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Improved Design of Thermal Airflow Process for the Annular Cooler and Fluent simulation

机译:改进的环形冷却器热气流过程设计,流畅的仿真

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摘要

Considering the current problems of low temperature of recovered gas, the direct gas emission of the fourth cooling zone in the operation of the annular cooler, thermal airflow process for the annular cooler is improved by analyzing the thermal airflow process and the structure of the annular cooler and using the principle of repeated convective heat transfer. Thus the above-mentioned problem can be solved. Simulation model of its thermal airflow process is established and the simulation results, obtained by using Fluent software, are as follows: the temperature of the gas in the first cooling zone entering the rotary kiln of the improved is about 110°C higher than that of the unimproved, the temperature of the gas in the second cooling zone entering the preheat zone I of the chain grate of the improved is about 150°C higher than that of the unimproved, and the temperature of the gas in the fourth cooling zone entering the downdraft drying zone of the chain grate of the improved is about 50°C higher than that of the unimproved. Pellet heat recovery efficiency is increased significantly.
机译:考虑到回收气体低温的当前问题,通过分析热气流过程和环形冷却器的结构,改善了环形冷却器的动作中的第四冷却区的直接气体排放,为环形冷却器的热气流过程得到改善并利用重复对流传热的原理。因此,可以解决上述问题。建立了其热气流过程的仿真模型,并使用流畅的软件获得的仿真结果如下:进入改善旋转窑的第一冷却区中气体温度高于110°C未改善的,进入预热区域I的第二冷却区中的气体温度为改善的链条炉篦的高度为约150℃,高于未改进的气体温度,进入的第四冷却区的气体温度增压炉的下降干燥区的改善的炉排高约50℃,高于未经改善的炉子。颗粒热回收效率显着增加。

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