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Mineralogy and fracture development characteristics of marine shale-gas reservoirs: A case study of Lower Silurian strata in southeastern margin of Sichuan Basin, China 被引量:3
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作者 郭岭 姜在兴 郭峰 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第5期1847-1858,共12页
Mineral contents and fractures of shale from well Yuye-1 and outcrops were examined mainly based on systematic description of the cores and outcrops, and data from experimental analyses. The data enabled us to thoroug... Mineral contents and fractures of shale from well Yuye-1 and outcrops were examined mainly based on systematic description of the cores and outcrops, and data from experimental analyses. The data enabled us to thoroughly explore the mineralogy and developmental features of shale of the Lower Silurian Longmaxi Formation in the study area. The results show that,the Lower Silurian Longmaxi Shale(SLS) in the southeastern margin of Sichuan Basin, China, is primarily characterized by a high content of brittle minerals and a relatively low content of clay minerals. The total content of brittle minerals is approximately 57%,including 27% quartz, 12.2% feldspar, 11.2% carbonate and 2.4% pyrite. The total content of clay minerals reaches 41.6%,composed of illite(23.8%), mixed-layer of illite and smectite(I/S)(10.8%) and chlorite(7.0%). The SLS accommodates the widespread development of various types of fractures, including tectonic fractures, diagenetic fractures, inter-layer fractures and slip fractures. The developmental level of the fracture in the SLS is mainly influenced by faults, lithology, mineral contents and total organic carbon content(TOC) in study area. 展开更多
关键词 shale fracture MINERALOGY gas shale lower silurian margin of Sichuan Basin
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Basic characteristics of key interfaces in Upper Ordovician Wufeng Formation – Lower Silurian Longmaxi Formation in Sichuan Basin and its periphery,SW China
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作者 WANG Yuman WANG Hongyan +5 位作者 QIU Zhen SHEN Junjun ZHANG Qin ZHANG Leifu WANG Canhui LI Xinjing 《Petroleum Exploration and Development》 CSCD 2022年第1期37-51,共15页
Based on anatomy of key areas and data points and analysis of typical features of shell layer in Guanyinqiao Member, basic characteristics of key interfaces, mainly bentonite layers, in the Upper Ordovician Wufeng For... Based on anatomy of key areas and data points and analysis of typical features of shell layer in Guanyinqiao Member, basic characteristics of key interfaces, mainly bentonite layers, in the Upper Ordovician Wufeng Formation-Lower Silurian Longmaxi Formation in the Sichuan Basin and its surrounding areas and the relationship between these key interfaces with the deposition of organic-rich shale have been examined systematically. The Wufeng Formation-Longmaxi Formation has four types of marker beds with interface attributes, namely, the characteristic graptolite belt, Guanyinqiao Member shell layer, section with dense bentonite layers, and concretion section, which can be taken as key interfaces for stratigraphic division and correlation of the graptolite shale. The shell layer in Guanyinqiao Member is the most standard key interface in Wufeng Formation-Longmaxi Formation, and can also be regarded as an important indicator for judging the depositional scale of organic-rich shale in key areas. There are 8 dense bentonite sections of two types mainly occurring in 7 graptolite belts in these formations. They have similar interface characteristics with the shell layer in Guanyinqiao Member in thickness and natural gamma response, and belong to tectonic interfaces(i.e., event deposits). They have three kinds of distribution scales: whole region, large part of the region, and local part, and can be the third, fourth and fifth order sequence interfaces, and have a differential control effect on organic-rich shale deposits. The horizon the characteristic graptolite belt occurs first is the isochronous interface, which is not directly related to the deposition of organic-rich shale. Concretions only appear in local areas, and show poor stability in vertical and horizontal directions, and have no obvious relationship with the deposition of the organic-rich shale. 展开更多
关键词 Sichuan Basin Upper Ordovician Wufeng Formation lower silurian Longmaxi Formation Guanyinqiao Member graptolitic belt shell layer BENTONITE CONCRETION organic-rich shale
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Reservoir characteristics and genetic mechanisms of gas-bearing shales with different laminae and laminae combinations: A case study of Member 1 of the Lower Silurian Longmaxi shale in Sichuan Basin, SW China
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作者 SHI Zhensheng DONG Dazhong +2 位作者 WANG Hongyan SUN Shasha WU Jin 《Petroleum Exploration and Development》 2020年第4期888-900,共13页
Based on thin-section,argon-ion polished large-area imaging and nano-CT scanning data,the reservoir characteristics and genetic mechanisms of the Lower Silurian Longmaxi shale layers with different laminae and laminae... Based on thin-section,argon-ion polished large-area imaging and nano-CT scanning data,the reservoir characteristics and genetic mechanisms of the Lower Silurian Longmaxi shale layers with different laminae and laminae combinations in the Sichuan Basin were examined.It is found that the shale has two kinds of laminae,clayey lamina and silty lamina,which are different in single lamina thickness,composition,pore type and structure,plane porosity and pore size distribution.The clayey laminae are about 100μm thick each,over 15%in organic matter content,over 70%in quartz content,and higher in organic pore ratio and plane porosity.They have abundant bedding fractures and organic matter and organic pores connecting with each other to form a network.In contrast,the silty laminae are about 50μm thick each,5%to 15%in organic matter content,over 50%in carbonate content,higher in inorganic pore ratio,undeveloped in bedding fracture,and have organic matter and organic pores disconnected from each other.The formation of mud lamina and silt lamina may be related to the flourish of silicon-rich organisms.The mud lamina is formed during the intermittent period,and silt lamina is formed during the bloom period of silicon-rich organisms.The mud laminae and silt laminae can combine into three types of assemblages:strip-shaped silt,gradating sand-mud and sand-mud thin interlayers.The strip-shaped silt assemblage has the highest porosity and horizontal/vertical permeability ratio,followed by the gradating sand-mud assemblage and sand-mud thin interlayer assemblage.The difference in the content ratio of the mud laminae to silt laminae results in the difference in the horizontal/vertical permeability ratio. 展开更多
关键词 gas-bearing shale lamina reservoir characteristics genetic mechanism lower silurian Longmaxi Formation Sichuan Basin
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A Combination of N2 and CO2 Adsorption to Characterize Nanopore Structure of Organic-Rich Lower Silurian Shale in the Upper Yangtze Platform, South China: Implications for Shale Gas Sorption Capacity 被引量:21
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作者 CHEN Lei JIANG Zhenxue +2 位作者 LIU Keyu GAO Fenglin WANG Pengfei 《Acta Geologica Sinica(English Edition)》 SCIE CAS CSCD 2017年第4期1380-1394,共15页
The pores in shales are mainly of nanometer-scale,and their pore size distribution is very important for the preservation and exploitation of shale gas.This study focused on the organic-rich Lower Silurian black shale... The pores in shales are mainly of nanometer-scale,and their pore size distribution is very important for the preservation and exploitation of shale gas.This study focused on the organic-rich Lower Silurian black shale from four wells in the Upper Yangtze Platform,and their TOC,mineralogical composition and pore characterization were investigated.Low pressure N_2 and CO_2 adsorption were conducted at 77.35 K and 273.15 K,respectively,and the pore structures were characterized by modified Brunauer-Emmett-Teller(BET),Dubinin-Radushkevich(DR),t-plot,BarrettJoyner-Halenda(BJH) and density functional theory(DFT) methods and then the relationship between pore structure and shale gas sorption capacity was discussed.The results indicate that(1) The Lower Silurian shale has high TOC content of 0.92%-4.96%,high quartz content of 30.6%-69.5%,and high clays content of 24.1%-51.2%.The total specific surface area varies from 7.56 m^2/g to 25.86 m^2/g.Both the total specific surface area and quartz content are positively associated with the TOC content.(2)Shale samples with higher TOC content have more micropores,which results in more complex nanopore structure.Micropore volumes/surface areas and non-micropore surface areas all increase with the increasing TOC content.(3) A combination of N_2 and CO_2 adsorption provides the most suitable detection range(~0.3-60 nm) and has high reliability and accuracy for nanopore structure characterization.(4) The TOC content is the key factor to control the gas sorption capacity of the Lower Silurian shale in the Upper Yangtze Platform. 展开更多
关键词 纳米孔结构 上扬子地台 吸附能力 下志留统 结构表征 页岩气 CO2 中国南方地区
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Quantitative prediction of shale gas sweet spots based on seismic data in Lower Silurian Longmaxi Formation,Weiyuan area,Sichuan Basin,SW China 被引量:2
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作者 ZENG Qingcai CHEN Sheng +8 位作者 HE Pei YANG Qing GUO Xiaolong CHEN Peng DAI Chunmeng LI Xuan GAI Shaohua DENG Yu HOU Huaxing 《Petroleum Exploration and Development》 2018年第3期422-430,共9页
Sweet spots in the shale reservoirs of the Lower Silurian Longmaxi Formation in Weiyuan 201 Block of Sichuan Basin were predicted quantitatively using seismic data and fuzzy optimization method. First, based on seismi... Sweet spots in the shale reservoirs of the Lower Silurian Longmaxi Formation in Weiyuan 201 Block of Sichuan Basin were predicted quantitatively using seismic data and fuzzy optimization method. First, based on seismic and rock physics analysis, the rock physics characteristics of the reservoirs were determined, and elastic parameters sensitive to shale reservoirs with high gas content were selected. Second, data volumes with high precision of the elastic parameters were obtained from pre-stack simultaneous inversion. The horizontal distribution of key parameters for shale gas evaluation were calculated based on the results of rock physics analysis. Then, the fuzzy evaluation equation was established by fuzzy optimization method with test and logging data of horizontal wells with similar operation conditions. key parameters affecting the productivity of horizontal wells were sorted out and the weights of them in the sweet spots quantitative prediction were worked out by fuzzy optimization to set up a sweet spots evaluation system. Three classes of shale gas reservoirs which including two kinds of sweet spots were predicted with the above procedure, and the sweet spots have been predicted quantitatively by combining the above prediction results with the testing production. The testing results of 7 verification wells proved the reliability of the prediction results. 展开更多
关键词 Sichuan Basin lower silurian Longmaxi Formation SHALE gas sweet SPOTS quantitative prediction fuzzy optimization
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Formation and Evolution of a Paleosol across the Lower Silurian-Lower Permian Boundary in Zunyi District,Northern Guizhou,China and Its Paleoenvironment and Paleoclimate Implications
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作者 XIONG Xiaohui XIAO Jiafei +4 位作者 HU Ruizhong WANG Jian WANG Yi WANG Xinsong DENG Qi 《Acta Geologica Sinica(English Edition)》 SCIE CAS CSCD 2015年第6期2012-2029,共18页
This paper presents a set of bulk geochemical and mineralogical data from a paleoweathering profile located in Zunyi District, Northern Guizhou, China. It was formed at the top of the Hanjiadian Formation of the Lower... This paper presents a set of bulk geochemical and mineralogical data from a paleoweathering profile located in Zunyi District, Northern Guizhou, China. It was formed at the top of the Hanjiadian Formation of the Lower Silurian. A truncated, argillic, gleyed, kryptic paleospodosol is recognized in the paleoweathering profile. Ratios of immobile elements(Ti/Zr, Ti/Al) and their binary(e.g., Nb vs. Zr/TiO_2 and Th/Sc vs. Zr/Sc), triangular diagrams(La-Th-Sc, Th-ScZr/10, Zr-Cr-Ga) reflect that the Gaojiayan paleosol is the product of in-situ weathering of gray-green silty mudstone of the underlying Hanjiadian Formation. Mass balance calculations indicate K enrichment and Na enrichment in the upper and lower portions of paleosol, respectively. These findings both are the results of transgression, which brings substantial concentrations of such elements as K, Na, and Sr. In particular, K enrichment is achieved by the illitization of kaolinite. The biological processes of terrestrial vascular plants also enhance K concentration, especially at the top of the paleosol. Na enrichment is a consequence of albitization and/or adsorption by clay minerals through cation exchange. The mass distributions and relative mass changes of rare earth elements(REEs) in the studied profile display characteristics of vertical zonation. Three peaks in total REEs content are observed, indicating two paleoclimatic or paleoenvironmental changes. Mineralogical characteristics indicate that the paleoclimate changed first from warm and humid to cold and dry and later, to dry and lightly warmer. The corresponding soil environment varies from weakly acidic to strongly alkaline and later, to weakly acidic. Mass translocation characteristics of REEs and several transition metals suggest that the Gaojiayan paleosol may have undergone top erosion. 展开更多
关键词 古气候意义 古土壤 志留系 遵义 贵州 中国 古环境 演化
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Conodonts from Lower Silurian Strata of the Subpolar Urals
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作者 Sokolova Liubov 《地学前缘》 EI CAS CSCD 北大核心 2009年第S1期251-251,共1页
The distribution of Lower Silurian conodonts from the sections on the Kozhym River was studied first by S.V. Melnikov.After additional studies of the Upper Ordovician-Lower Silurian strata,Oulodus? aff.nathani, Wallis... The distribution of Lower Silurian conodonts from the sections on the Kozhym River was studied first by S.V. Melnikov.After additional studies of the Upper Ordovician-Lower Silurian strata,Oulodus? aff.nathani, Walliserodus cf.curvatus,Panderodus sp.and Ozarkodina sp.were identified by P.M(a|¨)nnik in the Subpolar Urals.Studies of conodonts from the 展开更多
关键词 CONODONTS lower silurian Subpolar URALS
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Developmental characteristics and geological significance of the bentonite in the Upper Ordovician Wufeng – Lower Silurian Longmaxi Formation in eastern Sichuan Basin, SW China
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作者 WANG Yuman LI Xinjing +4 位作者 WANG Hao JIANG Shan CHEN Bo MA Jie DAI Bing 《Petroleum Exploration and Development》 2019年第4期687-700,共14页
Based on the Qiliao section of the Upper Ordovician Wufeng Formation – Lower Silurian Longmaxi Formation in Shizhu, Chongqing city, the development characteristics of bentonite in eastern Sichuan Basin was examined s... Based on the Qiliao section of the Upper Ordovician Wufeng Formation – Lower Silurian Longmaxi Formation in Shizhu, Chongqing city, the development characteristics of bentonite in eastern Sichuan Basin was examined systematically, and its geological significance and scientific value were analyzed. The main understandings are as follows:(1) Six bentonite dense layers were found in the Qiliao section, mainly occurring in 6 graptolitic belts of the Katian, Rhuddanian and Aeronian. Most of the bentonite dense layers showed obvious increase in clay, peak response of GR curve, and indistinct relationship between volcanic ash and total organic carbon(TOC).(2) The bentonite dense layers of Longmaxi Formation were widely distributed in eastern Sichuan Basin and its periphery, and generally showed GR peak, which can be an important reference interface for dividing the bottom boundary of the Coronograptus cyphus belt and the top boundary of the Rhuddanian in eastern Sichuan Basin and western Hubei province.(3) Taking the bentonite dense layers as the stratification basis of the Rhuddanian and Aeronian, it was determined that the sediment thickness of the Rhuddanian in the eastern Sichuan depression was generally 10–40 m, but only the upper part of the Coronograptus cyphus belt was deposited in the hinderland of Yichang Uplift, and the sedimentary thickness was only 3–7 m.(4) In the hinderland of the Yichang Uplift, at least five and a half graptolitic belts were missing in Wufeng Formation – Rhuddanian, and the deposition time of Rhuddanian was less than 0.4 Ma.(5) The bentonite dense layers were important sedimentary responses to the strong deflection of the Yangtze basin at the turn of the Ordovician–Silurian, which suggested that four tectonic activity periods existed in the eastern Sichuan depression, including the early stage of the depression, the middle-late stage of the depression, the early stage of the foreland flexure and the development stage of the foreland flexure. The high-quality shale was mainly developed from the early stage to the middle-late stage in the depression. 展开更多
关键词 Sichuan Basin Qiliao Section lower silurian Longmaxi Formation BENTONITE Yichang UPLIFT depression behind the UPLIFT organic-rich shale
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四川盆地深层页岩气钻井关键技术新进展及发展展望
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作者 佘朝毅 《天然气工业》 EI CAS CSCD 北大核心 2024年第3期1-9,I0001,共10页
四川盆地页岩气资源丰富,目前深层页岩气已成为该盆地天然气增储上产的重点领域,但随着埋深增加和构造背景变化,地质工程条件将更加复杂,钻井过程中将面临井漏风险高、井下工具高温易失效、水平井轨迹控制难度大等技术难题。为此,在系... 四川盆地页岩气资源丰富,目前深层页岩气已成为该盆地天然气增储上产的重点领域,但随着埋深增加和构造背景变化,地质工程条件将更加复杂,钻井过程中将面临井漏风险高、井下工具高温易失效、水平井轨迹控制难度大等技术难题。为此,在系统分析已完钻井实钻数据的基础上,依据深层页岩气区块地质工程特征,系统梳理了影响安全优快钻井的关键技术难点,形成了以地质工程一体化导向技术、钻井提速技术、防漏治漏与复杂防治技术为主体的深层页岩气安全优快钻井关键技术系列。研究结果表明:(1)以精细地质建模优选地质工程“双甜点”、实时靶体追踪为主的地质工程一体化导向技术,实现了地质目标的精准优选和精确追踪;(2)以“高效PDC钻头选型+个性化优化+大扭矩螺杆”高效破岩技术、“MSE+CCS”参数实时优化技术、油基钻井液地面降温+高温旋转导向技术为主的钻井提速技术,实现了页岩气钻井提速提效;(3)以井壁稳定性评价、裂缝性漏层识别、井漏与复杂防治为主的复杂防治技术,从源头降低了井下漏失和卡钻风险。结论认为:(1)形成的深层页岩气安全优快钻井技术,显著提高了机械钻速和铂金靶体钻遇率,在现场规模化推广应用200余口井,单井平均钻井周期降低42.7%,钻井提速效果显著,有力支撑了深层页岩气效益规模开发;(2)深层页岩气钻井将聚焦“地质工程一体化、水平段一趟钻、防漏治漏及智能钻井决策”等方面的技术攻关。 展开更多
关键词 深层页岩气 下志留统龙马溪组 地质工程一体化 钻井提速 高温旋转导向 钻井周期
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深层富有机质页岩孔隙结构分形特征及其地质意义——以四川盆地威远地区下志留统龙马溪组为例
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作者 管全中 董大忠 +5 位作者 孙莎莎 胡澜潇 漆麟 李冲达 陈诚 陈鑫 《天然气工业》 EI CAS CSCD 北大核心 2024年第3期108-118,共11页
与中、浅层页岩不同,四川盆地南部地区上奥陶统五峰组—下志留统龙马溪组深层富有机质页岩经历了复杂的成岩作用,发育不同的孔隙结构,影响页岩气的赋存状态。为了探讨深层富有机质页岩的孔隙结构、分形特征及其对页岩气富集的影响,以该... 与中、浅层页岩不同,四川盆地南部地区上奥陶统五峰组—下志留统龙马溪组深层富有机质页岩经历了复杂的成岩作用,发育不同的孔隙结构,影响页岩气的赋存状态。为了探讨深层富有机质页岩的孔隙结构、分形特征及其对页岩气富集的影响,以该盆地南部威远地区龙马溪组页岩为研究对象,综合运用有机碳分析、X射线衍射、高分辨率扫描电镜和低温氮气吸附等测试手段,定量表征研究区深层富有机质页岩储层的基础参数及其孔隙结构特征;并运用FHH分形理论,结合低温氮气吸附实验,计算页岩孔隙分形维数,讨论孔隙结构的影响因素及其地质意义。研究结果表明:(1)研究区龙马溪组深层页岩有机质含量(TOC)高,平均值为2.04%,石英等脆性矿物含量占38.00%~73.00%;(2)龙马溪组深层页岩储层普遍发育墨水瓶状有机孔、狭缝型或平板状无机孔等,BET比表面积介于1.252~28.676 m^(2)/g,BJH孔体积介于0.013 192~0.063 874 cm^(3)/g;(3)深层页岩孔隙分形具有明显的分段性,分形维数D_(2)>D_(1),孔隙结构受页岩组成控制,分形维数受控于比表面积和孔径,且与TOC密切相关;(4) LM1—LM3笔石带沉积的富有机质硅质页岩TOC高、分形维数D_(1)和D_(2)值大,介孔BET比表面积和BJH孔体积最大,既有较多的气体吸附位点赋存吸附气,又有良好的孔隙空间贮存游离气,是深层页岩气富集的“甜点段”。结论认为,综合页岩品质参数和分形维数特征可有效评价页岩气富集的“甜点段”,并对实现深层页岩气的增储上产具有现实的指导意义。 展开更多
关键词 四川盆地 威远地区 下志留统龙马溪组 深层页岩 孔隙结构 分形特征
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Geological characteristics and high production control factors of shale gas reservoirs in Silurian Longmaxi Formation, southern Sichuan Basin, SW China 被引量:2
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作者 MA Xinhua XIE Jun +1 位作者 YONG Rui ZHU Yiqing 《Petroleum Exploration and Development》 2020年第5期901-915,共15页
Marine shale gas resources have great potential in the south of the Sichuan Basin in China.At present,the high-quality shale gas resources at depth of 2000–3500 m are under effective development,and strategic breakth... Marine shale gas resources have great potential in the south of the Sichuan Basin in China.At present,the high-quality shale gas resources at depth of 2000–3500 m are under effective development,and strategic breakthroughs have been made in deeper shale gas resources at depth of 3500–4500 m.To promote the effective production of shale gas in this area,this study examines key factors controlling high shale gas production and presents the next exploration direction in the southern Sichuan Basin based on summarizing the geological understandings from the Lower Silurian Longmaxi Formation shale gas exploration combined with the latest results of geological evaluation.The results show that:(1)The relative sea depth in marine shelf sedimentary environment controls the development and distribution of reservoirs.In the relatively deep water area in deep-water shelf,grade-I reservoirs with a larger continuous thickness develop.The relative depth of sea in marine shelf sedimentary environment can be determined by redox conditions.The research shows that the uranium to thorium mass ratio greater than 1.25 indicates relatively deep water in anoxic reduction environment,and the uranium to thorium mass ratio of 0.75–1.25 indicates semi-deep water in weak reduction and weak oxidation environment,and the uranium to thorium mass ratio less than 0.75 indicates relatively shallow water in strong oxidation environment.(2)The propped fractures in shale reservoirs subject to fracturing treatment are generally 10–12 m high,if grade-I reservoirs are more than 10 m in continuous thickness,then all the propped section would be high-quality reserves;in this case,the longer the continuous thickness of penetrated grade-I reservoirs,the higher the production will be.(3)The shale gas reservoirs at 3500–4500 m depth in southern Sichuan are characterized by high formation pressure,high pressure coefficient,well preserved pores,good pore structure and high proportion of free gas,making them the most favorable new field for shale gas exploration;and the pressure coefficient greater than 1.2 is a necessary condition for shale gas wells to obtain high production.(4)High production wells in the deep shale gas reservoirs are those in areas where Long11-Long13 sub-beds are more than 10 m thick,with 1500 m long horizontal section,grade-I reservoirs penetration rate of over 90%,and fractured by dense cutting+high intensity sand injection+large displacement+large liquid volume.(5)The relatively deep-water area in the deep-water shelf and the area at depth of 3500–4500 m well overlap in the southern Sichuan,and the overlapping area is the most favorable shale gas exploration and development zones in the southern Sichuan in the future.With advancement in theory and technology,annual shale gas production in the southern Sichuan is expected to reach 450×108 m3. 展开更多
关键词 southern Sichuan Basin lower silurian Longmaxi Formation deeply buried shale gas high production control factors deep water and deep burial shale gas reservoir
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Effects of astronomical orbital cycle and volcanic activity on organic carbon accumulation during Late Ordovician–Early Silurian in the Upper Yangtze area, South China
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作者 ZHANG Xi ZHANG Tingshan +6 位作者 ZHAO Xiaoming ZHU Haihua MIHAI Emilian Popa CHEN Lei YONG Jinjie XIAO Qiang LI Hongjiao 《Petroleum Exploration and Development》 CSCD 2021年第4期850-863,共14页
Based on field outcrop data,the effects of cyclic change of astronomical orbit and volcanic activity on organic carbon accumulation during the Late Ordovician-Early Silurian in the Upper Yangtze area were studied usin... Based on field outcrop data,the effects of cyclic change of astronomical orbit and volcanic activity on organic carbon accumulation during the Late Ordovician-Early Silurian in the Upper Yangtze area were studied using cyclostratigraphic and geochemical methods.d13 C and chemical index of alteration(CIA)were used to filter the astronomical orbit parameters recorded in sediments.It is found that the climate change driven by orbital cycle controls the fluctuations of sea level at different scales,obliquity forcing climate changes drive thermohaline circulation(THC)of the ocean,and THC-induced bottom currents transport nutrient-laden water from high latitude regions to the surface water of low-latitude area.Hence,THC is the main dynamic mechanism of organic-carbon supply.The marine productivity indexes of Ba/Al and Ni/Al indicate that volcanic activities had limited effect on marine productivity but had great influences on organic carbon preservation efficiency in late Hirnantian(E4).Paleo-ocean redox environmental indicators Th/U,V/Cr and V/(V+Ni)show that there is a significant correlation between volcanism and oxygen content in Paleo-ocean,so it is inferred that volcanisms controlled the organic carbon preservation efficiency by regulating oxygen content in Paleo-ocean,and the difference in volcanism intensity in different areas is an important factor for the differential preservation efficiency of organic carbon.The organic carbon input driven by orbital cycle and the preservation efficiency affected by volcanisms worked together to control the enrichment of organic carbon in the Middle–Upper Yangtze region. 展开更多
关键词 CYCLOSTRATIGRAPHY organic carbon accumulation geochemical weathering index thermohaline circulation volcanic activity Upper Ordovician Wufeng Formation lower silurian Longmaxi Formation
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威远地区龙马溪组天然裂缝特征、分布规律及形成期次
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作者 郝越翔 刘佳杰 +3 位作者 吴磊 周昕 李洁辛 江雨濛 《天然气技术与经济》 2024年第1期23-31,共9页
为了深入研究四川盆地非常规油气勘探开发的关键层位,以川南威远地区龙马溪组天然裂缝为研究对象,通过岩心观察、薄片分析和地球化学测试等多种方法分析了该区龙马溪组天然裂缝发育特征和形成时期,指出了该区龙马溪组天然裂缝发育类型... 为了深入研究四川盆地非常规油气勘探开发的关键层位,以川南威远地区龙马溪组天然裂缝为研究对象,通过岩心观察、薄片分析和地球化学测试等多种方法分析了该区龙马溪组天然裂缝发育特征和形成时期,指出了该区龙马溪组天然裂缝发育类型及其形成期次。研究结果表明:①威远地区天然裂缝主要分为构造裂缝、生烃超压缝和层理缝3种类型;②威远龙马溪组存在多期天然裂缝。结论认为:①该区天然裂缝具有宽度细、水平层理缝占比高、偶见高角度构造缝、有效性低的特点,并且随着龙马溪组地层埋深的增加,裂缝发育密度逐渐增大;②根据温度计算和构造埋藏演化史,这些天然裂缝主要形成于印支期、燕山期、喜马拉雅晚期的3个时期,其中碳氧同位素和包裹体实验测试证实了3个时期的天然裂缝存在;③研究区印支期发育少量的NW剪切缝及砂泥互层层理缝,燕山期在断层附近、背斜高部位发育NW剪切缝和生烃超压缝,喜马拉雅晚期在断层附近、背斜高部位发育近NW和NWW组系剪切缝,背斜核部发育近S-N组系张性缝。结合研究区地质力学环境,查明了威远地区龙马溪组天然裂缝特征,明确了裂缝的形成期次及分布规律,为威远龙马溪组储层评价、有利区优选、优质储层甜点区评价及勘探开发提供了技术支撑。 展开更多
关键词 四川盆地 威远地区 下志留统龙马溪组 天然裂缝 分布特征 期次演化
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Hydrocarbon generation and storage mechanisms of deepwater shelf shales of Ordovician Wufeng Formation–Silurian Longmaxi Formation in Sichuan Basin, China 被引量:6
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作者 GUO Xusheng LI Yuping +5 位作者 BORJIGEN Tenger WANG Qiang YUAN Tao SHEN Baojian MA Zhongliang WEI Fubin 《Petroleum Exploration and Development》 2020年第1期204-213,共10页
As the hydrocarbon generation and storage mechanisms of high quality shales of Upper Ordovician Wufeng Formation– Lower Silurian Longmaxi Formation remain unclear, based on geological conditions and experimental mode... As the hydrocarbon generation and storage mechanisms of high quality shales of Upper Ordovician Wufeng Formation– Lower Silurian Longmaxi Formation remain unclear, based on geological conditions and experimental modelling of shale gas formation, the shale gas generation and accumulation mechanisms as well as their coupling relationships of deep-water shelf shales in Wufeng–Longmaxi Formation of Sichuan Basin were analyzed from petrology, mineralogy, and geochemistry. The high quality shales of Wufeng–Longmaxi Formation in Sichuan Basin are characterized by high thermal evolution, high hydrocarbon generation intensity, good material base, and good roof and floor conditions;the high quality deep-water shelf shale not only has high biogenic silicon content and organic carbon content, but also high porosity coupling. It is concluded that:(1) The shales had good preservation conditions and high retainment of crude oil in the early times, and the shale gas was mainly from cracking of crude oil.(2) The biogenic silicon(opal A) turned into crystal quartz in early times of burial diagenesis, lots of micro-size intergranular pores were produced in the same time;moreover, the biogenic silicon frame had high resistance to compaction, thus it provided the conditions not only for oil charge in the early stage, but also for formation and preservation of nanometer cellular-like pores, and was the key factor enabling the preservation of organic pores.(3) The high quality shale of Wufeng–Longmaxi Formation had high brittleness, strong homogeneity, siliceous intergranular micro-pores and nanometer organic pores, which were conducive to the formation of complicated fissure network connecting the siliceous intergranular nano-pores, and thus high and stable production of shale gas. 展开更多
关键词 hydrocarbon generation and STORAGE mechanism Upper ORDOVICIAN Wufeng FORMATION lower silurian Longmaxi FORMATION deep-water SHELF siliceous shale Sichuan Basin pore preservation
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Lower limit of thermal maturity for the carbonization of organic matter in marine shale and its exploration risk 被引量:2
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作者 WANG Yuman LI Xinjing +8 位作者 CHEN Bo WU Wei DONG Dazhong ZHANG Jian HAN Jing MA Jie DAI Bing WANG Hao JIANG Shan 《Petroleum Exploration and Development》 2018年第3期402-411,共10页
Based on the drilling data of the Silurian Longmaxi Formation in the Sichuan Basin and periphery, SW China, the Ro lower limits and essential features of the carbonization of organic matter in over-high maturity marin... Based on the drilling data of the Silurian Longmaxi Formation in the Sichuan Basin and periphery, SW China, the Ro lower limits and essential features of the carbonization of organic matter in over-high maturity marine shale were examined using laser Raman, electrical and physical property characterization techniques. Three preliminary conclusions are drawn:(1) The lower limit of Ro for the carbonization of Type I-II1 organic matter in marine shale is 3.5%; when the Ro is less than 3.4%, carbonization of organic matter won't happen in general; when the Ro ranges from 3.4% to 3.5%, non-carbonization and weak carbonization of organic matter may coexist; when the Ro is higher than 3.5%, the carbonization of organic matter is highly likely to take place.(2) Organic-rich shale entering carbonization phase have three basic characteristics: log resistivity curve showing a general "slender neck" with low-ultralow resistance response, Raman spectra showing a higher graphite peak, and poor physical property(with matrix porosity of only less than 1/2 of the normal level).(3) The quality damage of shale reservoir caused by the carbonization of organic matter is almost fatal, which primarily manifests in depletion of hydrocarbon generation capacity, reduction or disappearance of organic pores and intercrystalline pores of clay minerals, and drop of adsorption capacity to natural gas. Therefore, the lower limit of Ro for the carbonization of Type I-II1 organic matter should be regarded as the theoretically impassable red line of shale gas exploration in the ancient marine shale formations. The organic-rich shale with low-ultralow resistance should be evaluated effectively in area selection to exclude the high risk areas caused by the carbonization of organic matter. The target organic-rich shale layers with low-ultralow resistance drilled during exploration and development should be evaluated on carbonization level of organic matter, and the deployment plan should be adjusted according to the evaluation results in time. 展开更多
关键词 lower silurian Longmaxi Formation MARINE SHALE thermal maturity organic matter CARBONIZATION resistivity LOGGING exploration risk
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Rock physics model for velocity–pressure relations and its application to shale pore pressure estimation
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作者 GUO Jingyi LI Min +1 位作者 ZHUANG Mingwei SUN Yuefeng 《Petroleum Exploration and Development》 SCIE 2023年第2期404-418,共15页
Acoustic wave velocity has been commonly utilized to predict subsurface geopressure using empirical relations.Acoustic wave velocity is, however, affected by many factors. To estimate pore pressure accurately, we here... Acoustic wave velocity has been commonly utilized to predict subsurface geopressure using empirical relations.Acoustic wave velocity is, however, affected by many factors. To estimate pore pressure accurately, we here propose to use elastic rock physics models to understand and analyze quantitatively the various contributions from these different factors affecting wave velocity. We report a closed-form relationship between the frame flexibility factor(γ) in a rock physics model and differential pressure, which presents the major control of pressure on elastic properties such as bulk modulus and compressional wave velocity. For a gas-bearing shale with abundant micro-cracks and fractures, its bulk modulus is much lower at abnormally high pore pressure(high γ values) where thin cracks and flat pores are open than that at normal hydrostatic pressure(low γ values) where pores are more rounded on average. The developed relations between bulk modulus and differential pressure have been successfully applied to the Upper Ordovician Wufeng and Lower Silurian Longmaxi formations in the Dingshan area of the Sichuan Basin to map the three-dimensional spatial distribution of pore pressure in the shale, integrating core, log and seismic data. The estimated results agree well with field measurements. Pressure coefficient is positively correlated to gas content. The relations and methods reported here could be useful for hydrocarbon exploration, production, and drilling safety in both unconventional and conventional fields. 展开更多
关键词 pore pressure pressure coefficient acoustic velocity bulk modulus pore structure shale gas Upper Ordovician Wufeng Formation lower silurian Longmaxi Formation Sichuan Basin
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川东南五峰组-龙马溪组深层、超深层页岩储层特征及其页岩气勘探意义 被引量:4
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作者 魏富彬 刘珠江 +2 位作者 陈斐然 袁桃 李飞 《石油实验地质》 CAS CSCD 北大核心 2023年第4期751-760,共10页
四川盆地东南地区上奥陶统五峰组—下志留统龙马溪组中深层领域页岩气勘探及页岩储层特征与主控因素的研究已经取得了丰硕成果,而作为当前页岩气勘探重点的深层、超深层领域,由于受钻井等因素的制约,对于其储层发育特征及与中深层页岩... 四川盆地东南地区上奥陶统五峰组—下志留统龙马溪组中深层领域页岩气勘探及页岩储层特征与主控因素的研究已经取得了丰硕成果,而作为当前页岩气勘探重点的深层、超深层领域,由于受钻井等因素的制约,对于其储层发育特征及与中深层页岩储层的差异等研究还不够深入。为了明确五峰组—龙马溪组深层、超深层页岩储层特征,为勘探部署提供依据,选取川东南地区4口埋深在2000~6000 m的典型页岩气钻井,系统开展了深层、超深层页岩储层发育特征及差异对比研究,探讨了储层孔隙发育的成因。研究表明:(1)埋深在6000 m以内,五峰组—龙马溪组页岩储层依然能够发育高孔有效储层,且随埋深的增大孔隙度无明显变化,但是有机质孔的形态、孔隙结构及连通性存在一定差异,即随着埋深的增大,有机质孔孔径相对变小,孔隙连通性变差;(2)明确了生物成因的硅质是孔隙发育的基础,流体超压是储层孔隙保持的关键,在两者联合作用下,深层、超深层页岩高孔隙优质储层得以发育和保持;(3)基于储层发育的研究,将页岩气勘探拓深至6000 m,明确了下一步页岩气勘探方向。初步评价四川盆地及周缘五峰组—龙马溪组深层、超深层页岩气(埋深为4000~5000 m)资源量超2×10^(12)m^(3)。 展开更多
关键词 页岩储层 深层超深层页岩气 五峰组—龙马溪组 上奥陶统 下志留统 川东南地区
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湖北武汉地区志留系下红层的古鱼类化石及其生物古地理意义 被引量:4
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作者 山显任 朱敏 +1 位作者 赵文金 盖志琨 《古地理学报》 CAS CSCD 北大核心 2023年第2期327-340,共14页
依据在湖北武汉古姆山志留系浅海红层中新发现的古鱼类化石,确证了兰多维列统特列奇阶下部红层——志留系下红层在鄂东南地区广泛存在,并在前人工作基础上对武汉地区原坟头组进行了重新厘定,将其一分为二,上部仍为坟头组,下部则称清水... 依据在湖北武汉古姆山志留系浅海红层中新发现的古鱼类化石,确证了兰多维列统特列奇阶下部红层——志留系下红层在鄂东南地区广泛存在,并在前人工作基础上对武汉地区原坟头组进行了重新厘定,将其一分为二,上部仍为坟头组,下部则称清水组。新厘定后的坟头组以黄绿色、灰绿色、灰黄色泥岩、泥质粉砂岩、粉砂岩为主,富含腕足类、双壳类、腹足类、三叶虫和遗迹化石;清水组下部以紫红色、红褐色泥岩、泥质粉砂岩为主,夹少量石英砂岩,上部以紫红色、黄绿色石英砂岩为主,夹泥岩、泥质粉砂岩、粉砂岩。在清水组上部新发现的鱼类化石包括盔甲鱼类锅顶山汉阳鱼(Hanyangaspis guodingshanensis)、意外洪山鱼(Hongshanaspis inexpectatus)、后棘江夏鱼(Jiangxialepis retrospina)及软骨鱼类中华棘鱼(Sinacanthus)、新中华棘鱼(Neosinacanthus)。这些新发现的古鱼均为张家界脊椎动物群温塘鱼类化石组合中的成员,其中,后棘江夏鱼可以跟产自江西武宁地区下红层清水组中的九江江夏鱼(J.jiujiangensis)直接对比,二者同属于真盔甲鱼目曙鱼科江夏鱼属,而曙鱼科成员则可以作为志留系下红层的标志性分子。根据鱼群面貌和地层层序,武汉地区的志留系下红层可以与皖、苏地区的侯家塘组、浙西北地区的唐家坞组、赣西北地区的清水组、湘西北地区的溶溪组以及新疆塔里木地区的塔塔埃尔塔格组进行很好的对比,其时代为志留纪兰多维列世特列奇期早期。华南板块志留系下红层的分布特征表明,在特列奇期早期,上、下扬子海之间存在一狭长的浅海区域,这为盔甲鱼类在湖北武汉和江西武宁两地之间的扩散与交流提供了便利条件和可能。 展开更多
关键词 志留纪 下红层 盔甲鱼类 软骨鱼类 武汉地区
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四川盆地大安区块五峰组—龙马溪组深层页岩地质特征与勘探有利区 被引量:7
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作者 舒红林 何方雨 +7 位作者 李季林 张介辉 李明隆 芮昀 邹辰 姚秋昌 梅珏 李延钧 《天然气工业》 EI CAS CSCD 北大核心 2023年第6期30-43,共14页
近年来,四川盆地渝西地区大安区块上奥陶统五峰组—下志留统龙一1亚段连续获得多口高产工业气井,展示了该区块页岩气良好的勘探开发前景。但由于该区块页岩埋藏深,勘探程度低,深层优质页岩段沉积微相类型、储层特征及其空间展布规律不清... 近年来,四川盆地渝西地区大安区块上奥陶统五峰组—下志留统龙一1亚段连续获得多口高产工业气井,展示了该区块页岩气良好的勘探开发前景。但由于该区块页岩埋藏深,勘探程度低,深层优质页岩段沉积微相类型、储层特征及其空间展布规律不清,页岩气有利区优选依据不充分,制约了该区页岩气的深化勘探与开发。为此,通过岩心观察、扫描电镜、地球化学与物性测试、含气量测定和核磁共振等实验手段分析,结合钻测井资料,研究了大安区块五峰组—龙一1亚段各小层地质特征及储层展布规律,建立了深层页岩气有利区评价标准,优选了深层页岩气勘探有利区。研究结果表明:①高碳硅质页岩微相和高碳含黏土硅质页岩微相是最优质页岩气储层发育的沉积微相,主要发育于五峰组—龙一13小层。②龙一11—龙一14小层孔隙度平均超过4%,储集性好;五峰组—龙一13小层超大孔和裂缝较发育,所占比例分别为66%和25%。③五峰组—龙一13小层脆性矿物平均含量为55%,可压性好;含气量平均值不低于4.0 m^(3)/t,含气条件较好;龙一11—龙一13小层各层平均总有机碳含量超过3.0%,生烃条件好;地层压力系数普遍大于1.90。结论认为:①五峰组—龙一13小层页岩储层品质最优;②Ⅰ类、Ⅱ类和Ⅲ类页岩气有利区资源量分别为3775.78×10^(8) m^(3)、2970.05×10^(8) m^(3)、599.83×10^(8) m^(3);③该区深层页岩气勘探潜力大,是四川盆地重要的天然气产能接替区,其中临江向斜为下一步页岩气勘探的最有利区。 展开更多
关键词 四川盆地 渝西地区大安区块 上奥陶统五峰组—下志留统龙马溪组 深层页岩气 地质特征 储层特征 勘探有利区
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四川盆地南部龙马溪组页岩气藏井壁强化钻井液技术 被引量:1
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作者 罗平亚 李文哲 +3 位作者 代锋 李道雄 钟成旭 白杨 《天然气工业》 EI CAS CSCD 北大核心 2023年第4期1-10,共10页
四川盆地南部地区(以下简称川南)页岩气资源丰富,历经十余年研究与实践,目前已经实现了页岩气规模化和商业化开发,但是在钻进下志留统龙马溪组目的层时井下复杂严重且发生频繁、事故多、起下钻趟数多、耗时长,是至今仍然没有能够很好解... 四川盆地南部地区(以下简称川南)页岩气资源丰富,历经十余年研究与实践,目前已经实现了页岩气规模化和商业化开发,但是在钻进下志留统龙马溪组目的层时井下复杂严重且发生频繁、事故多、起下钻趟数多、耗时长,是至今仍然没有能够很好解决的重大钻井技术难题。为了降低开发综合成本、大幅度缩短钻完井周期从而使页岩气开发具有显著的经济效益,最有效的途径之一就是形成适用的页岩气藏井壁强化钻井液技术。为此,通过研究页岩地层岩石物性及特征,发现钻井液对地层微纳米裂缝封堵能力不足导致滤液侵入是致使该区龙马溪组页岩气藏井壁坍塌失稳的主要原因之一;针对上述情况,制备纳米封堵剂高质量本征态石墨烯纳米片,并提出了二维纳米石墨烯片界面强吸附黏着封堵理论;进而基于紧密堆积原理优选了适用于粒度级配的微米刚性封堵剂,形成了适用于川南龙马溪组页岩气藏井壁强化钻井液技术。现场应用结果表明,该技术在稳定井壁和强化井壁方面具有突出的效果,并且所研制的钻井液综合性能均优于现场井浆。结论认为,该项研究成果为实现该区页岩气效益开发提供了技术支撑。 展开更多
关键词 页岩气 钻井液 井壁强化 纳米石墨烯片 微米刚性封堵剂 四川盆地南部 下志留统龙马溪组
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