Aboalhamayie Ahmed, Festa Luigi, Ghamari Mohsen
Department of Mechanical Engineering and Engineering Management, Wilkes University, Wilkes-Barre, PA 18766, USA.
Nanomaterials (Basel). 2019 Sep 11;9(9):1297. doi: 10.3390/nano9091297.
Adding nanoparticles to liquid fuel is known to promote its combustion characteristics through improving several thermo-physical properties. This study investigates the effects of adding carbon nanoparticles on thermal conductivity and evaporation rate of liquid jet fuel. Multi-walled carbon nanotubes, activated carbon nanoparticles, and graphene nanoplatelets were added to jet fuel at different concentrations to prepare colloidal suspensions. Thermal conductivity is determined by passing known amounts of heat through a very thin layer of fuel and measuring temperature difference across its thickness. A fiber-supported droplet technique is also used to evaluate evaporation rate due to force convection of a hot inert gas. It is observed that both thermal conductivity and evaporation rate increase as a result of nanoparticle addition. Since there is no radiation heat transfer mechanism, the increase in evaporation rate is concluded to be only due to enhanced thermal conductivity.
已知向液体燃料中添加纳米颗粒可通过改善多种热物理性质来提升其燃烧特性。本研究考察了添加碳纳米颗粒对液体喷气燃料热导率和蒸发速率的影响。将多壁碳纳米管、活性炭纳米颗粒和石墨烯纳米片以不同浓度添加到喷气燃料中,制备胶体悬浮液。热导率是通过使已知热量穿过非常薄的一层燃料并测量其厚度上的温差来确定的。还使用纤维支撑液滴技术来评估由于热惰性气体的强制对流导致的蒸发速率。观察到添加纳米颗粒后热导率和蒸发速率均增加。由于不存在辐射传热机制,因此得出蒸发速率的增加仅归因于热导率的增强。