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A New Method To Characterize Scaling Damage From Pressure Measurements

机译:一种对压力测量造成缩放损伤的新方法

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Sulphate scaling with consequent deposit formation and wellbore damage is a well-known phenomenon that occurs during waterflooding,when mixing of incompatible injection and formation waters may result in sulphate salt precipitation and flow restriction.The reliable productivity decline prediction is based on mathematical modelling with well-known model coefficients.The sulphate scaling system contains two governing parameters:the kinetics coefficient characterising the velocity of chemical reaction and the formation damage coefficient showing how the permeability decreases due to salt precipitation.Previous works have derived analytical-model-based method for determination of both coefficients from breakthrough concentration and pressure drop during laboratory coreflood on quasi steady state commingled flow of injected and formation waters,and also from just pressure drop measurements during two corefloods with two different ratios "formation water :seawater".This paper extends the previous works,by sequence of two commingled injections of incompatible waters into the same core with two different ratios "formation water :seawater".Two different slopes of skin factor increase during two injections allow calculating the kinetics and formation damage coefficients in order to predict scaled-up well behaviour.
机译:随着沉积的形成和井眼损伤的硫酸盐缩放是在水性过程中发生的众所周知的现象,当混合的注射和地层水的混合可能导致硫酸盐沉淀和流量限制时。可靠的生产率下降预测是基于数学建模-known模型coefficients.The硫酸盐结垢体系包含两个管理参数:动力学系数表征化学反应的速度和表示地层损害系数渗透性如何减小由于盐precipitation.Previous作品导出用于测定基于分析模型方法在对准稳态期间的突破浓度和压力下降的两种系数在对准稳态混合的喷射和形成水流中,以及在两个不同比例“地层水:海水”的两个Coreflood中的压降测量中。本文延伸了前虔诚的作品,通过两种混合的水流进入与两种不同比例的相同核心的两个混合的核心“形成水:海水”.TWO在两个喷射期间的皮肤因子的不同倾斜度允许计算动力学和形成损伤系数以预测缩放-up井的行为。

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