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Heat loss into ground from a slab-on-ground structure in a floor heating system

机译:地板采暖系统中的楼板结构向地面散发的热量

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摘要

The objective of this research was to determine the actual heat loss into the subsoil from a massive slab-on-ground structure in a low temperature floor heating system. The main objective was achieved by field test measurements of an actual new building in Southern Finland. The test building is a detached house including a massive concrete slab, an underneath polystyrene insulation and a crushed stone fill layer on top of the clay subsoil. The heat loss into subsoil is determined from the measured temperature difference over the slab cross-section during a 1-year measuring period. The long-term behaviour of the structure was also studied by numerical simulations using 2D FE-modelling. According to the field test results and the simulations, the increase of the slab temperature in winter increases significantly the flow rates into the subsoil, also at the central part of the slab. Theoretical calculations for a standard building show that the heat loss into the subsoil from slab-on-ground structures is a significant part of the total heat loss from a building and the intensity of the heat loss is strongly dependent on the average temperature of the slab structure. The effect of the various floor heating systems on the total energy consumption of a building should be taken into consideration when designing the thermal insulation of ground slabs. Copyright
机译:这项研究的目的是确定在低温地板供暖系统中,块状的地上结构在地下的实际热量损失。主要目标是通过对芬兰南部一栋新建筑的现场测试测量来实现的。测试建筑物是一栋独立式房屋,包括一块巨大的混凝土板,一个聚苯乙烯隔热层和一个位于粘土地下层顶部的碎石填充层。根据在1年的测量期内在平板横截面上测得的温度差确定进入地下的热损失。还使用2D FE模型通过数值模拟研究了结构的长期性能。根据现场测试结果和模拟结果,冬季平板温度的升高显着增加了流入地下土壤的流量,该流量也在平板的中心部分。对标准建筑物的理论计算表明,地上平板结构向地下的热损失占建筑物总热损失的重要部分,并且热损失的强度强烈取决于板的平均温度结构体。设计地面平板的隔热层时,应考虑各种地板采暖系统对建筑物总能耗的影响。版权

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