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首页> 外文期刊>Applied Engineering in Agriculture >INFLUENCE OF DRYING PARAMETERS ON DRYING EFFICIENCY OF A RAPESEED HOT AIR CYCLONE DRYER
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INFLUENCE OF DRYING PARAMETERS ON DRYING EFFICIENCY OF A RAPESEED HOT AIR CYCLONE DRYER

机译:干燥参数对油菜籽热风旋风干燥器干燥效率的影响

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The purpose of this research was to investigate the influence of drying parameters such as height, diameter, ram width of the drying chamber and air speed, on drying efficiency of a hot air cyclone dryer. Experiments were run in two phases. One phase was in the field where the rapeseed hot air cyclone dryer was used to conduct physical experiments. The second and greater phase of the experiment involved mostly mathematical simulations using ANSYS Workbench software version 18.1. Two groups of simulations were conducted: single-factor simulations and multi factor simulations. The number of simulations to be run were obtained using Taguchi Orthogonal Array (TOA) design of experiments in Minitab 18 software. Regression analysis were done to determine effects of factor variations on efficiency values and to obtain a regression equation from which optimal efficiency can be predicted. We concluded that moisture content of rapeseed is directly proportional to mass of seeds and radius of gyration subsequently. Furthermore, varying drying parameters of the dryer, affected drying capacity, drying rate, temperature distribution, and drying efficiency. Ram width had the most significant influence on the numerically calculated efficiency values, followed by the height, and then diameter of the chamber. The least influence was provided by speed of incoming air. Optimal value for each variable were also suggested from analysis with 2950 mm for height, 250 mm for diameter, 90 mm for ram width, and 20 m s(-1) for air speed. Lastly, a regression equation was provided for estimation of efficiency for each parameter change. Using the optimization regression equation, drying efficiency for optimal values obtained from analysis, an efficiency of 83.9135% was obtained which is greater than the present efficiency of 80.87%.
机译:该研究的目的是研究干燥参数如高度,直径,RAM宽度和空气速度的影响,以及热空气旋风器干燥器的干燥效率。实验分两看。在用于进行物理实验的油菜籽热空气旋风干燥器的领域中是一个相。实验的第二个和更大阶段涉及使用ANSYS Workbench软件版本18.1的数学模拟。进行两组模拟:单因素模拟和多因素模拟。使用Minitab 18软件的实验的Taguchi正交阵列(TOA)设计获得了待运行的仿真数。进行回归分析以确定因子变化对效率值的影响,并获得可以预测最佳效率的回归方程。我们得出结论,油菜的水分含量随后与种子的质量和半径成比例。此外,干燥器的变化参数,干燥能力,干燥速率,温度分布和干燥效率。 RAM宽度对数值计算的效率值具有最大的影响,其次是高度,然后是腔室的直径。通过进入空气的速度提供最小影响。还从2950 mm的分析中提出了每个变量的最佳值,直径为250毫米,用于RAM宽度为90毫米,为空气速度为20 m S(-1)。最后,提供了回归方程来估计每个参数变化的效率。使用优化回归方程,从分析中获得的最佳值的干燥效率,获得了83.9135%的效率,大于目前的80.87%。

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