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The CFD Simulation of Tray Dryer Design For Kenaf Core Drying

机译:KENAF核心干燥托盘干燥机设计的CFD仿真

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摘要

Tray dryer is the most extensively use for kenaf core drying because of its simple and economic design. The product is spread out on trays at an acceptable thickness so that the product can be dried uniformly. Most tray dryers use hot air stream where water is vaporized from the product and removed by air stream. In a tray dryer, more products can be loaded as the trays are arranged at different levels. The drawback of this dryer is non-uniformity in the desired moisture content of end product. The key to the successful operation of the tray dryer is uniform airflow distribution over the trays. Therefore, the good design of the drying chamber configuration in a tray dryer is necessary to obtain optimum performance. This research is to design the uniform airflow distribution throughout the drying chamber using CFD simulation for kenaf core drying. Several configurations of drying chamber and trays position was designed and simulated to determine the tray dryer which can produce better airflow distribution. It was found that the design B gives a more uniform airflow distribution compared to others design. The good design of kenaf core dryer should be able to produce uniform drying at high drying capacity and shorter drying time.
机译:托盘烘干机是最广泛的用途,因为它的简单和经济设计,凯恩核心干燥。该产品以可接受的厚度散布在托盘上,使得产品可以均匀干燥。大多数托盘烘干机使用热空气流,其中水从产品蒸发并通过空气流除去。在托盘烘干机中,可以装载更多的产品,因为托盘布置在不同的水平。该干燥器的缺点在最终产品的所需水分含量下是不均匀的。托盘干燥器成功操作的关键是托盘上的气流分布均匀。因此,在托盘干燥器中的干燥室构造的良好设计是获得最佳性能所必需的。该研究是在干燥室中使用CFD模拟来设计整个干燥室的均匀气流分布,用于Kenaf核心干燥。设计并模拟了几种干燥室和托盘位置的配置,以确定可以产生更好的气流分布的托盘烘干机。结果发现,与其他设计相比,设计B提供了更均匀的气流分布。 Kenaf核心干燥机的良好设计应该能够在高干燥能力和较短的干燥时间下产生均匀的干燥。

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