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首页> 外文期刊>Journal of natural gas science and engineering >Comparison of novel concepts of cogeneration systems used to regasify liquefied natural gas (LNG)
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Comparison of novel concepts of cogeneration systems used to regasify liquefied natural gas (LNG)

机译:用于气化液化天然气(LNG)的热电联产系统新颖概念的比较

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摘要

Liquefied natural gas (LNG) will contribute in future significantly to the overall energy supply in the world. During the last two decades the effectiveness. of the technologies associated with the chain "natural gas - LNG - natural gas" has increased. However, the regasification systems, which use approximately 1.5% of the LNG energy, have not been considerably improved. The objective of this paper is to demonstrate the potential for generating electricity while regasifying LNG, and to compare some novel concepts developed for this purpose. The concepts are based on combination of the open- and closed-cycle gas-turbine systems with combustion of natural gas as the heat source and regasification of LNG as the heat sink. The comparisons are conducted from the thermodynamic, economic and ecological points of view. The complications introduced to the Base Case in order to maximize the utilization of useful energy (transferred to the environment from the open-cycle gas-turbine system) have the following consequences: The overall energetic efficiency increases from 68% to 86%, the overall exergetic efficiency increases from 52.6% to 54.3% while the specific fixed capital investment is approximately 1.0 mil US$/MW. for all schematics. The specific CO2 emissions (per unit of generated electricity) increase from 0.145 to 0.19 kg CO2/kWh while per kg of regasifyed LNG, the specific CO2 emissions decrease significantly from 0.09 to 0.067 kg CO2/kg LNG. (C) 2016 Elsevier B.V. All rights reserved.
机译:液化天然气(LNG)将来将为世界整体能源供应做出重要贡献。在过去的二十年中,成效卓著。与“天然气-LNG-天然气”链相关的技术已经增加。但是,使用大约1.5%的LNG能量的再气化系统尚未得到明显改善。本文的目的是演示在对LNG进行气化的同时发电的潜力,并比较为此目的开发的一些新颖概念。这些概念基于开式和闭式燃气轮机系统的组合,其中天然气燃烧为热源,LNG的再气化为散热器。比较是从热力学,经济和生态学的角度进行的。为了最大程度地利用有用能量(从开放循环燃气轮机系统转移到环境中)而引入基本案例的复杂情况具有以下后果:总体能量效率从68%提高到86%,能源效率从52.6%提高到54.3%,同时固定资本投资约为100万美元/兆瓦。对于所有原理图。 CO2的比排放(每单位发电量)从0.145千克CO2 / kWh增加到0.19千克CO2 / kWh,而每千克再气化的LNG,CO2的比排放从0.09千克显着降低到0.067千克CO2 / kg LNG。 (C)2016 Elsevier B.V.保留所有权利。

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