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Tri-generation for industrial applications: Development of a simulation model for a gasification-SOFC based system

机译:工业用三联发电:基于气化-SOFC的系统的仿真模型的开发

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Combined Cooling, Heat and Power production (CCHP) systems allow energy production with high efficiencies. An even higher advantage can be obtained by feeding the system with biomass or residues. In the present paper, the development of a simulation model of a CCHP system of 630 kW(e) size is presented. An ASPEN model has been developed for the simulation of a gasification-SOFC plant with a downdraft gasification process from lignocellulosic biomass. The results of the model have been used to set a model of the whole CCHP system in TRNSYS environment, suitable for dynamic simulations. The model has been applied to an industrial case study, which represents an advancement of the current literature, and different layouts have been evaluated. Such models include not only standard components, such as vapour compression chillers but also advanced thermal chillers. Results showed that the primary energy consumption using a CCHP system could be reduced of about 15 GWh/y (50% less of a traditional system with separate energy production) with an amount of avoided CO2 emissions of about 5000 t/y. (C) 2017 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:冷却,热电联产(CCHP)系统可实现高效的能源生产。通过向系统供应生物质或残渣可以获得更高的优势。在本文中,提出了一个630 kW(e)尺寸的CCHP系统仿真模型的开发。已经开发了ASPEN模型,用于模拟具有木质纤维素生物质的向下气化过程的气化SOFC设备。该模型的结果已用于在TRNSYS环境中设置整个CCHP系统的模型,适用于动态仿真。该模型已应用于工业案例研究,代表了当前文献的发展,并且已评估了不同的布局。此类模型不仅包括标准组件(例如蒸气压缩式冷却器),还包括高级热式冷却器。结果表明,使用CCHP系统的一次能源消耗可以减少约15 GWh / y(与单独生产能源的传统系统相比减少50%),避免的二氧化碳排放量约为5000 t / y。 (C)2017氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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