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Formula calculation methods of water content in sweet natural gas and their adaptability analysis

机译:甜天然气中水分含量的公式计算方法及其适应性分析

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Estimation of water content is the foundation of natural gas processing and designing, and a formula calculation method provides a solution simple and easy to be programmed by computers. In this regard, several main formula calculation methods of water content in sweet natural gas were reviewed and evaluated individually. There are formulas fitted with nomographic data (e.g. Sloan formula, Ning Yingnan formula, Khaled formula and Bahadori formula), empirical formulas fitted with experimental data (e.g. Zhu Lin formula, Behr formula and Kazim formula) and formulas generated based on water-hydrocarbon phases equilibrium (e.g. Saturated Vapor Pressure Model, Modified Ideal Model, Simplified Thermodynamic Model and Bukacek formula). The comparison of calculated and experimental values of each above formula calculation method indicates that, the Khaled formula provided the minimum average absolute deviation (AAD) – 2.524 0%, while the Behr method achieved the maximum AAD – 19.255%. After the analysis of the AAD results calculated by the methods at different temperature ranges, the Zhu Lin formula is recommended for ?50 to ?40?°C, the Sloan formula for ?40 to 0?°C, the Simplified Thermodynamic Model for 0 to 37.78?°C, the Khaled formula for 37.78 to 171.11?°C, and the Bukacek formula for 171.11 to 237.78?°C.
机译:含水量的估算是天然气加工和设计的基础,公式计算方法提供了一种简单易用的计算机编程解决方案。在这方面,分别回顾和评估了甜味天然气中水含量的几种主要公式计算方法。有符合列线数据的公式(例如斯隆公式,宁颖南公式,Khaled公式和Bahadori公式),有实验数据的经验公式(例如朱林公式,Behr公式和Kazim公式)以及基于水-烃相生成的公式平衡(例如饱和蒸气压模型,修正的理想模型,简化的热力学模型和Bukacek公式)。每种以上公式计算方法的计算值和实验值的比较表明,Khaled公式提供的最小平均绝对偏差(AAD)– 2.524 0%,而Behr方法获得的最大AAD – 19.255%。对通过不同温度范围下的方法计算出的AAD结果进行分析后,建议将朱林公式用于50至40°C,将斯隆公式用于40至0°C,将简化的热力学模型用于0至37.78?C,Khaled公式为37.78至171.11?C,以及Bukacek公式为171.11至237.78?C。

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