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Ship weight reduction and efficiency enhancement through combined power cycles.

机译:通过组合动力循环减少船舶重量并提高效率。

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摘要

This work describes a tool for configuring and analyzing the weight of combined cycle power plant, designed for shipboard applications. The effects that varying selected combined cycle parameters have on the weight and the efficiency are presented. The combined cycle configuration is limited to a simple Rankine cycle bottoming plant recovering power from a gas turbine prime mover in order to increase efficiency. Although the Rankine cycle analysis could be used to design a steam turbine cycle whose HRSG absorbs power from the waste heat from any prime mover, the weight analysis provided constricts the use of the tool to gas turbines. Unlike much of the weight analysis performed in contemporary literature, this work includes fuel weight as part of the power plant weight, and the analysis results in net weight savings as compared to simple cycle gas turbines operating alone. The model was developed using heat transfer and thermodynamic analysis, turbine scaling techniques, and data from commercially available hardware to size the major power plant components. The analysis reveals that the point of optimal weight does not always coincide with the point of optimal efficiency.
机译:这项工作描述了一种配置和分析联合循环发电厂重量的工具,该工具专为船上应用而设计。提出了改变选定的联合循环参数对重量和效率的影响。联合循环配置仅限于简单的兰金循环底部设备从燃气轮机原动机回收动力以提高效率。尽管兰金循环分析可用于设计蒸汽轮机循环,其HRSG从任何原动机的废热中吸收能量,但所提供的重量分析将工具的使用限制在燃气轮机上。与当代文献中进行的许多重量分析不同,这项工作将燃料重量作为电厂重量的一部分,与单独运行的简单循环燃气轮机相比,该分析可节省净重。该模型是使用传热和热力学分析,涡轮机定标技术以及来自可购得的硬件的数据来确定主要发电厂组件的尺寸而开发的。分析表明,最佳权重点并不总是与最佳效率点重合。

著录项

  • 作者

    Coleman, Michael J.;

  • 作者单位

    The Florida State University.;

  • 授予单位 The Florida State University.;
  • 学科 Engineering Naval.;Engineering Mechanical.
  • 学位 M.S.
  • 年度 2013
  • 页码 97 p.
  • 总页数 97
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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