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Thermoeconomic multi-objective optimization of a novel biomass-based integrated energy system

机译:新型基于生物质的集成能源系统的热经济多目标优化

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摘要

Both thermoeconomic modeling and multi-objective optimization studies are undertaken for a novel integrated multigeneration system, containing a biomass combustor, an organic Rankine cycle to produce electricity, a double-effect absorption chiller for cooling, a heat exchanger, a proton exchange membrane electrolyzer to produce hydrogen, a domestic water heater to produce hot water and a reverse osmosis desalination unit to produce fresh water. Energy and exergy analyses and an environmental impact assessment are included. A multi-objective optimization method based on a fast and elitist NSGA-Ⅱ (non-dominated sorting genetic algorithm) is developed and employed to determine the best design parameters for the system. The two objective functions utilized in the optimization study are the total cost rate of the system, which is the cost associated with fuel, component purchasing and environmental impact, and the system exergy efficiency. The total cost rate of the system is minimized while the cycle exergy efficiency is maximized using an evolutionary algorithm. To provide insight, the Pareto frontier is shown for a multi-objective optimization. In addition, a closed form equation for the relationship between exergy efficiency and total cost rate is derived. A sensitivity analysis is performed to assess the effects of several design parameters on the system total exergy destruction rate, CO_2 emission and exergy efficiency.
机译:对新型集成多代系统进行了热经济建模和多目标优化研究,该系统包含生物质燃烧器,有机朗肯循环产生电力,双效吸收式冷却器(用于冷却),热交换器,质子交换膜电解器生产氢,家用热水器生产热水,反渗透淡化装置生产淡水。包括能量和火用分析以及环境影响评估。提出了一种基于快速精英NSGA-Ⅱ(非支配排序遗传算法)的多目标优化方法,并确定了系统的最佳设计参数。优化研究中使用的两个目标函数是系统的总成本率,即与燃料,组件购买和环境影响相关的成本,以及系统的火用效率。使用进化算法可最大程度地降低系统的总成本,同时最大程度地提高循环本能效率。为了提供见解,显示了帕累托边界以进行多目标优化。另外,推导出了一个有效形式与总成本率之间关系的封闭式方程。进行了敏感性分析,以评估几个设计参数对系统总火用破坏率,CO_2排放和火用效率的影响。

著录项

  • 来源
    《Energy》 |2014年第4期|958-970|共13页
  • 作者单位

    Faculty of Engineering and Applied Science, University of Ontario Institute of Technology (UOIT), 2000 Simcoe St. North, Oshawa, ON L1H 7K4, Canada;

    Faculty of Engineering and Applied Science, University of Ontario Institute of Technology (UOIT), 2000 Simcoe St. North, Oshawa, ON L1H 7K4, Canada;

    Faculty of Engineering and Applied Science, University of Ontario Institute of Technology (UOIT), 2000 Simcoe St. North, Oshawa, ON L1H 7K4, Canada;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Energy; Exergy; Efficiency; Biomass; Integrated system; Optimization;

    机译:能源;火用;效率;生物质集成系统;优化;

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