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首页> 外文期刊>Mathematical Problems in Engineering: Theory, Methods and Applications >Numerical Simulation and Experimental Research on Coal Ash Collecting and Grading System
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Numerical Simulation and Experimental Research on Coal Ash Collecting and Grading System

机译:粉煤灰分级系统的数值模拟与试验研究

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The grading separation of coal ash can not only increase its economic value but also decrease its pollution to environment. Based on the jet-attracting flow technology and the gas-solid two-phase flow theory, the force and motion of coal ash particles in airflow were studied firstly. Focused on single coal ash particle, Matlab software was used to simulate the force conditions and separation parameters of various diameter coal ash particles in airflow. Fluent software was used to simulate the nozzle fluidization domain shape and to determine optimal jet flux. According to the theoretical results, a coal ash collecting and grading system was developed. Using the separation efficiency as the evaluation index, the optimal experiment parameters of jet flux, attracting flux, and separation time were obtained. At last, the calculated results and experimental results of coal ash particles median diameter from the first grading separation exit under various attracting fluxes were compared. The reasons that could cause the errors were discussed. This study has significant practical meaning and application value on coal ash collecting and grading separation.
机译:粉煤灰的分级分离不仅可以增加其经济价值,而且可以减少其对环境的污染。基于引流技术和气固两相流理论,首先研究了煤灰颗粒在气流中的作用力和运动。针对单一的煤灰颗粒,使用Matlab软件模拟了气流中不同直径煤灰颗粒的受力状况和分离参数。 Fluent软件用于模拟喷嘴的流化域形状并确定最佳射流。根据理论结果,开发了一种煤灰收集分级系统。以分离效率为评价指标,得到了射流通量,吸引通量和分离时间的最佳实验参数。最后,比较了在各种吸引通量下,第一个分级分离出口的煤灰颗粒中值粒径的计算结果和实验结果。讨论了可能导致错误的原因。该研究对煤灰分选分离具有重要的实践意义和应用价值。

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