二氧化碳脱气法在近井区碳酸钙沉淀的模型

M. Wangen, J. Sagen, T. Bjørnstad, H. Johansen, A. Souche
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引用次数: 4

摘要

摘要/ Abstract摘要:碳酸钙结垢是采水井普遍存在的问题。虽然有几种类型的结垢过程,但我们研究了碳酸钙沉淀的情况,当二氧化碳脱气导致钙平衡浓度下降到生产井时。我们研究了一个简化的碳酸盐化学体系,它允许孔隙度损失作为时间函数的解析表达式。降水过程通常从井外限流到井附近限流。我们推导出一个表达式来估计这两种状态之间的过渡区。此外,我们给出了给定半径作为时间函数的孔隙度减少的分析估计,包括每种沉淀制度的估计。这些分析结果与孔隙度损失的数值解进行了验证,该数值解可以解释模型的全套方程。分析模型给出了孔隙度随时间线性减少的准确估计,直到至少一半的孔隙度损失。文中给出了这两种状态下形成水垢的例子。降水动力学的合理值表明,大多数生产作业在井附近都存在动力学限制。模型还显示,这种类型的结垢地层发生在离井非常近的地方,通常在距离井壁几个井半径范围内。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Models for Calcium Carbonate Precipitation in the Near-Well Zone by Degassing of CO2
Abstract: Calcium carbonate scale formation is a well known problem for water producing wells. Although there are several types of scale forming processes, we investigate the case of calcium carbonate precipitation when the degassing of CO2 causes the calcium equilibrium concentration to decrease towards a production well. We study a simplified system of carbonate chemistry, which allows for analytical expressions for the porosity loss as a function of time. The precipitation process normally goes from flow-limited away from the well to precipitation-limited close to the well. We derive an expression that estimates the transition zone between these two regimes. Furthermore, we present analytical estimates for the porosity reduction at a given radius as a function of time, including an estimate for each of these precipitation regimes. These analytical results are tested against numerical solutions for the porosity loss, which account for the full set of equations of the model. The analytical models give an accurate estimate of the linear porosity reduction with time, until at least half the porosity is lost. Examples of scale formation are given for the two regimes. Reasonable values for the precipitation kinetics indicate that most production operations have a kinetics-limited regime close to the well. The models also show that this type of scale formation takes place very close to the wells, typically within a few well radii from the walls of the well.
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