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Energy saving research of natural gas liquefaction plant based on waste heat utilization of gas turbine exhaust

机译:基于废热利用燃气轮机排气的天然气液化厂的节能研究

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In this study, a series of novel natural gas liquefaction systems integrated with waste heat utilization of gas turbine exhaust are proposed to reduce the energy consumption of the liquefaction plants. The most widely used propane precooled mixed refrigerant (C3MR) and cascade natural gas liquefaction processes, are integrated with the waste heat utilization methods of adsorption refrigeration and organic Rankle cycle (ORC). The integrated systems are simulated and optimized with HYSYS software and genetic algorithm. The results show that, with ammonia water absorption refrigeration, the power consumption of C3MR process and cascade process is reduced by 16.23% and 14.62%, respectively, and the waste heat utilization exergy efficiency of the two integrated processes reaches 56.96% and 48.73%, respectively; With ORC, the power consumption is reduced by 20.59%, and the waste heat utilization exergy efficiency reaches 75.61%. In addition, for a liquefaction plant with an annual processing capacity of about 1.4 million tons, the waste heat utilization achieves CO2 emission reduction of about 4000-6000 t/a.
机译:在本研究中,提出了一系列新的天然气液化系统,与废气涡轮机排气的废热利用集成,以降低液化植物的能量消耗。最广泛使用的丙烷预冷却制冷剂(C3MR)和级联天然气液化过程与吸附制冷和有机秩序循环(ORC)的废热利用方法集成在一起。用Hysys软件和遗传算法模拟和优化了集成系统。结果表明,随着氨吸水制冷,C3MR工艺和级联工艺的功耗分别降低了16.23%和14.62%,两种综合工艺的废热利用效率达到56.96%和48.73%,分别;通过ORC,功耗降低了20.59%,废热利用效率达到75.61%。此外,对于年加工能力约为140万吨的液化工厂,废热利用率达到约4000-6000T / a的二氧化碳排放减少。

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