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Effects of micro-combustor geometry and size on the heat transfer and combustion characteristics of premixed hydrogen/air flames

机译:微燃烧室几何形状和尺寸对预混氢/空气火焰传热和燃烧特性的影响

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摘要

major challenge in the development of micro-combustors is flame instabilities-resulting in a non-uniform wall temperature distribution and lower combustion efficiency. To overcome these issues, this research investigates the combustion characteristics of premixed hydrogen/air mixture in a micro-combustor with a cavity, bluff body, rib with bluff body and rib configurations. A detailed chemical re-action mechanism is also developed which consists of 13 species and 19 reactions. The obtained results are validated with published experimental findings. Having the model validated, a parametric study has been conducted to examine the effect of thermal conductivity coefficient, equivalent ratio, aspect ratio and geometrical configurations on heat transfer and combustion characteristics of hydrogen/air flames. It is demonstrated that increasing the thermal conductivity coefficient improves the preheating of the fresh mixture at upstream. However, this causes more heat loss from the outer walls to the surroundings. Moreover, increasing the equivalence ratio of a mixture reduces the negative effects arising from the heat losses on combustion stability. At higher inlet velocities, the location of a maximum temperature shifts towards downstream, which reduces the flame and average wall temperature. Among these configurations, a micro-combustor with bluff body is a more promising option to improve the flame stability and combustion efficiency.
机译:微燃烧器的开发中的主要挑战是火焰稳定性 - 导致非均匀的壁温分布和较低的燃烧效率。为了克服这些问题,本研究研究了用腔,虚线,肋骨和肋构造的微燃烧器中预混氢/空气混合物的燃烧特性。还开发了一种细化的化学重新作用机制,其由13种和19种和19个反应组成。获得的结果验证了已发表的实验结果。已经验证了模型,已经进行了参数研究以检查导热系数,等效比,纵横比和几何配置对氢气/空气火焰的传热和燃烧特性的影响。证明,增加导热系数提高了新鲜混合物在上游的预热。然而,这导致从外壁到周围的热量损失。此外,增加混合物的等效比率降低了燃烧稳定性的热损失引起的负面影响。在更高的入口速度下,最大温度的位置朝下游移动,这降低了火焰和平均壁温。在这些配置中,具有虚弱体的微燃烧器是更有前途的选择,可以提高火焰稳定性和燃烧效率。

著录项

  • 来源
    《Energy》 |2021年第1期|119061.1-119061.9|共9页
  • 作者单位

    Research School of Electrical Energy and Materials Engineering The Australian National University ACT 2601 Australia;

    Dept. of Mechanical Engineering Shahid Rajaee Teacher Training University (SRTTU) Tehran Iran;

    Department of Mechanical Engineering Khajeh Nasir Toosi University of Technology Tehran Iran;

    Dept. of Mechanical Engineering Shahid Rajaee Teacher Training University (SRTTU) Tehran Iran;

    Department of Mechanical Engineering Khomeinishahr Branch Islamic Azad University Khomeinishahr Iran;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Micro-combustor; Bluff body; Hydrogen; air combustion; Flame temperature;

    机译:微燃烧器;虚张声势;氢;空气燃烧;火焰温度;

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