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Effect of CO_(2)flooding in an oil reservoir with strong bottom-water drive in the Tahe Oilfield,Tarim Basin,Northwest China
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作者 Li Zhang Haiying Liao Maolei Cui 《Energy Geoscience》 EI 2024年第1期230-233,共4页
The dissolution and diffusion of CO_(2)in oil and water and its displacement mechanism were investigated by laboratory experiment and numerical simulation for Block 9 in the Tahe oilfield,a sandstone oil reservoir wit... The dissolution and diffusion of CO_(2)in oil and water and its displacement mechanism were investigated by laboratory experiment and numerical simulation for Block 9 in the Tahe oilfield,a sandstone oil reservoir with strong bottom-water drive in Tarim Basin,Northwest China.Such parameters were analyzed as solubility ratio of CO_(2)in oil,gas and water,interfacial tension,in-situ oil viscosity distribution,remaining oil saturation distribution,and oil compositions.The results show that CO_(2)flooding could control water coning and increase oil production.In the early stage of the injection process,CO_(2)expanded vertically due to gravity differentiation,and extended laterally under the action of strong bottom water in the intermediate and late stages.The CO_(2)got enriched and extended at the oil-water interface,forming a high interfacial tension zone,which inhibited the coning of bottom water to some extent.A miscible region with low interfacial tension formed at the gas injection front,which reduced the in-situ oil viscosity by about 50%.The numerical simulation results show that enhanced oil recovery(EOR)is estimated at 5.72%and the oil exchange ratio of CO_(2)is 0.17 t/t. 展开更多
关键词 Strong bottom-water drive reservoir CO_(2)flooding Enhanced oil recovery Coning of bottom water Tahe oilfield Tarim Basin Northwest China
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Application of New Water Flooding Characteristic Curve in the High Water-Cut Stage of an Oilfield 被引量:1
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作者 Xi Zhang Changquan Wang +1 位作者 Hua Wu Xu Zhao 《Fluid Dynamics & Materials Processing》 EI 2022年第3期661-677,共17页
The oil production predicted by means of the conventional water-drive characteristic curve is typically affected by large deviations with respect to the actual value when the so-called high water-cut stage is entered.... The oil production predicted by means of the conventional water-drive characteristic curve is typically affected by large deviations with respect to the actual value when the so-called high water-cut stage is entered.In order to solve this problem,a new characteristic relationship between the relative permeability ratio and the average water saturation is proposed.By comparing the outcomes of different matching methods,it is verified that it can well reflect the variation characteristics of the relative permeability ratio curve.Combining the new formula with a reservoir engineering method,two new formulas are derived for the water flooding characteristic curve in the high water-cut stage.Their practicability is verified by using the production data of Mawangmiao and Xijiakou blocks.The results show that the error between the predicted cumulative oil production and production data of the two new water drive characteristic curves is less than the error between the B-type water drive characteristic curve and the other two water drive characteristic curves.It is concluded that the two new characteristic curves can be used to estimate more accurately the recoverable reserves,the final recovery and to estimate the effects of water flooding. 展开更多
关键词 water flooding characteristic curve high water cut period production dynamic prediction recoverable reserves water flooding
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A Method for Calculating Oil Field Relative Permeability Curve by Using Water Drive Characteristic Curve in High Water Cut Stage
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作者 Juan Du 《Journal of Geoscience and Environment Protection》 2022年第2期47-54,共8页
With the production of strong bottom water reservoir, it will soon enter the ultra-high water cut stage. After entering the ultra-high water cut period, the main means of stable production is liquid extraction. Large ... With the production of strong bottom water reservoir, it will soon enter the ultra-high water cut stage. After entering the ultra-high water cut period, the main means of stable production is liquid extraction. Large liquid volume has a certain impact on the physical property distribution and fluid seepage law of the oilfield. The relative permeability curve measured according to the industry standard is not used for the prediction of development indicators and the understanding of the dynamic law of the oilfield. In order to understand the characteristics of water drive law in high water cut stage of water drive oilfield, starting from the water drive characteristic curve in high water cut stage, the method for calculating the relative permeability curve is deduced. Through numerical simulation verification and fitting the actual production data, it is confirmed that the obtained relative permeability curve is in line with the reality of the oilfield, It can provide some guiding significance for understanding the production law and water drive law of strong bottom water reservoir in ultra-high water cut stage. 展开更多
关键词 Strong Bottom water Reservoir High water Cut Stage water drive curve Relative Permeability curve
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Displacement behavior and mechanism of long-term water flooding in sandstone oil reservoirs 被引量:1
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作者 CAO Ren-yi DAI Zong +4 位作者 WANG Zhi-kai WANG Ya-hui JIANG Jun LI hai-long JIA Zhi-hao 《Journal of Central South University》 SCIE EI CAS CSCD 2021年第3期834-847,共14页
Sandstone oil reservoirs with huge bottom water and high permeability are generally developed with high flow rate.After long-term water flooding(LTWF),the water flooding characteristics are quite different from that o... Sandstone oil reservoirs with huge bottom water and high permeability are generally developed with high flow rate.After long-term water flooding(LTWF),the water flooding characteristics are quite different from that of original reservoir.In this paper,the effects of the PV number,viscosity,and displacement rate during LTWF are studied through experiments.The mechanism is analyzed based on analysis of changes in oil composition,rock mineral composition and wettability.The oil-water relative permeability curves,oil recovery and wettability were obtained with new experiments methods,which avoids the oil metering error by measuring oil and water separately.The research indicates that when the viscosity increases,the water phase permeability decreases,the residual oil saturation increases,and the water content rate increases earlier.A higher water flooding rate results in a higher ultimate recovery.A higher asphaltene content results in a higher viscosity and more oil-wet reservoir conditions.After LTWF,the wettability tends to water-wet,which is more favorable for heavy oil recovery.Moreover,LTWF reduces the clay content,which creates a more water-wet surface and a larger reservoir pore throat environment.This research provides insightful characteristics of offshore sandstone oil reservoirs,which can be used to enhance oil recovery. 展开更多
关键词 long-term water flooding sandstone reservoir relative permeability curve WETTABILITY
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Residual oil evolution based on displacement characteristic curve 被引量:3
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作者 Duanchuan Lyu Chengyan Lin +2 位作者 Lihua Ren Chunmei Dong Jinpeng Song 《International Journal of Mining Science and Technology》 SCIE EI CSCD 2020年第3期337-343,共7页
The purpose of this study was to determine the displacement and dynamic distribution characteristics of the remaining oil in the two development stages of water flooding and subsequent alkaline surfactant polymer(ASP)... The purpose of this study was to determine the displacement and dynamic distribution characteristics of the remaining oil in the two development stages of water flooding and subsequent alkaline surfactant polymer(ASP) flooding. The well pattern types in the water and ASP flooding stages are a longdistance determinant well pattern and short-distance five-point well pattern, respectively. The type A displacement characteristic curve can be obtained using the production data, and the slope of the straight-line section of the curve can reflect the displacement strength of the oil displacement agent. A numerical simulation was carried out based on the geological model. The results revealed that the injected water advances steadily with a large-distance determinant water-flooding well pattern. The single-well water production rate increases monotonically during water flooding. There is a significant positive correlation between the cumulative water-oil ratio and the formation parameter. Differential seepage between the oil and water phases is the main factor causing residual oil formation after water flooding, while the residual oil is still relatively concentrated. The effect of the chemical oildisplacement agent on improving the oil-water two-phase seepage flow has distinct stages during ASP flooding. The remaining oil production is extremely sporadic after ASP flooding. 展开更多
关键词 water flooding ASP flooding water-drive characteristic curve Residue oil Thick oil layer
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A NEW METHOD FOR IMPROVING WATER DRIVE RESULT AND LEASE TEST
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作者 Li Xianhong,Fan Yuping and Cheng Jincai(Liaohe petroleum Administration) 《China Oil & Gas》 CAS 1996年第2期81-82,共2页
ANEWMETHODFORIMPROVINGWATERDRIVERESULTANDLEASETEST¥LiXianhong,FanYupingandChengJincai(LiaohepetroleumAdminis... ANEWMETHODFORIMPROVINGWATERDRIVERESULTANDLEASETEST¥LiXianhong,FanYupingandChengJincai(LiaohepetroleumAdministration)Keywords:... 展开更多
关键词 water drive.water flooding.Profile control
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Systematic improvement in Tong's B-type water drive method
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作者 Zheyuan Fan Yudong Fan Yinghong Su 《Energy Geoscience》 2023年第2期28-34,共7页
Tong's B-type water drive method was proposed as early as the 1970s and has been widely applied in the dynamic prediction and effective evaluation of oilfield development.Through extensive applications and studies... Tong's B-type water drive method was proposed as early as the 1970s and has been widely applied in the dynamic prediction and effective evaluation of oilfield development.Through extensive applications and studies,many researchers found that the statistical constants in the formula of the Tong's B-type water drive method(also referred to as the Tong's B-type formula)are not applicable to multiple types of reservoirs,especially low-permeability ones,due to the limited range of reservoir types when the formula was conceived.Moreover,they put forward suggestions to improve the Tong's B-type formula,most of which focused on the research and calculation of the first constant in the formula.For oilfields in the development stages of high or ultra-high water cuts,it is widely accepted that different types of reservoirs have different limit water cuts.This understanding naturally makes it necessary to further modify the Tong's B-type formula.It is practically significant to establish the water drive formula and cross plot considering that the two constants in the formula vary with reservoir type.By analyzing the derivation process and conditions of the Tong's B-type formula,this study points out two key problems,i.e.,the two constants 7.5 and 1.69 in the formula are not applicable to all types of reservoir.Given this,this study establishes a function between key reservoir parameters and the first constant and another function between key reservoir parameters and recovery efficiency.Based on the established two functions and considering that different types of oil reservoir have different limit water cuts,this study develops an improved Tong's B-type formula and prepares the corresponding improved cross plot.The results of this study will improve the applicability and accuracy of Tong's B-type water drive method in predicting the trend of water cut increasing for different types of oil reservoirs. 展开更多
关键词 Oilfield development water drive curve Tong's B-Type water drive method water cut increase trend Evaluation of development effect
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Water-sensitive damage mechanism and the injection water source optimization of low permeability sandy conglomerate reservoirs
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作者 WANG Lei ZHANG Hui +5 位作者 PENG Xiaodong WANG Panrong ZHAO Nan CHU Shasha WANG Xinguang KONG Linghui 《Petroleum Exploration and Development》 2019年第6期1218-1230,共13页
The global mobility theory was used to evaluate the experimental results of oil displacement with water of different salinities.The results of scanning electron microscopy,X diffraction of clay minerals,nonlinear seep... The global mobility theory was used to evaluate the experimental results of oil displacement with water of different salinities.The results of scanning electron microscopy,X diffraction of clay minerals,nonlinear seepage and nuclear magnetic resonance experiments and particle migration inhibition experiments before and after water flooding were compared to determine the mechanisms of water sensitive damage and enhanced water flooding mechanism of low permeability sandy conglomerate reservoirs in Wushi region of Beibuwan Basin,China.A production equation of the oil-water two phase flow well considering low-speed non-Darcy seepage and reservoir stress sensitivity was established to evaluate the effect of changes in reservoir properties and oil-water two-phase seepage capacity on reservoir productivity quantitatively,and injection water source suitable for the low permeability sandy conglomerate reservoirs in Wushi region was selected according to dynamic compatibility experimental results of different types of injected water.The seepage capacity of reservoir is the strongest when the injected water is formation water of 2 times salinity.The water-sensitive damage mechanisms of the reservoirs in Wushi region include hydration of clay minerals and particle migration.By increasing the content of cations(especially K+and Mg2+)in the injected water,the water-sensitive damage of the reservoir can be effectively inhibited.The formation water of Weizhou Formation can be used as the injection water source of low permeability sandy conglomerate reservoirs in the Wushi region. 展开更多
关键词 Beibuwan Basin low permeability RESERVOIR SANDY CONGLOMERATE RESERVOIR water-sensitive damage enhanced water flooding effective driving coefficient global mobility water flooding
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考虑微观界面力学效应的低矿化度水驱渗流特征模型
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作者 孙德旭 宋云鹏 吴飞鹏 《大庆石油地质与开发》 CAS 北大核心 2024年第6期71-79,共9页
为更好地描述低矿化度水驱的渗流特征,首先通过岩心驱替实验,验证了低矿化度水驱提高采收率的潜力。在此基础上,建立不同离子类型与矿物间微观界面作用的毛管束数学模型来模拟低矿化度水驱过程,通过岩心驱替实验进行模型验证,在相渗曲... 为更好地描述低矿化度水驱的渗流特征,首先通过岩心驱替实验,验证了低矿化度水驱提高采收率的潜力。在此基础上,建立不同离子类型与矿物间微观界面作用的毛管束数学模型来模拟低矿化度水驱过程,通过岩心驱替实验进行模型验证,在相渗曲线拟合成功后,使用模型分析特征管径、离子价态与浓度对渗流的影响。结果表明:随着特征管径的减小,界面作用对采出程度的影响增加,当特征管径从20μm减小到5μm时,采出程度从2.9%扩大到30.5%,当毛管阻力较大时,常规水驱提高采收率效果有限,孔隙中存在大量残余油;低矿化度水驱可有效提高采收率,且离子价态是影响低矿化度水驱效果的主控因素,使用Na+的低矿化度水驱采出程度提高7.85百分点,而Ca2+则为4.83百分点。建立的毛管束模型可模拟不同离子类型与矿物间的低矿化度水驱效果,为油田现场的低矿化度水驱开发提供更好的理论指导。 展开更多
关键词 低矿化度水驱 界面作用 驱替实验 毛管束模型 相渗曲线
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砂岩油藏高倍数水驱物性及驱替特征变化规律研究进展
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作者 屈亚光 骆峰 +3 位作者 姜宇 周文胜 马小强 吴泓瑾 《内蒙古石油化工》 CAS 2024年第8期90-95,共6页
采用注水开发的砂岩油藏一般在进入到高含水阶段后,务必会经过长期的注水开发,水驱倍数一般较高,高倍水驱后储层的驱替特征会发生显著变化,从而会影响油田的驱油效率和最终的采收率。针对储层孔隙结构、渗透率、孔隙度、矿物组成、润湿... 采用注水开发的砂岩油藏一般在进入到高含水阶段后,务必会经过长期的注水开发,水驱倍数一般较高,高倍水驱后储层的驱替特征会发生显著变化,从而会影响油田的驱油效率和最终的采收率。针对储层孔隙结构、渗透率、孔隙度、矿物组成、润湿性等参数,总结了各种参数的研究方法和技术手段,归纳了高倍水驱后储层微观孔隙参数和宏观参数的变化规律,阐述了研究过程中可能存在的问题,为后续的储层时变研究提供技术指导。 展开更多
关键词 高倍水驱 微观孔喉结构 粘土矿物 润湿性 相对渗透率曲线
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南水北调西线工程上线水源区大型底栖动物群落结构及环境驱动因子 被引量:4
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作者 张丰搏 胡鹏 +3 位作者 闫龙 唐家璇 闫肖瑶 王玉莲 《水资源保护》 EI CSCD 北大核心 2024年第1期135-141,共7页
为评估南水北调西线工程上线水源区大型底栖动物群落结构及环境驱动因子,于2022年7月(汛期)和11月(非汛期)开展监测采样工作。采用生物多样性指数和丰度-生物量比较曲线(ABC曲线)作为大型底栖动物群落特征参数,分析大型底栖动物群落在... 为评估南水北调西线工程上线水源区大型底栖动物群落结构及环境驱动因子,于2022年7月(汛期)和11月(非汛期)开展监测采样工作。采用生物多样性指数和丰度-生物量比较曲线(ABC曲线)作为大型底栖动物群落特征参数,分析大型底栖动物群落在水源区的结构,并对其进行多元排序和Pearson相关性分析。结果表明:共采集45种大型底栖动物,隶属于4门5纲10目32科44属,其中优势种8种,所有优势物种出现频率均大于50%,水源区大型底栖动物群落结构一致性较高;水源区Margalef丰富度指数、Shannon-Wiener多样性指数和Pielou均匀度指数均值分别为4.01、1.68、0.61;多数采样区域大型底栖动物的ABC曲线呈纠缠态势,其丰度和生物量累积百分比的差值面积在0附近波动,群落以小个头物种为主;优势种以耐污值低的敏感种类为主,说明河流几乎不受污染,水体清洁;pH值是影响水源区大型底栖动物群落结构的主要环境驱动因子。 展开更多
关键词 南水北调西线工程 大型底栖动物群落 生物多样性指数 ABC曲线 环境驱动因子
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底水油藏水侵量计算新方法
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作者 崔雪婷 张艺钟 +4 位作者 张茂林 杨龙 田嘉鑫 凡文科 肖千祝 《科学技术与工程》 北大核心 2024年第11期4464-4471,共8页
针对底水油藏的开发,在缺乏试井数据的情况下采用常规油藏物质平衡法以及试井分析方法均难以确定水驱控制储量,进而无法获得水体参数和特征来计算油田的水侵量。为了更加准确的预测水驱油田水侵量,结合生产动态资料,选择符合的水驱特征... 针对底水油藏的开发,在缺乏试井数据的情况下采用常规油藏物质平衡法以及试井分析方法均难以确定水驱控制储量,进而无法获得水体参数和特征来计算油田的水侵量。为了更加准确的预测水驱油田水侵量,结合生产动态资料,选择符合的水驱特征曲线计算水驱控制储量。在此基础上,考虑油环油、溶解气、水体等因素,建立物质平衡方程,通过亏空体积曲线法计算获得水侵量。利用Fetkvoitch拟稳态模型,采用试错法,优化计算水体体积和水侵系数,保证Fetkvoitch拟稳态模型求解的水侵量和亏空体积曲线法求解的水侵量最接近,得到最优的水体体积和水侵系数对未来生产动态中水侵量进行预测。运用油藏数值模拟软件建立的模型与本文提出两种的计算方法拟合结果对比可知的水体体积的误差为2.6%、水侵指数的误差为2.2%,计算结果准确,为底水油藏计算水侵量提供了可靠的依据,并为预测水侵量提供了新的方法。 展开更多
关键词 水驱特征曲线 物质平衡方程 Fetkovitch拟稳态模型 水侵量 底水油藏
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CO_(2)驱不同注入方式对低渗透储层渗流能力的影响
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作者 刘漪雯 付美龙 +4 位作者 王长权 许诗婧 孟凡坤 沈彦来 李毓 《油气地质与采收率》 CAS CSCD 北大核心 2024年第2期79-85,共7页
CO_(2)驱是提高低渗透储层采收率有效的技术手段。CO_(2)与原油接触后使体系中的沥青质以固体形式沉积下来,对储层造成一定堵塞,但同时发生的溶蚀作用整体上提高了储层渗流能力,且不同注入方式下CO_(2)驱对低渗透储层渗流能力的影响具... CO_(2)驱是提高低渗透储层采收率有效的技术手段。CO_(2)与原油接触后使体系中的沥青质以固体形式沉积下来,对储层造成一定堵塞,但同时发生的溶蚀作用整体上提高了储层渗流能力,且不同注入方式下CO_(2)驱对低渗透储层渗流能力的影响具有一定差异。开展了CO_(2)连续注入及CO_(2)-水交替注入后有机垢堵塞机理实验、储层润湿性实验及CO_(2)-水溶液对岩石的溶蚀评价实验,并对相对渗透率曲线参数变化特征进行评价,定量表征了CO_(2)驱不同注入方式对低渗透储层渗流能力的影响程度。结果表明:CO_(2)驱产生的有机垢会对岩石孔喉造成堵塞,但整体上CO_(2)与绿泥石反应导致的溶蚀作用更强,使得低渗透储层采收率有效提高;且CO_(2)-水交替注入比CO_(2)连续注入引起的有机垢堵塞要弱,溶蚀作用效果更好,渗透率损失率更低,能够在中、大孔隙中取得更好的驱油效果,整体上更能增大岩石孔隙空间和渗流通道,使得低渗透储层采收率有效提高。 展开更多
关键词 CO_(2)驱 CO_(2)-水交替注入 有机垢 溶蚀作用 相对渗透率曲线 提高采收率
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Ⅱ类广义气水混驱特征曲线的建立及应用
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作者 褚夫建 苟拓彬 +1 位作者 韩跃涛 高文君 《新疆石油地质》 CAS CSCD 北大核心 2024年第1期47-52,共6页
在Ⅱ类广义水驱特征曲线的基础上,引入了地下含气水率概念,类比建立了Ⅱ类广义气水混驱特征曲线。此类曲线对应的含气水变化规律数学模型在n、m取不同数值时,不仅可以转化为S型含气水变化规律,而且也可以转化为描述凸型、S-凸型、S-凹... 在Ⅱ类广义水驱特征曲线的基础上,引入了地下含气水率概念,类比建立了Ⅱ类广义气水混驱特征曲线。此类曲线对应的含气水变化规律数学模型在n、m取不同数值时,不仅可以转化为S型含气水变化规律,而且也可以转化为描述凸型、S-凸型、S-凹型、凹型等不同形态的含气水变化规律,丰富了气水混驱油藏开发效果评价方法。给出了Ⅱ类广义气水混驱特征曲线通式及其对应的含气水变化规律数学模型的求解方法,并分别评价了葡北油田三间房组油藏气水交替混相驱和锦州油田S31油藏气顶+边水混驱的开发效果,拟合精度较高,可供其他油藏开发借鉴。 展开更多
关键词 葡北油田 锦州油田 气水混驱油藏 Ⅱ类广义气水混驱特征曲线 地下含气水率 变化规律 数学模型
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水驱曲线标定技术可采储量的极限含水率
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作者 连建文 汪耀宗 杨继光 《新疆石油地质》 CAS CSCD 北大核心 2024年第6期687-695,共9页
在动态法标定可采储量中,水驱曲线法是一种重要的方法。该方法是注水油藏不采取重大调整措施、不改变开发方式、水驱状况基本保持稳定时的向前预测,其将极限含水率标准定为0.98,缺乏科学依据。不同油藏的水驱规律存在很大差异,应在4种... 在动态法标定可采储量中,水驱曲线法是一种重要的方法。该方法是注水油藏不采取重大调整措施、不改变开发方式、水驱状况基本保持稳定时的向前预测,其将极限含水率标准定为0.98,缺乏科学依据。不同油藏的水驱规律存在很大差异,应在4种水驱特征曲线中选择最接近油藏实际的水驱规律,而不是以技术可采储量最低去选择,造成标定的技术可采储量可靠性不强。为此,将4种水驱特征曲线和产量递减法进行反演优选和联合消元,形成新的水(液)油比与递减产量关系式,不仅可以确定极限含水率,也实现了动态法标定技术可采储量结果的唯一性。 展开更多
关键词 水驱特征曲线 可采储量标定 极限含水率 产量递减方程 水油比
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基于水驱特征曲线的水驱气藏水侵量计算
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作者 王进 《科技创新与应用》 2024年第16期103-107,共5页
针对水驱气藏水侵量计算过程复杂的问题,提出通过建立水驱物质平衡方程与水驱特征曲线之间的关系来求解水侵量的方法。首先从气水两相渗流规律及地层流体产能方程出发,得到水驱气藏的水驱特征曲线,即气井见水后的阶段累产气量与水气比... 针对水驱气藏水侵量计算过程复杂的问题,提出通过建立水驱物质平衡方程与水驱特征曲线之间的关系来求解水侵量的方法。首先从气水两相渗流规律及地层流体产能方程出发,得到水驱气藏的水驱特征曲线,即气井见水后的阶段累产气量与水气比的自然对数呈线性关系,通过斜率即可求解气井见水后的动态储量,加上气井见水前的累产气量作为总的动态储量,结合水驱物质平衡方程,可以计算出水驱气藏的水侵量。实例应用表明,水侵量计算结果在地质气藏模型中能很好地吻合上生产历史数据,证明该方法具有较强的实用性,能够为水驱气藏动态评价与治水措施的选择提供依据。 展开更多
关键词 水驱气藏 水侵量 动态储量 水驱特征曲线 相对渗透率
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一种改进水驱特征曲线的建立及应用
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作者 凃兴平 孙欣华 +1 位作者 殷嘉伟 李留杰 《石油化工应用》 CAS 2024年第7期52-55,共4页
水驱特征曲线是油田开发中用来预测水驱可采储量与采出程度的重要方法之一。截至目前,国内外学者已经研究出60多种水驱特征曲线的表达式,但每种水驱特征曲线在油田实际开发应用中都存在一定的局限性。为了更好的反映油藏的含水率变化情... 水驱特征曲线是油田开发中用来预测水驱可采储量与采出程度的重要方法之一。截至目前,国内外学者已经研究出60多种水驱特征曲线的表达式,但每种水驱特征曲线在油田实际开发应用中都存在一定的局限性。为了更好的反映油藏的含水率变化情况,在马克西莫夫-童宪章水驱特征曲线和沙卓诺夫水驱特征曲线2种典型对数水驱特征曲线基础上,提出了一种带系数n的新型水驱特征曲线,得出了含水率与采出程度的函数关系式,绘制了从S型到凸型曲线变化的关系图。通过实例证明,新建立的水驱特征曲线比单一的水驱特征曲线对油田开发的描述更加准确、可靠,不同的开发阶段用不同的水驱特征曲线拟合效果更佳,且应考虑水驱方程中n取不同值时a、b值的变化。 展开更多
关键词 可采储量 采出程度 水驱特征曲线 含水率
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早期注聚油藏波及系数研究
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作者 张静 陈晓明 +2 位作者 刘玉娟 郑彬 李金宜 《重庆科技大学学报(自然科学版)》 CAS 2024年第5期17-22,共6页
对于早期注聚油藏开发,需解决波及系数动态变化规律难以定量刻画,以及未来波及系数难以准确预测等问题。为此,基于改进的相渗曲线、水驱曲线及Welge方程,提出一种早期注聚油藏体积波及系数计算及预测方法。研究结果表明:在早期注聚低中... 对于早期注聚油藏开发,需解决波及系数动态变化规律难以定量刻画,以及未来波及系数难以准确预测等问题。为此,基于改进的相渗曲线、水驱曲线及Welge方程,提出一种早期注聚油藏体积波及系数计算及预测方法。研究结果表明:在早期注聚低中含水阶段,体积波及系数的增长速度随着含水率上升而逐渐增大;进入注聚高含水阶段后,长期冲刷形成低效驱替,体积波及系数的增长速度随着含水率上升而逐渐降低;进入后续水驱阶段后,油水流度比增大,体积波及系数下降;当采取稳油控水措施后,体积波及系数再次缓慢上升。以渤海L油田动态资料为基础,定量表征油田及单井区的波及系数及洗油程度,并形成图版。 展开更多
关键词 早期注聚 相渗曲线 水驱曲线 波及系数 洗油程度 调整挖潜
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特高含水期新型水驱特征曲线 被引量:44
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作者 王继强 石成方 +2 位作者 纪淑红 李冠林 陈映桥 《石油勘探与开发》 SCIE EI CAS CSCD 北大核心 2017年第6期955-960,共6页
基于油田实测相对渗透率数据的统计分析,提出了高含水饱和度下油水相对渗透率比值与归一化含水饱和度间的新型函数表达式,实现了对常规相对渗透率比值关系曲线后段较为精确的拟合。利用新型油水相对渗透率比值表征关系式,结合油藏工程... 基于油田实测相对渗透率数据的统计分析,提出了高含水饱和度下油水相对渗透率比值与归一化含水饱和度间的新型函数表达式,实现了对常规相对渗透率比值关系曲线后段较为精确的拟合。利用新型油水相对渗透率比值表征关系式,结合油藏工程方法推导出两种适用于油田开发特高含水阶段(含水率大于90%)的新型水驱特征曲线。分别采用五点井网数值模拟结果和羊二庄油田、柳赞油田某区块实际生产数据,对新型水驱特征曲线的实用性进行了验证,结果表明,在甲型或乙型水驱特征曲线发生上翘以后,新型水驱特征曲线较常规水驱特征曲线的预测误差小,可用于预测特高含水阶段的油田生产动态、确定最终采收率以及可采储量。 展开更多
关键词 水驱开发 特高含水期 水驱特征曲线 可采储量
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高含水期油田水驱特征曲线关系式的理论推导 被引量:88
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作者 宋兆杰 李治平 +2 位作者 赖枫鹏 刘刚 甘火华 《石油勘探与开发》 SCIE EI CAS CSCD 北大核心 2013年第2期201-208,共8页
传统水驱特征曲线推导的理论基础是中含水阶段油水相对渗透率比(Kro/Krw)与含水饱和度(Sw)成半对数直线关系,而在高含水阶段Kro/Krw与Sw在半对数坐标中明显偏离直线关系,水驱特征曲线普遍存在上翘现象。为了准确预测油田开发后期开发动... 传统水驱特征曲线推导的理论基础是中含水阶段油水相对渗透率比(Kro/Krw)与含水饱和度(Sw)成半对数直线关系,而在高含水阶段Kro/Krw与Sw在半对数坐标中明显偏离直线关系,水驱特征曲线普遍存在上翘现象。为了准确预测油田开发后期开发动态和可采储量,对实际岩心相对渗透率曲线进行平均化处理,并借鉴文献中岩心数据资料,拟合出适合高含水阶段Kro/Krw与Sw关系的新型表达式;应用Buckley-Leverett前沿推进方程和Welge平均含水饱和度方程,推导出适合高含水期油田的新型水驱特征曲线关系式。应用分析表明,新方法预测水驱可采程度与产量递减方法计算结果吻合度较好,对于油田生产后期开发指标预测具有一定的实用性。 展开更多
关键词 水驱特征曲线 高含水 相对渗透率 含水饱和度 产量递减 可采储量
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