Investigation of the Temperature Distribution and Energy Consumption of an Integrated Carbon Fiber Paper-Embedded Electric-Heated Floor

Chengjian Huang, Neng Li, Sheng He, Xiang Weng, Yi Shu, Guang Yang, Yongjie Bao
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Abstract

This study examined spatial and temporal thermal performance and energy consumption. The temperature distribution in the running period was monitored in test rooms with integrated electric- and hot water-heated floors. The short- and long-term energy consumption of the two heating systems were recorded and compared. The results indicated that the integrated electric heating system generated higher temperatures for indoor air and on the exterior surface of the wooden floor than the hot water heating system; meanwhile, the difference in the mean temperatures of the exterior and rear surfaces of the electric-heated floor was 2.44 °C, while that of the hot water-heated test room was 13.25 °C. The efficient structure of the integrated electric heating system saved 22.97% energy compared to the hot water system after short-term (7 h) charging and reaching a dynamic balance, and it efficiently increased the energy utilization rate to 11.81%. After long-term charging, the daily energy consumption of the integrated electric heating system consumed much less energy than the hot water system every month. The integrated electric heating system saved 62.55% and 34.30% of energy in May and January, respectively, and consumed less than half of the energy the hot water system consumed in the less cold months. Therefore, a high-efficiency and energy-saving integrated electric-heated floor could be a potential indoor heating solution.
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集成碳纤维纸嵌入式电热地板的温度分布和能耗研究
这项研究考察了空间和时间上的热性能和能耗。在集成了电加热和热水加热地板的测试房间内,对运行期间的温度分布进行了监测。记录并比较了两种加热系统的短期和长期能耗。结果表明,与热水加热系统相比,集成电加热系统产生的室内空气温度和木地板外表面温度更高;同时,电加热地板外表面和后表面的平均温度差为 2.44 °C,而热水加热试验室的平均温度差为 13.25 °C。在短期(7 小时)充电并达到动态平衡后,集成电加热系统的高效结构比热水系统节能 22.97%,并有效地将能源利用率提高到 11.81%。长期充电后,集成电加热系统的日能耗远低于热水系统的月能耗。综合电加热系统在 5 月和 1 月的节能率分别为 62.55% 和 34.30%,在不太冷的月份消耗的能源不到热水系统的一半。因此,高效节能的集成电热地板可能是一种潜在的室内供暖解决方案。
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