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Modeling of Oxidation Process of Coal Tar Pitch in Rotating Kilns

机译:旋转窑煤焦间距氧化过程的建模

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摘要

In this paper, a three-dimensional numerical model has been developed to study the process of oxidative weight increment of coal tar pitch in a rotating kiln. Based on the two-fluid method, the gas phase is modeled by realizable k-epsilon turbulent model and the solid phase is modeled by kinetic theory of granular flow. The dense gas-solid flow, heat transfer, and oxidation reaction for the bed and freeboard regions are simultaneously solved. The model is applied to a rotating kiln with a cylinder of 0.75 m length and 0.4 m diameter in the front and circular truncated cone on exit side. The detailed verification of model is firstly performed by comparisons with the available experimental data. The particle velocity profiles, product gas compositions, and various forms of solid motion in rotary kilns are contrastively analyzed. Afterwards, simulations are carried out to obtain the primary hydrodynamic and reactive characteristics in the rotary kiln. At the steady state, the particle velocity peak is located at the active layer surface, while the velocity has the opposite direction in the passive layer. The bed region generally has a higher temperature than the freeboard due to the large thermal capacity. The concentrations of product gas compositions, such as CO2, CO, and CH4, and solid product of oxidation, increase sharply near the surface and then keep on the steady values inside the bed. The effects of rotational speed of the rotary kiln and flow rate of air are also studied. The increasing rotational speed significantly accelerates the particle movement of the active layer and raises the final oxidative yield of coal pitch spheres. By contrast, increasing the flow rate of air has little effect on the particle motion and oxidation yield of coal pitch.
机译:在本文中,已经开发了一种三维数值模型,以研究旋转窑中煤焦沥青的氧化重量增量过程。基于双流体方法,通过可实现的K-epsilon湍流模型建模气相,并通过粒状流动的动力学相模型。同时解决了床和吸入器区域的致密气体固体流动,传热和氧化反应。该模型应用于旋转窑,圆柱体长度为0.75米,直径为0.4米,在出口侧的圆形截头锥形。首先通过与可用的实验数据进行比较来执行模型的详细验证。对旋转窑中的颗粒速度谱,产物气体组合物和各种形式的固体运动进行了光控。然后,进行仿真以获得旋转窑中的初级流体动力和反应性特性。在稳定状态下,粒子速度峰位于有源层表面,而速度在无源层中具有相反的方向。由于大的热容量,床区通常具有比吸收更高的温度。产物气体组合物的浓度,例如CO 2,CO和CH 4,以及氧化的固体产物,表面附近急剧增加,然后保持床内的稳定值。还研究了转速窑的转速和空气流速的效果。旋转速度的增加显着加速了活性层的颗粒运动,并提高了煤沥青球的最终氧化产率。相比之下,增加空气的流速对煤炭间距的颗粒运动和氧化产量几乎没有影响。

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  • 来源
    《Mathematical Problems in Engineering 》 |2019年第15期| 17.1-17.21| 共21页
  • 作者单位

    Southeast Univ Sch Energy & Environm Minist Educ Key Lab Energy Thermal Convers & Control Nanjing 210096 Jiangsu Peoples R China;

    Southeast Univ Sch Energy & Environm Minist Educ Key Lab Energy Thermal Convers & Control Nanjing 210096 Jiangsu Peoples R China;

    Southeast Univ Sch Energy & Environm Minist Educ Key Lab Energy Thermal Convers & Control Nanjing 210096 Jiangsu Peoples R China;

    Chinese Acad Sci Inst Coal Chem Beijing 100864 Peoples R China;

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