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Study of cryogenic power generation application at LNG regasification terminal

机译:LNG再气化终端低温发电应用研究

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Cryogenic Power Generation or commonly called Cryopower is the generation of electricity by utilizing cold energy which one is produced at the LNG (liquefied natural gas) Regasification Terminal. Cold energy utilization has been applied in several countries, especially in Japan. In Indonesia, the regasification terminal has been built few, but in the future according to the Government of Indonesia's plan, some natural gas/LNG power plants will be built to meet the national electricity needs. It requires gas infrastructure, one of which is the regasification terminal. The aim of this study is to evaluate the effects of LNG flowrate on working fluid and cooling water flowrates as well as power needed and produced in the combine direct expansion and Rankine cycle processes. The flowrates and power calculations were conducted using UNISIM R390.1. Simulation results showed that the working fluid and cooling water flowrates increase with increasing LNG flowrate. The increased in the working fluid and cooling water flowrates also increased the power needed by the pumps and power produced by the turbines. Overall, the net power produced from the combine cycle increased with increasing the LNG flowrate.
机译:低温发电(俗称“低温发电”)是利用LNG(液化天然气)再气化站产生的冷能发电。冷能利用已在多个国家中应用,尤其是在日本。在印度尼西亚,再气化站的建设很少,但根据印度尼西亚政府的计划,未来将建造一些天然气/ LNG发电厂以满足国家电力需求。它需要天然气基础设施,其中之一是再气化站。这项研究的目的是评估液化天然气流量对工作流体和冷却水流量以及直接膨胀和兰金循环过程中所需和产生的功率的影响。流量和功率计算使用UNISIM R390.1进行。仿真结果表明,工作液和冷却水的流量随液化天然气流量的增加而增加。工作流体和冷却水流量的增加也增加了泵所需的功率和涡轮机产生的功率。总体而言,联合收割机循环产生的净功率随液化天然气流量的增加而增加。

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