首页> 外文会议>ASME/JSME/KSME Joint Fluids Engineering Conference;AJK2011 >INFLUENCE OF FLUIDIZING VELOCITY ON FLUIDIZED POWDER CONVEYING IN A HORIZONTAL RECTANGULAR CHANNEL
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INFLUENCE OF FLUIDIZING VELOCITY ON FLUIDIZED POWDER CONVEYING IN A HORIZONTAL RECTANGULAR CHANNEL

机译:流化速度对水平矩形通道中流化粉输送的影响

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This study experimentally investigated the high dense pneumatic conveying of glass beads in a horizontal rectangular channel using the fluidizing air. The powder used belongs to Geldart A particle, where the mean diameter is 53 μm, the particle density is 2523kg/m3 and the minimum fluidizing velocity is 4.329mm/s. The fluidized powder conveying system consists of a powder supply hopper, a horizontal rectangular channel at the side of hopper and a receiving tank. The powder was fluidized by air through the porous membrane at the bottom of hopper and horizontal channel. Then, this system could be transported the fluidized powder toward the horizontal direction. In this study, the mass of transported powder, the bed height of powder in a hopper and the supply air pressure were measured when the fluidizing velocities at the bottom of hopper and horizontal channel were changed. The mass of transported powder with the fluidizing air to the bottom of hopper multiplied rapidly when the fluidizing velocity at the bottom of horizontal channel was larger than the minimum fluidizing velocity. Therefore, the fluidizing air at the bottom of hopper and horizontal channel was important to obtain smooth powder conveying on this system. Also, the mass flow rate of powder and the solid loading ratio were estimated from the mass of transported powder against the elapsed time. As the result, the solid loading ratio has taken a one peak when the fluidizing velocity at the bottom of channel was larger than the minimum fluidizing velocity. It was found from the analyzed solid loading ratio that the high dense powder conveying was possible in this system.
机译:这项研究实验性地研究了使用流化空气在水平矩形通道中玻璃珠的高密度气动输送。使用的粉末属于Geldart A颗粒,平均直径为53μm,颗粒密度为2523kg / m3,最小流化速度为4.329mm / s。流化粉末输送系统由一个供粉斗,一个位于斗侧的水平矩形通道和一个接收箱组成。粉末通过漏斗底部和水平通道底部的多孔膜被空气流化。然后,该系统可以将流化粉末朝水平方向输送。在这项研究中,当改变料斗底部和水平通道的流化速度时,测量了输送的粉末的质量,料斗中粉末的床高和送风压力。当水平通道底部的流化速度大于最小流化速度时,带有流化空气到漏斗底部的粉末的质量迅速增加。因此,料斗底部和水平通道的流化空气对于在该系统上获得平稳的粉末输送非常重要。另外,根据输送的粉末的质量相对于经过的时间来估计粉末的质量流量和固体填充率。结果,当通道底部的流化速度大于最小流化速度时,固含量比率达到一个峰值。从分析的固体装载率发现,在该系统中可以进行高密度的粉末输送。

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