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Minimum fluidization velocity determination in dielectrical material fluidized beds by electrostatic charge transferred measurement

机译:通过静电电荷转移测量介电材料流化床中的最小流化速度测定

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One of the mains parameters of material powder characterisation is the minimal fluidization velocity. This gas velocity definite the threshold between the fixed state and fluidized one. When this threshold is reached, the particles vibrations appear and a little layer expansion. For this gas velocity (U{sub}g, the particles are totality in suspension and the bed behaves as a fluid. Several experimental methods are used to determine this velocity, the most classic is the method recommended by Richardson (1971) [1]. This paper presents a new method named electrofluidodynamic. This method is based in the electrical current generated on two electrodes, produced by collisions and frictions between themselves and electrodes. The electrical current variation is linked to the agitation degree of material, which depends of the gas velocity. The current generated is measured to each stage of defluidization. The current variation observation allows us thus to determine the threshold value. The results obtained are compared with the Richardson classic method.
机译:材料粉末表征的主要参数之一是最小的流化速度。这种气体速度明确固定状态和流化物之间的阈值。当达到该阈值时,颗粒振动出现并且略有膨胀。对于这种气体速度(U {Sub} G,颗粒是悬浮液中的总体,并且床表现为流体。使用几种实验方法来确定这种速度,最经典的是Richardson(1971)推荐的方法[1] 。本文介绍了一种名为电流体动力学的新方法。该方法基于两个电极上产生的电流,由其本身和电极之间的碰撞和摩擦产生。电流变化与材料的搅拌程度相关联,这取决于材料的搅拌程度气体速度。产生的电流被测量到过流失的每个阶段。电流变化观察允许我们确定阈值。与Richardson经典方法相比,获得的结果与Richardson经典方法进行了比较。

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