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首页> 外文期刊>International journal of hydrogen energy >Effect of gasified biomass fuel on load characteristics of an intermediate-temperature solid oxide fuel cell and gas turbine hybrid system
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Effect of gasified biomass fuel on load characteristics of an intermediate-temperature solid oxide fuel cell and gas turbine hybrid system

机译:气化生物质燃料对中温固体氧化物燃料电池与燃气轮机混合系统负荷特性的影响

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This work uses the mathematical model of an intermediate-temperature solid oxide fuel cell and gas turbine (IT-SOFC/GT) hybrid system to study the effects of gasified biomass fuels on system load characteristics. The system performance is investigated by using four types of fuels in each adjusting mode. The relation between the fuel type and load adjusting mode is obtained for users and designers to select the appropriate fuel for reasonable operation modes. Results show that the hybrid system of 182.4 kW has a high electric efficiency of 60.78% by using wood chip gas (WCG). If cotton wood gas (CWG) and corn stalk gas (CSG) are used, both boundary values of steam to carbon ratio (S/C-bv) and system power are higher, but system efficiencies decrease to 57.36% and 57.87% respectively. In the designed three load adjusting modes, the system can reach maximum efficiency over 59% with four types of biomass gases. If high efficiency and a wide range of load adjustment are required, users can select Case B to use fuels like WCG and GSG. When higher efficiency and low load is expected, Case A is more desirable. With fuels like CWG and CSG, the system has good safety performance in Case C. (C) 2016 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:这项工作使用中温固体氧化物燃料电池和燃气轮机(IT-SOFC / GT)混合系统的数学模型来研究气化生物质燃料对系统负荷特性的影响。通过在每种调节模式下使用四种类型的燃料来研究系统性能。用户和设计者可以获得燃料类型与负载调节模式之间的关系,以便为合理的运行模式选择合适的燃料。结果表明,使用木屑气(WCG)的182.4 kW混合动力系统具有60.78%的高电效率。如果使用棉木气(CWG)和玉米秸秆气(CSG),则蒸汽与碳之比(S / C-bv)和系统功率的边界值都较高,但是系统效率分别降低到57.36%和57.87%。在设计的三种负载调节模式下,使用四种类型的生物质气体,系统可以达到超过59%的最大效率。如果需要高效率和大范围的负载调节,则用户可以选择情况B以使用WCG和GSG等燃料。当期望更高的效率和更低的负载时,情况A更可取。使用CWG和CSG等燃料,该系统在Case C中具有良好的安全性能。(C)2016 Hydrogen Energy Publications LLC。由Elsevier Ltd.出版。保留所有权利。

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