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Thermal Performance Analysis of Reinforced Concrete Floor Structure with Radiant Floor Heating System in Apartment Housing

机译:公寓辐射地板加热系统钢筋混凝土楼层结构的热性能分析

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摘要

The use of the resilient materials in the radiant floor heating systems of reinforced concrete floor in apartment housing is closely related to the reduction of the floor impact sound and the heating energy loss. This study examined the thermal conductivity of expanded polystyrene (EPS) foam used for the resilient material in South Korea and analysed the thermal transfer of reinforced concrete floor structure according to the thermal conductivity of the resilient materials. 82 EPS specimens were used to measure the thermal conductivity. The measured apparent density of EPS resilient materials ranged between 9.5 and 63.0 kg/m3, and the thermal conductivity ranged between 0.030 and 0.046 W/(m·K). As the density of resilient materials made of expanded polystyrene foam increases, the thermal conductivity tends to proportionately decrease. To set up reasonable thermal insulation requirements for radiant heating floor systems, the thermal properties of floor structure according to thermal insulation materials must be determined. Heat transfer simulations were performed to analyze the surface temperature, heat loss, and heat flow of floor structure with radiant heating system. As the thermal conductivity of EPS resilient material increased 1.6 times, the heat loss was of 3.4% increase.
机译:在公寓壳体钢筋混凝土地板的辐射地板加热系统中使用弹性材料与地板冲击声和加热能量损失的减少密切相关。该研究检测了用于韩国弹性材料的膨胀聚苯乙烯(EPS)泡沫的导热系数,并根据弹性材料的导热率分析钢筋混凝土地板结构的热转印。 82 EPS样本用于测量导热率。测量的EPS弹性材料的表观密度范围为9.5至63.0kg / m 3,导热率范围为0.030和0.046w /(m·k)。随着由膨胀的聚苯乙烯泡沫制成的弹性材料的密度增加,导热率趋于按比例地降低。为了建立辐射加热地板系统的合理保温要求,必须确定根据隔热材料的地板结构的热性能。进行热传递模拟以分析地板结构的表面温度,热损耗和辐射加热系统的热流。随着EPS弹性材料的导热率增加1.6倍,热量损失增加了3.4%。

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