木胶+稻壳混合料对生物质颗粒燃烧温度、燃烧速率和燃烧压力的影响

R. Subagyo
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引用次数: 0

摘要

对能源日益增长的需求导致燃料化石的枯竭。为了克服这一点,有必要利用生物质和生物质废弃物。本研究的目的是模拟由明胶木和稻壳混合制成的生物颗粒密度对燃烧温度、速度和压力的影响。方法采用ANSYS仿真并结合文献综述。结果表明,稻壳成分的增加对燃烧速率的降低有影响,这是由于构成材料的颗粒的热值所致。其中稻壳热值较低对燃烧速率有影响。密度大的颗粒会影响燃烧速度,从而延长燃烧时间。球团的密度受球团成型压力的影响,压力越大,燃料密度越大,密度大。燃烧空气压力在100%胶料成分时最高,在100%壳料成分时最低。这表明稻壳成分的加入降低了燃烧压力,反之亦然
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of Variation of Mixture (Wood Gelam+Rice Husk) on Bio-Pellet on the Value of Temperature, Rate and Pressure of Combustion
The increasing demand for energy causes the depletion of fuel fossil. To overcome this, it is necessary to utilize biomass and biomass waste. The purpose of this study was to simulate the effect of bio-pellet density on temperature, rate and pressure of combustion made from a mixture of gelam wood and rice husk. The method uses ANSYS simulation with literature review. The results showed that the increasing composition of rice husks had an effect on the decreasing combustion rate, this was due to the calorific value of the pellets making up the material. Where the lower calorific value of rice husk has an effect on the rate of combustion. Pellets that have a large density affect the rate of combustion so that it extends the burning time. The density of pellets is influenced by the pressure of pellet molding, the greater the pressure makes the fuel denser and has a large density. The highest combustion air pressure occurs at 100% gelam composition and the lowest at 100% husk composition. This shows that the addition of rice husk composition reduces the combustion pressure and vice versa applies to the addition of gelam composition
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