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Combustion And Conversion Efficiency Of Nanoaluminum-water Mixtures

机译:纳米铝水混合物的燃烧和转化效率

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An experimental investigation on the combustion behavior and conversion efficiency of nanoaluminum and liquid water mixtures was conducted. Burning rates and chemical efficiency of aluminum-water and aluminum-water-poly (acrylamide-co-acrylic acid) mixtures were quantified as a function of pressure (from 0.12 to 15 MPa), nominal aluminum particle size (for diameters of 38, 50, 80, and 130 nm), and overall equivalence ratios (0.67 < φ < 1.0) under well-controlled conditions. Chemical efficiencies were found to range from 27 to 99% depending upon particle size and sample preparation. Burning rates increased significantly with decreased particle size attaining rates as high as 8 cm/s for the 38 nm diameter particles above approximately 4 MPa. Burning rate pressure exponents of 0.47, 0.27, and 0.31 were determined for the 38, 80, and 130nm diameter particle mixtures, respectively. Also, mixture packing density varied with particle size due to interstitial spacing, and was determined to affect the burning rates at high pressure due to inert gas dilution. The presence of approximately 3% (by mass) poly (acrylamide-co-acrylic acid) gelling agent to the nAl/H_2O mixtures had a small, and for many conditions, negligible effect on the combustion behavior.
机译:对纳米铝和液态水混合物的燃烧行为和转化效率进行了实验研究。定量分析铝-水和铝-水-聚(丙烯酰胺-共丙烯酸)混合物的燃烧速率和化学效率,作为压力(0.12至15 MPa),名义铝粒径(直径为38、50)的函数,80和130 nm),总当量比(0.67 <φ<1.0)在良好控制的条件下。根据颗粒大小和样品制备,化学效率范围为27%至99%。对于直径大于约4 MPa的38 nm直径的颗粒,降低颗粒尺寸的速率达到8 cm / s时,燃烧速率显着提高。对于38、80和130nm直径的颗粒混合物,分别确定了0.47、0.27和0.31的燃烧速率压力指数。另外,由于填隙间距,混合物的填充密度随颗粒尺寸而变化,并且由于惰性气体稀释而被确定为影响高压下的燃烧速率。对于nAl / H_2O混合物,存在约3质量%(质量)的聚丙烯酰胺-丙烯酸共聚物胶凝剂,对燃烧行为的影响很小,并且在许多情况下可忽略不计。

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