大米、玉米流化床干燥机最佳干燥参数研究

Lore Joy Alarcio, Lolit Badua, Reinalyn Viaña, Nemesio Macabale Jr.
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引用次数: 1

摘要

本研究旨在建立一个仿真模型,该模型可以估计流化床干燥机的最佳干燥参数,如干燥时间、减湿率,并提供干燥给定体积颗粒所需的能量和燃料消耗的粗略计算。结果表明,在干燥温度为1400C、床高为0.04m、风量为2.3 m/s的条件下,稻谷的干燥时间较短,干燥速率较高,分别为164 min和68.07 kg/hr。而对于玉米,设置1700C的干燥温度、0.1m的床高和2.7 m/s的固定风量,可以获得更短的干燥时间和更高的干燥速度,分别为45分钟和369.9 kg/hr。模拟结果还表明,采用较高的温度、较大的气流和较低的床层高度可以缩短干燥时间,从而提高干燥速度。在干燥能量和燃料消耗方面,结果表明,干燥温度越高,所需的能量和燃料消耗越高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimum Drying Parameters of Fluidized Bed Dryer Operation for Rice and Corn
This study was carried out to develop a simulation model that can estimate the optimal drying parameters of a fluidized bed dryer such as drying time, moisture reduction rate and provide rough calculation of energy required and fuel consumption to dry a given volume of grains. Results shows that drying set up of 1400C drying temperature, bed height of 0.04m and an airflow rate of 2.3 m/s for paddy can provide lesser drying time and higher drying rate with a value of 164 minutes and 68.07 kg/hr, respectively. While for corn, a set-up of 1700C drying temperature, bed height of 0.1m and the fixed airflow rate of 2.7 m/s can deliver lesser drying time and higher drying rate with a value of 45 minutes and 369.9 kg/hr, respectively. The simulation results also showed that using a higher temperature, higher airflow and lower bed height gives a lesser drying time which also leads to higher drying rate. In terms of drying energy and fuel consumption, the results showed that the higher the drying temperature, the higher the energy and fuel consumption is required.
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