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The Cellular Structure of LPG Reacting Fluid

机译:LPG反应流体的细胞结构

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The unstable behavior of cellular premixed flames induced by intrinsic instability was investigated. In this paper, the focus was on the effects of diffusive-thermal instabilities on the formation of LPG cellular flames. Various parameter are assessed which include air-fuel ratio, mixtures velocity, temperature of the bunter plate and liquefied petroleum gas (LPG) as the fuel to study the factors that influenced the formation of cellular flames. The flames propagation speed was determined by using heat flux method From the observations, cellular flames which were occurs spontaneously, take on a non planar shape, often have structures most strongly affected by diffusive thermal phenomena. Cellular instability can occurred in fuel-oxidizer mixture if the diffusivity (D) of the deficient reactant were larger than the thermal conductivity (a), which means the Lewis number is less than unity. In other words heavy-fuel is found to exhibit cellular instability. Burner Plate temperature also contributed to the flame appearance and propagation speed of the cellular flames. From the observation, the cellular structures observed experimentally have no significant effect from the perforation pattern of the burner. The cell sizes of the flames are always larger than the perforation hole in the burner plate. From the result, increased in burner plate temperature would eliminated the cellular flame instability and by lowering the bunter plate temperature would extended the range of the equivalence ratio which the cellular were observed.
机译:研究了由内在不稳定性诱导的细胞预混合火焰的不稳定行为。在本文中,重点是扩散 - 热稳定性对LPG细胞火焰形成的影响。评估各种参数,其包括空燃比,混合物速度,麻风板的温度和液化石油气(LPG)作为研究影响细胞火焰形成的因素的燃料。通过使用来自观察结果的热通量法测定火焰传播速度,自发地发生的细胞火焰,采用非平面形状,通常具有最强烈地受到漫射热现象的结构。如果缺陷反应物的扩散率(D)大于导热率(A),则燃料氧化剂混合物中可以发生细胞不稳定性,这意味着Lewis数小于单位。换句话说,发现重型燃料表现出细胞不稳定性。燃烧板温度也有助于蜂窝火焰的火焰外观和传播速度。从观察开始,观察到的细胞结构从燃烧器的穿孔模式没有显着效果。火焰的电池尺寸总是大于燃烧板中的穿孔孔。从结果中,在燃烧板温度中增加将消除细胞火焰不稳定性,通过降低麻风板温度将延长观察细胞的等效率的范围。

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