首页> 外文期刊>Journal of Geochemical Exploration: Journal of the Association of Exploration Geochemists >Scale prediction in liquid flow through porous media: A geochemical model for the simulation of CaCO3 deposition at the near-well region
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Scale prediction in liquid flow through porous media: A geochemical model for the simulation of CaCO3 deposition at the near-well region

机译:多孔介质中液体流动的规模预测:地球化学模型,用于模拟近井区域的CaCO3沉积

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摘要

Currently available models of CaCO3 scale formation during flow in porous media, provide simply a scaling tendency. We present a new tool that proceeds further to predict the distribution of scale precipitation in a one-dimensional porous medium and the consequent pore blocking. The innovative feature of this model is the combination of thermodynamics, kinetics and hydrodynamics for the prediction of scale deposition along and around the production wells. The development of the geochemical model was based on scale reaction calculations attempting to simulate/interpret dynamic tube-scale laboratory experiments. In this work, we present the equation scheme with the basic assumptions employed and some results with relevance to the experimental work. The paper also considers some of the issues associated with the generation and reliability of the laboratory data used in the construction of the geochemical model. The new laboratory scale data have been acquired from a series of sandpack blocking experiments using for the first time a radiotracer technique.
机译:当前可用的在多孔介质中流动期间CaCO 3结垢形成的模型仅提供结垢趋势。我们提出了一种新的工具,该工具可以进一步预测一维多孔介质中水垢的分布及其导致的孔阻塞。该模型的创新之处在于热力学,动力学和流体力学的结合,可预测生产井周围和周围的水垢沉积。地球化学模型的开发基于规模反应计算,试图模拟/解释动态管规模实验室实验。在这项工作中,我们提出了采用基本假设的方程式方案以及与实验工作相关的一些结果。本文还考虑了一些与地球化学模型构建中使用的实验室数据的生成和可靠性有关的问题。新的实验室规模数据是首次使用放射性示踪剂技术从一系列沙堆阻塞实验中获得的。

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