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Analysis of the Environmental Impact on Remanufacturing Wind Turbines.

机译:再制造风力涡轮机的环境影响分析。

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摘要

To deliver clean energy the use of wind turbines is essential. In June 2011 there was an installed wind capacity equivalent to 211,000MW world-wide (WWEA, 2011). By the end of the year 2009 the U.S. had 35,100MW of wind energy installed capacity to generate electricity (AWEA, 2010). This industry has grown in recent years and is expected to grow even more in the future.;The environmental impacts that will arise from the increased number of wind turbines and their end-of-life should be addressed, as large amounts of resources will be required to satisfy the current and future market demands for wind turbines. Since future 10MW wind turbines are expected to be as heavy as 1000 tons each, the study of the environmental response of profitable retirement strategies, such as remanufacturing for these machines, must be considered.;Because of the increased number of wind turbines and the materials used, this study provides a comparison between the environmental impacts from remanufacturing the components installed inside the nacelle of multi-megawatt wind turbines and wind turbines manufactured using new components. The study methodology is the following: • Describe the life-cycle and the materials and processes employed for the manufacture and remanufacturing for components inside the nacelle. • Identify remanufacturing alternatives for the components inside the nacelle at the end of the expected life-time service of wind turbines. • Evaluate the environmental impacts from the remanufactured components and compare the results with the impacts of the manufacturing of new components using SimaPro. • Conduct sensitivity analysis over the critical parameters of the life cycle assessment • Propose the most environmentally friendly options for the retirement of each major component of wind turbines.;After an analysis of the scenarios the goal of the study is to evaluate remanufacturing as an end-of-life option from an environmental perspective for commercial multi-megawatt wind turbines targeted for secondary wind turbine markets.
机译:为了提供清洁能源,必须使用风力涡轮机。 2011年6月,全球风电装机容量相当于211,000兆瓦(WWEA,2011年)。到2009年底,美国已拥有35,100兆瓦的风能发电装机容量(AWEA,2010)。近年来,该行业已经发展壮大,并有望在未来进一步增长。;应解决因风力涡轮机数量增加和使用寿命终止而产生的环境影响,因为将使用大量资源。满足当前和未来市场对风力涡轮机的需求。由于预计未来的10MW风力发电机每台将重达1000吨,因此必须考虑对有利的退休策略(例如这些机器的再制造)的环境响应进行研究;由于风力发电机和材料数量的增加使用这项研究时,本研究在重新制造安装在多兆瓦级风力涡轮机机舱内的组件与使用新组件制造的风力涡轮机之间的环境影响之间进行了比较。研究方法如下:•描述机舱内部组件的生命周期以及制造和再制造所采用的材料和工艺。 •在风力涡轮机的预期使用寿命结束时,确定机舱内部组件的再制造替代方案。 •评估再制造组件对环境的影响,并将结果与​​使用SimaPro制造新组件的影响进行比较。 •对生命周期评估的关键参数进行敏感性分析•为报废风机的每个主要组件提出最环保的选择。;对情景进行分析之后,研究的目标是评估再制造作为最终目标从环境角度出发,针对次级风力涡轮机市场的商用兆瓦级风力涡轮机提供多种使用寿命选择。

著录项

  • 作者

    Sosa Skrainka, Manuel R.;

  • 作者单位

    Rochester Institute of Technology.;

  • 授予单位 Rochester Institute of Technology.;
  • 学科 Alternative Energy.;Engineering Mechanical.;Sustainability.;Engineering Environmental.;Energy.
  • 学位 M.S.
  • 年度 2012
  • 页码 161 p.
  • 总页数 161
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 公共建筑;
  • 关键词

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