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Investigation of an Analytical Solution for Spontaneous Imbibition to Effectively Estimate Special Core Analysis SCAL Properties

机译:用于有效估计特殊核心分析尺度特性的分析解决方法

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A newly derived solution for capillary dominated flow is investigated by comparing it to experimental and numerical simulation data of spontaneous imbibition in water-wet rocks. The analytical solution allows for the estimation of relative permeability and capillary pressure data for rocks. To validate the analytical solution, it is evaluated for published data for co-current and counter-current spontaneous imbibition on four water wet rock samples. The published experimental saturation data for these rocks is scaled by the square root of time, and the result is compared with the corresponding analytical solution. To further investigate the validity of the analytical solution, a 1-D numerical simulation model is created for the spontaneous imbibition experimental setup and run with identical conditions. Experimental data for spontaneous imbibition, when scaled by the square root of time, converges approximately to a single curve. It is therefore evident that the analytical solution is valid for water-wet rocks. Saturation function curves that are obtained from the analytical solution are then used as inputs to 1-D numerical models of cores with properties and dimensions that are identical to the experiments. The saturation profiles obtained from numerical modelling results, when scaled by the square root of time, display good quantitative agreement with the analytical solution, with deviations between the two sets of results varying in the range of 1 - 6% for the four data sets. The analytical solution is very promising in that it can be used as a basis to extract otherwise time consuming Special Core Analysis (SCAL) properties by carrying out relatively fast and simple spontaneous imbibition experiments. The procedure introduced can also be adopted as a complement to the existing SCAL experiments to verify results.
机译:通过将其与水湿岩中的自发性吸收的实验性和数值模拟数据进行比较来研究新衍生的毛细管主导流程。分析解决方案允许估计岩石的相对渗透性和毛细管压力数据。为了验证分析解决方案,评估了在四个水湿岩样上的相同电流和反电流自发性吸入的公布数据。这些岩石的已发布的实验饱和数据由时平的时间缩放,结果与相应的分析解决方案进行比较。为了进一步研究分析解决方案的有效性,为自发性吸收实验设置创建了1-D数值模拟模型,并以相同的条件运行。自发性吸收的实验数据,当通过平方根缩放时,会聚到单个曲线。因此,显而易见的是,分析解决方案对水湿岩有效。然后将从分析解决方案获得的饱和函数曲线用作与实验相同的性质和尺寸的核的输入到1-D数值模型的输入。从数值建模结果获得的饱和型材,当通过时平坦的时间缩放,与分析解决方案展示良好的定量协议,两组结果之间的偏差在四个数据集的1 - 6%的范围内变化。分析解决方案非常有前途,因为它可以通过进行相对快速和简单的自发性吸收实验来用作提取耗时的特殊核心分析(SCAS)性能的基础。引入的程序也可以作为对现有SAC实验的补充以验证结果。

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