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Study experimental of flame-spread rate and spread limit distance of bio-solar droplets in microgravity combustion

机译:研究微燃烧燃烧中生物太阳能液滴的火焰扩散率和扩散距离的实验

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The most important issues in spray combustion science are how to understand the mechanism of the combustion of liquid fuel spray, especially in the flame-spread phenomenon. In spray combustion, combustion is the existence of the group is very important in order to obtain the stable combustion. Therefore, the flame spread among fuel droplets affects the occurrence of stable combustion in the spray combustion engine. This study was focused on phenomenon on diesel combustion engines. This research was conducted to study the behavior of flame spread rate of flame spread and limit the distance of bio-diesel liquid droplets. This research method was used experimental research. Microgravity condition was Obtained through the free fall tower with the height of the tower used is 6 m. Observed droplets suspended was placed on SiC fibers with different distance and droplet size 1 mm. This study observed Also the influence of the flame propagation direction of the burning droplet to the next burning droplets that lies in the direction and perpendicular to the direction of the flame propagation. The results showed that the bio-diesel fuel droplet Igniter (I) could burn next droplet (A)at a distance (S/d_0) = 8.
机译:喷雾燃烧科学中最重要的问题是如何理解液体燃料喷雾燃烧机制,特别是在火焰蔓延现象中。在喷雾燃烧中,燃烧是本组的存在是非常重要的,以获得稳定的燃烧。因此,燃料液滴之间的火焰散布会影响喷雾燃烧发动机中稳定燃烧的发生。本研究专注于柴油燃烧发动机上的现象。进行了该研究,研究了火焰扩散的火焰蔓延的行为,并限制生物柴油液滴的距离。该研究方法是使用实​​验研究。通过自由落塔通过自由落塔获得微沉降条件,其中塔的高度为6米。观察到悬浮的液滴置于具有不同距离和液滴尺寸1mm的SiC纤维上。该研究还观察到燃烧液滴的火焰传播方向对在方向上和垂直于火焰传播方向上的下一个燃烧液滴的影响。结果表明,生物柴油燃料液滴点火器(I)可以在距离(S / D_0)= 8处燃烧下一个液滴(a)。

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