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A feasibility assessment for the application of biogas and wind power in the farm environment as sustainable sources of energy.

机译:在农场环境中应用沼气和风能作为可持续能源的可行性评估。

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摘要

The depletion of energy sources and the ever-increasing energy demand—and consequently price escalation—is a problem that concerns the global population. Despite the concept of energy crisis being widely accepted nowadays, there is a lot of scepticism and misinformation on the possible alternatives to alleviate the environmental and economic impacts of conventional energy generation. Renewable energy technologies are constantly experiencing significant innovation and improvements. This thesis sought to assess the potential of small dairy farms to make an energy shift and identify the practical benefits and possible downfalls of this shift. Wind power and biogas digestion were analysed in this thesis, and a model to assess these technologies at any given farm was developed on VBA. For the case studied in this research both technologies were concluded to be feasible from an economic point of view. Although the initial investment can seem costly, considering the relatively low payback period and the currently available subsidies the economic implications are not an obstacle. The model developed on VBA is applicable to any region, given the right data is put into the programme. Considering the global energy concern, models such as the one developed in this thesis are an appropriate tool to identify potential shifts to greener solutions and prove to users that it can be economically profitable for them as well as environmentally beneficial.
机译:能源的枯竭和不断增长的能源需求以及随之而来的价格上涨是一个涉及全球人口的问题。尽管如今能源危机的概念已被广泛接受,但对于减轻传统能源发电对环境和经济的影响的替代方案仍存有很多怀疑和误解。可再生能源技术一直在不断进行重大的创新和改进。本文试图评估小型奶牛场进行能源转移的潜力,并确定这种转移的实际好处和可能的失败。本文分析了风能和沼气的消化,并在VBA上开发了一个模型,用于评估任何给定农场的这些技术。对于本研究中所研究的案例,从经济角度来看,两种技术均被认为是可行的。尽管初始投资似乎很昂贵,但考虑到相对较低的投资回收期和目前可用的补贴,其经济影响并非障碍。只要将正确的数据输入到程序中,就可以在VBA上开发的模型适用于任何地区。考虑到全球能源问题,本文开发的模型是一种合适的工具,可用于识别向更绿色解决方案的潜在转变,并向用户证明,对于他们而言,既可带来经济效益,又可带来环境效益。

著录项

  • 作者

    Carbo, Laura C.;

  • 作者单位

    Purdue University.;

  • 授予单位 Purdue University.;
  • 学科 Sustainability.;Energy.;Engineering Environmental.
  • 学位 M.S.E.
  • 年度 2013
  • 页码 100 p.
  • 总页数 100
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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