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Experimental research on the flame temperature of biodiesel fuel combustion in open-air conditions

机译:露天条件下生物柴油燃烧火焰温度的实验研究

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Biodiesel fuel is a non-fossil fuel and an important renewable fuel. It can be obtained from vegetable oil or animal fats, and has recently been suggested as an alternative fuel for immediate utilization as a surrogate for petroleum-based fuels. The combustion of biodiesel fuel or blended with diesel fuel in compression ignition (CI) engines is general results in lower smoke, PM, CO and HC emissions compared to standard diesel fuel, while NOx emission is greater in different extent. Flame temperature of biodiesel fuel combustion plays a very important role on the formation of NOx emission, which is described by Zeldovich mechanism. Thus, studying temperature profile during biodiesel combustion can provide useful insights to the formation and destruction of NOx. The main objective of this work is to investigate the effect of blending biodiesel fuel with diesel fuel on open air flames temperature. The experiments were carried out by thermocouple measurements of local flame temperatures of wick-generated open air flames. The relationships between blend proportions and flame temperature of different layers, number and distribution of high temperature points, relative and mean flame temperature, adiabatic flame temperature, rate of fuel combustion were obtained. In general, it was found that along with the proportions of biodiesel fuel in the blends increases, temperature of outer flame, numbers of high temperature points and their corresponding area, relative and mean flame temperature, adiabatic flame temperature are all increased, while adiabatic flame temperature is decreased. The main reasons are due to higher oxygen content and lower calorific value of biodiesel fuel.
机译:生物柴油是一种非化石燃料,也是一种重要的可再生燃料。它可以从植物油或动物脂肪中获得,最近已被推荐作为替代燃料,可以立即用作石油基燃料的替代品。与标准柴油相比,压缩点火(CI)发动机中生物柴油燃料或与柴油混合的燃料的燃烧通常会降低烟气,PM,CO和HC排放,而NOx排放则有所不同。生物柴油燃料燃烧的火焰温度在NOx排放的形成中起着非常重要的作用,这可以通过Zeldovich机理来描述。因此,研究生物柴油燃烧过程中的温度分布可以为NOx的形成和破坏提供有用的见解。这项工作的主要目的是研究将生物柴油与柴油混合对露天火焰温度的影响。通过热电偶测量灯芯产生的露天火焰的局部火焰温度来进行实验。得到了混合比例与不同层火焰温度,高温点数量和分布,相对和平均火焰温度,绝热火焰温度,燃料燃烧率之间的关系。通常,发现随着掺混物中生物柴油燃料的比例增加,外火焰温度,高温点数目及其相应区域,相对和平均火焰温度,绝热火焰温度均增加,而绝热火焰温度降低。主要原因是由于较高的氧气含量和较低的生物柴油燃料的热值。

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