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Evaluation of Drying Rates of Lignite Particles in Superheated Steam Using Single-Particle Model

机译:用单颗粒模型评估过热蒸汽中褐煤颗粒的干燥速率

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Drying rates of lignite particle groups in superheated steam are evaluated using a single-particle model developed for Australian lignite. Size distributions of the particles are assumed to obey the Rosin-Rammler equation with the maximum particle diameters defined as 100, 50, and 6 mm. The results show the drying rate of a lignite group depends strongly on the maximum particle size, and removal of large particles prior to drying is shown to be effective to reduce the drying time. The calculation model is available for simulations of drying behaviors of lignite in various dryers when an appropriate heat transfer coefficient is given. This study simulates the drying of particles smaller than 6 mm using a heat transfer coefficient in a fluidized bed dryer reported elsewhere. The required drying time estimated from the calculation is comparable to the processing time reported in an actual fluidized bed dryer, supporting the validity of the calculation model.
机译:使用为澳大利亚褐煤开发的单颗粒模型评估过热蒸汽中褐煤颗粒组的干燥速率。假定颗粒的尺寸分布符合Rosin-Rammler方程,最大粒径定义为100、50和6 mm。结果表明褐煤基团的干燥速率强烈取决于最大粒径,并且显示在干燥之前除去大颗粒可有效减少干燥时间。当给出适当的传热系数时,该计算模型可用于模拟褐煤在各种干燥机中的干燥行为。这项研究使用在其他地方报道的流化床干燥机中的传热系数模拟了小于6毫米的颗粒的干燥。通过计算得出的所需干燥时间与实际流化床干燥机中报告的处理时间相当,从而支持了计算模型的有效性。

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