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INVESTIGATIONS ON THERMAL RADIATIVE CHARACTERISTICS OF LPG COMBUSTION: EFFECT OF ALUMINA NANOPARTICLES ADDITION

机译:液化石油气燃烧热辐射特性的研究:铝纳米颗粒添加的影响

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Use of nanoparticles in thermal applications has attained large interest in recent years because of their improved heat transfer characteristics. The effect of nanoparticle addition on radiative heat transfer characteristics in gaseous fuel combustion has been studied in this research. Radiative heat fluxes (RHFs) are considered to play a very important role in improving the thermal efficiency in furnaces by controlling the heat transfer from the flame to the furnace wall. The current research work is focused on investigating the effect of addition of noncombustible metal oxide (Al2O3) nanoparticles on radiative heat transfer capabilities in liquefied petroleum gas (LPG) combustion. Concentration of nanoparticles in water suspensions was varied up to 3.40 wt% to avoid choking of the feeding capillary. Temperature data inside the furnace was obtained and significantly lower peak temperatures were observed with lower concentration of nanoparticles, and with an increase in concentration, peak temperature also increases. Heat flux data was recorded at the furnace wall, and heat fluxes were significantly influenced by varying the nanoparticle concentration. An overall increase in RHF was observed, with increased contribution of RHF to total heat flux (THF). A higher contribution of RHF led to a substantial increase in the THF.
机译:近年来,由于其改善的热传递特性,在热应用中使用纳米颗粒引起了广泛的兴趣。本研究研究了纳米颗粒添加对气体燃料燃烧中辐射传热特性的影响。通过控制从火焰到炉壁的热传递,辐射热通量(RHF)被认为对提高炉子的热效率起着非常重要的作用。当前的研究工作集中在调查在液态石油气(LPG)燃烧中添加不可燃金属氧化物(Al2O3)纳米颗粒对辐射传热能力的影响。为了避免进料毛细管的堵塞,水悬浮液中纳米颗粒的浓度变化高达3.40 wt%。获得了炉内的温度数据,并观察到较低的纳米粒子浓度会明显降低峰值温度,并且随着浓度的增加,峰值温度也会升高。在炉壁处记录了热通量数据,并且通过改变纳米颗粒浓度显着影响了热通量。观察到RHF的总体增加,其中RHF对总热通量(THF)的贡献增加。 RHF的较高贡献导致THF的大幅增加。

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