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Rate and equilibrium based modeling with the sequential quadratic programming optimization method for glycol dehydration of produced natural gas

机译:用序列二次编程优化方法对生产天然气的甘草脱水速率和平衡建模

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Determining the optimum temperature and pressure for the dehydration of natural gas in a glycol absorption unit and the recovery of the glycol from the glycol water mixture in a desorption unit is of great importance. Although, the equilibrium base model for the absorption column design had been in use, the rate based model for the absorption unit offers a promising technique and had been proven to be more accurate in determining the parameters for the design. In this study, dehydration of a natural gas plant was modelled with optimization of its parameters. The effects on cost were adequately studied. Sensitivity analysis resulting from the simulation showed that a lower temperature for effective absorption of the water from the gas stream by triethylene glycol (TEGlycol) solvent is expected, while a higher temperature and higher reboiler duty is required for the regeneration of the solvent from the Rich TEGlycol stream in a distillation column. The sequential quadratic programming (SQP) direct optimization method was employed to optimize the major parameters of the natural gas dehydration plant. The optimum temperature of 267 degrees F and Reboiler duty of 169,789 Btu/h gave a 0.99 TEGlycol recovery purity. A minimized capital cost of 3.73 million US Dollars and operating cost of approximately 1 million US dollars was also observed.
机译:确定乙二醇吸收单元中天然气脱水的最佳温度和压力,并在解吸单元中从二醇水混合物中回收二醇的回收率非常重要。尽管,用于吸收柱设计的平衡基础模型已使用,但吸收单元的速率模型提供了有希望的技术,并且已被证明在确定设计的参数方面更准确。在该研究中,天然气植物的脱水是用其参数的优化进行建模的。对成本的影响得到充分研究。由模拟产生的敏感性分析表明,预期通过三甘醇(碳糖)溶剂从气流中有效吸收水的较低温度,而富含富含溶剂的溶剂需要较高的温度和更高的再沸器占状动性在蒸馏塔中的替代石。使用顺序二次编程(SQP)直接优化方法来优化天然气脱水厂的主要参数。 169,789 btu / h的最佳温度和169,789 btu / h的再沸占损失为0.99氢醇恢复纯度。还观察到最小化的资本成本为373万美元,运营费用约100万美元。

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