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Optimization and comparative analysis of LNG regasification processes

机译:液化天然气再气化工艺的优化与对比分析

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LNG (liquefied natural gas) receiving terminals are responsible for assuring that regasified LNG meets pipeline specifications and accordingly, certain compositional modifications of the received LNG are anticipated by the industry. Meeting pipeline specifications of lower heating value range of natural gas through extraction of heavy components; C-2(+) can yield additional revenue. The objective of this study is to investigate LNG regasification systems in an attempt to achieve the requirements of maximum C-2(+) recovery and utmost gains from products sales while meeting pipeline specifications with respect to the heating value range of the natural gas. Different LNG regasification process configurations are analyzed through examining their respective operating variables and conditions that influence these regasification systems. A computer simulation is conducted and the investigated parameters are de-methanizer feed temperature, de-methanizer column pressure, number of de-methanizer column trays, mole percent of methane in bottom product from de-methanizer, outlet compressor pressure, refrigeration recovery exchanger outlet temperature, outlet air cooler temperature, split fraction of LNG from LNG pumps and residue gas heater temperature. The operating parameters of each process configuration are optimized and results reveal the optimum configuration providing the maximum amount of C-2(+) recovery and allowing maximum net gain. (C) 2015 Elsevier Ltd. All rights reserved.
机译:LNG(液化天然气)接收终端负责确保再气化的LNG符合管道规格,因此,行业预计会对接收到的LNG进行某些成分修改。通过提取重组分来满足天然气较低热值范围的管道规格; C-2(+)可以产生额外的收入。这项研究的目的是研究液化天然气再气化系统,以期达到最大的C-2(+)回收率和产品销售的最大收益的要求,同时满足有关天然气热值范围的管道规格。通过检查影响这些再气化系统的各自的运行变量和条件,分析了不同的液化天然气再气化工艺配置。进行了计算机模拟,研究的参数为脱甲烷塔进料温度,脱甲烷塔塔压力,脱甲烷塔塔板数,脱甲烷塔底部产物中甲烷的摩尔百分比,出口压缩机压力,制冷回收热交换器出口温度,出口空气冷却器温度,来自液化天然气泵的液化天然气分馏率和残余气体加热器温度。每种工艺配置的操作参数均经过优化,结果揭示了最佳配置,可提供最大的C-2(+)回收率并实现最大的净增益。 (C)2015 Elsevier Ltd.保留所有权利。

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