首页> 外文期刊>Journal of Stored Products Research >Temperature fluctuations and moisture migration in wheat stored for 15 months in a metal silo in Canada.
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Temperature fluctuations and moisture migration in wheat stored for 15 months in a metal silo in Canada.

机译:在加拿大金属筒仓中储存的小麦温度波动和水分迁移。

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Temperatures and moisture contents inside a metal silo filled with 20 t of wheat were monitored from August 2003 to October 2004 in Western Canada. In the summer and then repeated in the autumn of 2005, grain moisture contents inside small columns, inserted in the top of the grain bulk in the same metal silo, were measured after 4 and 8 weeks. The columns had the following configurations: (1) both the top and bottom of the column were open; (2) the top of the column was open and the bottom was sealed; and (3) the top of the column was sealed and the bottom was open. During the 15-month period, headspace temperature averaged 2.9+or-0.2 degrees C higher than that of the ambient air with a maximum of 18.3 degrees C and a minimum of 0 degrees C. There was larger temperature fluctuation in the headspace than inside the grain mass. The average temperature gradient was 5.09+or-1.24 degrees C/m inside the grain mass. The highest temperature gradient was 32.4 degrees C/m and it was located at the center of the bin at 1.6 m high. "Inside" grain had a lower moisture change than the surface grain. Grain in the top section of the column with the column configuration of Top End Open had the largest change of its moisture content, and grain in the middle section of the column with any of the configurations did not change. Grain inside the small columns at different locations in the silo had different moisture movement trends. These trends were consistent with the measured moisture migration in the entire silo. These results confirm that even in a small silo there were temperature gradients large enough to drive air movement and the induced convection currents could cause moisture migration.
机译:从2003年8月到2004年10月,在加拿大西部填充有20吨小麦的金属筒仓内的温度和水分含量。在夏季然后在2005年秋天重复,小柱内的谷物水分含量,插入相同金属筒仓的晶粒块的顶部,在4和8周后测量。列具有以下配置:(1)列的顶部和底部都是打开的; (2)柱的顶部打开,底部被密封; (3)柱的顶部被密封,底部打开。在15个月的时间内,顶空温度平均比环境空气高2.9 +或-0.2℃,最大为18.3摄氏度,最小0℃。顶空中的温度波动比内部更大谷物质量。平均温度梯度在粒度内为5.09 +或-1.24摄氏度。最高温度梯度为32.4摄氏度,它位于箱的中心,高1.6米。 “内部”谷物的水分变化低于表面粒。顶部顶部顶部的颗粒在顶端开放的柱子上的颗粒具有最大的水分含量的变化,并且柱中的粒子在柱中的任何配置都没有改变。筒仓不同地点内的小柱内的谷物具有不同的水分运动趋势。这些趋势与整个筒仓中测量的水分迁移一致。这些结果证实,即使在一个小筒仓中,也有足够大的温度梯度来驱动空气运动,并且诱导的对流电流可能导致水分迁移。

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