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ISS Droplet Combustion Experiments - Uncertainties in Droplet Sizes and Burning Rates

机译:ISS液滴燃烧实验-液滴尺寸和燃烧速率的不确定性

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摘要

Methodologies are developed for evaluating uncertainties in droplet size measurements and burning rates for droplet combustion experiments that have been performed on the International Space Station. Different uncertainty sources are considered and propagated into the combined standard uncertainties via the Taylor series method. The local polynomial method is used to provide estimates of instantaneous burning rates. Results from analyses of non-sooting (methanol) or lightly sooting (heptane) droplets as well as moderately sooting (decane/propylbenzene) droplets are presented. Ninety-five percent expanded uncertainties in droplet diameters and burning rates are typically about 0.1 mm and 0.005 mm~2/s, respectively, for methanol and heptane droplets and 0.1 mm and 0.02 mm~2/s for decane/propylbenzene droplets, though uncertainties can be larger during ignition and extinction events.
机译:为在国际空间站上进行的液滴燃烧实验评估液滴尺寸测量和燃烧速率不确定性的方法已经开发出来。考虑不同的不确定性来源,并通过泰勒级数方法传播到组合的标准不确定性中。局部多项式方法用于提供瞬时燃烧速率的估计。给出了非吸气(甲醇)或轻烟气(庚烷)液滴以及中烟气(癸烷/丙基苯)液滴的分析结果。甲醇和庚烷液滴的雾滴直径和燃烧速率的百分之九十五的不确定度通常分别约为0.1 mm和0.005 mm〜2 / s,癸烷/丙基苯液滴的雾滴直径和燃烧速率分别为0.1 mm和0.02 mm〜2 / s,尽管存在不确定性在点火和熄灭事件中可能更大。

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