喻西崇, 谢彬, 李玉星, 刘淼儿, 李焱, 王清, 朱小松, 朱建鲁. 南海深水气田开发FLNG液化工艺的优化[J]. 油气储运, 2018, 37(2): 228-235. DOI: 10.6047/j.issn.1000-8241.2018.02.017
引用本文: 喻西崇, 谢彬, 李玉星, 刘淼儿, 李焱, 王清, 朱小松, 朱建鲁. 南海深水气田开发FLNG液化工艺的优化[J]. 油气储运, 2018, 37(2): 228-235. DOI: 10.6047/j.issn.1000-8241.2018.02.017
YU Xichong, XIE Bin, LI Yuxing, LIU Miaoer, LI Yan, WANG Qing, ZHU Xiaosong, ZHU Jianlu. Optimization of FLNG liquefaction process used for the development of deepwater gas field in the South China Sea[J]. Oil & Gas Storage and Transportation, 2018, 37(2): 228-235. DOI: 10.6047/j.issn.1000-8241.2018.02.017
Citation: YU Xichong, XIE Bin, LI Yuxing, LIU Miaoer, LI Yan, WANG Qing, ZHU Xiaosong, ZHU Jianlu. Optimization of FLNG liquefaction process used for the development of deepwater gas field in the South China Sea[J]. Oil & Gas Storage and Transportation, 2018, 37(2): 228-235. DOI: 10.6047/j.issn.1000-8241.2018.02.017

南海深水气田开发FLNG液化工艺的优化

Optimization of FLNG liquefaction process used for the development of deepwater gas field in the South China Sea

  • 摘要: 天然气液化工艺是海上浮式液化天然气船(Floating Liquid Natural Gas,FLNG)的关键技术之一,目前国内外尚无专门针对FLNG液化工艺设计的标准,有必要针对FLNG的液化工艺流程和优化方法开展研究。以中国南海某深水气田为研究目标,根据海上FLNG的特点和对国外FLNG项目液化工艺的调研,提出了FLNG液化工艺选择原则与优化方法,筛选出6种可能适合于目标气田的液化工艺流程,并对其在压缩功耗、冷却负荷、主要设备等方面进行综合比选,初步筛选出丙烷预冷-双级氮膨胀液化工艺作为目标气田液化工艺,并采用软件动态模拟和试验验证该液化工艺在海上的适应性。软件动态模拟结果和试验结果趋势一致,验证了动态模型的准确性以及利用动态仿真预测试验结果的可行性,表明该液化工艺具有较好的动态性能和海上适应性。最终确定将丙烷预冷-双级氮膨胀液化工艺作为目标气田的FLNG液化工艺,并为其他FLNG项目液化工艺的选择提供了技术支持和参考依据。

     

    Abstract: Liquefaction process of natural gas is one of the key technologies of offshore Floating Liquid Natural Gas (FLNG), and at present, there isn't any standard dedicated to the design of FLNG liquefaction process at home and abroad, so it is necessary to study the liquefaction process and optimization method for FLNG. In the paper, a certain deepwater gas field in the South China Sea was taken as the research object. According to the characteristics of offshore FLNG and the investigation on liquefaction processes in foreign FLNG projects, the selection principles and optimization methods of FLNG liquefaction processes were proposed, and accordingly six liquefaction processes that may be suitable for the target gas field were screened out. Then, these six liquefaction processes were compared comprehensively from the aspects of compression power, cooling load and main equipment. And the liquefaction process of propane pre-cooling and dual nitrogen expansion sub-cooling was preliminarily selected as the liquefaction process of the deepwater gas field in the South China Sea, and its offshore adaptability was verified using software dynamic simulation and tests. The software dynamic simulation results are consistent with the experimental results, indicating the accuracy of the dynamic model and the feasibility of applying the dynamic simulation to predict the experimental results. It is revealed that the liquefaction process of propane pre-cooling and dual nitrogen expansion sub-cooling is better in dynamic performance and offshore adaptability. And it was ultimately selected as the FLNG liquefaction process of target gas field. This optimization method provides the technical support and reference for the selection of liquefaction processes in other FLNG projects.

     

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