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首页> 外文期刊>Experimental Thermal and Fluid Science: International Journal of Experimental Heat Transfer, Thermodynamics, and Fluid Mechanics >Heat transfer enhancement of an electric air heating furnace by inserting silicon carbide ceramic foam panels
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Heat transfer enhancement of an electric air heating furnace by inserting silicon carbide ceramic foam panels

机译:通过插入碳化硅陶瓷泡沫板增强电空气加热炉的传热

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摘要

Silicon carbide ceramic foams are used to achieve high performances in many industrial heat exchange systems. This paper experimentally investigated the heat transfer characteristics of air flowing through high-temperature silicon carbide ceramic foams in an electric air heating furnace heated by resistance wires and silicon-carbon sticks. It was found that for an air inlet flow rate of 200m ~3/h, the air outlet temperature reached 981°C after about 2h when five silicon carbide ceramic foam panels were inserted inside the furnace, while it only reached about 650°C when no ceramic foam was inserted. The heat transfer enhancement was due to that the ceramic foams enlarged the heat transfer area between air and hot solid surfaces. The results also showed that the position of the ceramic foam in the furnace played an important role in its effect on the heat transfer. This study well validated that silicon carbide ceramic foam can be used as radiant energy absorbers and heat exchangers especially in volumetric solar receivers in concentrated solar power (CSP) plants.
机译:碳化硅陶瓷泡沫用于在许多工业热交换系统中实现高性能。本文通过电阻丝和硅碳棒加热的电热空气加热炉,对流经高温碳化硅陶瓷泡沫的空气的传热特性进行了实验研究。结果发现,当进风量为200m〜3 / h时,在炉内插入5个碳化硅陶瓷泡沫板约2h后,出风口温度达到981°C,而当进风口温度仅为650°C时,出风温度达到981°C。没有插入陶瓷泡沫。传热的提高是由于陶瓷泡沫扩大了空气和热固体表面之间的传热面积。结果还表明,陶瓷泡沫在炉中的位置在其对热传递的影响中起着重要作用。这项研究充分验证了碳化硅陶瓷泡沫可以用作辐射能吸收器和热交换器,尤其是在聚光太阳能发电站(CSP)的容积式太阳能接收器中。

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