树村组沉积期—筇竹寺组沉积期沉积地层中识别出9种页岩岩相、5类沉积相标志,提出了页岩沉积相类型精细划分方案,建立了页岩沉积演化发育模式。指出梅树村组沉积期与筇竹寺组沉积期在沉积作用方式、沉积体系类型及沉积相分布上均存在差异:梅树村组沉积期以机械-化学沉积和生物沉积为主,主体为碳酸盐缓坡台地—陆棚—斜坡—深水盆地沉积体系;筇竹寺组沉积期以砂质机械沉积、泥质絮凝及生物沉积为主,主体为滨岸—陆棚—斜坡—深水盆地沉积体系。资阳—长宁近南北向展布的地区、东南部鄂西—渝东—黔中及东北部宜昌—房县一线的地区为两个深水陆棚相富有机质页岩沉积中心,是页岩气勘探有利地区,但前者富有机质页岩以多层、薄层为特点,后者以连续厚层为特点,今后应考虑其差异进行有针对性的页岩气勘探部署。
刘忠宝高波张钰莹杜伟冯动军聂海宽
关键词:页岩岩相沉积相
Differential Characteristics of the Upper Ordovician-Lower Silurian Wufeng-Longmaxi Shale Reservoir and its Implications for Exploration and Development of Shale Gas in/around the Sichuan Basin被引量:8
2019年
The Upper Ordovician Wufeng-Lower Silurian Longmaxi shale is widely distributed in the Sichuan Basin and its periphery,which is the key stratum for marine shale gas exploration and development(E&D)in China.Based on sedimentary environment,material basis,storage space,fracability and reservoir evolution data,the reservoir characteristics of the Wufeng-Longmaxi shale and their significance for shale gas E&D are systematically compared and analyzed in this paper.The results show that(1)the depocenter of the Wufeng(WF)-Longmaxi(LM)shale gradually migrates from east to west.The high-quality shale reservoirs in the eastern Sichuan Basin are mainly siliceous shales,which are primarily distributed in the graptolite shale interval of WF2-LM5.The high-quality reservoirs in the southern Sichuan Basin are mainly calcareous-siliceous and organic-rich argillaceous shales,which are distributed in the graptolite shale interval of WF2-LM7.(2)Deep shale gas(the burial depth>3500 m)in the Sichuan Basin has high-ultrahigh pressure and superior physical properties.The organic-rich siliceous,calcareous-siliceous and organic-rich argillaceous shales have suitable reservoir properties.The marginal area of the Sichuan Basin has a higher degree of pressure relief,which leads to the argillaceous and silty shales evolving into direct cap rocks with poor reservoir/good sealing capacity.(3)Combining shale gas exploration practices and impacts of lithofacies,depth,pressure coefficient and brittle-ductile transition on the reservoir properties,it is concluded that the favorable depth interval of the Wufeng-Longmaxi shale gas is 2200~4000 m under current technical conditions.(4)Aiming at the differential reservoir properties of the Wufeng-Longmaxi shale in the Sichuan Basin and its periphery,several suggestions for future research directions and E&D of shale gas are formulated.
WANG RuyueHU ZongquanLONG ShengxiangLIU GuangxiangZHAO JianhuaDONG LiDU WeiWANG PengweiYIN Shuai
关键词:SHALERESERVOIRFORMATIONBASIN
川东南地区下古生界页岩储层微观类型与特征及其对含气量的影响被引量:105
2014年
通过氩离子抛光+扫描电镜、压汞和气体吸附等方法,对川东南地区下古生界页岩储层微观类型和特征进行了研究,认为页岩储层微观类型主要包括有机质孔、矿物质孔和微裂缝3类,有机质孔主要指各种有机质内孔隙,孔隙形态主要有圆孔形、椭圆形和不规则形等,在一定成熟度范围内,孔隙度随页岩有机质含量和热演化程度的升高而升高;矿物质孔主要包括颗粒间孔、颗粒内孔、各种溶蚀孔和矿物比表面等,孔隙形态主要有层形、圆孔形、椭圆形、三角形和不规则形等,孔隙结构和大小主要受颗粒的大小、压实程度、成岩作用阶段和胶结类型等控制,孔隙大小随页岩脆性矿物含量的升高而增加,随演化程度和压实程度的增加而降低,随溶蚀作用增强而增加;微裂缝主要发育在脆性矿物颗粒间和颗粒内、黏土矿物颗粒内,宽度一般为几十nm,长度为数μm。页岩微观孔隙具有nm级孔隙发育多,μm级微孔发育少的特点,以孔隙直径小于100nm为主,占50%以上,个别样品超过90%,μm级孔隙直径含量一般小于5%。在剖面上,页岩层段下部具有较高的有机碳含量,微观孔隙以有机质孔为主,向上有机质孔减少,矿物质孔增加;在平面上,靠近沉积中心区域的深水陆棚、深海等沉积相带的页岩以有机质孔为主,向陆缘方向的浅水陆棚、滨海等沉积相带的页岩有机质孔减少、矿物质孔增加。研究区下志留统龙马溪组页岩以有机质孔为主,局部地区溶蚀孔隙比较发育,下寒武统牛蹄塘组页岩以残留粒间孔和有机质孔为主,局部地区溶蚀孔隙比较发育,决定了页岩气以吸附态赋存为主,生产曲线上表现为与美国页岩气井区别较大的平稳形态。
聂海宽边瑞康张培先高波
关键词:页岩气
Source Rock and Cap Rock Controls on the Upper Ordovician Wufeng Formation–Lower Silurian Longmaxi Formation Shale Gas Accumulation in the Sichuan Basin and its Peripheral Areas被引量:21
2016年
Objective The Upper Ordovician Wufeng Formation-Lower Silurian Longmaxi Formation is one of the priority interval for shale gas exploration in the Sichuan Basin and its peripheral areas, and commercial shale gas has been discovered from this interval in Jiaoshiba, Changning and Weiyuan shale gas fields in Sichuan Province. However, there is no significant discovery in other parts of the basin due to the different quality of black shale and the differences of tectonic evolution. Based on the progress of shale gas geological theory and exploration discoveries, as well as the theory of "source rock and cap rock controls on hydrocarbon accumulation", of the Upper Ordovician the main controlling factors Wufeng Formation-Lower Silurian Longmaxi Formation shale gas enrichment in the Sichuan Basin and its peripheral areas were analyzed, and the source rock and cap rock controls on the shale gas were also discussed. The results can provide new insights for the next shale gas exploration in this area.
NIE HaikuanJIN Zhijun
关键词:ROCK
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