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首页> 外文期刊>Journal of Thermodynamics >Development of Predictive Techniques for Estimating Liquid Water-Hydrate Equilibrium of Water-Hydrocarbon System
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Development of Predictive Techniques for Estimating Liquid Water-Hydrate Equilibrium of Water-Hydrocarbon System

机译:估算水烃系统液水合物平衡的预测技术的发展

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摘要

In this communication, we review recent studies by these authors for modeling theLW-Hequilibrium. With the aim of estimating the solubility of pure hydrocarbon hydrate former in pure water in equilibrium with gas hydrates, a thermodynamic model is introduced based on equality of water fugacity in the liquid water and hydrate phases. The solid solution theory of Van der Waals-Platteeuw is employed for calculating the fugacity of water in the hydrate phase. The Henry's law approach and the activity coefficient method are used to calculate the fugacities of the hydrocarbon hydrate former and water in the liquid water phase, respectively. The results of this model are successfully compared with some selected experimental data from the literature. A mathematical model based on feed-forward artificial neural network algorithm is then introduced to estimate the solubility of pure hydrocarbon hydrate former in pure water being in equilibrium with gas hydrates. Independent experimental data (not employed in training and testing steps) are used to examine the reliability of this algorithm successfully.
机译:在本交流中,我们回顾了这些作者最近对LW-平衡建模的研究。为了估计纯烃水合物前体在纯净水中与气体水合物的平衡中的溶解度,基于液态水和水合相中水逸度的相等性,引入了一个热力学模型。范德华斯-普拉特euw的固溶理论被用来计算水合相中水的逸度。用亨利定律法和活度系数法分别计算了液态水相中烃水合物形成物和水的逸度。该模型的结果已成功与文献中选定的一些实验数据进行了比较。然后引入基于前馈人工神经网络算法的数学模型,以估算纯烃水合物前体在与气体水合物平衡的纯水中的溶解度。独立的实验数据(未在训练和测试步骤中使用)用于成功检查该算法的可靠性。

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