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Combustion Performance of Waste-Derived Fuels with respect to Ultra Low Sulfur Diesel in a Compression Ignition Engine.

机译:压燃式发动机中废燃料相对于超低硫柴油的燃烧性能。

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摘要

The ever increasing energy demand along with fast depleting non-renewable fossil fuels and global climate change has led to a search for sustainable energy resources. Fuels produced from waste, like plastic solid waste and waste cooking oil, have gained significant interest since they not only solve disposal problems but also provide a sustainable energy resource. This thesis contains detailed literature surveys, combustion analysis of a waste plastic fuel, life cycle analysis of waste plastic fuel and waste cooking oil biodiesel from well to exhaust, and optimization of combustion of waste cooking oil biodiesel by employing higher injection pressures and normalized injection timings in comparison to commercial ultra low sulfur diesel fuel (ULSD).;Chapter 1 introduces the research work with the motivation behind the efforts. In addition, there is a brief discussion on prior and parallel work performed in the employed engine test cell. Moreover, this chapter describes the focus of each chapter with novel and unique findings highlighted.;Chapter 2 describes a literature review to better understand the influence of fuel synthesis technique on fuel properties of waste plastic fuels. Moreover, this chapter contains a combustion analysis of waste plastic fuel blends with ULSD in order to compare performance and emission characteristics of a commercial waste plastic fuel with that of ULSD.;Chapter 3 starts with a literature review to give background on the life cycle analysis and different approaches taken by previous researchers to perform life cycle analysis. This is followed by a well-to-exhaust analysis (WtE) of waste cooking oil biodiesel and waste plastic fuel at full load in comparison to ULSD.;Chapter 4 details the literature review to understand general and specific findings on the influence of injection parameters on the performance and emission characteristics of compression ignition fuels. This chapter contains a detailed combustion analysis of waste cooking oil biodiesel at higher injection pressures and normalized injection timings to attempt to replicate the performance of ULSD by negating the relatively high viscosity of the test fuel.;Chapter 5 summarizes major findings of this work in stages and connects the outcome of efforts to achieve optimal combustion of waste-derived fuels. Furthermore, future efforts are suggested to move towards sustainable public transportation in and around the University of Kansas campus.
机译:不断增长的能源需求以及快速消耗的不可再生化石燃料和全球气候变化导致人们寻求可持续的能源。由废料产生的燃料,例如塑料固体废料和废食用油,已引起人们极大的兴趣,因为它们不仅解决了处置问题,而且提供了可持续的能源。本论文包含详细的文献调查,废塑料燃料的燃烧分析,废塑料燃料和废食用油生物柴油从井到尾的生命周期分析,以及通过采用较高的喷射压力和归一化的喷射时间来优化废弃食用油生物柴油的燃烧。与商用超低硫柴油(ULSD)相比。第1章介绍了研究工作,其背后的动机是努力。另外,简要讨论了在所采用的发动机测试单元中进行的先前工作和并行工作。此外,本章还介绍了每一章的重点,并着重介绍了新颖独特的发现。第二章介绍了文献综述,以更好地理解燃料合成技术对废塑料燃料的燃料性能的影响。此外,本章还对ULSD废塑料燃料混合物的燃烧分析进行了比较,以比较商用废塑料燃料与ULSD的性能和排放特性。;第3章首先进行文献综述以提供生命周期分析的背景知识以及以前的研究人员用来进行生命周期分析的不同方法。其次是与ULSD相比,满负荷下的烹饪油生物柴油和废塑料燃料的完全排放分析(WtE);第4章详细介绍了文献综述,以了解对喷射参数影响的一般和特定发现压缩点火燃料的性能和排放特性。本章包含对废食用油生物柴油在较高喷射压力和标准化喷射定时下的详细燃烧分析,以通过抵消测试燃料的相对较高粘度来尝试复制ULSD的性能。;第5章分阶段总结了这项工作的主要发现并将实现废物衍生燃料最佳燃烧的努力成果联系起来。此外,建议未来的努力,以在堪萨斯大学校园内外实现可持续的公共交通。

著录项

  • 作者

    Churkunti, Preetham Reddy.;

  • 作者单位

    University of Kansas.;

  • 授予单位 University of Kansas.;
  • 学科 Mechanical engineering.;Energy.;Sustainability.
  • 学位 M.S.
  • 年度 2015
  • 页码 119 p.
  • 总页数 119
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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