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Energy saving potential with smart thermostats in low-energy homes in cold climate

机译:寒冷气候下低能量恒温器的节能潜力

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Smart home systems with smart thermostats have been used for years. Although initially mostly installed for improving comfort, their energy saving potential has become a renowned topic. The main potential lies in temperature reduction during the times people are not home, which can be detected by positioning their phones. Even if the locating is precise, the maximum time people are away from home is short in comparison to the buildings’ time constants. The gaps are shortened by the smart thermostats, which start to heat up hours before occupancy to ensure comfort temperatures at arrival, and low losses through high insulation and heat-recovery ventilation in new buildings, which slow down the cool-down process additional to the thermal mass. Therefore, it is not clear how high the actual savings can be for smart thermostats in new buildings. In this work, a smart radiator valve was installed for a radiator in a test building. Temperature setback measurements were used to calibrate a simulation model in IDA ICE. A simulation analysis was carried out for estimating the energy saving potential in a cold climate for different usage profiles.
机译:多年来使用具有智能恒温器的智能家居系统。虽然最初主要安装了提高舒适性,但它们的节能潜力已成为着名的主题。主要潜力在于人们不回家的时间内降温,可以通过定位手机来检测。即使定位精确,与建筑物的时间常数相比,人们远离家庭的最大时间也很短。智能恒温器缩短了差距,该恒温器开始在占用前加热时间,以确保到达的舒适温度,通过新建筑物的高绝缘和热恢复通风较低,减慢了冷却过程热质量。因此,目前尚不清楚实际储蓄如何在新建筑物中智能恒温器。在这项工作中,安装了一个智能散热器阀,用于测试建筑物中的散热器。温度挫折测量用于校准IDA冰中的仿真模型。进行了模拟分析,用于估计寒冷气候的节能潜力以进行不同的使用型材。

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