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首页> 外文期刊>Transactions of the ASABE >THREE-DIMENSIONAL TRANSIENT HEAT, MASS, AND MOMENTUM TRANSFER MODEL TO PREDICT CONDITIONS OF CANOLA STORED INSIDE SILO BAGS UNDER CANADIAN PRAIRIE CONDITIONS: PART II. MODEL OF CANOLA BULK TEMPERATURE AND MOISTURE CONTENT
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THREE-DIMENSIONAL TRANSIENT HEAT, MASS, AND MOMENTUM TRANSFER MODEL TO PREDICT CONDITIONS OF CANOLA STORED INSIDE SILO BAGS UNDER CANADIAN PRAIRIE CONDITIONS: PART II. MODEL OF CANOLA BULK TEMPERATURE AND MOISTURE CONTENT

机译:三维瞬态热,质量和动量转移模型预测加拿大大草原条件下筒仓袋内油菜袋的条件:第二部分。 油菜批量温度和水分含量的模型

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A three-dimensional transient heat, mass, and momentum transfer model was developed to predict temperatures and moisture contents of canola stored inside silo bags under Canadian Prairie conditions. The developed model calculated the condensation and production of water and heat generated by the respiration of microorganisms inside silo bags. This model was coupled with the soil temperature model developed in part I. These developed models were validated using weather data as input and measured temperatures and moisture contents inside silo bags filled with canola at 9.1%, 10.5%, or 14.4% initial moisture content (MC). The developed models had a poor prediction of the temperature and moisture content of the 14.4% MC canola because the canola seeds spoiled and clumped together in less than four months. The developed models could explain more than 90% of the measured temperatures inside the silo bags filled with 10.5% MC canola without underestimation or overestimation. The average absolute difference was less than 1.9 degrees C +/- 0.1 degrees C and 0.7 degrees C +/- 0.0 degrees C inside silo bags with 9.1% and 10.5% initial MC, respectively. The developed models could explain more than 94% of the measured moisture contents of canola stored inside the silo bags with = 10.5% initial MC. The average absolute difference between measured and predicted moisture contents of canola was = 0.4% +/- 0.0% inside the silo bags filled with 9.1% and 10.5% MC canola. Simulation results showed that condensation on the canola seeds mostly occurred at the boundary of silo bags, and canola inside hot spots might produce >= 2.5 fold of heat production, which was measured under small-scale laboratory conditions.
机译:开发了一种三维瞬态热,质量和动量转移模型,以预测加拿大大草原条件下筒仓袋内油菜的温度和水分含量。开发模型计算了筒仓袋内微生物呼吸产生的水和热的冷凝和生产。该模型与第I部分开发的土壤温度模型相结合。这些开发的模型使用天气数据作为输入和测量的温度和水分含量验证,筒仓袋中装有油菜的9.1%,10.5%或14.4%初始水分含量( MC)。开发模型预测14.4%MC CANOLA的温度和水分含量差,因为油菜籽在不到四个月的时间内被损坏并聚集在一起。开发的模型可以解释超过90%的筒仓袋内的90%,填充有10.5%MC CANOLA而不低估或高估。平均绝对差异小于1.9摄氏度+/- 0.1摄氏度,分别为9.1%和10.5%初始MC的筒仓袋中的0.7摄氏度。开发模型可以解释储存在筒仓袋内的碳水化合物中的94%以上的含量的水分含量的94%。在填充9.1%和10.5%MC CANOLA的筒仓袋内测量和预测水分含量之间的平均绝对差异在池袋内的测量和预测的水分含量之间的平均绝对差异。仿真结果表明,油菜籽上的凝结大多发生在筒仓袋的边界,热点内的油菜可能产生> = 2.5倍的热量生产,在小规模的实验室条件下测量。

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