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Potential assessment on gas turbine combined cycle with alternative gaseous fuel from coal gasification

机译:煤气化替代气态燃气轮机联合循环的潜力评估

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In the 21st century, fossil fuels will remain the mainstay of energy production, while natural gas combined cycle (NGCC) features environmental benignity and high efficiency. Hence, it is desirable to assess the potential of NGCC for power generation, in which gas turbine (GT) is operated with alternative gaseous fuel from coal gasification, since coal is the most abundant fossil fuel. System-level analyses for NGCC plants, combining advanced GTs with various fuels, are performed in this study. The commercial chemical process simulator, Pro/IIA (R) V8.1.1, is implemented to build the simulation models. This work further performs various analyses as the basic and feasibility cases. The former is the benchmark case verified with the reference data of an operating NGCC power plant located in northern Taiwan. The latter introduces a feasibility study with advanced GTs and actual parameters in Taiwan. Alternative fuel, including synthetic natural gas (SNG) or a mixture of SNG and syngas, is fed to combined cycle for evaluating the overall performance. The results indicate that the system output or efficiency in either case is slightly (2-3 % points, LHV) lower than the counterpart in the benchmark one. In Taiwan, the natural gas price is much higher than that of coal, and results in higher idle capacity of NGCC. The advantage of adopting SNG to NGCC is that it could increase the capacity factor and subdue the environmental impact of the energy portfolio. The outcome of this study indicates a possible means to utilize coal more efficiently and reduce emissions.
机译:在21世纪,化石燃料将仍然是能源生产的主体,而天然气联合循环(NGCC)具有环境友好和高效的特点。因此,由于煤是最丰富的化石燃料,因此期望评估NGCC用于发电的潜力,其中燃气轮机(GT)与来自煤气化的替代气态燃料一起运行。在这项研究中,对NGCC工厂进行了系统级分析,将先进的GT与各种燃料相结合。商业化学过程仿真器Pro / IIA(R)V8.1.1用于构建仿真模型。这项工作进一步进行了各种分析,作为基本和可行性案例。前者是基准案例,已使用台湾北部正在运行的NGCC电厂的参考数据进行了验证。后者介绍了在台湾具有先进GT和实际参数的可行性研究。包括合成天然气(SNG)或SNG与合成气的混合物在内的替代燃料被送入联合循环系统,以评估整体性能。结果表明,两种情况下的系统输出或效率都比基准系统中的系统输出或效率稍低(2-3%点,LHV)。在台湾,天然气价格远高于煤炭价格,导致NGCC的闲置容量更高。在NGCC中采用SNG的优势在于,它可以增加容量因子并抑制能源组合的环境影响。这项研究的结果表明,有可能更有效地利用煤炭并减少排放。

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