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Modelling and Implementation for Airflow and Temperature Distribution in a Small-Scale Granary

机译:小型粮仓气流和温度分布的建模与实现

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摘要

One major feature of a granary is the uneven distribution of temperature and airflow. Due to the large variability in the parameters to be considered in characterizing the feature, a pilot test serves as the better way to performing the experiment, which subsequently affects the airflow velocity distribution, and is very difficult to determine by natural experiment. This paper develops a model for uneven airflow and temperature distribution through the layers of stored grains, relative to the indicated parameters. The study aims at predicting the various thermo-physical properties of maize grains using the developed model with the incorporated several expressions obtained, and compare with the measured values through the deployed pilot mini silo. To validate the model, the bin was aerated with forced air at constant humidity and temperature. A mini cylindrical silo was also developed and deployed with bulk grains for a pilot test. The predicted results were compared with the measured values of the temperatures obtained in the various locations of the pilot silo. The two results were closely related, thereby establishing the validity of our model. The model provides information on the direction of flow and velocity in each location within the stored volume of grains, and data for grain cooling, airing and drying in the bin. The developed model is useful for predicting the temperature distribution, airflow and the cooling time for bulk grains under varying aeration conditions, and suitable for optimizing the design and operation of granary systems.
机译:粮仓的一个主要特点是温度和气流的不均匀分布。由于在表征特征时考虑的参数的较大变化,试验试验用作执行实验的更好方法,随后对气流速度分布进行影响,并且非常难以通过自然实验确定。本文通过所示的参数,开发出通过储存晶粒层的不均匀气流和温度分布的模型。该研究旨在使用所开发的模型预测玉米晶粒的各种热物理性质,其中具有所获得的若干表达式,并与通过展开的先导迷你筒仓的测量值进行比较。为了验证该模型,箱子在恒定的湿度和温度下被强制空气充气。还开发了迷你圆柱筒仓,并用散装颗粒进行了用于试验试验。将预测结果与在先导筒仓的各个位置中获得的温度的测量值进行比较。两种结果密切相关,从而建立了我们模型的有效性。该模型提供有关存储体积内的每个位置的流动和速度方向的信息,以及在箱中晶粒冷却,吹气和干燥的数据。开发的模型可用于预测各种曝气条件下的散装颗粒的温度分布,气流和冷却时间,并且适用于优化粮仓系统的设计和操作。

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