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Evaluation of CCHP systems performance based on operational cost, primary energy consumption, and carbon dioxide emission by utilizing an optimal operation scheme

机译:利用最佳运营方案,基于运营成本,一次能源消耗和二氧化碳排放量评估CCHP系统性能

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摘要

Optimization of combined cooling, heating, and power (CCHP) systems operation commonly focuses only on energy cost. Different algorithms have been developed to attain optimal utilization of CCHP units by minimizing the energy cost in CCHP systems operation. However, other outcomes resulting from CCHP operation such as primary energy consumption and emission of pollutants should also be considered during CCHP systems evaluation as one would expect these outcomes can be subject to regulation. This paper presents an optimization of the operation of CCHP systems for different climate conditions based on operational cost, primary energy consumption (PEC), and carbon dioxide emissions (CDE) using an optimal energy dispatch algorithm. The results for the selected cities demonstrate that in general there is not a common trend among the three optimization modes presented in this paper since optimizing one parameter may reduce or increase the other two parameters. The only cities that show reduction of PEC while also reducing the CDE are Columbus, MS; Minneapolis, MN; and Miami, FL For these cities the operational cost always increases when compared to the reference case consisting of using a vapor/compression cycle for cooling and natural gas for heating. On the other hand, for San Francisco and Boston, CCHP systems increase the CDE. In general, if CCHP systems increase the cost of operation, as long as energy savings and reduction of emissions are guaranteed, the implementation of these systems should be considered.
机译:冷却,加热和动力(CCHP)组合系统运行的优化通常只关注能源成本。通过最小化CCHP系统运行中的能源成本,已开发出各种算法来实现CCHP单元的最佳利用。但是,在CCHP系统评估期间,也应考虑CCHP运行产生的其他结果,例如一次能源消耗和污染物排放,因为人们希望这些结果可以受到监管。本文基于运行成本,一次能源消耗(PEC)和二氧化碳排放量(CDE),使用最佳能源分配算法,针对不同气候条件,对CCHP系统的运行进行了优化。所选城市的结果表明,本文提出的三种优化模式通常没有共同的趋势,因为优化一个参数可能会减少或增加其他两个参数。仅有的显示PEC降低同时降低CDE的城市是密苏里州哥伦布;明尼苏达州明尼阿波利斯;与参考案例相比,这些城市的运行成本总是增加,而参考案例包括使用蒸汽/压缩循环进行制冷和天然气进行加热。另一方面,对于旧金山和波士顿,CCHP系统会提高CDE。通常,如果CCHP系统增加了运行成本,只要保证节能和减少排放,就应该考虑实施这些系统。

著录项

  • 来源
    《Applied Energy》 |2009年第12期|2540-2549|共10页
  • 作者单位

    Department of Mechanical Engineering, Mississippi State University, 210 Carpenter Engineering Building, P.O. Box ME, Mississippi State, MS 39762-5925, USA;

    Department of Mechanical Engineering, Mississippi State University, 210 Carpenter Engineering Building, P.O. Box ME, Mississippi State, MS 39762-5925, USA;

    Department of Mechanical Engineering, Mississippi State University, 210 Carpenter Engineering Building, P.O. Box ME, Mississippi State, MS 39762-5925, USA;

    Department of Mechanical Engineering, Mississippi State University, 210 Carpenter Engineering Building, P.O. Box ME, Mississippi State, MS 39762-5925, USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    CCHP systems; optimal energy dispatch algorithm; primary energy consumption;

    机译:CCHP系统;最佳能量分配算法;一次能源消耗;
  • 入库时间 2022-08-18 00:10:41

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