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Assessing District Energy Systems Performance Integrated with Multiple Thermal Energy Storages.

机译:评估具有多个热能存储的区域能源系统性能。

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摘要

The goal of this study is to examine various energy resources in district energy (DE) systems and then DE system performance development by means of multiple thermal energy storages (TES) application. This study sheds light on areas not yet investigated precisely in detail. Throughout the research, major components of the heat plant, energy suppliers of the DE systems, and TES characteristics are separately examined; integration of various configurations of the multiple TESs in the DE system is then analysed. In the first part of the study, various sources of energy are compared, in a consistent manner, financially and environmentally. The TES performance is then assessed from various aspects. Then, TES(s) and DE systems with several sources of energy are integrated, and are investigated as a heat process centre. The most efficient configurations of the multiple TESs integrated with the DE system are investigated. Some of the findings of this study are applied on an actual DE system. The outcomes of this study provide insight for researchers and engineers who work in this field, as well as policy makers and project managers who are decision-makers. The accomplishments of the study are original developments TESs and DE systems.;The energy, exergy, economic, and CO2 emissions of various energy options for the DE system are investigated in a consistent manner. Different sources of energy considered include natural gas, solar energy, ground source heat pump (GSHP), and municipal solid waste. The economic and environmental aspects and prioritization, and the advantages of each technology are reported. A community-based DE system is considered as a case study. For the considered case study, various existing sizing methods are applied, and then compared. The energy sources are natural gas, solar thermal, geothermal, and solid waste. The technologies are sized for each energy option, then the CO2 emissions and economic characteristics of each technology are analysed.;The parallel configuration of the TESs delivers more energy to the DE system compared with other configurations, when the stored energy is the same. With increasing the number of parallel TESs results in a higher energy supply to the DE system. The efficiency of the set of the TESs is also improved by increasing the number of parallel TESs. The tax policy, including the tax benefits and carbon tax, is a strong tool which will influence the overall cost of the energy supplier's technology for the DE systems. The Enviro-Economic Function for the TESs is proposed and is integrated with the DE system, which suggests that the number of TESs required.;The energy and exergy analyses are applied to the charging and discharging stages of an actual TES in the Friedrichshafen DE system. For the Friedrichshafen DE system, the performance is analysed based on energy and exergy analyses approach. Furthermore, by using the developed functions in the present study some modifications are suggested for the Friedrichshafen DE system for better performance.;As an original development the Enviro-Economic Function, to balance the economic and environmental aspects of energy resources technologies in DE systems, is developed; various configurations of multiple TESs, including series, parallel, and general grid, are developed. The developed related functions are discharge temperature and energy of the TES, and energy and exergy efficiencies of the TES. The TES charging and discharging behavior of TES instantaneously is also investigated to obtain the charging temperature, the maximum charging temperature, the charging energy flow, maximum heat flow capacity, the discharging temperature, the minimum charging temperature, the discharging energy flow, the maximum heat flow capacity, and performance cycle time functions of the TES. Expanding to analysis of one TES integrated with the DE system, characteristics of various configurations of TES integrated with DE systems are obtained as functions of known properties, energy and exergy balances of the DE system including the TES(s); and energy and exergy efficiencies of the DE system.
机译:这项研究的目的是检查区域能源(DE)系统中的各种能源,然后通过多个热能存储(TES)应用程序开发DE系统性能。这项研究揭示了尚未进行详细调查的领域。在整个研究过程中,分别检查了热电厂的主要组件,DE系统的能源供应商和TES特性。然后分析DE系统中多个TES的各种配置的集成。在研究的第一部分中,以一致的方式在财务和环境方面比较了各种能源。然后从各个方面评估TES的性能。然后,将具有多种能源的TES和DE系统集成在一起,并作为热处理中心进行了研究。研究了与DE系统集成的多个TES的最有效配置。这项研究的一些发现被应用于实际的DE系统。这项研究的结果为从事该领域的研究人员和工程师以及决策者的政策制定者和项目经理提供了见识。研究的成就是最初开发的TES和DE系统。;以一致的方式研究了DE系统的各种能源选择的能源,火用,经济和CO2排放。考虑的不同能源包括天然气,太阳能,地源热泵(GSHP)和城市固体废物。报告了经济和环境方面以及优先级,以及每种技术的优势。基于社区的DE系统被视为案例研究。对于考虑的案例研究,应用了各种现有的调整大小方法,然后进行了比较。能源是天然气,太阳热能,地热能和固体废物。根据每种能源选择的技术来确定技术的大小,然后分析每种技术的二氧化碳排放量和经济特性。当存储的能量相同时,TES的并行配置为DE系统提供比其他配置更多的能量。随着并行TES数量的增加,将为DE系统提供更高的能量。通过增加并行TES的数量,还可以提高一组TES的效率。税收政策,包括税收优惠和碳税,是一种强有力的工具,它将影响能源供应商的DE系统技术总成本。提出了TESs的环境经济功能并将其与DE系统集成在一起,这表明需要TESs的数量。能量和火用分析应用于Friedrichshafen DE系统中实际TES的充电和放电阶段。对于Friedrichshafen DE系统,将基于能量和火用分析方法对性能进行分析。此外,通过使用本研究中开发的功能,建议对Friedrichshafen DE系统进行一些修改,以提高性能。作为最初的开发,环境经济功能旨在平衡DE系统中能源技术的经济和环境方面,被开发;开发了多种TES的各种配置,包括串联,并联和通用网格。所开发的相关功能是TES的放电温度和能量,以及TES的能量和火用效率。还对TES的TES充放电行为进行了瞬时研究,以获得充电温度,最大充电温度,充电能量流,最大热流量,放电温度,最小充电温度,放电能量流,最大热量TES的流量,性能周期时间功能。扩展到对与DE系统集成的TES的分析,获得与DE系统集成的TES各种配置的特性,作为包含TES的DE系统的已知特性,能量和火用平衡的函数;以及DE系统的能量和火用效率。

著录项

  • 作者

    Rezaie, Behnaz.;

  • 作者单位

    University of Ontario Institute of Technology (Canada).;

  • 授予单位 University of Ontario Institute of Technology (Canada).;
  • 学科 Engineering Mechanical.;Energy.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 258 p.
  • 总页数 258
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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