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低渗砂岩储层孔喉的分布特征及其差异性成因 被引量:34
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作者 张创 孙卫 +5 位作者 杨建鹏 高辉 侯海林 齐瑞 罗江云 魏希望 《地质学报》 CAS CSCD 北大核心 2012年第2期335-348,共14页
应用筛析粒度、铸体薄片、图像孔隙、扫描电镜与高压压汞等方法,对苏北盆地沙埝地区E1f3和三塘湖盆地牛圈湖地区J2x两类不同低渗储层的孔喉类型和分布特征进行了分析对比,对其差异性成因进行了探讨。研究表明,E1f3储层孔隙类型主要为碳... 应用筛析粒度、铸体薄片、图像孔隙、扫描电镜与高压压汞等方法,对苏北盆地沙埝地区E1f3和三塘湖盆地牛圈湖地区J2x两类不同低渗储层的孔喉类型和分布特征进行了分析对比,对其差异性成因进行了探讨。研究表明,E1f3储层孔隙类型主要为碳酸盐胶结物和长石溶孔,J2x储层主要为凝灰质和长石溶孔,前者溶蚀成因的粗大孔隙较多,而后者细小的晶间孔较多。E1f3储层喉道分布为溶蚀成因的粗单峰分布、压实或压实胶结混合成因的细单峰分布、管束状喉道的无峰分布,以及溶蚀成因与压实或压实胶结混合成因组成的双峰分布四类;J2x储层喉道为溶蚀成因的粗单峰分布、管束状喉道的细单峰分布,及管束状喉道与压实或压实胶结成因组成的双峰分布三类,未见溶蚀成因喉道与其他成因喉道组成的双峰分布。两区孔隙半径、喉道半径均随粒级变细呈减小趋势,平均孔隙半径也总是小于碎屑颗粒半径;在粒度相近的情况下,J2x储层孔隙、喉道半径均小于E1f3储层。E1f3储层较高的成分成熟度与结构成熟度和早期碳酸盐胶结作用使其在压实过程中保存了较大的原始粒间孔隙空间,且为后期溶蚀作用所扩大,牛圈湖地区J2x储层较高的塑性岩屑含量和同沉积期形成的凝灰质,使储层原始孔隙空间在压实过程中大量减少,后期溶蚀作用较弱。杂基对原始孔隙空间的充填程度及其与塑性岩屑共同造成的压实与溶蚀强度的差异,是造成两区目前孔隙结构差异的主要原因。 展开更多
关键词 孔隙 喉道 孔隙结构 苏北盆地 三塘湖盆地
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延长油田坪北区长8储层孔隙结构特征及其对水驱油微观特征的影响 被引量:16
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作者 周俊杰 《大庆石油地质与开发》 CAS CSCD 北大核心 2017年第5期68-75,共8页
储层孔隙结构对水驱油特征有重大影响。以延长油田坪北区长8储层为例,综合利用岩心、铸体薄片、扫描电镜、压汞实验等资料对储层孔隙结构进行分析,通过真实砂岩微观模型实验,探讨了不同孔隙结构对水驱油效率的影响。研究表明:长8储层主... 储层孔隙结构对水驱油特征有重大影响。以延长油田坪北区长8储层为例,综合利用岩心、铸体薄片、扫描电镜、压汞实验等资料对储层孔隙结构进行分析,通过真实砂岩微观模型实验,探讨了不同孔隙结构对水驱油效率的影响。研究表明:长8储层主要岩性为细粒长石砂岩和细粒岩屑长石砂岩,主要孔隙类型为残余粒间孔隙(原生孔隙)、溶蚀粒间和粒内孔隙(次生孔隙);储层类型可分为Ⅰ类、Ⅱ类、Ⅲ类和Ⅳ类,Ⅰ、Ⅱ类为主要储层;水驱油驱替类型以均匀驱替、网状均匀驱替、指状网状驱替以及指状驱替为主,储层物性、孔喉特征对驱油效率有重要影响,Ⅰ、Ⅱ类储层驱油效率高达50%。明确孔隙结构与驱油效率关系可更好地指导油气合理开发。 展开更多
关键词 孔隙结构 驱油效率 储层物性 孔喉 坪北区 长8
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镇泾油田延9、长6、长8段砂体孔隙结构特征及影响因素分析 被引量:10
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作者 冯一波 张哨楠 +1 位作者 丁晓琪 刘朋坤 《新疆地质》 CAS CSCD 北大核心 2009年第1期66-69,共4页
储层的孔隙结构是决定微观孔喉内流体流动、油气运移、油气产能的主要因素.利用铸体薄片、扫描电镜和压汞资料对镇泾地区主力产层延9、长6和长8段砂体的孔隙类型、孔隙结构特征进行了分析和对比,认为从延9到长8,孔隙结构特征变化大.就... 储层的孔隙结构是决定微观孔喉内流体流动、油气运移、油气产能的主要因素.利用铸体薄片、扫描电镜和压汞资料对镇泾地区主力产层延9、长6和长8段砂体的孔隙类型、孔隙结构特征进行了分析和对比,认为从延9到长8,孔隙结构特征变化大.就影响孔隙结构的主要因素进行了讨论,认为造成孔隙结构变化的因素有沉积作用和成岩作用,其中成岩作用中的压实作用和胶结作用是造成砂体孔喉丧失的主要原因,而溶蚀作用则使得长6段和长8段的孔喉增大. 展开更多
关键词 镇泾油田 孔隙结构 孔隙类型 孔喉
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基于核磁共振测井孔喉的低渗透率储层有效性评价方法 被引量:11
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作者 周明顺 殷洁 +3 位作者 潘景丽 任书莲 杨少欣 刘百舟 《测井技术》 CAS CSCD 北大核心 2014年第4期452-457,共6页
针对阿尔凹陷储层评价,应用核磁共振测井资料开展储层喉道大小与孔隙结构特征关系、喉道大小与渗透率关系研究,提出了基于核磁共振测井孔喉的渗透率计算方法,提高了渗透率计算精度。在此基础上,建立储层分类标准及低孔隙度低渗透率储层... 针对阿尔凹陷储层评价,应用核磁共振测井资料开展储层喉道大小与孔隙结构特征关系、喉道大小与渗透率关系研究,提出了基于核磁共振测井孔喉的渗透率计算方法,提高了渗透率计算精度。在此基础上,建立储层分类标准及低孔隙度低渗透率储层有效性评价方法,在实际应用中见到了良好的效果,在阿尔凹陷高效勘探开发工作起到了积极的作用。 展开更多
关键词 测井评价 核磁共振 渗透率 储层 孔喉 阿尔凹陷
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Pore-Throat Combination Types and Gas-Water Relative Permeability Responses of Tight Gas Sandstone Reservoirs in the Zizhou Area of East Ordos Basin, China 被引量:5
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作者 LI Mi GUO Yinghai +2 位作者 LI Zhuangfu WANG Huaichang ZHANG Jingxia 《Acta Geologica Sinica(English Edition)》 SCIE CAS CSCD 2019年第3期622-636,共15页
With the aim of better understanding the tight gas reservoirs in the Zizhou area of east Ordos Basin,a total of 222 samples were collected from 50 wells for a series of experiments.In this study,three pore-throat comb... With the aim of better understanding the tight gas reservoirs in the Zizhou area of east Ordos Basin,a total of 222 samples were collected from 50 wells for a series of experiments.In this study,three pore-throat combination types in sandstones were revealed and confirmed to play a controlling role in the distribution of throat size and the characteristics of gas-water relative permeability.The type-I sandstones are dominated by intercrystalline micropores connected by cluster throats,of which the distribution curves of throat size are narrow and have a strong single peak(peak ratio>30%).The pores in the type-II sandstones dominantly consist of secondary dissolution pores and intercrystalline micropores,and throats mainly occur as slice-shaped throats along cleavages between rigid grain margins and cluster throats in clay cement.The distribution curves of throat size for the type-II sandstones show a bimodal distribution with a substantial low-value region between the peaks(peak ratio<15%).Primary intergranular pores and secondary intergranular pores are mainly found in type-III samples,which are connected by various throats.The throat size distribution curves of type-III sandstones show a nearly normal distribution with low kurtosis(peak ratio<10%),and the micro-scale throat radii(>0.5μm)constitute a large proportion.From type-I to type-III sandstones,the irreducible water saturation(Swo)decreased;furthermore,the slope of the curves of Krw/Krg in two-phase saturation zone decreased and the two-phase saturation zone increased,indicating that the gas relative flow ability increased.Variations of the permeability exist in sandstones with different porethroat combination types,which indicate the type-III sandstones are better reservoirs,followed by type-II sandstones and type-I sandstones.As an important factor affecting the reservoir quality,the pore-throat combination type in sandstones is the cumulative expression of lithology and diagenetic modifications with strong heterogeneity. 展开更多
关键词 tight gas sandstone pore-throat COMBINATION type throat characteristic GAS-WATER relative permeability Zizhou area ORDOS Basin
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Pore throat characteristics of tight sandstone of Yanchang Formation in eastern Gansu,Ordos Basin 被引量:7
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作者 Hao Wu Chunlin Zhang +7 位作者 Youliang Ji Rui'e Liu Shang Cao Sheng Chen Yunzhao Zhang Ye Wang Wei Du Gang Liu 《Petroleum Research》 2018年第1期33-43,共11页
An important factor to evaluate reservoir quality is the pore-throat size.However,the strong heterogeneity makes it difficult to characterize the pore-throat distribution in tight reservoirs.The field emission scannin... An important factor to evaluate reservoir quality is the pore-throat size.However,the strong heterogeneity makes it difficult to characterize the pore-throat distribution in tight reservoirs.The field emission scanning electron microscope(FESEM),high pressure mercury injection and rate-controlled mercury injection are used to investigate the pore-throat size distribution in tight sandstone reservoirs of Member 7 of the Yanchang Formation in eastern Gansu,Ordos Basin,and studies of the pore throat size controlling on physical property of the tight sandstone reservoirs are also carried out.The result shows that the pore type is mainly dominated by the residual intergranular pore,dissolution pore,micropore and a few micro-fractures;the high-pressure mercury injection experiment indicates that the pore-throat size ranges from 0.0148 μm to 40mm,the pore throat more than 1 mm is less;the ratecontrolled mercury injection experiment reveals that for samples with different physical properties,the pore radius mainly varies from 80 μm to 350 μm;the throat radius exhibits the strong heterogeneity,and is from 0.12 μm to 30μm;the pore-throat size can be effectively characterized by combination of high-pressure and rate-controlled mercury injections,and it varies from 0.0148 μm to 350 μm.The permeability is mainly controlled by the large pore throat(>R_(50))which accounts for a small proportion;in the tight sandstone with the permeability greater than 0.1 mD,the permeability is mainly controlled by the micropore and mesopore;in the tight sandstone with the permeability smaller than 0.1 mD,the permeability is mainly controlled by the nanopore and micropore;the proportion of small pore throat increases with reduction of permeability,it is important that the small pore throat influences the reservoir storage property though its effect on permeability are small. 展开更多
关键词 pore-throat size High-pressure and rate-controlled mercury INJECTIONS Reservoir physical property Tight sandstone Member 7 of the Yanchang Formation Eastern Gansu
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Experimental analysis of matrix moveable oil saturation in tight sandstone reservoirs of the south Ordos Basin,China
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作者 Ting Xu Jun Pu +1 位作者 Xuejie Qin Yi Wei 《Energy Geoscience》 EI 2024年第1期184-195,共12页
Tight oil reservoirs in the south Ordos Basin are characterized by fractured,heterogeneous oil-bearing strata(an oil saturation of less than 55%on average),normal pressure(0.8±)and extra-low permeability(less tha... Tight oil reservoirs in the south Ordos Basin are characterized by fractured,heterogeneous oil-bearing strata(an oil saturation of less than 55%on average),normal pressure(0.8±)and extra-low permeability(less than 0.3 mD).In the Chang 8 tight sandstone reservoir in Honghe oilfield,micro-and nanopores,especially those with a pore-throat radius of less than 1 mm,account for more than 90%.Fluid flow in the matrix is non-linear and crude oil flow rates are very low under normal pressure gradients.An improved understanding of oil mobility in a tight matrix is key to further development of normalpressure tight-oil resources in the continental basin.In this study,constant-velocity and high-pressure mercury injection experiments were conducted using samples of typical tight sandstone cores obtained from the south of Ordos Basin.A new method for reconstructing the full-scale pore-throat distribution characteristics of tight sandstone reservoirs was established successfully,based on which multistage centrifugal tests,tests of low-pressure differential displacement of oil by water,and nuclear magnetic resonance tests were conducted in order to obtain the distribution characteristics of moveable fluid in different pores.The moveable oil saturation(MOS)and degree of oil recovery(i.e.ratio of accumulative oil production to producing geologic reserves)of the core samples under different differential pressures for displacement were determined.As for the tight oil reservoirs in the south Ordos Basin,the moveable fluids are mainly stored in sub-micron(0.10-0.5 mm)pores.For Type I reservoirs(k>0.1 mD),the volume percentage of moveable fluid in pores with a radius larger than 0.5 mm is relatively high(greater than 40%).The degree of oil recovery of water flooding serves as the basis for forecasting recoverable reserves for tight oil reservoirs.Recoverable reserves under water flooding,mainly occur in pores with a radius greater than 0.5 mm.The contribution of Type I reserves to oil production is observed to be greater than 60%,and 展开更多
关键词 Tight reservoir pore-throat structure Moveable fluid volume Moveable oil saturation(MOS) Waterflooding oil recovery South Ordos basin
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Experimental study of the effects of a multistage pore-throat structure on the seepage characteristics of sandstones in the Beibuwan Basin:Insights into the flooding mode
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作者 Lei Wang Xiao Lei +7 位作者 Qiao-Liang Zhang Guang-Qing Yao Bo Sui Xiao-Jun Chen Ming-Wei Wang Zhen-Yu Zhou Pan-Rong Wang Xiao-Dong Peng 《Petroleum Science》 SCIE EI CAS CSCD 2024年第2期1044-1061,共18页
To investigate the relationship between grain sizes, seepage capacity, and oil-displacement efficiency in the Liushagang Formation of the Beibuwan Basin, this study identifies the multistage pore-throat structure as a... To investigate the relationship between grain sizes, seepage capacity, and oil-displacement efficiency in the Liushagang Formation of the Beibuwan Basin, this study identifies the multistage pore-throat structure as a crucial factor through a comparison of oil displacement in microscopic pore-throat experiments. The two-phase flow evaluation method based on the Li-Horne model is utilized to effectively characterize and quantify the seepage characteristics of different reservoirs, closely relating them to the distribution of microscopic pores and throats. It is observed that conglomerate sandstones at different stages exhibit significant heterogeneity and noticeable differences in seepage capacity, highlighting the crucial role played by certain large pore throats in determining seepage capacity and oil displacement efficiency. Furthermore, it was found that the displacement effects of conglomeratic sandstones with strong heterogeneity were inferior to those of conventional homogeneous sandstone, as evidenced by multiple displacement experiments conducted on core samples with varying granularities and flooding systems. Subsequently, core-based experiments on associated gas flooding after water flooding were conducted to address the challenge of achieving satisfactory results in a single displacement mode for reservoirs with significant heterogeneity. The results indicate that the oil recovery rates for associated gas flooding after water flooding increased by 7.3%-16.4% compared with water flooding alone at a gas-oil ratio of approximately 7000 m^(3)/m^(3). Therefore, considering the advantages of gas flooding in terms of seepage capacity, oil exchange ratio, and the potential for two-phase production, gas flooding is recommended as an energy supplement mode for homogeneous reservoirs in the presence of sufficient gas source and appropriate tectonic angle. On the other hand, associated gas flooding after water flooding is suggested to achieve a more favorable development effect compared to a single mode of energy 展开更多
关键词 Beibuwan Basin Multistage pore-throat structure Multistage seepage characteristics Microscopic visualization HETEROGENEITY Gas/water flooding Flooding mode
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Identification of sweet spots in shale-type and siltstone-type“shale oil systems”:A case study of the Chang 7 Member in Ordos Basin 被引量:1
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作者 Songqi PAN Qiulei GUO +12 位作者 Caineng ZOU Zhenhua JING Ming YUAN Ying HE He ZHENG Ying MU Zhi YANG Shixiang LI Xinping ZHOU Songtao WU Hanlin LIU Feng YANG Yuanjia HAN 《Science China Earth Sciences》 SCIE EI CAS CSCD 2023年第7期1647-1663,共17页
Mid-high maturity shale oil is the most realistic field for the scale breakthrough of terrestrial shale oil production in China.Generally,three deficiencies hinder shale oil development in China:heavy oil density,smal... Mid-high maturity shale oil is the most realistic field for the scale breakthrough of terrestrial shale oil production in China.Generally,three deficiencies hinder shale oil development in China:heavy oil density,small sweet spot areas,and poor distribution continuity.Thus,identifying the“sweet spots”in shale oil reservoirs is critical for the efficient exploration and development of terrestrial shale oil.This study targets the siltstone type(Class-Ⅱshale oil)and pure shale type(Class-Ⅲshale oil)of the Chang 7 Member in the Ordos Basin,and identifies three stratigraphic units,namely the hydrocarbon accumulation unit,hydrocarbon generation unit,and hydrocarbon retention unit,which together constitute the in-source“shale oil system”.The hydrocarbon accumulation unit is mainly siltstone,where the hydrocarbons are migrated from shales.It has favorable porethroat network connectivity with a pore connectivity ratio of 32–57%,being the siltstone-type sweet spots.The hydrocarbon generation unit is mainly composed of high-TOC mudstone/shale and is the main contributor to in-source hydrocarbon generation and expulsion.This unit has high three-dimensional connectivity(28–30%),as shown by the pore-throat network model,associated with vertical paths for hydrocarbon expulsion.The hydrocarbon retention unit is mainly composed of low-TOC mudstone/shale retaining self-generated and migrated hydrocarbons.The pore connectivity rate is 17–42%,and the pore-throat network connectivity direction is uneven.Light and low-carbon-number hydrocarbons are preferentially trapped or even sealed in small pores of the retention unit,forming the typical mudstone/shale-type sweet spots.In the process called shale oil intrasource migration,the oil migrates in source rocks causing component fractionation,which allows more shale oil to enrich in the hydrocarbon accumulation and retention units to form sweet spots,compared with the hydrocarbon generation unit.The migration paths include the one from mudstone/shale to siltstone interl 展开更多
关键词 Shale oil system Hydrocarbon accumulation unit Hydrocarbon generation unit Hydrocarbon retention unit Differentiated enrichment Sweet spots window pore-throat network throat direction
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岩土介质孔隙结构参数灰色关联度分析 被引量:5
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作者 许林 张巍 +2 位作者 梁小龙 肖瑞 曹剑秋 《南京大学学报(自然科学版)》 CAS CSCD 北大核心 2018年第6期1105-1113,共9页
细观孔隙结构是控制多孔介质渗透率的主要因素之一.采用高分辨率工业显微CT,分别对砂雨法成样南京粉砂、振捣干法成样南京粉砂、鄂尔多斯油砂、自贡砂岩和砂雨法成样玻璃珠扫描成像.三维重构后选取尺寸为300体素的表征单元体(Representa... 细观孔隙结构是控制多孔介质渗透率的主要因素之一.采用高分辨率工业显微CT,分别对砂雨法成样南京粉砂、振捣干法成样南京粉砂、鄂尔多斯油砂、自贡砂岩和砂雨法成样玻璃珠扫描成像.三维重构后选取尺寸为300体素的表征单元体(Representative Element Volume,REV),基于最大球算法提取出REV的16种孔隙结构参数,并采用格子波尔兹曼方法计算出各REV渗透率.采用灰色关联度方法,分析了平均配位数、平均孔径、最大/小孔径等16个细观孔隙结构参数对多孔介质渗透率影响的主、次关系及其权重.结果表明,16种孔隙结构参数对渗透率的影响从大到小依次为:孔隙平均体积、孔隙最大体积、平均中值喉道、喉道平均半径、孔隙平均半径、喉道最大半径、平均喉道长度、孔隙最大半径、孔隙率、孔隙最小体积、孔喉平均配位数、孔隙截面积平均形状因子、喉道截面积平均形状因子、孔隙最小半径、孔喉比与喉道最小半径.可为岩土介质细观尺度渗流分析提供参考. 展开更多
关键词 岩土介质 孔隙结构 灰色关联度 表征单元体 格子波尔兹曼方法 配位数 喉道
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Pore Size Distribution of a Tight Sandstone Reservoir and its Effect on Micro Pore-throat Structure: A Case Study of the Chang 7 Member of the Xin’anbian Block, Ordos Basin, China 被引量:5
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作者 LI Peng JIA Chengzao +4 位作者 JIN Zhijun LIU Quanyou BI HeZHENG Min WU Songtao HUANG Zhenkai 《Acta Geologica Sinica(English Edition)》 SCIE CAS CSCD 2020年第2期219-232,共14页
Pore distribution and micro pore-throat structure characteristics are significant for tight oil reservoir evaluation, but their relationship remains unclear. This paper selects the tight sandstone reservoir of the Cha... Pore distribution and micro pore-throat structure characteristics are significant for tight oil reservoir evaluation, but their relationship remains unclear. This paper selects the tight sandstone reservoir of the Chang 7 member of the Xin’anbian Block in the Ordos Basin as the research object and analyzes the pore size distribution and micro pore-throat structure using field emission scanning electron microscopy(FE-SEM), high-pressure mercury injection(HPMI), highpressure mercury injection, and nuclear magnetic resonance(NMR) analyses. The study finds that:(1) Based on the pore size distribution, the tight sandstone reservoir is characterized by three main patterns with different peak amplitudes. The former peak corresponds to the nanopore scale, and the latter peak corresponds to the micropore scale. Then, the tight sandstone reservoir is categorized into three types: type 1 reservoir contains more nanopores with a nanopore-to-micropore volume ratio of 82:18;type 2 reservoir has a nanopore-to-micropore volume ratio of 47:53;and type 3 reservoir contains more micropores with a nanopore-to-micropore volume ratio of 35:65.(2) Affected by the pore size distribution, the throat radius distributions of different reservoir types are notably offset. The type 1 reservoir throat radius distribution curve is weakly unimodal, with a relatively dispersed distribution and peak ranging from 0.01 μm to 0.025 μm. The type 2 reservoir’s throat radius distribution curve is single-peaked with a wide distribution range and peak from 0.1 μm to 0.25 μm. The type 3 reservoir’s throat radius distribution curve is single-peaked with a relatively narrow distribution and peak from 0.1 μm to 0.25 μm. With increasing micropore volume, pore-throat structure characteristics gradually improve.(3) The correlation between micropore permeability and porosity exceeds that of nanopores, indicating that the development of micropores notably influences the seepage capacity. In the type 1 reservoir, only the mean radius and effective poros 展开更多
关键词 tight sandstone reservoir pore size distribution pore-throat structure ORDOS Basin CHANG 7 MEMBER
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Control of micro-wettability of pore-throat on shale oil occurrence:A case study of laminated shale of Permian Lucaogou Formation in Jimusar Sag,Junggar Basin,NW China
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作者 XI Kelai ZHANG Yuanyuan +3 位作者 CAO Yingchang GONG Jianfei LI Ke LIN Miruo 《Petroleum Exploration and Development》 SCIE 2023年第2期334-345,共12页
The control of micro-wettability of pore-throat on shale oil occurrence in different types of reservoir spaces remains unclear.Take the shale oil reservoir of the Permian Lucaogou Formation in the Jimusar Sag,Junggar ... The control of micro-wettability of pore-throat on shale oil occurrence in different types of reservoir spaces remains unclear.Take the shale oil reservoir of the Permian Lucaogou Formation in the Jimusar Sag,Junggar Basin as an example,the reservoir space in laminated shale and the control of micro-wettability of pore-throat on shale oil occurrence were studied by using scanning electron microscope(SEM),multi-stage pyrolysis,quantitative fluorescence,nuclear magnetic resonance(NMR)and other techniques.The results show that there are mainly two types of laminated shale in the Lucaogou Formation,namely laminated shale rich in volcanic materials+terrigenous felsic,and laminated shale rich in volcanic materials+carbonate.The former type contains feldspar dissolution pores and intergranular pores,mainly with felsic mineral components around the pore-throats,which are water-wet and control the free shale oil.The latter type contains carbonate intercrystalline pores and organic pores,mainly with oil-wet mineral components around the pore-throats,which control the adsorbed shale oil.The oil-wet mineral components around the pore-throats are conducive to oil accumulation,but reduce the proportion of free oil.In the Lucaogou Formation,free oil,with high maturity and light quality,mainly occurs in the laminated shale rich in volcanic materials+terrigenous felsic. 展开更多
关键词 shale lamina pore-throat wettability oil occurrence state shale oil reservoir Permian Lucaogou Formation Ji-musar Sag Junggar Basin
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Classification of microscopic pore-throats and the grading evaluation on shale oil reservoirs 被引量:2
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作者 LU Shuangfang LI Junqian +5 位作者 ZHANG Pengfei XUE Haitao WANG Guoli ZHANG Jun LIU Huimin LI Zheng 《Petroleum Exploration and Development》 2018年第3期452-460,共9页
On the basis of the characterization of microscopic pore-throats in shale oil reservoirs by high-pressure mercury intrusion technique, a grading evaluation standard of shale oil reservoirs and a lower limit for reserv... On the basis of the characterization of microscopic pore-throats in shale oil reservoirs by high-pressure mercury intrusion technique, a grading evaluation standard of shale oil reservoirs and a lower limit for reservoir formation were established. Simultaneously, a new method for the classification of shale oil flow units based on logging data was established. A new classification scheme for shale oil reservoirs was proposed according to the inflection points and fractal features of mercury injection curves: microscopic pore-throats(less than 25 nm), small pore-throats(25-100 nm), medium pore-throats(100-1 000 nm) and big pore-throats(greater than 1 000 nm). Correspondingly, the shale reservoirs are divided into four classes, I, II, III and IV according to the number of microscopic pores they contain, and the average pore-throat radii corresponding to the dividing points are 150 nm, 70 nm and 10 nm respectively. By using the correlation between permeability and pore-throat radius, the permeability thresholds for the reservoir classification are determined at 1.00× 10^(-3) μm^2, 0.40×10^(-3) μm^2 and 0.05×10^(-3) μm^2 respectively. By using the exponential relationship between porosity and permeability of the same hydrodynamic flow unit, a new method was set up to evaluate the reservoir flow belt index and to identify shale oil flow units with logging data. The application in the Dongying sag shows that the standard proposed is suitable for grading evaluation of shale oil reservoirs. 展开更多
关键词 SHALE oil MICROSCOPIC pore-throat high pressure mercury injection lower limit of reservoir formation GRADING EVALUATION Bohai Bay Basin Dongying SAG
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Quantitative characterization of pore structure of the CarboniferousePermian tight sandstone gas reservoirs in eastern Linqing depression by using NMR technique 被引量:2
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作者 Tao Fang Likuan Zhang +5 位作者 Naigui Liu Liqiang Zhang Weimin Wang Lan Yu Chao Li Yuhong Lei 《Petroleum Research》 2018年第2期110-123,共14页
Micro-nano scale pores can accurately and fastly be measured by the nuclear magnetic resonance(NMR)technique,which provides a new method to quantitatively characterize pore structures in tight sandstone.Based on the m... Micro-nano scale pores can accurately and fastly be measured by the nuclear magnetic resonance(NMR)technique,which provides a new method to quantitatively characterize pore structures in tight sandstone.Based on the method of calibration of mercury pressure data for NMR T_(2) spectrum,for the measurement inaccuracy due to the mercury saturation less than 100%in tight sandstone,the mercury pressure curve and T_(2) spectrum is used to cumulate from the maximum pore on the right boundary to the small pores in the left,the range of pore-throat radius measured by the mercury injection in the leftward cumulative curve is selected as a comparable interval of NMR pore-throat radius,and the longitudinal interpolation method and the least square method are utilized to construct the distribution curve of pore-throat radius transformed by T_(2) spectrum.The modified method is used to obtain NMR T_(2) spectrum,conversion coefficient of pore-throat radius and pore-throat radius distribution of the Carboniferous-Permian tight sandstone gas reservoirs in the eastern Linqing depression,and characteristics of reservoir pore structures are quantitatively investigated;in addition,in combination with analysis of thin section and scanning electron microscopy,the reservoir effectiveness and cause of the pore structure variability in the tight sandstone are also well studied.The results show that the NMR pore-throat radius curve obtained by the modified method has a high consistency with the mercury injection curve,and the NMR test accuracy of tight sandstone is significantly improved.In the study area,the pore-throat radius of the Carboniferous-Permian tight sandstone mainly ranges from 0.002 to 2 mm,the pore is generally submicro-nano scale,but the pore-throat radius distribution of different types of sandstone varies significantly.The lithic quartz sandstone is rich in siliceous matter and poor in plastic detritus and matrix,generally dominated by submicro-scale pore-throats including micro-scale porethroats;lithic feldspar sandstone 展开更多
关键词 NMR T_(2)spectrum Mercury injection Conversion coefficient pore-throat Rock fabric MICROFACIES Tight sandstone Linqing depression
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Reservoir Rock Facies──Case Presentation of Sandstone Type
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作者 金奎励 《International Journal of Mining Science and Technology》 SCIE EI 2000年第1期1-6,共6页
The reservoir rock facies is presented by its principal indieators to show the aspects of sedimentary facies,diagenetic change and oil-gas indication. These indicators used by the author are 1) the petrologic──of wh... The reservoir rock facies is presented by its principal indieators to show the aspects of sedimentary facies,diagenetic change and oil-gas indication. These indicators used by the author are 1) the petrologic──of which the sedimentary facies and vitrinite reflectance are included, 2) the physical ── pore/throat di-ameter ratio and coordination number of throat connecting pore, and 3) the geochemical──photochemical parameters of individual organic inclusion. Based on the above mentioned quantitative indicators,the defined reservoir rock facies may not only be used for itself evaluation, but also may be put in facies column or facies-palaeogeographic map to predict or to trace oil-gas reservoir. Microscope photometry,micro-FT-IR and Laser Raman methods were used for studying all the aforesaid parameters by means of thinned polished sections from core or cemented cuttings, except the 3-D others, from parallel and vertical to bedding or some duplicate core samples, that the rose fluorescein preparation must be soaked in for the convenience of studying pore throat structure. 展开更多
关键词 reservoir rock FACIES VITRINITE reflectance pore-throat structure individual organic INCLUSION analysis
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Experimental study and theoretical analysis of fluid resistance in porous media of glass spheres
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作者 王彤 郑坤灿 +3 位作者 贾宇鹏 付承鹭 龚志军 武文斐 《Chinese Physics B》 SCIE EI CAS CSCD 2017年第7期228-233,共6页
Porous media have a wide range of applications in production and life, as well as in science and technology. The study of flow resistance in porous media has a great effect on industrial and agricultural production. T... Porous media have a wide range of applications in production and life, as well as in science and technology. The study of flow resistance in porous media has a great effect on industrial and agricultural production. The flow resistance of fluid flow through a 20-mm glass sphere bed is studied experimentally. It is found that there is a significant deviation between the Ergun equation and the experimental data. A staggered pore-throat model is established to investigate the flow resistance in randomly packed porous media. A hypothesis is made that the particles are staggered in a regular triangle arrangement. An analytical formulation of the flow resistance in random porous media is derived. There are no empirical constants in the formulation and every parameter has a specific physical meaning. The formulation predictions are in good agreement with the experimental data. The deviation is within the range of 25%. This shows that the staggered pore-throat model is reasonable and is expected to be verified by more experiments and extended to other porous media. 展开更多
关键词 porous media random packing staggered pore-throat model flow resistance
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Experimental investigation on migration and retention mechanisms of elastic gel particles(EGPs)in pore-throats using multidimensional visualized models
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作者 Yi-Fei Liu Chen-Wei Zou +4 位作者 Xu-Guang Lou Ming-Wei Gao Guang Zhao Ming-Wei Zhao Cai-Li Dai 《Petroleum Science》 SCIE CAS CSCD 2022年第5期2374-2386,共13页
Knowledge of migration and retention mechanisms of elastic gel particles(EGPs)in pore-throats is essential for the effective application of EGPs as a smart sweep improvement and profile control agent for enhanced oil ... Knowledge of migration and retention mechanisms of elastic gel particles(EGPs)in pore-throats is essential for the effective application of EGPs as a smart sweep improvement and profile control agent for enhanced oil recovery(EOR).The matching coefficient(defined as the ratio of particle size to pore-throat size)is used to investigate its influence on migration,retention and profile control performance of EGPs.A 1-D continuous pore-throat visualization model(PTVM),a 2-D heterogeneous PTVM and a 3-D heterogeneous core model were constructed and used to investigate pore-scale migration,retention and controlling mechanism of migration and retention characteristics on EGPs profile control.The results of the 1-D continuous PTVM indicated that while the matching coefficient was in the optimal range(i.e.,0.20-0.32),the EGPs could not only smoothly migrate to the deeper pore-throats,but also form stable retention in the pores to resist the erosion of injected water,which was conducive to the effective indepth profile control.The results of the 2-D heterogeneous PTVM verified that the sweep efficiency in low-permeability regions could be significantly improved by in-depth migration and stable retention of EGPs in the pore-throats with an optimal matching coefficient(0.29),which was much better than that in cases with a smaller matching coefficient(0.17)or an excessive matching coefficient(0.39).Moreover,the NMR displacement experiments of 3-D heterogeneous cores were carried out to simulate the EGPs profile control in actual reservoir porous media.Saturation images and T2 spectrum curves of crude oil showed that EOR in the low-permeability layer was highest(56.1%)using EGPs profile control with an optimal matching coefficient,attributing to the in-depth migration and stable retention of EGPs. 展开更多
关键词 Enhanced oil recovery Elastic gel particles Matching coefficient In-depth profile control pore-throat visualization models
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Pore-throat structure characteristics and its impact on the porosity and permeability relationship of Carboniferous carbonate reservoirs in eastern edge of Pre-Caspian Basin 被引量:1
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作者 LI Weiqiang MU Longxin +8 位作者 ZHAO Lun LI Jianxin WANG Shuqin FAN Zifei SHAO Dali LI Changhai SHAN Fachao ZHAO Wenqi SUN Meng 《Petroleum Exploration and Development》 2020年第5期1027-1041,共15页
Carboniferous carbonate reservoirs at the eastern edge of the Pre-Caspian Basin have undergone complex sedimentation,diagenesis and tectonism processes,and developed various reservoir space types of pores,cavities and... Carboniferous carbonate reservoirs at the eastern edge of the Pre-Caspian Basin have undergone complex sedimentation,diagenesis and tectonism processes,and developed various reservoir space types of pores,cavities and fractures with complicated combination patterns which create intricate pore-throats structure.The complex pore-throat structure leads to the complex porosity-permeability relationship,bringing great challenges for classification and evaluation of reservoirs and efficient development.Based on the comprehensive analysis on cores,thin sections,SEM,mercury intrusion,routine core analysis and various tests,this paper systematically investigated the features and main controlling factors of pore-throats structure and its impact on the porosity-permeability relationship of the four reservoir types which were pore-cavity-fracture,pore-cavity,pore-fracture and pore,and three progresses are made.(1)A set of classification and descriptive approach for pore-throat structure of Carboniferous carbonate reservoirs applied to the eastern edge of the Pre-Caspian Basin was established.Four types of pore-throat structures were developed which were wide multimodal mode,wide bimodal mode,centralized unimodal mode and asymmetry bimodal mode,respectively.The discriminant index of pore-throat structure was proposed,realizing the quantitative characterization of pore-throat structure types.(2)The microscopic heterogeneity of pore reservoir was the strongest and four types of pore-throat structures were all developed.The pore-fracture and pore-cavity-fracture reservoirs took the second place,and the microscopic heterogeneity of pore-cavity reservoir was the weakest.It was revealed that the main controlling factor of pore-throat structure was the combination patterns of reservoir space types formed by sedimentation,diagenesis and tectonism.(3)It was revealed that the development of various pore-throat structure types was the important factor affecting poroperm relationship of reservoirs.The calculation accuracy of permeability 展开更多
关键词 Pre-Caspian Basin CARBONIFEROUS carbonate reservoir pore-throat structure main controlling factors porosity-permeability relationship
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页岩油形成机制、地质特征及发展对策 被引量:526
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作者 邹才能 杨智 +9 位作者 崔景伟 朱如凯 侯连华 陶士振 袁选俊 吴松涛 林森虎 王岚 白斌 姚泾利 《石油勘探与开发》 SCIE EI CAS CSCD 北大核心 2013年第1期14-26,共13页
页岩油是储存于富有机质、纳米级孔径为主页岩地层中的成熟石油,是常规-非常规"有序聚集"体系的重要类型之一,对中国陆相页岩油形成的沉积环境、储集空间、地球化学特征和聚集机制等基本石油地质问题进行了分析总结。富有机... 页岩油是储存于富有机质、纳米级孔径为主页岩地层中的成熟石油,是常规-非常规"有序聚集"体系的重要类型之一,对中国陆相页岩油形成的沉积环境、储集空间、地球化学特征和聚集机制等基本石油地质问题进行了分析总结。富有机质页岩主要发育在半深湖—深湖环境,不同岩性组合共生沉积;发育纹层结构,微米—纳米级孔喉和微裂缝是主要储集空间;有利页岩以Ⅰ型和ⅡA型干酪根为主、Ro值为0.7%~2.0%、TOC值大于2.0%、有效厚度大于10 m;揭示了页岩孔隙演化和页岩油滞留聚集模式,储集空间、脆性指数、黏度、压力、滞留量等是页岩油"核心区"评价的关键。中国陆相页岩油在湖盆中心连续聚集,初步预测可采页岩油资源量约30×108~60×108t,水平井体积压裂、改造"天然裂缝"、注粗颗粒"人造储集层"等可能是页岩油工业化发展的核心技术,提出加快页岩油"分布区"研究、加强"核心区"评选、加大"试验区"建设的"三步走"发展思路。借鉴北美海相页岩气突破成功经验,陆相页岩油工业化有望在中国首先突破。 展开更多
关键词 页岩油 页岩气 页岩系统油气 纳米级孔喉 非常规油气 常规-非常规“有序聚集”体系
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页岩油储集层微观孔喉分类与分级评价 被引量:71
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作者 卢双舫 李俊乾 +5 位作者 张鹏飞 薛海涛 王国力 张俊 刘惠民 李政 《石油勘探与开发》 SCIE EI CAS CSCD 北大核心 2018年第3期436-444,共9页
利用高压压汞技术对页岩油储集层微观孔喉进行表征,并在此基础上建立页岩油储集层分级评价标准及成储下限,建立基于测井资料进行页岩油流动单元划分的新方法。依据进汞曲线的拐点及分形特征,提出了适合于页岩油储集层的分类新方案:微孔... 利用高压压汞技术对页岩油储集层微观孔喉进行表征,并在此基础上建立页岩油储集层分级评价标准及成储下限,建立基于测井资料进行页岩油流动单元划分的新方法。依据进汞曲线的拐点及分形特征,提出了适合于页岩油储集层的分类新方案:微孔喉(小于25 nm)、小孔喉(25~100 nm)、中孔喉(100~1 000 nm)、大孔喉(大于1 000 nm),进一步按照页岩所含不同类型微观孔喉的数量将其分为Ⅰ级、Ⅱ级、Ⅲ级和Ⅳ级储集层,分级点对应的孔喉平均半径分别为150,70,10 nm。利用渗透率与孔喉半径的相关关系,建立了储集层分级评价的渗透率标准门槛分别为1.00×10^(-3),0.40×10^(-3),0.05×10^(-3)μm^2。利用同一水力流动单元内孔隙度、渗透率良好的指数关系,构建了由测井资料评价储集层流动带指数、划分页岩油流动单元的新方法。在东营凹陷的应用表明,所建立的标准可以应用于页岩油储集层的分级评价。 展开更多
关键词 页岩油 微孔喉 高压压汞 成储下限 分级评价 渤海湾盆地 东营凹陷
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