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Combined heat and power systems for commercial buildings: investigating cost, emissions, and primary energy reduction based on system components.

机译:商业建筑的热电联产系统:根据系统组件调查成本,排放和一次能源削减。

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摘要

Combined heat and power (CHP) systems produce electricity and useful heat from fuel. When power is produced near a building which consumes power, transmission losses are averted, and heat which is a byproduct of power production may be useful to the building. That thermal energy can be used for hot water or space heating, among other applications. This dissertation focuses on CHP systems using natural gas, a common fuel, and systems serving commercial buildings in the United States.;First, the necessary price difference between purchased electricity and purchased fuel is analyzed in terms of the efficiencies of system components by comparing CHP with a conventional separate heat and power (SHP) configuration, where power is purchased from the electrical grid and heat is provided by a gas boiler. Similarly, the relationship between CDE due to electricity purchases and due to fuel purchases is analyzed as well as the relationship between primary energy conversion factors for electricity and fuel. The primary energy conversion factor indicates the quantity of source energy necessary to produce the energy purchased at the site.;Next, greenhouse gas emissions are investigated for a variety of commercial buildings using CHP or SHP. The relationship between the magnitude of the reduction in emissions and the parameters of the CHP system is explored. The cost savings and reduction in primary energy consumption are evaluated for the same buildings.;Finally, a CHP system is analyzed with the addition of a thermal energy storage (TES) component, which can store excess thermal energy and deliver it later if necessary. The potential for CHP with TES to reduce cost, emissions, and primary energy consumption is investigated for a variety of buildings. A case study is developed for one building for which TES does provide additional benefits over a CHP system alone, and the requirements for a water tank TES device are examined.
机译:热电联产(CHP)系统从燃料产生电能和有用的热量。当在消耗电力的建筑物附近产生电力时,避免了传输损耗,并且作为电力产生的副产品的热量可能对建筑物有用。该热能可以用于热水或空间供热等。本文主要研究使用天然气,普通燃料的热电联产系统,以及在美国为商业建筑提供服务的系统。首先,通过比较热电联产,根据系统组件的效率来分析购电与购置燃料之间的必要价格差异。采用常规的独立热电联产(SHP)配置,其中从电网购买电力,而热量由燃气锅炉提供。类似地,分析了由于电力购买和燃料购买而产生的CDE之间的关系,以及电力和燃料的一次能源转换因子之间的关系。主要的能量转换系数表示产生现场购买的能量所必需的源能量的数量。接着,使用CHP或SHP对各种商业建筑的温室气体排放进行了调查。探讨了减排量与热电联产系统参数之间的关系。对同一座建筑物评估了成本节省和一次能源消耗的减少。最后,对CHP系统进行了分析,增加了一个热能存储(TES)组件,该组件可以存储多余的热能,并在必要时稍后提供。对于各种建筑物,使用TES进行CHP降低成本,排放和一次能源消耗的潜力已得到研究。针对一栋建筑物进行了案例研究,TES的确比单独的CHP系统提供了更多的好处,并且检查了水箱TES设备的要求。

著录项

  • 作者

    Smith, Amanda D.;

  • 作者单位

    Mississippi State University.;

  • 授予单位 Mississippi State University.;
  • 学科 Engineering Mechanical.;Energy.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 190 p.
  • 总页数 190
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:42:47

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