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热作用条件下烟道气与轻质原油混相规律
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作者 席长丰 王伯军 +7 位作者 赵芳 花道德 齐宗耀 刘彤 赵泽麒 唐君实 周游 王红庄 《石油勘探与开发》 EI CSCD 北大核心 2024年第1期147-153,共7页
通过细长管混相驱替实验开展高温高压条件下烟道气与不同类型轻质原油的热混相规律研究。在高温高压条件下烟道气可以与轻质原油实现混相驱替;相同温度条件下,烟道气驱油效率与压力呈近线性关系;相同压力条件下,随温度增加驱油效率先平... 通过细长管混相驱替实验开展高温高压条件下烟道气与不同类型轻质原油的热混相规律研究。在高温高压条件下烟道气可以与轻质原油实现混相驱替;相同温度条件下,烟道气驱油效率与压力呈近线性关系;相同压力条件下,随温度增加驱油效率先平缓增加,然后急速增加,驱油效率快速达到90%以上,实现混相驱,驱油效率急速增加过程与稀油轻质组分随温度增加发生蒸馏相变有着密切关系;相同压力条件下,原油越轻,烟道气与原油的最小混相温度越低,越容易实现混相,注空气热混相驱替开发效果越好;高温高压条件下轻质原油与烟道气的混相更多体现的是超临界状态的高温相变特征,与常规高压条件下CO_(2)的接触抽提混相存在较大差异。 展开更多
关键词 轻质原油 烟道气驱 热混相驱 混相规律 蒸馏相变 最小混相压力 最小混相温度
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高温高压动态点火模拟系统及实验测试
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作者 陈新远 于晓聪 +3 位作者 关文龙 唐君实 郑浩然 阚长宾 《实验技术与管理》 CAS 北大核心 2024年第2期208-214,共7页
点火是火烧油层中最重要的一步,关系到燃烧能否成功启动,开展室内实验可以获取点火过程中的动态信息。该文针对燃烧管实验操作复杂和热分析实验难以模拟地层条件的问题,结合原油燃烧过程中高温高压、温度变化迅速的特点,设计了高温高压... 点火是火烧油层中最重要的一步,关系到燃烧能否成功启动,开展室内实验可以获取点火过程中的动态信息。该文针对燃烧管实验操作复杂和热分析实验难以模拟地层条件的问题,结合原油燃烧过程中高温高压、温度变化迅速的特点,设计了高温高压动态点火模拟系统。模拟系统使用程序控制可对岩心精准升温,温度控制采样分辨率为0.1℃,模拟系统可承受10 MPa的压力,可实时记录7种气体组分,并可实时动态监测温度压力、尾气组分。功能性实验表明:原油Arrhenius曲线在高低温区域呈现明显差异,曲线在高温区域的线性度较好,相关系数大于0.9,并求得高温区域表观活化能为8.01~26.7k J/mol。测试表明,模拟系统可实时监测记录原油燃烧过程中的氧化参数,为工程实施和数值模拟提供基础数据。 展开更多
关键词 火烧油层 点火参数模拟 实验系统 表观活化能分析 点火评价
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多元热流体发生器不同燃料燃烧工况优化
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作者 钱坤 窦祥骥 +2 位作者 唐君实 郭二鹏 陆佳昊 《常州大学学报(自然科学版)》 CAS 2024年第2期31-38,共8页
对稠油多元热流体发生器典型燃烧组分进行分析是注入能力评价、采收率预测、多次吞吐优化的关键。研究利用Fluent软件对多元热流体发生器进行三维仿真建模,模拟发生器不同工况下温度场和流场的分布。结果表明,不同的多元热流体发生器需... 对稠油多元热流体发生器典型燃烧组分进行分析是注入能力评价、采收率预测、多次吞吐优化的关键。研究利用Fluent软件对多元热流体发生器进行三维仿真建模,模拟发生器不同工况下温度场和流场的分布。结果表明,不同的多元热流体发生器需要根据不同的燃料设计相应的燃料喷嘴,以促进燃料充分燃烧,提高热效率。当柴油作为燃料时,燃油喷嘴需要与空气喷嘴相匹配,以加强其雾化效果。天然气是多元热流体发生器的首选燃料,但在燃料供应条件有限的情况下,液态柴油和气相天然气可以相互替代,作为燃料在同一发生器中使用。当煤粉作为燃料时,即使有过量氧气,也难以充分燃烧。但是,在综合考虑成本或缺乏其他燃料时,可通过优化燃料喷嘴设计,最终实现煤粉在多元热流体发生器中的高效燃烧。 展开更多
关键词 多元热流体 燃烧 柴油 天然气 煤粉
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Miscibility of light oil and flue gas under thermal action
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作者 XI Changfeng WANG Bojun +7 位作者 ZHAO Fang HUA Daode QI Zongyao LIU Tong ZHAO Zeqi tang junshi ZHOU You WANG Hongzhuang 《Petroleum Exploration and Development》 SCIE 2024年第1期164-171,共8页
The miscibility of flue gas and different types of light oils is investigated through slender-tube miscible displacement experiment at high temperature and high pressure.Under the conditions of high temperature and hi... The miscibility of flue gas and different types of light oils is investigated through slender-tube miscible displacement experiment at high temperature and high pressure.Under the conditions of high temperature and high pressure,the miscible displacement of flue gas and light oil is possible.At the same temperature,there is a linear relationship between oil displacement efficiency and pressure.At the same pressure,the oil displacement efficiency increases gently and then rapidly to more than 90% to achieve miscible displacement with the increase of temperature.The rapid increase of oil displacement efficiency is closely related to the process that the light components of oil transit in phase state due to distillation with the rise of temperature.Moreover,at the same pressure,the lighter the oil,the lower the minimum miscibility temperature between flue gas and oil,which allows easier miscibility and ultimately better performance of thermal miscible flooding by air injection.The miscibility between flue gas and light oil at high temperature and high pressure is more typically characterized by phase transition at high temperature in supercritical state,and it is different from the contact extraction miscibility of CO_(2) under conventional high pressure conditions. 展开更多
关键词 light oil flue gas flooding thermal miscible flooding miscible law distillation phase transition minimum miscible pressure minimum miscible temperature
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多层油藏火驱开发模式探讨 被引量:6
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作者 关文龙 宫宇宁 +2 位作者 唐君实 宋扬 李秋 《特种油气藏》 CAS CSCD 北大核心 2020年第6期60-66,共7页
针对多层油藏火驱开发过程面临的点火初期井筒内发生燃烧和储层纵向有效动用程度低、油藏动态跟踪和调控难度大等问题,结合室内实验数据、矿场试验数据,运用油藏工程分析方法,明确了火驱的本质特征是高温氧化反应,保证高温氧化的最关键... 针对多层油藏火驱开发过程面临的点火初期井筒内发生燃烧和储层纵向有效动用程度低、油藏动态跟踪和调控难度大等问题,结合室内实验数据、矿场试验数据,运用油藏工程分析方法,明确了火驱的本质特征是高温氧化反应,保证高温氧化的最关键参数是不同阶段注气强度,火驱开发是一种末次采油方式。将上述研究成果应用于多层油藏火驱开发方案设计中,结果表明:多层油藏火驱开发方案应细分开发层系,开发目的层的总厚度应小于30 m,含油层段厚度应小于20 m;开发程序可采用自下而上、逐层上返,通过层间接替实现长期稳产。研究内容对多层油藏火驱开发提高采收率和降低工程风险具有重要意义。 展开更多
关键词 火驱 多层油藏 高温氧化 开发模式 注气强度 层系划分 稠油油藏
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轻质油藏高压注空气氧化特征与热混相驱技术 被引量:4
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作者 席长丰 王伯军 +11 位作者 赵芳 刘彤 齐宗耀 张霞林 唐君实 蒋有伟 关文龙 王红庄 何东博 宋新民 花道德 张晓琨 《石油勘探与开发》 SCIE EI CAS CSCD 北大核心 2022年第4期760-769,共10页
通过物理模拟实验、数值模拟和现场实例分析,综合研究轻质油藏高压注空气热混相驱的地下热氧化状态、热氧化前缘稳定性及生产动态特征。研究结果表明,原油组分越轻、黏度越低,热氧化燃料消耗量越低,氧化生热温度越低。稀油和挥发油热氧... 通过物理模拟实验、数值模拟和现场实例分析,综合研究轻质油藏高压注空气热混相驱的地下热氧化状态、热氧化前缘稳定性及生产动态特征。研究结果表明,原油组分越轻、黏度越低,热氧化燃料消耗量越低,氧化生热温度越低。稀油和挥发油热氧化前缘能够稳定推进,形成高压条件下的轻质油藏中温热氧化稳定驱替状态。稀油和挥发油的热气化和蒸馏作用强,容易在高压高温热氧化前缘与热烟道气一起形成气化和蒸馏单相区带,形成注空气热混相前缘。轻质油藏高压注空气热混相驱开发过程可分为增压见效、低气油比高效稳产、高气油比生产等3个阶段,增压见效阶段和低气油比高效稳产阶段产出70%以上的原油。 展开更多
关键词 轻质油藏 空气驱 驱替特征 高压热氧化前缘 热混相驱 火驱
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稠油油藏火驱驱替特征实验研究 被引量:3
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作者 李秋 何厚锋 +5 位作者 关文龙 蒋有伟 唐君实 席长丰 郑浩然 王晓春 《油气地质与采收率》 CAS CSCD 北大核心 2021年第6期79-86,共8页
火驱驱替特征是火驱的复杂物化过程和油藏地质条件综合作用的结果,是火驱方案设计和跟踪调控的重要基础。利用一维热跟踪补偿燃烧管实验装置,对比分析了不同性质稠油线性火驱的驱替特征,并与烟道气驱驱替特征进行对比。结果表明:原油黏... 火驱驱替特征是火驱的复杂物化过程和油藏地质条件综合作用的结果,是火驱方案设计和跟踪调控的重要基础。利用一维热跟踪补偿燃烧管实验装置,对比分析了不同性质稠油线性火驱的驱替特征,并与烟道气驱驱替特征进行对比。结果表明:原油黏度对火驱产液速率影响较大,黏度较低时火驱初期产液速率较高,大部分原油在中前期采出;黏度较大时,初期产液速率较小,甚至不产液,大部分原油在火驱中后期产出。火驱阶段含水率主要由地层初始含水饱和度(火驱前含水饱和度)决定。当地层初始含水饱和度高于束缚水饱和度时,火驱初期含水率较高,之后逐渐降低并趋于稳定。火驱初期(注气量小于1 PV)的生产动态特征与烟道气驱相近。在持续开发过程中,火驱仍保持稳定的采油速度,而烟道气驱采出程度增幅放缓。火驱开发的原油采出程度与累积注气量呈近似线性的关系,表明要保证火驱开发的效果则需保证相应的注气量。 展开更多
关键词 火驱 燃烧管实验 驱替特征 烟道气驱 稠油油藏
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注空气全温度域原油氧化反应特征及开发方式 被引量:19
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作者 廖广志 王红庄 +7 位作者 王正茂 唐君实 王伯军 潘竞军 杨怀军 刘卫东 宋蔷 蒲万芬 《石油勘探与开发》 SCIE EI CAS CSCD 北大核心 2020年第2期334-340,共7页
通过模拟实验揭示了从30℃到600℃的注空气全温度域原油氧化反应特征,将原油注空气氧化反应划分为溶解膨胀、低温氧化、中温氧化和高温氧化4个温度区间,总结了不同温度区间的氧化反应机理。根据原油氧化特征结合矿场试验成果,提出稀油... 通过模拟实验揭示了从30℃到600℃的注空气全温度域原油氧化反应特征,将原油注空气氧化反应划分为溶解膨胀、低温氧化、中温氧化和高温氧化4个温度区间,总结了不同温度区间的氧化反应机理。根据原油氧化特征结合矿场试验成果,提出稀油油藏注空气开发技术划分为减氧空气驱和空气驱,稠油油藏注空气火驱技术划分为中温火驱和高温火驱。稀油油藏温度低于120℃,应选择减氧空气驱,高于120℃,可直接采用空气驱开发;普通稠油油藏燃烧前缘温度低于400℃可选择注空气中温火驱开发,普通稠油油藏和胶质、沥青质含量较高的特/超稠油油藏,燃烧前缘温度高于450℃可选择注空气高温火驱开发。中国石油天然气股份有限公司近10年的攻关和开发试验证实,空气与其他气体驱油介质相比在技术、经济和气源等方面具有明显优势,不仅适用于低/特低渗透稀油油藏、中高渗透稀油油藏,也适用于稠油油藏,是一种很有潜力的新型驱油介质。 展开更多
关键词 注空气 全温度域 原油氧化 反应特征 焦炭沉积 油藏类型 开发方式
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Oxidization characteristics and thermal miscible flooding of high pressure air injection in light oil reservoirs
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作者 XI Changfeng WANG Bojun +11 位作者 ZHAO Fang LIU Tong QI Zongyao ZHANG Xialin tang junshi JIANG Youwei GUAN Wenlong WANG Hongzhuang HE Dongbo SONG Xinmin HUA Daode ZHANG Xiaokun 《Petroleum Exploration and Development》 CSCD 2022年第4期874-885,共12页
Physical modeling,numerical simulation and field case analysis were carried out to find out the subsurface thermal oxidation state,thermal oxidation front characteristics and production dynamic characteristics of high... Physical modeling,numerical simulation and field case analysis were carried out to find out the subsurface thermal oxidation state,thermal oxidation front characteristics and production dynamic characteristics of high pressure air injection thermal oxidation miscible flooding technology.The lighter the composition and the lower the viscosity of the crude oil,the lower the fuel consumption and the combustion temperature are.The thermal oxidation front of light oil and volatile oil can advance stably,and a medium-temperature thermal oxidation stable displacement state can be formed in the light oil reservoir under high pressure conditions.With strong thermal gasification and distillation,light oil and volatile oil are likely to form a single phase zone of gasification and distillation with thermal flue gas at the high-temperature and high-pressure heat front,finally,an air-injection thermal miscible front.In light oil reservoirs,the development process of high-pressure air-injection thermal miscible flooding can be divided into three stages:boosting pressure stage,low gas-oil ratio and high-efficiency stable production stage and high gas-oil ratio production stage.Approximately 70%of crude oil is produced during the boosting pressure stage and low gas-oil ratio high-efficiency and stable production stage. 展开更多
关键词 light oil reservoir air flooding displacement characteristics high-pressure oxidation front thermal miscible flooding fire flooding
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Oil oxidation in the whole temperature regions during oil reservoir air injection and development methods
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作者 LIAO Guangzhi WANG Hongzhuang +7 位作者 WANG Zhengmao tang junshi WANG Bojun PAN Jingjun YANG Huaijun LIU Weidong SONG Qiang PU Wanfen 《Petroleum Exploration and Development》 2020年第2期357-364,共8页
The oil oxidation characteristics of the whole temperature regions from 30 ℃ to 600 ℃ during oil reservoir air injection were revealed by experiments. The whole oil oxidation temperature regions were divided into fo... The oil oxidation characteristics of the whole temperature regions from 30 ℃ to 600 ℃ during oil reservoir air injection were revealed by experiments. The whole oil oxidation temperature regions were divided into four different parts: dissolving and inflation region, low temperature oxidation region, medium temperature oxidation region and high temperature oxidation region. The reaction mechanisms of different regions were explained. Based on the oil oxidation characteristics and filed tests results, light oil reservoirs air injection development methods were divided into two types: oxygen-reducing air flooding and air flooding;heavy oil reservoirs air injection in-situ combustion development methods were divided into two types: medium temperature in-situ combustion and high temperature in-situ combustion. When the reservoir temperature is lower than 120 ℃, oxygen-reducing air flooding should be used for light oil reservoir development. When the reservoir temperature is higher than 120 ℃, air flooding method should be used for light oil reservoir development. For a normal heavy oil reservoir, when the combustion front temperature is lower than 400 ℃, the development method is medium temperature in-situ combustion. For a heavy oil reservoir with high oil resin and asphalting contents, when the combustion front temperature is higher than 450 ℃, the development method at this condition is high temperature in-situ combustion. Ten years field tests of air injection carried out by PetroChina proved that air has advantages in technical, economical and gas source aspects compared with other gas agents for oilfield gas injection development. Air injection development can be used in low/super-low permeability light oil reservoirs, medium and high permeability light oil reservoirs and heavy oil reservoirs. Air is a very promising gas flooding agent. 展开更多
关键词 air injection full temperature regions oil oxidation reaction characteristics coke formation reservoir types development methods
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Mechanisms and influencing factors of the oil bank in fire flooding
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作者 LI Qiu YI Leihao +5 位作者 tang junshi GUAN Wenlong JIANG Youwei ZHENG Haoran ZHOU Jiuning WANG Xiaochun 《Petroleum Exploration and Development》 2018年第3期491-498,共8页
Based on the systematic summary of current research on oil bank, the definition of oil bank in the process of fire flooding and its quantitative indices were proposed; and a new one-dimensional positive dry-fire flood... Based on the systematic summary of current research on oil bank, the definition of oil bank in the process of fire flooding and its quantitative indices were proposed; and a new one-dimensional positive dry-fire flooding model considering temperature gradient was established based on the steady flow theory of gas and liquid phases. Single factor analysis and orthogonal experiments were adopted to verify the reliability and reveal the formation mechanisms and the controlling factors of the oil bank. Then the optimal conditions for the oil bank to form were discussed. The study results show the formation of the oil bank is controlled by 3 factors:(1) Oil bank would come into being within a certain temperature interval and above a critical value of temperature gradient(absolute value), with temperature too high or too low and temperature gradient absolute value lower than the critical value, the oil bank couldn't form.(2) For fire flooding process in heavy oil reservoirs, the viscosity of oil influences the width of oil bank and the speed at which oil bank forms; the lower the oil viscosity is, the wider the oil bank is and the faster the oil bank forms.(3) Oil saturation could affect the developing temperature and speed of oil bank. The favorable temperature at which oil bank develops gets lower and the accumulating speed of oil gets faster when the oil saturation is higher. By orthogonal experiments with the model, the optimal combinations of reservoir conditions for forming oil bank during fire flooding in heavy oil reservoirs can be worked out. 展开更多
关键词 fire FLOODING HEAVY OIL OIL BANK flow model single FACTOR analysis controlling FACTOR ORTHOGONAL experiment
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