小麦在提升筒仓中纵向和横向贮藏过程中温度场分布的研究

К.B. Gurieva, V. V. Looze, S. Beletskiy
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摘要

本文分析了2018年3月至2019年3月预制混凝土提升机南侧筒仓壁表面和室外筒仓内部外部空气温度季节性波动引起的温度场。本文分析了粮仓上下水平层的粮食温度数据,以及粮仓加热和冷却过程中上下层的温度场分布。对比分析了粮仓的加热和冷却速率以及仓内温差对储粮过程中粮食吸湿过程的影响。在对实验数据进行统计处理的过程中,得到了以下趋势:在晶粒的深层,当晶粒被加热时,温度较低,而当晶粒被冷却时,温度高于近壁层。晶粒质量的温度变化率取决于晶粒在不同层次和水平层的位置。平均冷却速率低于粮食升温速率,在年循环过程中,粮仓中储存的粮食有可能积累热量。考虑了热导率对仓内湿度变化的影响。年周期分析结果表明,粒间空间相对湿度呈周期性变化,夏秋季(5 ~ 11月)相对湿度高于长期贮藏推荐的最佳值。为了消除粮食受潮的风险,在长期储存过程中,需要在粮仓之间定期移动粮食。
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The study of the distribution of temperature fields of wheat grain along the vertical levels and horizontal layers during storage in the elevator silo
This article presents an analysis of the temperature fi elds caused by seasonal fluctuations in the temperature of the outside air on the surface of the walls of the silos and inside the outdoor silo located on the south side of the precast concrete elevator for the annual cycle from March 2018 to March 2019. The paper analyzes the data of grain temperature along the horizontal layers of the silo at the upper and lower levels and the distribution of temperature fields over the upper and lower levels of the silo during heating and cooling of the grain. A comparative analysis of the heating and cooling rates and the effect of temperature differences in the silo on moisture absorption processes in the grain mass during storage is carried out. During the statistical processing of the experimental data, the following trends were obtained: in the deep layers of the grain, when the grain is heated, the temperature is lower, and when the grain is cooled, the temperature is higher than in the nearwall layers. The rate of temperature change in the grain mass depends on the location of the grain at different levels and on the horizontal layer. The average cooling rates were lower than the grain heating rates, and during the annual cycle, heat accumulation in the grain mass stored in the silo is possible. The infl uence of thermal moisture conductivity on the change in the humidity regime in the silo is considered. The results for the annual cycle indicate a cyclical change in the relative humidity of the intergranular space and an increase in the relative humidity in the summer-autumn period (from May to November) above the optimal value recommended for long-term storage. To eliminate the risks of grain moisture, the need for periodic movement of grain from silo to silo during long-term storage is substantiated.
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