首页> 外文期刊>Journal of Heat Transfer >Effect of Particle Concentration on Shape Deformation and Secondary Atomization Characteristics of a Burning Nanotitania Dispersion Droplet
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Effect of Particle Concentration on Shape Deformation and Secondary Atomization Characteristics of a Burning Nanotitania Dispersion Droplet

机译:颗粒浓度对纳米二氧化钛分散液滴形状变形和二次雾化特性的影响

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Secondary atomization characteristics of burning bicomponent (etltanol-water) droplets containing titania nanoparticles (NPs) in dilute (0.5% and 1 wt.%) and dense concentrations (5% and 7.5 wt.%) are studied experimentally at atmospheric pressure under normal gravity. It is observed that both types of nanofuel droplets undergo distinct modes of secondary breakup, which are primarily responsible for transporting particles from the droplet domain to the flame zone. For dilute nanosuspensions, disruptive response is characterized by low intensity atomization modes that cause small-scale localized flame distortion. In contrast, the disruption behavior at dense concentrations is governed by high intensity bubble ejections, which result in severe disruption of the flame envelope.
机译:在常压和大气压下,通过实验研究了燃烧的双组分(乙醇-水)液滴的二次雾化特性,该液滴包含稀(0.5%和1 wt。%)和浓浓度(5%和7.5 wt。%)的二氧化钛纳米颗粒(NPs) 。观察到两种类型的纳米燃料液滴均经历不同的二次分解模式,这主要负责将颗粒从液滴域传输到火焰区。对于稀释的纳米悬浮液,破坏性响应的特征在于低强度雾化模式,该模式会导致局部局部火焰畸变。相反,在高浓度下的破坏行为是由高强度的气泡喷射控制的,这导致火焰包络的严重破坏。

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