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首页> 外文期刊>Environmental Science and Pollution Research >Design and analysis of a novel furnace throat for removing dust particles in flue gas emitted from copper smelting furnace by a computational method
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Design and analysis of a novel furnace throat for removing dust particles in flue gas emitted from copper smelting furnace by a computational method

机译:用计算方法将烟气中烟尘中灰尘颗粒的设计与分析

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摘要

A novel furnace throat structure was designed to reduce dust particle concentration in the flue gas emitted from the copper smelting industry. A two-stage turbulence model of the furnace throat based on the RNG k-epsilon model combined with the stochastic trajectory model was developed to analyze the gas flow and particle trajectories in this furnace throat structure. The resulting turbulent flow fields and particle trajectories under different operating conditions were shown and discussed. It indicates that the furnace throat plays an important role in separating the dust particles from the flue gas by applying centrifugal force and subsequent resistance force. Moreover, the effects of the radius of the inner flue, the number of the spiral plate, and the number of the spiral plate turns on the particle collection efficiency were analyzed to optimize the throat structure. The simulation results show that the furnace throat with inner flue radius of 0.05 m, two spiral plates, and two spiral plate turns has the highest particle collection efficiency. Furthermore, a series of experimental tests were conducted to validate the accuracy of the simulation results, and the measured experimental data show a good correlation with the numerical results.
机译:设计了一种新颖的炉子喉部结构,以减少从铜冶炼工业发出的烟道气中的灰尘颗粒浓度。开发了一种基于RNG K-EPSILON模型的炉子喉部的两级湍流模型,与随机轨迹模型相结合,分析了该炉喉部结构中的气流和颗粒轨迹。显示并讨论了所得到的湍流场和颗粒轨迹在不同的操作条件下。表示炉子喉部在通过施加离心力和随后的抵抗力将灰尘颗粒与烟道气中分离出来的重要作用。此外,分析了内烟道的半径,螺旋板的数量和螺旋板的数量对颗粒收集效率的影响,以优化喉部结构。仿真结果表明,具有0.05米,两个螺旋板的内烟道半径和两个螺旋板的炉子喉部具有最高的粒子收集效率。此外,进行了一系列实验测试以验证模拟结果的准确性,测量的实验数据显示出与数值结果的良好相关性。

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