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Parametric analysis on the thermal behavior of cracking hydrocarbon fuel flow inside asymmetry heated cooling channels with micro-ribs

机译:微肋的不对称加热冷却通道内裂解烃燃料流动热行为的参数分析

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摘要

Micro-rib is an efficient heat transfer enhancement method for supercritical fuel in the regenerative cooling channel of advanced aero-engines. The endothermic hydrocarbon fuel would crack into smaller molecules at high temperatures and significantly change fluid properties, giving more complexity for flow and heat transfer in the micro-ribbed cooling channel. In this paper, a three-dimensional simulation model, embedded with a skeletal 22-step cracking mechanism, was established to conduct parametric analysis on thermal behaviors of cracking n-Decane at supercritical pressures in asymmetry heated chan-nels with micro-ribs. The results reveal that thermal cracking would thicken the velocity boundary layer in the channel. Under this circumstance, regular size micro-ribs (h/H≈10%) might abnormally weaken heat transfer of cracking hydrocarbon fuel and higher micro-ribs are required for effective heat transfer enhancement in the channel. Due to the low-density zone caused by cracking products near the heated wall, heat transfer enhancement brought by micro-ribs becomes less sensitive to the increase of micro-rib height. Besides, thermal cracking shortens the range of recirculation zones behind micro-ribs, thus much smaller micro-rib pitch is required for effective heat transfer enhancement. Furthermore, micro-ribs have better heat transfer enhancement performance in higher fuel conversion region, where the density gra-dient is smaller.
机译:微肋是用于先进航空发动机再生冷却通道中的超临界燃料的有效传热增强方法。吸热的烃燃料将在高温下裂成较小的分子,并且显着改变流体性质,在微肋冷却通道中具有更大的流动和传热的复杂性。本文建立了一种嵌入骨骼22步裂纹机构的三维仿真模型,以进行参数分析,对具有微肋的不对称加热的陈奈斯的超临界压力裂解N-癸烷的热行为。结果表明,热裂纹将在通道中加厚速度边界层。在这种情况下,常规尺寸的微肋(H /H≈10%)可能异常削弱裂化烃类燃料和更高的微肋传热所需要的在信道有效的热传递增强。由于由加热壁附近的裂化产品引起的低密度区域,微肋带来的热传递增强对微肋高度的增加变得更敏感。此外,热裂纹缩短了微肋背后的再循环区域的范围,因此有效的传热增强需要更小的微肋间距。此外,微肋在更高的燃料转换区域具有更好的热传递增强性能,其中密度Gra-Dient较小。

著录项

  • 来源
    《International Journal of Heat and Mass Transfer》 |2020年第10期|120154.1-120154.13|共13页
  • 作者单位

    School of Energy Science and Engineering Harbin Institute of Technology Harbin 150001 PR China;

    School of Energy Science and Engineering Harbin Institute of Technology Harbin 150001 PR China;

    School of Energy Science and Engineering Harbin Institute of Technology Harbin 150001 PR China;

    School of Energy Science and Engineering Harbin Institute of Technology Harbin 150001 PR China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Micro-rib; Parametric analysis; Thermal cracking; Hydrocarbon fuel; Asymmetry heating;

    机译:微肋;参数分析;热裂纹;碳氢化合物燃料;不对称加热;

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