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陆相中高成熟页岩油“组分流动”条件及其在提高页岩油产量中的作用
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作者 赵文智 卞从胜 +8 位作者 李永新 刘伟 秦冰 蒲秀刚 江建林 刘诗局 关铭 董劲 申玉坦 《石油勘探与开发》 EI CAS CSCD 北大核心 2024年第4期720-730,共11页
基于中国陆相页岩油区重点试采井的生产曲线、生产制度、烃产物数量和产出烃构成随时间的变化等资料,开展页岩油精细馏分切割和页岩油组成变化对宏观流动性影响的试验以及分子动力学数值模拟,提出页岩油“组分流动”概念,并对组分流动... 基于中国陆相页岩油区重点试采井的生产曲线、生产制度、烃产物数量和产出烃构成随时间的变化等资料,开展页岩油精细馏分切割和页岩油组成变化对宏观流动性影响的试验以及分子动力学数值模拟,提出页岩油“组分流动”概念,并对组分流动的形成机理与条件进行探讨。研究表明:(1)在地下页岩微纳米孔隙中,轻烃、中质烃和重烃会按相似相溶原理发生混相,使重烃等难流动组分以分子聚集体方式“悬浮”在轻烃和中质烃溶剂中,从而显著降低其黏度并增加流动性和流动量;(2)小分子芳烃是组分流动发生的载体,气态烃和轻烃含量越高,越利于抑制胶质和沥青等重组分形成尺寸更大的聚集体,并增加其塑性变形能力,组分流动效果越好;(3)较高的地层温度可降低蜡质等重烃组分黏度,提高其流动性;(4)保存条件、地层能量和生产制度对控制轻烃组分含量、流出速度和形成稳定的“组分流动”都有重要作用,是页岩油多组分烃形成最优配伍和最大流动量的重要影响因素。地下页岩油“组分流动”概念的提出对于提高页岩油单井产量和累计采出量具有重要意义。 展开更多
关键词 陆相 纯页岩型页岩油 中高成熟页岩油 微纳米孔隙 多组分烃 组分流动 相似相溶 分子聚集体
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中国典型咸化湖盆页岩油富集与流动特征及在“甜点”评价中的意义 被引量:7
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作者 赵文智 卞从胜 +5 位作者 蒲秀刚 刘诗局 关铭 刘伟 李永新 董劲 《中国石油大学学报(自然科学版)》 EI CAS CSCD 北大核心 2023年第5期25-37,共13页
咸化湖盆主要发育混积型页岩,长英质、碳酸盐矿物含量高,黏土矿物含量低,有机质形成液态烃时间偏早,但有机质丰度变化较大,且页岩油密度、黏度较高,流动性总体偏差。分析中国典型咸化湖盆页岩岩石组构、页岩油物性与流动性特征,总结提... 咸化湖盆主要发育混积型页岩,长英质、碳酸盐矿物含量高,黏土矿物含量低,有机质形成液态烃时间偏早,但有机质丰度变化较大,且页岩油密度、黏度较高,流动性总体偏差。分析中国典型咸化湖盆页岩岩石组构、页岩油物性与流动性特征,总结提出“甜点”评价关键要素。有机质丰度较高(总有机碳TOC>1.5%或者2.0%)且单层集中段厚度较大(10~15 m或更大)的咸化湖盆页岩,在中低熟阶段(镜质体反射率R_(o)<0.8%)就可形成较多滞留烃,且纵向上具良好的源储组合,有利于页岩油近源微运移,形成富集段;混积型页岩黏土含量较低,对液态烃吸附总量较小,且页岩具有较好脆性,可保证地下可动烃数量较多,人工改造也可形成较好导流效果;页岩油主要赋存于黏土层微纳米孔隙和碳酸质与长英质层超压成因的微裂缝和构造缝中,非均质性极强,但多组分烃和非烃通过混相可改善重质烃和非烃组分的流动性,支撑中低熟液态烃有较高的流动量。此外,良好封闭性是形成异常高压的重要条件;足够高的现今地层温度(最好大于120℃)可提高中低熟页岩油地下流动性,合理的生产制度可保障多组分烃和非烃最佳混相从而形成最大流动量。具备上述条件的咸化湖盆中低熟页岩油称为“甜点”靶体,可用水平井和体积改造等非原位转化技术进行开发,并与需原位转化的淡水湖盆中低熟页岩油并列,构成中国中低熟页岩油两种主要类型,都具有良好的开发潜力,是陆相页岩油革命得于发生的重要资源基础。 展开更多
关键词 中低熟页岩油 非原位转化型 多组分烃与非混相 组分流动 控制因素 吸附性 “甜点”评价 咸化湖盆
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Characterization of Average Molecular Structure of Heavy Oil Fractions by ~1H Nuclear Magnetic Resonance and X-ray Diffraction 被引量:1
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作者 Ren Wenpo Yang Chaohe Shan Honghong 《China Petroleum Processing & Petrochemical Technology》 SCIE CAS 2011年第3期1-7,共7页
The chemical structure of heavy oil fractions obtained by liquid-solid adsorption chromatography was character-ized by 1 H nuclear magnetic resonance and X-ray diffraction.The molecular weight and molecular formula of... The chemical structure of heavy oil fractions obtained by liquid-solid adsorption chromatography was character-ized by 1 H nuclear magnetic resonance and X-ray diffraction.The molecular weight and molecular formula of asphaltene molecules were estimated by combining 1 H nuclear magnetic resonance and X-ray diffraction analyses,and were also ob-tained from vapor pressure osmometry and elemental analysis.Heteroatoms,such as S,N,and O atoms,were considered in the construction of average molecular structure of heavy oils.Two important structural parameters were proposed,including the number of alkyl chain substituents to aromatic rings and the number of total rings with heteroatoms.Ultimately,the av-erage molecular structures of polycyclic aromatics,heavy resins and asphaltene molecules were constructed.The number of α-,β-,γ-,and aromatic hydrogen atoms of the constructed average molecular structures fits well with the number of hydro-gen atoms derived from the experimental spectral data. 展开更多
关键词 heavy oil ASPHALTENE nuclear magnetic resonance (NMR) X-ray diffraction (XRD) average molecular structure
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Application of the dividing wall column to olefin separation in fluidization methanol to propylene(FMTP) process 被引量:1
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作者 Xiaolong Ge Botong Liu +2 位作者 Xigang Yuan Yiqing Luo Kuo-Ksong Yu 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2017年第8期1069-1078,共10页
Dividing wall column(DWC)is shown to be energy efficient compared to conventional column sequence for multi components separation,which is used for olefin separation in fluidization methanol to propylene process in th... Dividing wall column(DWC)is shown to be energy efficient compared to conventional column sequence for multi components separation,which is used for olefin separation in fluidization methanol to propylene process in the present work.Detailed design for pilot DWC was performed and five control structures,i.e.composition control(CC),temperature control(TC),composition-temperature control(CC-TC),temperature difference control(TDC),double temperature difference control(DTDC)were proposed to circumvent feed disturbance.Sensitivity analysis and singular value decomposition(SVD)were used as criterion to select the controlled temperature locations in TC,CC-TC,TDC and DTDC control loops.The steady simulation result demonstrates that 25.7% and 30.2% duty can be saved for condenser and reboiler by substituting conventional column sequence with DWC,respectively.As for control structure selection,TC and TDC perform better than other three control schemes with smaller maximum deviation and shorter settling time. 展开更多
关键词 Distillation Dividing wall column Olefin separation Detailed design Process control
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