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Method of Predicting the Location of Water Cresting for Horizontal Wells in a Water-Drive Reservoir for Early Prevention

机译:预测水泵水库水平井中水冠状井位置的方法,提前预防

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A method of prediction of location of water cresting and characterizing its intensity in a horizontal well in a water-drive reservoir is introduced for the first time. A mechanistic model for water cresting derived from Darcy’s equation incorporating the main parameters reported in the literature affecting water cresting—viscosity, well distance to the aquifer, wellbore pressure gradient, and reservoir heterogeneity—is introduced with two new characterizing parameters. First is a model-derived parameter, called the breakthrough coefficient, which is defined as the ratio of the average time of breakthrough to the time of breakthrough for a segment of the well, with the model-predicted location of water cresting corresponding to the well segment with the largest breakthrough coefficient. The second is the Cresting index, which is the ratio of the maximum breakthrough coefficient to the minimum breakthrough coefficient as a characterizing parameter, with a well with a higher cresting index corresponding to a faster breakthrough in a group of similar wells. This methodology was validated through a series of sophisticated experimental corefloods and found to predict 78% of the location of the water cresting accurately. The cresting index is found to be weakly correlated with the speed of breakthrough among similar wells.
机译:第一次引入了一种预测水冠状曲线的位置和表征水平井中的强度的方法。达到达西方程的水冠的机械模型,其掺入了影响水冠粘度的文献中报告的主要参数,富于含水层,井筒压力梯度和储层异质性的距离 - 是用两个新的表征参数引入的。首先是一种型号衍生的参数,称为突破系数,其被定义为井的一段突破的平均突破的比率,模型预测的水冠的位置对应于井突破系数最大的段。第二个是曲折指数,其是最大突破系数与最小突破系数的比率作为表征参数,具有良好的冠状指数,其对应于一组类似孔的突破。通过一系列复杂的实验核心普遍验证了这种方法,发现预测水冠的78%的位置。发现冠状指数与相似孔中的突破速度略微相关。

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