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Consumption speed and burning velocity in counter-gradient and gradient diffusion regimes of turbulent premixed combustion

机译:湍流预混燃烧的反梯度和梯度扩散状态下的消耗速度和燃烧速度

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Flame surface density, local consumption speed, and turbulent burning velocity of turbulent premixed V-shaped flames were investigated experimentally. A novel experimental apparatus was developed, which allows for producing relatively weak, moderate, and intense turbulence conditions. The experiments were performed for three turbulence intensities of about 0.02, 0.06, and 0.17, corresponding to weak, moderate, and intense turbulence conditions, respectively. For each turbulence condition, three mean bulk flow velocities of 4.0, 6.2, and 8.3 m/s, along with two fuel-air equivalence ratios of 0.6 and 0.7 were tested. The results show that intensifying the turbulence conditions significantly affects the flame front characteristics. Specifically, with increasing the turbulence intensity, the mean-progress-variable at which the flame surface density features a maximum decreases from values greater than 0.5 to values smaller than 0.5. This was argued to be linked to the switch of the tested experimental conditions from regime of counter-gradient to that of gradient diffusion. Spatially-averaged values of the local consumption speed and burning velocity were investigated in the present study. The results show that, for all experimental conditions tested, the local consumption speed varies between the unstretched laminar flame speed and 1.5 times the unstretched laminar flame speed. However, the spatially-averaged burning velocity is significantly dependent on the experimental conditions tested. Specifically, the result show that, for relatively intense turbulence conditions, the spatially-averaged turbulent burning velocity is proportional to the root-mean-square of the streamwise velocity. (C) 2014 The Combustion Institute. Published by Elsevier Inc. All rights reserved.
机译:实验研究了湍流预混V形火焰的火焰表面密度,局部消耗速度和湍流燃烧速度。开发了一种新颖的实验设备,该设备可以产生相对较弱,中等和强烈的湍流条件。对大约0.02、0.06和0.17的三种湍流强度分别进行了实验,分别对应于弱,中等和强烈湍流条件。对于每种湍流条件,测试了4.0、6.2和8.3 m / s的三个平均总体流速,以及两个0.6-0.7的燃料-空气当量比。结果表明,增加湍流条件会显着影响火焰前锋特性。具体地,随着湍流强度的增加,火焰表面密度最大的平均进程变量从大于0.5的值减小到小于0.5的值。有人认为这与测试实验条件从反梯度体制向梯度扩散体制的转变有关。在本研究中调查了当地消耗速度和燃烧速度的空间平均值。结果表明,在所有测试的实验条件下,局部消耗速度在未拉伸层流火焰速度和未拉伸层流火焰速度的1.5倍之间变化。但是,空间平均燃烧速度明显取决于测试的实验条件。具体而言,结果表明,在相对强烈的湍流条件下,空间平均湍流燃烧速度与流向速度的均方根成比例。 (C)2014年燃烧研究所。由Elsevier Inc.出版。保留所有权利。

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