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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Study on the solidification characteristics of molten slag droplets cooled by mixed cooling medium
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Study on the solidification characteristics of molten slag droplets cooled by mixed cooling medium

机译:混合冷却介质冷却熔渣液滴的凝固特性研究

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摘要

Numerical studies on molten slag droplets solidification behaviors in humid air were carried out by using the hybrid evaporation and solidification models. The numerical model was firstly validated by the experimental data in the literatures, and then solidification time, temperature distribution, and movement of phase change interface during the solidification process were analyzed. The effects of humidity ratio (content of atomized water), air inlet temperature and velocity, and droplet diameter on solidification behaviors of molten slag were discussed. Finally, a correlation for predicting the solidification time was proposed. The results show that, generally, the solidification time is decreasing by increasing the air inlet velocity and humidity ratio, or decreasing the droplet diameter and air inlet temperature. The solidification rates represent a trend of gradual decline during the solidification process due to the ever-increasing thickness of the solid slag region, and they are normally higher at the upwind side but relatively lower at the leeward side, resulting in an off-center solidification process of a slag droplet. The humidity ratio has significant effect on the cooling air temperature distributions, steeper temperature gradient is observed thanks to the evaporation process of the atomized water. The present work suggests that the operational conditions are: the humidity ratio within the range of 10% 20%, the air inlet velocity is 1.0 m/s and the air inlet temperature is 303 K, respectively.
机译:用杂交蒸发和凝固模型进行湿气液体熔渣凝固行为的数值研究。通过文献中的实验数据首先验证了数值模型,然后分析了凝固过程中的凝固时间,温度分布和相变界面的运动。讨论了湿度比(雾化水的含量),空气入口温度和速度以及熔渣凝固行为的影响。最后,提出了预测凝固时间的相关性。结果表明,通常,通过增加空气入口速度和湿度比,或降低液滴直径和空气入口温度来减小凝固时间。凝固率表示由于固体渣区域的厚度不断增加的凝固过程中逐渐下降的趋势,并且它们通常在上风侧的较高,但在Leeward侧相对较低,导致偏离中心凝固渣液的过程。湿度比对冷却空气温度分布具有显着影响,由于雾化水的蒸发过程,观察到陡峭的温度梯度。目前的作品表明,操作条件是:湿度比在10%20%范围内,空气入口速度为1.0m / s,空气入口温度分别为303 k。

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