脉冲谷物干燥中的传热传质

Mikhail Gennadievich Zagoruiko, Sergei Anatolievich Pavlov, Igor Andreevich Bashmakov, Alexander Ivanovich Shematurin
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引用次数: 0

摘要

用干燥剂持续暴露于谷物的技术并不是最佳的,因为谷物过热的速度比水分蒸发的速度快。有必要降低干燥剂的温度,以减少粮食品质恶化的风险。正因为如此,具有恒定热量供应的谷物干燥机的性能降低。更有前景的是变热源干燥技术。脉冲模态是变模态的一种。这种干燥模式允许,同时保持护照性能的烘干机,以减少比热消耗。本文的目的是计算干燥剂的脉冲持续时间、暂停时间和温度。加热的持续时间取决于传热系数、材料的物理机械性能以及干燥剂与材料之间温度差的对数。沉积的持续时间取决于材料的物理和机械性能,其含水率之比与扩散系数之差的对数。本文介绍了该工艺的传热传质特点及主要工艺参数。关键词:干燥;玉米;传热传质;脉冲模式;干燥剂。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Heat and mass transfer in impulse grain drying
The technology of constant exposure to the grain with a drying agent is not optimal due to the fact that the grain overheats faster than moisture evaporates. It is necessary to lower the temperature of the drying agent to reduce the risk of deterioration in grain quality. Because of this, the performance of grain dryers with a constant heat supply is reduced. More promising is the drying technology with variable heat supply. The pulse mode is one of the varieties of the variable mode. This drying mode allows, while maintaining the passport performance of the dryers, to reduce the specific heat consumption. The purpose of the article is to calculate the pulse duration, pause and temperature of the drying agent. The duration of heating depends on the heat transfer coefficient, the physical and mechanical properties of the material and the logarithm of the temperature difference between the drying agent and the material. The duration of the deposit depends on the physical and mechanical properties of the material, the logarithm of the difference between the ratio of its moisture content and the diffusion coefficient. The article presents the characteristic features of heat and mass transfer and the main parameters of the process. Keywords: drying; corn; heat and mass transfer; pulse mode; drying agent.
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