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Characterization and Development of Geldart’s Fluidizing Velocity Profile of Sand Particles for the Application in Fluidized Bed Combustor (FBC)

机译:用于流化床燃烧器(FBC)的Geldart沙粒流化速度曲线的表征和开发

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摘要

The objective of this study is to fully utilize the local sand retrieved from Pahang river as a bed material in FBC. The proposed work will study through experiments to deduce a new classification of local river sand in a fluidized bed based on the minimum fluidization velocity of inert particles according Geldart’s classification operated at five different temperatures: 55, 82, 108, 124 and 148 °C respectively. River sand was chosen as a fluidizing medium due to its characteristics that can withstand high operating temperature of more than 1000 °C. Apart from that, its cheap cost and availability make it preferred choice for the operation. The results show that the minimum fluidizing velocity of the sand, Umf was found increasing as the temperature increased for the sands operated at low temperature, but maintaining almost at the same value, for the sands operated higher operating temperature respectively. The findings agree well with the reported trend by previous authors, in which their results based on the bed operated at combustion temperature which is above 800 °C. Thus, it can be conclude that the local sands, will exhibits the same trend for the application of fluidized bed combustor.
机译:这项研究的目的是充分利用从彭亨河回收的当地沙子作为FBC的床层材料。拟议的工作将通过实验研究,根据惰性粒子的最小流化速度,根据在五种不同温度下分别在55、82、108、124和148°C下操作的惰性颗粒的最小流化速度,得出流化床中局部河沙的新分类。 。由于河砂具有可承受超过1000°C的高工作温度的特性,因此被选作流化介质。除此之外,它的廉价成本和可用性使其成为该手术的首选。结果表明,在低温操作的沙子中,沙子的最小流化速度Umf随温度的升高而增加,而在更高的操作温度下,沙子的最小流化速度Umf却保持几乎相同的值。这些发现与以前的作者所报道的趋势非常吻合,前者基于燃烧床在高于800°C的温度下运行的结果。因此,可以得出结论,对于流化床燃烧器的应用,当地的沙子将呈现出相同的趋势。

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