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首页> 外文期刊>Applied Energy >Performance assessment of a hybrid SOFC/MGT cogeneration power plant fed by syngas from a biomass down-draft gasifier
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Performance assessment of a hybrid SOFC/MGT cogeneration power plant fed by syngas from a biomass down-draft gasifier

机译:由生物质下浮式气化炉合成气供气的SOFC / MGT混合热电联产电厂的性能评估

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摘要

Hybrid systems combine two or more power generating devices and make use of the synergism to generate maximum power and offer very high efficiencies.The aim of this work is to investigate the performance achievable from a small-scale hybrid power plant based on the integration between a micro gas turbine (MGT) and a solid oxide fuel cell (SOFC) fed by the syngas generated by a biomass downdraft gasifier (BG). The thermal energy needed to reach the turbine inlet temperature is supplied by the exhausts coming from a catalytic burner in which the SOFC anode and cathode off-gases are burnt.The hybrid BG-SOFC/MGT plant, based on a simplified configuration and realized considering components commercially available, is designed for optimizing not only the electric power generation, but also the thermal power production, in accordance with the promotion of decentralized CHP plants.The performance assessment has been carried out by means of a numerical model, based on thermodynamic/thermochemical approaches and realized by integrating the models of each plant section, developed by using the Aspen Plus software package. The models validation, performed by using experimental data, demonstrates that the results produced are close to those obtained from each unit, so that the overall integrated model can provide a sufficiently accurate prediction of the expected actual hybrid power plant.The effects of some operating parameters on cogeneration performances, such as the MGT pressure ratio and the S/C (steam to carbon) in the SOFC unit, have been evaluated and analyzed.Results show that the best performances are achieved by assuming the MGT pressure ratio equal to 4.5 and the S/C equal to 0. In this case the electric power is 262kW (SOFC supplies 180kW), the thermal power is 405kW and the electric (AC) and cogeneration efficiencies are 35% and 88%, respectively.
机译:混合动力系统将两个或多个发电设备组合在一起,并利用协同作用产生最大功率并提供非常高的效率。这项工作的目的是研究基于小型混合动力工厂之间的集成而获得的性能。微型燃气轮机(MGT)和固体氧化物燃料电池(SOFC)由生物质下浮气化炉(BG)产生的合成气供料。达到涡轮机入口温度所需的热能由催化燃烧器产生的废气提供,在燃烧器中燃烧了SOFC阳极和阴极废气。BG-SOFC / MGT混合动力装置基于简化的构造并考虑了根据分散式热电联产电厂的推广,设计出不仅可用于优化发电量,而且还可以优化火力发电量的商业组件。通过基于热力学/热化学方法,并通过使用Aspen Plus软件包开发的每个工厂部分的模型集成来实现。通过使用实验数据进行的模型验证表明,所产生的结果接近于从每个单元获得的结果,因此整体集成模型可以为预期的实际混合动力电厂提供足够准确的预测。某些运行参数的影响对热电联产的性能进行了评估和分析,例如MGT压力比和SOFC单元中的S / C(蒸汽与碳)。结果表明,假设MGT压力比等于4.5且S / C等于0。在这种情况下,电力为262kW(SOFC供应180kW),火力为405kW,电力(AC)和热电联产效率分别为35%和88%。

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