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Cycle Analysis of a New Air Engine Design

机译:新型航空发动机设计的循环分析

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摘要

This thesis investigates a new externally heated engine design being developed by Soony Systems Inc. to serve as the prime mover in a residential-scale combined heat and power system. This is accomplished by developing a thermodynamic model for the engine and sweeping through the design parameter space in order to identify designs that maximize power output, efficiency, and brake mean effective pressure (BMEP). It was discovered that the original engine design was flawed so a new design was proposed and analyzed. The thermodynamic model was developed in four stages. The first model was quasi-static while the other three were time-dependent and used increasingly realistic models of the heat exchangers. For the range of design parameters investigated here, the peak power output is 6.8 kW, the peak efficiency is approximately 60%, and the peak BMEP is 389 kPa. These performance levels are compared to those of other closed-cycle engines. The results suggest that the Soony engine has the potential to be more efficient than Stirlings because it more closely approximates the Carnot cycle, but this comes at the cost of significantly lower BMEP (389 kPa vs. 2,760 kPa for the SOLO Stirling engine).
机译:本文研究了由Soony Systems Inc.开发的一种新的外部加热发动机设计,该设计用作住宅规模的热电联产系统中的原动机。这是通过为发动机开发一个热力学模型并遍历设计参数空间来完成的,以识别出使功率输出,效率和制动平均有效压力(BMEP)最大化的设计。发现原始发动机设计存在缺陷,因此提出并分析了新设计。热力学模型分为四个阶段。第一个模型是准静态的,而其他三个模型是时间相关的,并使用了越来越逼真的热交换器模型。对于此处研究的设计参数范围,峰值功率输出为6.8 kW,峰值效率约为60%,峰值BMEP为389 kPa。将这些性能水平与其他闭环发动机的性能水平进行了比较。结果表明,Soony发动机具有比Stirlings更高效的潜力,因为它更接近卡诺循环,但这是以显着降低BMEP的代价(389 kPa相对于SOLO Stirling发动机为2760 kPa)。

著录项

  • 作者

    Attar, Wiam Fadi.;

  • 作者单位

    University of Maryland, College Park.;

  • 授予单位 University of Maryland, College Park.;
  • 学科 Aerospace engineering.
  • 学位 M.S.
  • 年度 2017
  • 页码 152 p.
  • 总页数 152
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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