Design, Production Cost, and Air Flow Distribution of Biomass Pellet Furnace

H. Sutanto, S. Suyitno, W. E. Juwana, Tito Gusti Nurrohim
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Abstract

Biomass attracts a great deal of attention to be converted into green fuels in the form of pellets. The furnace is needed to burn pellets to generate heat up to 300 kW. In addition to meeting the heat capacity needs of the small and medium-sized industries, furnaces must also be competitive in terms of price. The purpose of this study is therefore to obtain details of the cost of manufacturing the furnace and the model of air flow that occurs in the furnace. The cost of production of the furnace includes manufacturing costs, assembly costs, machining and repair costs. The findings revealed that the key portion of the cost of the furnace was a material cost of 77%. The findings of the simulation showed that the total pressure difference of up to 850 Pa and had to be resolved by air-supplying blowers. The gas velocity ranges from 2 to 10 m/s and rises significantly near the exit to 42 m/s.
生物质颗粒炉的设计、生产成本和气流分布
生物质以颗粒形式转化为绿色燃料引起了人们的极大关注。该炉需要燃烧颗粒以产生高达300千瓦的热量。除了满足中小型工业的热容需求外,炉子还必须在价格方面具有竞争力。因此,本研究的目的是获得制造炉的成本和炉内空气流动模型的详细信息。电炉的生产成本包括制造成本、装配成本、加工成本和维修成本。研究结果表明,该炉成本的关键部分是77%的材料成本。模拟结果表明,总压差高达850 Pa,必须由送风鼓风机来解决。气速范围为2 ~ 10 m/s,在出口附近显著上升至42 m/s。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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