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Unsteady specific work and isentropic efficiency of a radial turbine driven by pulsed detonations.

机译:由脉冲爆轰驱动的径向透平的非定常功和等熵效率。

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摘要

There has been longstanding government and industry interest in pressure-gain combustion for use in Brayton cycle based engines. Theoretically, pressure-gain combustion allows heat addition with reduced entropy loss. The pulsed detonation combustor (PDC) is a device that can provide such pressure-gain combustion and possibly replace typical steady deflagration combustors. The PDC is inherently unsteady, however, and comparisons with conventional steady deflagration combustors must be based upon time-integrated performance variables. In this study, the radial turbine of a Garrett automotive turbocharger was coupled directly to and driven, full admission, by a PDC in experiments fueled by hydrogen or ethylene. Data included pulsed cycle time histories of turbine inlet and exit temperature, pressure, velocity, mass flow, and enthalpy. The unsteady inlet flowfield showed momentary reverse flow, and thus unsteady accumulation and expulsion of mass and enthalpy within the device. The coupled turbine-driven compressor provided a time-resolved measure of turbine power. Peak power increased with PDC fill fraction, and duty cycle increased with PDC frequency. Cycle-averaged unsteady specific work increased with fill fraction and frequency. An unsteady turbine efficiency formulation is proposed, including heat transfer effects, enthalpy flux-weighted total pressure ratio, and ensemble averaging over multiple cycles. Turbine efficiency increased with frequency but was lower than the manufacturer reported conventional steady turbine efficiency.
机译:对于基于布雷顿循环的发动机中使用的压力增益燃烧,政府和行业一直存在长期关注。从理论上讲,压力增加燃烧可以增加热量,同时减少熵损失。脉冲爆震燃烧器(PDC)是一种可以提供这种压力增益燃烧的装置,并可能替代典型的稳定爆燃燃烧器。但是,PDC本质上是不稳定的,与常规稳定爆燃燃烧器的比较必须基于时间积分的性能变量。在这项研究中,在氢或乙烯为燃料的实验中,Garrett汽车涡轮增压器的子母涡轮直接与PDC耦合并完全驱动,由PDC驱动。数据包括涡轮进口和出口温度,压力,速度,质量流量和焓的脉冲循环时间历史。不稳定的入口流场显示出瞬间的逆流,因此不稳定的积累和排出装置内的质量和焓。耦合的涡轮驱动压缩机提供了涡轮功率的时间分辨度量。峰值功率随PDC填充分数而增加,占空比随PDC频率而增加。平均周期的非稳态特定功随填充分数和频率的增加而增加。提出了一个不稳定的涡轮效率公式,该公式包括传热效果,焓通量加权的总压力比以及多个周期的总体平均。涡轮效率随频率增加,但低于制造商报告的常规稳定涡轮效率。

著录项

  • 作者

    Rouser, Kurt P.;

  • 作者单位

    Air Force Institute of Technology.;

  • 授予单位 Air Force Institute of Technology.;
  • 学科 Engineering Aerospace.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 263 p.
  • 总页数 263
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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