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首页> 外文期刊>Russian journal of physical chemistry, B. >Diffusion-controlled combustion of gases in the absence of forced convection
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Diffusion-controlled combustion of gases in the absence of forced convection

机译:在没有强制对流的情况下气体的扩散控制燃烧

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A mathematical model for the laminar diffusion combustion of gases in the absence of forced convection is developed. This combustion mode is realized near an orifice in the partition that separates the fuel and oxidizer. The stationary solution, size and shape of the flame, temperature distribution, and profiles of the concentrations of fuel, oxidizer, and combustion products are determined. It is shown that the limiting diameter of the diffusion flame is inversely proportional to the burning rate of an equivalent premixed mixture of the same fuel and oxidizer, whereas the flame length is proportional to the diameter of the orifice. The unsteady (quasi-stationary) solution to this problem for the case where the gas is confined in a finite-volume vessel is obtained. The time it takes the flame to approach the partition of the vessel with fuel and enter inside is determined. Experiments on studying the diffusion combustion of natural gas in the absence of forced convection near orifices and a slit in the partition separating the gaseous fuel and oxidizer in a finite-volume vessel are performed. The time of combustion is obtained. Depending on the orifice diameter and slit width, three modes of diffusion combustion were identified: combustion above the partition ending in flame extinction, combustion with a breakthrough, and combustion inside the vessel (submerged flame).
机译:建立了在没有强制对流的情况下气体层流扩散燃烧的数学模型。该燃烧模式在分隔燃料和氧化剂的隔板的孔口附近实现。确定固定溶液,火焰的大小和形状,温度分布以及燃料,氧化剂和燃烧产物的浓度分布。结果表明,扩散火焰的极限直径与相同燃料和氧化剂的等价预混混合物的燃烧速率成反比,而火焰长度与孔口直径成正比。对于气体被限制在有限体积的容器中的情况,获得了该问题的非稳态(拟平稳)解决方案。确定火焰用燃料接近容器的隔板并进入内部所花费的时间。进行了实验研究,研究了在孔口附近没有强制对流的情况下天然气的扩散燃烧,以及在有限体积的容器中分隔气态燃料和氧化剂的隔板中的狭缝的实验。获得燃烧时间。根据孔的直径和狭缝宽度,确定了三种扩散燃烧模式:隔板上方的燃烧以火焰熄灭结束,突破燃烧和容器内部燃烧(淹没火焰)。

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