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Experimental Study on Deicing Performance of Carbon Fiber Reinforced Conductive Concrete

机译:碳纤维增强导电混凝土除冰性能的试验研究

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摘要

Carbon fiber reinforced concrete (CFRC) is a kind of good electrothermal material. When connected to an external power supply, stable and uniform heat suitable for deicing application is generated in the CFRC slab. Electric heating and deicing experiments of carbon fiber reinforced concrete slab were carried out in laboratory, and the effect of the temperature and thickness of ice, the thermal conductivity of CFRC, and power output on deicing performance and energy consumption were investigated. The experimental results indicate that it is an effective method to utilize the thermal energy produced by CFRC slab to deice. The time to melt the ice completely decreases with increasing power output and ice temperature, and increases with increasing thickness of the ice. The energy consumption to melt 2 mm thickness of ice varies approximately linearly from 0.556 to 0.846 kW centre dot h/m~2 as the initial temperature ranges from -3 deg C to - 18 deg C. CFRC with good thermal conduction can reduce temperature difference in CFRC slab effectively.
机译:碳纤维混凝土(CFRC)是一种良好的电热材料。当连接到外部电源时,CFRC平板会产生适合除冰应用的稳定且均匀的热量。在实验室进行了碳纤维混凝土板的电加热和除冰实验,研究了冰的温度和厚度,CFRC的导热系数以及功率输出对除冰性能和能耗的影响。实验结果表明,利用CFRC板产生的热能进行除冰是一种有效的方法。随着功率输出和冰温度的增加,融化冰的时间完全减少,并且随着冰厚度的增加而增加。融化2毫米厚的冰的能量消耗在0.556至0.846 kW中心点h / m〜2范围内呈线性变化,初始温度范围为-3摄氏度至-18摄氏度。具有良好导热性的CFRC可以减小温度差在CFRC板中有效。

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