CFD simulation and experimental study of calcium carbide heat transfer under natural convection and radiation heat transfer

传热 电石 对流换热 计算流体力学 材料科学 自然对流 机械 对流 环境科学 物理 冶金
作者
Ping Tao,Xichao Di,Meihui Zhou,Jianqiu Zhou
出处
期刊:Energy Sources, Part A: Recovery, Utilization, And Environmental Effects [Taylor & Francis]
卷期号:46 (1): 5508-5521 被引量:1
标识
DOI:10.1080/15567036.2024.2338867
摘要

Few studies on the heat transfer of calcium carbide (CA) under natural convection exist currently. Studying the radiative heat transfer of CA is of significant importance for its waste heat utilization. Therefore, this paper, based on CFD simulations, investigates the heat transfer processes of CA under natural convection and radiative heat transfer. Additionally, on-site experiments are conducted to measure the temperature of CA. The results indicate that considering radiation, the maximum discrepancy between simulation and experimentation is 11.9%, while without considering radiation, the maximum discrepancy increases to 85%. Based on the temperature variations on the surface of CA and changes in cooling rates, it is inferred that waste heat recovery should occur within the first three hours after the CA is taken out of the furnace. Within the initial six hours, the convective and radiative heat transfer amounts are 17.1 kW•h and 155.67 kW•h, respectively, with the latter constituting 90.11% of the total heat exchange. Therefore, adopting a radiation-based approach is recommended for the recovery of waste heat from CA. Finally, employing data regression analysis, a functional relationship between the natural convection-radiation coupled heat transfer coefficient and time is derived.
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