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Modeling of gas solubility in brine

机译:盐水中气体溶解度的模拟

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Cubic equations of state (EOS) are widely used to represent the phase behavior of gas-oil-systems, whereas different types of models have traditionally been used to describe gas solubility in aqueous mixtures. Since formation water is often produced together with gas and oil, it is also desirable to model gas solubility in formation water using an EOS. It has previously been shown that the mutual solubility of hydrocarbons and pure water can be well represented by a cubic EOS by applying a non-classical mixing rule for the a-parameter. However, formation water produced together with gas and oil will often have a considerable content of salts, which must be accounted for in gas solubility calculations. It is shown that the mixing rule of Huron and Vidal can be stretched to account for the presence of the salts NaCl, KCl and CaCl2 in the water phase. This is done by assigning hypothetical critical properties to the salts, and estimating interaction parameters for gas-salt interactions based on experimental gas solubility data. This model concept gives a fair representation of the gas solubility in salt water. (C) 2002 Elsevier Science Ltd. All rights reserved. [References: 28]
机译:三次状态方程(EOS)被广泛用于表示油气系统的相态,而传统上已使用不同类型的模型来描述气体在含水混合物中的溶解度。由于地层水通常与天然气和石油一起生产,因此也希望使用EOS对气体在地层水中的溶解度进行建模。以前已经表明,通过对α参数应用非经典混合规则,可以用立方EOS很好地表示碳氢化合物和纯水的互溶性。但是,与天然气和石油一起生产的地层水通常会含大量的盐,必须在气体溶解度计算中加以考虑。结果表明,可以扩展休伦和维达尔的混合规律,以解释水相中NaCl,KCl和CaCl2盐的存在。这是通过为盐指定假设的临界特性,并根据实验气体溶解度数据估算气盐相互作用的相互作用参数来完成的。该模型概念可以很好地表示气体在盐水中的溶解度。 (C)2002 Elsevier ScienceLtd。保留所有权利。 [参考:28]

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