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A Statistical Model for the Relative Hydraulic Conductivity of Water Phase in Unsaturated Soils
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作者 Nadarajah Ravichandran Shada Krishnapillai 《International Journal of Geosciences》 2011年第4期484-492,共9页
Permeability coefficients of fluids occupying the pore space of a porous medium have significant influence on the flow of these fluids through the porous medium. In the case of unsaturated soils, in addition to other ... Permeability coefficients of fluids occupying the pore space of a porous medium have significant influence on the flow of these fluids through the porous medium. In the case of unsaturated soils, in addition to other parameters such as void ratio, void distribution, particle size distribution and initial density the degree of saturation also affects the permeability coefficient of water. The degree of saturation, in unsaturated soil, is directly related to the matric suction of the soil through soil water characteristic curve. Matric suction is one of the two stress state variables widely used to characterize the deformation behavior of unsaturated soils. Therefore, it can be stated that both flow and deformation behaviors of unsaturated soil are affected by the permeability coefficient of water. Numerical modeling of coupled deformation-flow behavior of unsaturated soil requires a mathematical equation that relates the permeability coefficient to the degree of saturation. Since the parameters that affect the permeability coefficient of water in unsaturated soil have similar direct or indirect effects on the soil water characteristic curve, permeability can be effectively predicted using the soil water characteristic curve as done in statistical models. In this paper, a statistical model is proposed for the permeability of water in unsaturated soil using soil water characteristic curve of the soil. The calibrated parameters of the soil water characteristic curve are directly used in the prediction of permeability with- out additional calibration using measured permeability data. The predictive capability of the new equation is verified by matching the measured data of eight different soils found in the literature. 展开更多
关键词 UNSATURATED SOILS permeability Function relative permeability of UNSATURATED SOILS relative permeability using soil-water characteristic curve
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新型水驱特征曲线在低渗透油藏的应用 被引量:2
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作者 王天翔 刘大鹏 申太志 《中外能源》 CAS 2023年第8期73-76,共4页
在油田开发过程中,采出程度、可采储量和含水率变化的预测是评价油田开发效果的重要指标,现有的计算方法大多适用于中、高渗透油藏,在低渗透油藏指标预测过程中存在较大差异。针对该类问题,以吴起油田低渗透油藏为研究对象,运用了一种... 在油田开发过程中,采出程度、可采储量和含水率变化的预测是评价油田开发效果的重要指标,现有的计算方法大多适用于中、高渗透油藏,在低渗透油藏指标预测过程中存在较大差异。针对该类问题,以吴起油田低渗透油藏为研究对象,运用了一种新型水驱特征曲线公式,该公式综合了纳扎洛夫和西帕切夫水驱特征曲线特点,利用理论推导与数理统计的方法,得出了适用于吴起油田的含水率和采出程度关系图版。研究结果表明:新型水驱特征曲线能够有效反映低渗透油藏含水变化规律,通过数据拟合确定出待定参数,从而确定出低渗透油藏含水率与累计产量的关系式,通过关系式建立的曲线与生产数据曲线符合度高,低渗透油藏含水上升率变化呈先上升后下降的规律。该研究对低渗透油藏的开发部署方案编制中的开发指标预测具有一定指导意义。 展开更多
关键词 低渗透油田 水驱特征曲线 关系图版 采出程度 含水率
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产量递减规律与水驱特征曲线的关系 被引量:21
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作者 高文君 刘瑛 《断块油气田》 CAS 2002年第3期45-49,共5页
建立了不同条件下Arps、Logistic产量递减方程与不同水驱特征曲线之间的对应关系,使得这2个油田开发基本规律不再完全孤立、互不相关。研究表明:在油田渗流条件保持基本不变的条件下,符合某一递减方程的油相渗流特征,若能与水相渗流特... 建立了不同条件下Arps、Logistic产量递减方程与不同水驱特征曲线之间的对应关系,使得这2个油田开发基本规律不再完全孤立、互不相关。研究表明:在油田渗流条件保持基本不变的条件下,符合某一递减方程的油相渗流特征,若能与水相渗流特征一起构成某一种水驱特征曲线的油水相渗比值关系式,那么产量递减方程与水驱特征曲线之间存在必然的联系:在油田渗流条件发生变化的条件下,若Qw+nO。保持为某一常数,那么水驱特征曲线I~Ⅲ的产量递减方程均服从双曲递减,水驱特征曲线Ⅳ[m=1]产量递减方程服从调和递减;若Qw+nQ。=kexp(st),水驱特征曲线Ⅳ[m=1]的产量递减方程服从Logistic产量递减。 展开更多
关键词 产量递减规律 水驱特征曲线 油藏工程 相渗 特征函数
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高水头抽水蓄能电站高压岔管围岩非线性渗流分析及渗透稳定性研究 被引量:9
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作者 毕宏伟 胡少华 乔彤 《水利水电技术》 CSCD 北大核心 2018年第6期171-178,共8页
针对抽水蓄能电站钢筋混凝土岔管承载的高内水压力导致围岩高渗压差、高水力梯度等问题,以高压岔管围岩渗流控制为目标,结合现场高压压水试验及其解析模型,定量分析高渗压下岔管围岩的渗流参数,基于单裂隙花岗岩非达西渗流室内试验成果... 针对抽水蓄能电站钢筋混凝土岔管承载的高内水压力导致围岩高渗压差、高水力梯度等问题,以高压岔管围岩渗流控制为目标,结合现场高压压水试验及其解析模型,定量分析高渗压下岔管围岩的渗流参数,基于单裂隙花岗岩非达西渗流室内试验成果,拟合Forchheimer非达西渗流方程影响因子与渗透率之间的指数型关系式。在此基础上,采用Forchheimer非达西渗流方程、Signorini型变分不等式和自适应罚函数相结合的方法,推导非达西渗流控制方程组及其有限元计算格式,并将其应用于阳江抽水蓄能电站高岔区围岩渗流规律研究。结果表明:高压岔管内水外渗导致防渗排水措施和导水断层附近区域产生了强烈的非达西渗流;采用非达西渗流理论计算的渗漏量明显小于达西渗流理论计算值,且差值伴随着流场非线性的增强而增大。研究成果对于高水头抽水蓄能电站岔管区防渗设计与控制具有参考价值。 展开更多
关键词 抽水蓄能电站 高压渗透特性 高压压水试验 非达西流 渗流规律分析 岩体透水性能 水力劈裂 压力-流量关系曲线
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Improving the Predictive Capability of Popular SWCCs by Incorporating Maximum Possible Suction
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作者 Shada H. Krishnapillai Nadarajah Ravichandran 《International Journal of Geosciences》 2011年第4期468-475,共8页
Soil-water characteristic curve (SWCC) that represents the relationship between the soil moisture and matric suction is one of the important constitutive models required for numerical modeling of unsaturated soils. An... Soil-water characteristic curve (SWCC) that represents the relationship between the soil moisture and matric suction is one of the important constitutive models required for numerical modeling of unsaturated soils. An effective SWCC model should be capable of calculating the moisture-suction variation for the entire range of degree of saturation. Applicability of popular SWCC models such as Brooks and Corey, van Genuchten, and Fredlund and Xing is limited, especially in low (< 20%) degree of saturation range. In this study, all these models are modified by incorporating maximum suction as one of the model parameters, so that these models can be effectively used over the entire range of degree of saturation. The Fredlund et al (1994) permeability function is also modified based on the modification to the Fredlund and Xing SWCC model. The applicability of the improved models is investigated by calibrating the SWCC of various types of soil and presented in this paper. Based on this study it can be concluded that the modified models are flexible enough to fit the experimental data for the entire range of degree of saturation. 展开更多
关键词 UNSATURATED SOILS Soil Water characteristic curve permeability Function relative permeability of UNSATURATED SOILS relative permeability using Soil Water characteristic curve
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Electrical responses and classification of complex waterflooded layers in carbonate reservoirs: A case study of Zananor Oilfield, Kazakhstan
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作者 WANG Fei BIAN Huiyuan +2 位作者 ZHAO Lun YU Jun TAN Chengqian 《Petroleum Exploration and Development》 2020年第6期1299-1306,共8页
Experiments of electrical responses of waterflooded layers were carried out on porous,fractured,porous-fractured and composite cores taken from carbonate reservoirs in the Zananor Oilfield,Kazakhstan to find out the e... Experiments of electrical responses of waterflooded layers were carried out on porous,fractured,porous-fractured and composite cores taken from carbonate reservoirs in the Zananor Oilfield,Kazakhstan to find out the effects of injected water salinity on electrical responses of carbonate reservoirs.On the basis of the experimental results and the mathematical model of calculating oil-water relative permeability of porous reservoirs by resistivity and the relative permeability model of two-phase flow in fractured reservoirs,the classification standards of water-flooded layers suitable for carbonate reservoirs with complex pore structure were established.The results show that the salinity of injected water is the main factor affecting the resistivity of carbonate reservoir.When low salinity water(fresh water)is injected,the relationship curve between resistivity and water saturation is U-shaped.When high salinity water(salt water)is injected,the curve is L-shaped.The classification criteria of water-flooded layers for carbonate reservoirs are as follows:(1)In porous reservoirs,the water cut(fw)is less than or equal to 5%in oil layers,5%–20%in weak water-flooded layers,20%–50%in moderately water-flooded layers,and greater than 50%in strong water-flooded layers.(2)For fractured,porous-fractured and composite reservoirs,the oil layers,weakly water-flooded layers,moderately water-flooded layers,and severely water-flooded layers have a water content of less than or equal to 5%,5%and 10%,10%to 50%,and larger than 50%respectively. 展开更多
关键词 Zananor Oilfield carbonate reservoir water-flooded layer electrical response characteristics relative permeability curve classification criterion of water-flooded level
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