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Numerical Simulation of the Tar Mist and Dust Movement Process in a Low-Temperature Dry Distillation Furnace

机译:低温干馏炉中焦油和防尘过程的数值模拟

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In the low-temperature dry distillation of low-rank coal, the important liquid product of coal tar is produced, but its quality and utilization rate are degraded by entrained dust. The movement of coal tar and dust in the furnace is a key factor in causing particles such as dust to mix with coal tar. Therefore, the Euler–Lagrangian method is used to simulate the two-phase motion process of gas, tar, and dust in a furnace. By considering the effects of tar particle size, dust particle size, gas velocity, tar density, and dust density, the motion process mechanism is revealed, enabling the dust content in coal tar to be reduced and the quality improved. The results indicate that tar particles with sizes less than 0.20?mm can be removed from the furnace by gas, and the smaller the particle size is, the shorter the time required for removal. Dust particles greater than 0.18?mm in size cannot be completely removed from the furnace. As the gas velocity increases, the time required for complete removal of the tar mist and dust gradually decreases. When the speed is 0.70?m/s, all tar mist is removed, although some particles remain. Tar mist with a density of more than 900?kg/m3 can be extensively removed, but dust with a density of more than 1400?kg/m3 is difficult to remove and remains in the furnace. Finally, particle size distribution experiments in the product were conducted to verify the accuracy of the numerical simulation.
机译:在低级煤的低温干馏中,产生煤焦油的重要液体产物,但其质量和利用率因夹带粉尘而降解。炉子的运动和炉子中的灰尘是导致颗粒如灰尘混合的关键因素。因此,Euler-Lagrangian方法用于模拟炉中的两相运动过程,焦油和灰尘。通过考虑焦油粒度,粉尘粒度,气体速度,焦油密度和灰尘密度的影响,揭示了运动过程机制,使煤焦油中的粉尘含量降低,质量得到改善。结果表明,通过气体从炉子中除去尺寸小于0.20Ωmm的焦油颗粒,粒径越小,去除所需的时间越短。大小大于0.18Ωmm的灰尘颗粒不能完全从炉中取出。随着气体速度的增加,焦油和灰尘完全去除所需的时间逐渐减少。当速度为0.70?M / s时,所有焦油雾都被除去,尽管一些颗粒仍然存在。密度高于900 kg / m3的焦油雾可广泛除去,但密度超过1400μlΩkg / m3的灰尘难以去除并保留在炉内。最后,进行了产品中的粒度分布实验以验证数值模拟的准确性。

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