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首页> 外文期刊>Journal of natural gas science and engineering >Gas hydrate formation and dissociation numerical modelling with nitrogen and carbon dioxide
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Gas hydrate formation and dissociation numerical modelling with nitrogen and carbon dioxide

机译:氮气和二氧化碳对天然气水合物的形成和离解数值模拟

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This work aims at providing experimental data for various methane-based hydrates, namely nitrogen and carbon dioxide gas mixtures with varying concentrations to provide an empirically based hydrate equilibrium model. Acquired using a sapphire pressure - volume - temperature (PVT) cell, this data is used as the foundation for the derivation of a model able to calculate the equilibrium temperature of a nitrogen and/or carbon dioxide diluted methane gas. There are several theoretical predictive models used in software which can provide hydrate formation and equilibrium data, however theoretical models appear to outnumber experimental data and empirical models for which a comparison can be made. The effect of nitrogen and carbon dioxide, a diluent and promotor respectively, on methane hydrate formation and dissociation and their associated pressure and temperature conditions are explored. The hydrate profiles for various gas mixtures containing these gases are presented at pressures ranging between 40 and 180 bara. These hydrate profiles and the model presented were compared to those predicted by hydrate computational software and experimental data from other studies for verification. The derived model proved to be reliable when applied to various gas mixtures at different pressure conditions and was consistent when compared to computational software based on theoretical models. Consistency of methane hydrate formation data was compared to dissociation, data proved that the formation temperature is not an accurate representation of the equilibrium temperature. A simple statistical measure revealed the dissociation temperature measurements to be more precise and agreed to a much larger degree with literature. (C) 2015 Elsevier B.V. All rights reserved.
机译:这项工作旨在为各种基于甲烷的水合物(即浓度不同的氮气和二氧化碳气体混合物)提供实验数据,以提供基于经验的水合物平衡模型。该数据是使用蓝宝石压力-体积-温度(PVT)电池采集的,可作为推导能够计算氮气和/或二氧化碳稀释的甲烷气体平衡温度的模型的基础。软件中使用了几种理论预测模型,可以提供水合物形成和平衡数据,但是理论模型似乎超过了可以进行比较的实验数据和经验模型。探讨了氮气和二氧化碳(分别是稀释剂和促进剂)对甲烷水合物形成和离解的影响,以及与之相关的压力和温度条件。包含这些气体的各种气体混合物的水合物曲线在40至180 bara的压力范围内显示。将这些水合物分布图和给出的模型与水合物计算软件预测的结果和其他研究的实验数据进行比较,以进行验证。该推导模型在不同压力条件下应用于各种气体混合物时被证明是可靠的,与基于理论模型的计算软件相比,该模型是一致的。将甲烷水合物形成数据与解离的一致性进行了比较,数据证明形成温度不是平衡温度的准确表示。一个简单的统计方法显示解离温度测量值更精确,并且在很大程度上与文献一致。 (C)2015 Elsevier B.V.保留所有权利。

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