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Upgrading existing gas-steam combined cycle power plants through steam injection and methane steam reforming

机译:通过蒸汽注射和甲烷蒸汽重整升级现有的气体组合循环发电厂

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The growth in worldwide energy demand currently faces the difficulty of installing new power generation facilities due to limited funding and the strengthening of environmental regulations. Owing to the increasing role of natural gas combined cycles (NGCCs) in the power generation infrastructure, it is important to assess the energy and economic feasibility of upgrading their capacity to cope with future energy requirements.This study aims to investigate a new concept for upgrading existing NGCCs by integrating an additional unit based on gas turbine. The additional unit allows the production of steam to be injected into the NGCC combustor (Option A) or syngas from methane steam reforming to be fed into the existing power plant (Option B) or even into the additional gas turbine (Option C). The power output augmentation arises from the capacity of the additional gas turbine and the increase in power production of both gas cycle and bottoming steam section of the NGCC. A preliminary sensitivity analysis assesses the influence of operating conditions of the additional unit on the energy and economic performances of marginal power production. Considering commercial gas turbines, further investigations address the design of upgrading options and the comparison of their techno-economic performances referred to the additional or the overall power productions. Finally, focusing on Option A, the part-load operation of the additional gas turbine is examined to evaluate penalties on marginal efficiency and marginal cost of electricity. Simulation results revealed that for a power augmentation lower than 50%, Option A provides the best economic performance combined with the highest operational simplicity, while Option C is the preferred technical solution for a greater increase in plant capacity. (C) 2019 Elsevier Ltd. All rights reserved.
机译:全球能源需求的增长目前面临由于资金有限和加强环境法规,难以安装新的发电设施。由于天然气组合循环(NGCC)在发电基础设施中的作用日益增加,重要的是评估升级其应对未来能源要求的能力的能量和经济可行性。本研究旨在调查一个新的升级概念基于燃气轮机的附加单位整合了现有的NGCC。附加单元允许将蒸汽从甲烷蒸汽重整注入NGCC燃烧器(选项A)或合成气,以进入现有的电厂(选件B)或甚至进入附加的燃气轮机(选件C)。功率输出增强从额外的燃气轮机的容量和NGCC的气体循环和底部蒸汽部分的电力产生增加。初步敏感性分析评估了额外单位对边际电力生产能量和经济性能的影响。考虑到商业燃气轮机,进一步调查解决了升级选项的设计,以及他们的技术经济表演的比较提到了附加或整体电力生产。最后,专注于选项A,检查附加燃气轮机的部件负荷操作以评估对边际效率和电力边际成本的处罚。仿真结果表明,对于低于50%的功率增强,选择A提供最佳的经济性能,与最高的操作简单相结合,而选项C是植物能力增加的优选技术解决方案。 (c)2019 Elsevier Ltd.保留所有权利。

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