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Heat Transfer within Direct Heating Integrated Moving Bed Torrefier by Method of Lines

机译:通过线路直接加热集成移动床内的热传递通过线路的方法

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This work deals with the determination of the temperature profile within a direct heating moving bed torrefier in order to determine its minimum column height. A thermal model based on eulerian-eulerian two-phase solid-gas theory was performed and solved with the method of lines. In addition, this study allows to investigate the effect of the biomass particle size on the minimum torrefier column height. This investigation was performed by changing, simultaneously, the diameter of particles and the minimum fluidization velocity of the bed. Then, the calculations were made for a counter-current torrefaction reactor of 30 style="font-family:;" "=""> style="font-family:Verdana;">cm in diameter and style="font-family:Verdana;">for style="font-family:Verdana;"> 5 style="font-family:;" "=""> style="font-family:Verdana;">kg/h of the feed rate of raw sugarcane bagasse. style="font-family:Verdana;"> Results show that the height of the reactor column must be at least 30 cm for that are 1 mm in diameter and 108 cm for particles that are 2 mm in diameter.
机译:这项工作涉及在直接加热移动床中的温度曲线确定温度曲线,以确定其最小柱高度。采用线路方法进行并解决了基于欧拉 - 欧拉两相固体天然气理论的热模型。此外,该研究允许研究生物质粒度对最小托雷弗柱高度的影响。通过同时改变颗粒的直径和床的最小流化速度来进行该研究。然后,对30 style =”font-family:verdana;“>直径厘米和 style =”font-family:verdana;“>对于 style =”字体-Family:Verdana;“> 5 style =”font-family :;“”=“> style =”font-family:verdana;“> kg / h饲料甘蔗棒的饲料速率。 style =“font-family:verdana;”>结果表明,反应器柱的高度必须至少为30厘米,直径为1 mm对于直径为2mm的颗粒,108厘米。

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