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Renewable energy and conservation measures for non-residential buildings.

机译:非住宅建筑的可再生能源和节能措施。

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摘要

The energy demand in most countries is growing at an alarming rate and identifying economically feasible building retrofit solutions to decrease the need for fossil fuels so as to mitigate their environmental and societal impacts has become imperative. Two approaches are available for identifying feasible retrofit solutions: 1) the implementation of energy conservation measures; and 2) the production of energy from renewable sources. This thesis focuses on the development of retrofit software planning tools for the implementation of solar photovoltaic systems, and lighting system retrofits for mid-Michigan institutional buildings.;The solar planning tool exploits the existing blueprint of a building's rooftop, and via image processing, the layouts of the solar photovoltaic arrays are developed based on the building's geographical location and typical weather patterns. The resulting energy generation of a PV system is estimated and is utilized to determine levelized energy costs.;The lighting system retrofit analysis starts by a current utilization assessment of a building to determine the amount of energy used by the lighting system. Several LED lighting options are evaluated on the basis of color correlation temperature, color rendering index, energy consumption, and financial feasibility, to determine a retrofit solution.;Solar photovoltaic installations in mid-Michigan are not yet financially feasible, but with the anticipated growth and dynamic complexity of the solar photovoltaic market, this solar planning tool is able to assist building proprietors make executive decisions regarding their energy usage. Additionally, a lighting system retrofit is shown to have significant financial and health benefits.
机译:大多数国家的能源需求正以惊人的速度增长,并且确定经济可行的建筑翻新解决方案以减少对化石燃料的需求,从而减轻其对环境和社会的影响已成为当务之急。有两种方法可用于确定可行的改造解决方案:1)实施节能措施; 2)利用可再生能源生产能源。本论文着重于开发用于实施太阳能光伏系统的改造软件计划工具以及用于密歇根州中型机构建筑物的照明系统改造。太阳能计划工具利用了建筑物屋顶的现有蓝图,并通过图像处理,太阳能光伏阵列的布局是根据建筑物的地理位置和典型的天气模式开发的。估算光伏系统产生的能源,并将其用于确定均衡的能源成本。照明系统改造分析从建筑物的当前利用率评估开始,以确定照明系统使用的能源量。根据颜色相关温度,显色指数,能耗和财务可行性对几种LED照明选项进行了评估,以确定改型解决方案。密歇根州中部的太阳能光伏装置在财务上尚不可行,但有望实现增长以及太阳能光伏市场的动态复杂性,该太阳能规划工具能够协助建筑业主做出有关其能源使用的行政决策。此外,照明系统的改造具有显着的财务和健康效益。

著录项

  • 作者

    Grossman, Andrew James.;

  • 作者单位

    Michigan State University.;

  • 授予单位 Michigan State University.;
  • 学科 Engineering Mechanical.;Energy.
  • 学位 M.S.
  • 年度 2014
  • 页码 103 p.
  • 总页数 103
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:53:16

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