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Experiment and modeling of the rice winnowing process: granular segregation method from an ancient era

机译:稻谷风选过程的实验与建模:远古时代的颗粒分离方法

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摘要

Rice winnowing, a process of separating small and large rice grains by air flow, has been practiced since ancient human eras, especially in societies where rice is the main source of carbohydrates (in Asia, Africa, and Latin America). Indeed, this process includes rich scientific rules but was never documented by past societies. Here, we report experimental and simulation investigations of granular segregation by winnowing. Undulating a tray during the winnowing process generates air circulation above the tray. Simulation results showed that the outward component of the air velocity was very large near the tray surface when the tray approached the horizontal position after completing one undulation cycle. This air motion generated forces to falling grains, the accelerations of which are different for grains of different sizes, resulting in separation of grains based on sizes, where the smaller grains were thrown far away toward the tray outer edge. The simulation results can explain well the experimental observations either conducted by manual winnowing or by using a generated air circulation. These results could be useful for designing a new method for separating grains based on size or density. These results also prove that the habits practiced by society in the past are scientific phenomena that have not necessarily been scientifically documented.
机译:自古人类时代以来,稻米风选是通过气流分离大大小小的谷粒的一种工艺,特别是在稻米是碳水化合物主要来源的社会中(在亚洲,非洲和拉丁美洲)。确实,该过程包括丰富的科学规则,但过去的社会从未对此进行过记录。在这里,我们通过风选报告了颗粒分离的实验和模拟研究。风选过程中使托盘起皱会在托盘上方产生空气循环。仿真结果表明,在完成一个起伏周期后,当托盘接近水平位置时,靠近托盘表面的空气速度的向外分量非常大。这种空气运动对下落的谷物产生作用力,下落的谷物的加速度对于不同大小的谷物而言是不同的,从而导致基于尺寸的谷物分离,其中较小的谷物朝着托盘外边缘扔得很远。仿真结果可以很好地解释通过手动风选或使用产生的空气循环进行的实验观察。这些结果对于设计基于尺寸或密度的晶粒分离新方法可能有用。这些结果还证明,过去社会所养成的习惯是科学现象,未必得到科学记录。

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