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A two-stage heat transfer model for the peripheral layers of a grain store

机译:粮库外围层的两阶段传热模型

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An understanding of the flow of heat in grain store structures, in particular, within the peripheral layer, is important from many industrial perspectives. To analyse the heat transfer within such regions a mathematical model known as the two-stage heat transfer model is proposed. This model makes a distinction between the air and grain within the grain bulk, and thus takes into consideration the fact that the rate of heat transfer through the grain is different to that through the interstitial air surrounding the grain. Such a model lends itself to a solution via Laplace transforms and approximate analytical results are obtained for small and large times. In addition, the Stehfest numerical algorithm is used for the inversions and very good agreement is obtained between the two approaches. The present model is compared to a previously developed double-diffusivity heat transfer model by the authors, and good agreement is obtained. At present, no experimental data is available to validate the model as it is very difficult to measure the air and grain temperatures separately, particularly in the peripheral layer. The proposed model provides insight into the potential difference existing between the air and grain temperatures.
机译:从许多工业角度来看,了解谷物存储结​​构中,特别是外围层内部的热流很重要。为了分析这些区域内的热传递,提出了一种称为两阶段热传递模型的数学模型。该模型区分了谷物内部的空气和谷物,因此考虑了通过谷物的热传递速率与通过围绕谷物的间隙空气的热传递速率不同的事实。这样的模型可以通过拉普拉斯(Laplace)变换提供解决方案,并且可以在较小和较大的时间内获得近似的分析结果。另外,使用Stehfest数值算法进行反演,两种方法之间取得了很好的一致性。作者将本模型与先前开发的双扩散传热模型进行了比较,并获得了良好的一致性。目前,没有实验数据可用于验证模型,因为很难分别测量空气和谷物的温度,尤其是在外围层。提出的模型提供了对空气和谷物温度之间存在的潜在差异的洞察力。

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