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Numerical Approach to Wood Pyrolysis in Considerating Heat Transfer in Reactor Chamber
[摘要] Pyrolysis is the decomposition process of solid biomass into gas, tar and charcoal through thermochemical methods. The composition of biomass consists of cellulose hemi cellulose and lignin, which each will decompose at different temperatures. Currently pyrolysis has again become an important topic to be discussed. Many researchers make and install the pyrolysis reactor to convert biomass waste into clean energy hardware that can be used to help supply energy that has a crisis. Additionally the clean energy derived from biomass waste is a renewable energy, in addition to abundant source also reduce exhaust emissions of fossil energy that causes global warming. Pyrolysis is a method that has long been known by humans, but until now little is known about the phenomenon of the pyrolysis process that occurs in the reactor. One of the Pyrolysis's phenomena is the heat transfer process from the temperature of the heat source in the reactor and heat the solid waste of biomass. The solid waste of biomass question in this research is rubber wood obtained from one of the company's home furnishings. Therefore, this study aimed to describe the process of heat transfer in the reactor during the process. ANSYS software was prepared to make the simulation of heat transfer phenomena at the pyrolysis reactor. That's the numerical calculation carried out for 1200 seconds. Comparison of temperature performed at T1, T2 and T3 to ensure that thermal conductivity is calculated by numerical accordance with experimental data. The distribution of temperature in the reactor chamber specifies the picture that excellent heat conduction effect of the wood near or attached to wooden components, cellulose, hemicellulose and lignin down into gas.
[发布日期]  [发布机构] Mechanical Engineering in Sekolah Tinggi Teknik Harapan Medan, Indonesia^1;Industrial Engineering in Sekolah Tinggi Teknik Harapan Medan, Indonesia^2
[效力级别] 自然科学 [学科分类] 
[关键词] Decomposition process;Distribution of temperature;Heat conduction effects;Heat transfer process;Numerical approaches;Numerical calculation;Simulation of heat transfer;Thermochemical method [时效性] 
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