300 mum diameter) which penetrate past the flame zone and burn as isolated droplets in the postflame gasses. Detailed kno'/> Trajectories of evaporating droplets in a turbulent combustor using the one-dimensional turbulence model.
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Trajectories of evaporating droplets in a turbulent combustor using the one-dimensional turbulence model.

机译:使用一维湍流模型在湍流燃烧器中蒸发液滴的轨迹。

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摘要

In the incineration of liquid hazardous wastes there exist "rogue" droplets (>300 mum diameter) which penetrate past the flame zone and burn as isolated droplets in the postflame gasses. Detailed knowledge of the droplet burnout points are essential to keeping the destruction removal efficiency in excess of the 99.99% required. The spread in trajectory endpoints of individual evaporating droplet streams injected into a turbulent combustor was investigated numerically. Results are in good agreement with the measurements. Correlation between the spread in the burnout points and initial droplet size, initial droplet velocity, interdroplet spacing, and droplet injection angle were investigated. The numerical investigation utilizes the novel One Dimensional Turbulence (ODT) {lcub}Kerstein (1999){rcub} for the time developing fluid velocity and temperature fields with a new two phase flow model for predicting particle trajectories. The droplet heating/burning model used by Mulholland et al. (1991) is modified for application to this thesis.
机译:在焚化液态危险废物时,存在“无赖”液滴(直径大于300微米),这些液滴渗入火焰区,并在燃烧后的气体中作为孤立的液滴燃烧。对液滴燃尽点的详细了解对于保持销毁去除效率超过所需的99.99%至关重要。数值研究了注入到湍流燃烧器中的各个蒸发液滴流在轨迹终点的分布。结果与测量结果非常吻合。研究了燃尽点的扩散与初始液滴尺寸,初始液滴速度,液滴间间距和液滴注入角之间的关系。数值研究利用新颖的一维湍流(ODT){lcub} Kerstein(1999){rcub}开发流体速度和温度场的时间,并采用了新的两相流模型来预测颗粒轨迹。 Mulholland等人使用的液滴加热/燃烧模型。 (1991)被修改以应用于本论文。

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