首页> 外文会议>ASME Internal Combustion Engine Division Technical Conference >EXPERIMENTAL INVESTIGATION OF SPRAY AND COMBUSTION CHARACTERISTICS OF SOYBEAN BIODIESEL IN A CONSTANT-VOLUME COMBUSTION CHAMBER: THE EFFECTS OF FUEL AND AMBIENT GAS TEMPERATURE
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EXPERIMENTAL INVESTIGATION OF SPRAY AND COMBUSTION CHARACTERISTICS OF SOYBEAN BIODIESEL IN A CONSTANT-VOLUME COMBUSTION CHAMBER: THE EFFECTS OF FUEL AND AMBIENT GAS TEMPERATURE

机译:恒定燃烧室中大豆生物柴油喷雾和燃烧特性的实验研究:燃料和环境气体温度的影响

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Effects of fuel and ambient gas temperature on the spray and combustion characteristics of soybean biodiesel were studied in a constant-volume combustion chamber. Four different fuels or fuel blends including BO, B20, B50 and B100 were investigated experimentally. The soot mass data were obtained via a new technique called forward illumination light extinction (FILE). The ambient gas temperature was varied from 700 K to 1200 K. To simulate the engine operating conditions, the ambient oxygen concentration and its density were kept at 21% and 15 kg/m~3, respectively. A higher peak pressure is found as the biodiesel content decreases. B20, B50 and B100 have a shorter ignition delay than B0 and the ignition delay decreases with increasing biodiesel content. The liquid penetration decreases with decreasing biodiesel content. Moreover, the integrated natural flame luminosity (INFL) increases with decreasing biodiesel content. Shorter flame (i.e., soot luminosity) duration and a longer delay between start of combustion (SOC) and the appearance of flame are found as the biodiesel content increases. The flame duration also increases with increasing ambient gas temperature for all fuels. Soot is lower and appears later at a lower ambient gas temperature, while it is burned out at around the same time. Near-zero soot mass was observed for all tested fuels at 700 K. A shorter soot formation process is observed for biodiesel fuels. The soot reduction using B20 and B50 is not obvious compared to B0 at a low temperature. But under the ordinary diesel engine operating condition at 1000 K, the soot reduction is significant. It is also found that the soot can be reduced by 60% and above when B100 is used in this study.
机译:在恒定体积燃烧室中研究了燃料和环境气体温度对大豆生物柴油喷雾和燃烧特性的影响。在实验上调查了四种不同的燃料或包括Bo,B20,B50和B100的燃料混合物。通过称为前向照明光灭火(文件)的新技术获得烟灰质量数据。环境气体温度从700 k到1200k变化。为了模拟发动机操作条件,将环境氧浓度及其密度分别保持在21%和15kg / m〜3。发现较高的峰值压力作为生物柴油含量降低。 B20,B50和B100具有比B0更短的点火延迟,随着生物柴油含量的增加而降低点火延迟。液体渗透率随着生物柴油含量的降低而降低。此外,通过降低生物柴油含量来增加综合天然火焰亮度(血液)增加。较短的火焰(即烟灰亮度)持续时间和燃烧开始(SOC)之间的延迟延迟,并且发现作为生物柴油含量增加的火焰的外观。随着所有燃料的环境气体温度增加,火焰持续时间也增加。烟灰较低,稍后出现在较低的环境气体温度下,同时在左右烧坏。对于700K的所有测试燃料,观察到接近零烟尘。对于生物柴油燃料,观察到较短的烟灰形成过程。与低温下的B0相比,使用B20和B50的烟灰降低不明显。但在普通的柴油发动机运行条件下,烟灰减小是显着的。还发现,当本研究中使用B100时,烟灰可以减少60%及更高版本。

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