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Ignition and Combustion of Boron Particles at One to Ten Standard Atmosphere

机译:一到十个标准大气压下硼粒子的着火和燃烧

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摘要

The ignition and combustion of boron particles are investigated at high pressures in the range of 1-10 atm. Observation results show that the combustion of 2 μm amorphous boron particles occurs in two continuous stages. The combustion times of boron particles are measured. The first stage combustion time decreases slightly with an increase of pressure, whereas the second stage combustion tune shows strong dependence on pressure. Measured first stage combustion times are compared with the predictions of two typical numerical models, the King model and the Yeh and Kuo model. Both models overpredict the experimental data at higher pressures. The governing equations of the two models have been analyzed to reveal the reasons for the inaccuracy of the predictions. A new model has been developed on the basis of the Yeh and Kuo model, by introducing B(s) + 3/4O_2(g) → 1/2B_2O_3(l) as the global reaction of B and O_2 The prediction of the new model is in good agreement with experimental results, especially under high-pressure conditions. This study can bridge the gap between atmospheric pressure data and the higher-pressure data of previous work.
机译:在1-10 atm的高压下研究了硼粒子的着火和燃烧。观察结果表明,2μm非晶态硼颗粒的燃烧分两个连续阶段发生。测量硼颗粒的燃烧时间。随着压力的增加,第一阶段的燃烧时间略有减少,而第二阶段的燃烧曲调则显示出对压力的强烈依赖性。将测得的第一阶段燃烧时间与两个典型数值模型(King模型以及Yeh和Kuo模型)的预测值进行比较。两种模型都在较高压力下高估了实验数据。分析了两个模型的控制方程,以揭示预测不准确的原因。在Yeh和Kuo模型的基础上,通过引入B(s)+ 3 / 4O_2(g)→1 / 2B_2O_3(l)作为B和O_2的全局反应,开发了一个新模型。与实验结果非常吻合,尤其是在高压条件下。这项研究可以弥合大气压数据与先前工作的高压数据之间的差距。

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  • 来源
    《Journal of propulsion and power》 |2014年第3期|760-764|共5页
  • 作者单位

    Zhejiang University, 310027 Hangzhou, People's Republic of China,State Key Laboratory of Clean Energy Utilization;

    Zhejiang University, 310027 Hangzhou, People's Republic of China,State Key Laboratory of Clean Energy Utilization;

    Zhejiang University, 310027 Hangzhou, People's Republic of China,Institute of Advanced Technology;

    Zhejiang University, 310027 Hangzhou, People's Republic of China,State Key Laboratory of Clean Energy Utilization;

    Zhejiang University, 310027 Hangzhou, People's Republic of China,State Key Laboratory of Clean Energy Utilization;

    Zhejiang University, 310027 Hangzhou, People's Republic of China,State Key Laboratory of Clean Energy Utilization;

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