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基于氢燃料的SOFC-“GT+ST”系统方案与性能研究

Design and Performance Study of SOFC-"GT+ST" System Based on Hydrogen Fuel

  • 摘要:
      目的  针对以氢为燃料的固体燃料电池,提出了燃料电池阴阳两极分别进入燃气透平和蒸汽透平做功的SOFC-“GT+ST”系统,分析不同参数对系统效率的影响,为氢燃料电池与透平耦合系统提供参考意见。
      方法  基于ebsilon软件建立系统模型,在给定参数下和SOFC-GT系统比较,并研究了燃料利用率、压缩机压比、空气流量、SOFC入口工质温度对SOFC-“GT+ST”系统总发电效率的影响。
      结果  结果表明与SOFC-GT系统相比,SOFC-“GT+ST”系统的总发电功率增加至73.3 MW,较原系统提升5.74%,发电效率达到60.13%;燃料电池的燃料利用率、压缩机压比、电池入口温度及空气流量都会对系统的总发电效率产生影响,其中燃料利用率存在最佳值,空气流量有一个合理的取值范围,而电池入口温度和压缩机压比越高系统发电效率越高。
      结论  在该文设定的结构和参数下,燃料电池的燃料利用率最佳值为0.85,空气流量取值应在35~39 kg/s之间。该改进系统可有效提高SOFC与透平联合发电系统的总发电效率,该文的研究结果为系统参数的选择提供了参考。

     

    Abstract:
      Introduction  For the oxygen ion conductive solid fuel cell fueled by hydrogen, the paper proposed a SOFC-"GT+ST" system with the cathode and anode of the fuel cell entering the gas turbine and steam turbine respectively, and analyzed the impact of different parameters on system efficiency, providing reference opinions for hydrogen fuel cell and turbine coupling systems.
      Method  A system model was established using the software Ebsilon. The model was compared with the SOFC-GT system under the given parameters. Additionally, the study investigated the effects of fuel utilization, compressor pressure ratio, air flow and SOFC inlet working fluid temperature on the total power generation efficiency of SOFC-"GT+ST" system.
      Result  The results show that compared with the SOFC-GT system, the total power generation of the SOFC-"GT+ST" system increases to 73.3 MW, representing a 5.74% improvement over the original system, with a power generation efficiency of 60.13%. The fuel utilization of the fuel cell, the compressor pressure ratio, the cell inlet temperature and the air flow rate all affect the system’s total power generation efficiency. Among these factors, there is an optimal value for fuel utilization and a reasonable range for the air flow rate. Additionally, higher cell inlet temperature and compressor pressure ratio lead to higher power generation efficiency of the system.
      Conclusion  Under the structure and parameters defined in this study, the optimal value of fuel utilization of fuel cell is 0.85, and the air flow value should be between 35 and 39 kg/s. The improved system can effectively enhance the total power generation efficiency of SOFC and turbine combined power generation system. The results of this study provide a reference for the selection of system parameters.

     

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