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Design and Economic Potential of an Integrated High-Temperature Fuel Cell and Absorption Chiller Combined Cooling, Heat, and Power System.

机译:结合了冷却,热电系统的高温燃料电池和吸收式制冷机的设计和经济潜力。

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摘要

Clean distributed generation power plants can provide a much needed balance to our energy infrastructure in the future. A high-temperature fuel cell and an absorption chiller can be integrated to create an ideal combined cooling, heat, and power system that is efficient, quiet, fuel flexible, scalable, and environmentally friendly. With few real-world installations of this type, research remains to identify the best integration and operating strategy and to evaluate the economic viability and market potential of this system.;This thesis informs and documents the design of a high-temperature fuel cell and absorption chiller demonstration system at a generic office building on the University of California, Irvine (UCI) campus. This work details the extension of prior theoretical work to a financially-viable power purchase agreement (PPA) with regard to system design, equipment sizing, and operating strategy. This work also addresses the metering and monitoring for the system showcase and research and details the development of a MATLAB code to evaluate the economics associated with different equipment selections, building loads, and economic parameters.;The series configuration of a high-temperature fuel cell, heat recovery unit, and absorption chiller with chiller exhaust recirculation was identified as the optimal system design for the installation in terms of efficiency, controls, ducting, and cost. The initial economic results show that high-temperature fuel cell and absorption chiller systems are already economically competitive with utility-purchased generation, and a brief case study of a southern California hospital shows that the systems are scalable and viable for larger stationary power applications.
机译:清洁的分布式发电厂可以在将来为我们的能源基础设施提供急需的平衡。可以集成高温燃料电池和吸收式冷却器,以创建理想的冷却,加热和动力组合系统,该系统高效,安静,燃料灵活,可扩展且环保。由于很少有这种类型的实际安装,因此仍需进行研究以确定最佳的集成和运行策略,并评估该系统的经济可行性和市场潜力。加州大学欧文分校(UCI)校园内一栋通用办公楼中的冷水机演示系统。这项工作详细介绍了将先前的理论工作扩展到有关系统设计,设备选型和操作策略的财务可行的购电协议(PPA)。这项工作还解决了系统展示和研究的计量和监控问题,并详细介绍了MATLAB代码的开发,以评估与不同设备选择,建筑物负荷和经济参数有关的经济性。高温燃料电池的串联配置从效率,控制,管道和成本方面考虑,热回收机组和带冷却器排气再循环的吸收式冷却器被确定为安装的最佳系统设计。初步的经济结果表明,高温燃料电池和吸收式冷却器系统已经在经济上与公用事业购买的发电系统竞争,对加利福尼亚南部一家医院的简短案例研究表明,该系统可扩展且适用于较大的固定电源应用。

著录项

  • 作者

    Hosford, Kyle S.;

  • 作者单位

    University of California, Irvine.;

  • 授予单位 University of California, Irvine.;
  • 学科 Energy.;Engineering Mechanical.
  • 学位 M.S.
  • 年度 2013
  • 页码 162 p.
  • 总页数 162
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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