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Analysis of a combined cycle power plant integrated with a liquid natural gas gasification and power generation system

机译:结合液态天然气气化发电系统的联合循环发电厂的分析

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摘要

An analysis of a novel liquefied natural gas (LNG) gasification and power generation system integrated with a combined cycle power plant is presented in this article. In the proposed combined cycle, low-temperature waste heat can be efficiently recovered and the cold energy of the LNG can be fully utilized. The latent heat of the spent steam of the steam turbine vaporizes the LNG. The conventional combined cycle and the proposed combined system are simulated using the commercial process simulation package IPSEpro and both energy and exergy analyses are conducted. A parametric analysis has been performed for the proposed combined system to evaluate the effects of several key factors on the performance. The results show that the net electrical efficiency and the total work output of the proposed combined cycle can be increased by 3.8 per cent and 15.6 MW above those of the conventional combined cycle while delivering 33.59 kg/s of natural gas (at 4.3 °C, 0.3 MPa) and saving 0.4 MW of electrical power by removing the need for sea water pumps.
机译:本文介绍了一种与联合循环发电厂集成的新型液化天然气(LNG)气化发电系统的分析。在提出的联合循环中,可以有效地回收低温废热,并且可以充分利用LNG的冷能。蒸汽轮机的废蒸汽的潜热使LNG蒸发。使用商业过程仿真程序包IPSEpro对常规的联合循环和拟议的联合系统进行了模拟,并进行了能量和火用分析。对建议的组合系统进行了参数分析,以评估几个关键因素对性能的影响。结果表明,与传统联合循环相比,拟议联合循环的净电效率和总功输出可提高3.8%和15.6 MW,同时输送33.59 kg / s的天然气(在4.3°C, 0.3兆帕)并通过消除对海水泵的需求而节省0.4兆瓦的电力。

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