首页> 外文期刊>Journal of Energy Resources Technology >The Critical Pressure at the Onset of Flame Instability of Syngas/Air/Diluent Outwardly Expanding Flame at Different Initial Temperatures and Pressures
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The Critical Pressure at the Onset of Flame Instability of Syngas/Air/Diluent Outwardly Expanding Flame at Different Initial Temperatures and Pressures

机译:在不同初始温度和压力下,Syngas /空气/稀释剂的火焰稳定性发作的临界压力

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Syngas has gained attention recently due to its high energy density and environmentally friendly characteristics. Flame stability plays an important role in flame propagation in energy conversion devices. Experimental studies were performed in a cylindrical chamber to investigate flame instability of syngas/air/diluent mixture. A Z-shape Schlieren system coupled with a high-speed complementary metal-oxide-semiconductor camera was used to record flame pictures up to 40,000 frames per second. In this research, syngas is a mixture of hydrogen and carbon monoxide and diluent is a blend of 14% CO2 and 86% N2 with the same specific heat as the burned gases. Three main flame instabilities namely Rayleigh-Taylor (body force) instability, hydrodynamic instability, and thermal-diffusive instability have been studied. For the onset of flame instability, a power law correlation for the ratio of critical pressure to initial pressure of syngas/air/diluent flames over a wide range of initial temperatures (298-450 K), initial pressures (1.0-2.0 atm), equivalence ratios (0.6-3.0), diluent concentrations (0-10%), and hydrogen percentages (5-25%) in the fuel has been developed.
机译:由于其高能量密度和环保特性,合成气最近促进了关注。火焰稳定性在能量转换装置中发挥着火焰传播中的重要作用。在圆柱形室中进行实验研究,以研究Syngas /空气/稀释剂混合物的火焰不稳定性。与高速互补金属氧化物半导体相机联接的Z形Schlieren系统用于将火焰图像记录到每秒高达40,000帧。在该研究中,合成气是氢气和一氧化碳的混合物,稀释剂是14%CO 2和86%N 2的共混物,与烧成的气体相同的比热。三个主要火焰稳定性是Rayleigh-Taylor(身体力)不稳定,流体动力不稳定,并研究了热扩散不稳定。对于火焰不稳定性的开始,在宽范围的初始温度(298-450K),初始压力(1.0-2.0 atm)中,临界压力与合成气/空气/稀释剂的初始压力之比的临界压力与初始压力的比率相关性。已经开发了燃料中稀释剂浓度(0-10%),稀释剂浓度(0-10%)和氢百分比(5-25%)。

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