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Numerical analysis of the carbon-containing pellet direct reduction process with central heat transfer enhancement

机译:含碳球团的数值分析直接还原过程与中央供暖转移增强

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摘要

Pellet heat transfer has always been one of the biggest limiting factors in its direct reduction process in the rotary hearth furnace (RHF). Therefore, strengthening its heat transfer process is very important for productivity in RHF. In this study, a coupling model of the carbon-containing pellet reduction process considering porosity and chemical heat variation with intermediate media in its center was established. With the pellet radius R-0 = 11 mm, the influence of the intermediate spherical medium radius r(0), the offset position of the spherical medium xi, and the materials used on the overall pellet reduction process were analyzed. The results showed that the presence of a spherical medium in the pellet center can increase the temperature inside the pellet, leading to it being more advantageous for reduction of the pellet. With the increase of the medium radius r(0), it becomes more favorable for the pellet reduction process, as the spherical medium is more efficient for heat conduction. With the increase of the offset value xi, the spherical medium acting as heat-conducting material can allow the heat transferred to the pellet inside faster, which is also more favorable to the reduction process. In addition, when the spherical medium has a smaller effective volume heat capacity rho complement p and a larger thermal conductivity k, it is more favorable for the pellet reduction process too. These results can serve as a reference for optimum pellet design in RHF.
机译:颗粒传热一直是其中的一个最大的限制因素的直接还原转底炉的过程(RHF)。因此,加强传热生产力的过程是非常重要的RHF。含碳球团还原过程考虑孔隙度和热化学变化与中间媒体的中心建立。中间球面的影响中半径r(0)的偏移位置整个球团还原过程分析。球形介质小球中心增加颗粒内部的温度,导致它被更有利球团的还原。媒介半径r(0),它变得更适合球团还原过程,球形介质为导热效率更高。球面作为导热介质材料可以让热量转移到球团内部更快,也更多有利于减少的过程。当球形介质更有效体积热容ρp和补充更大的导热系数k,这是更多也有利于球团还原过程。这些结果可以作为参考最佳颗粒在RHF设计。

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