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The Importance of Heating System Transient Response in Domestic Energy Labelling

机译:供热系统瞬态响应在家庭能源标签中的重要性

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European National Calculation Methods (NCM), such as the UK Standard Assessment Procedure (SAP), are used to make standardised and simplified assessments of building energy performance. These NCMs contain simplifications to aid ease of use and comparability of resulting Energy Performance Certificates (EPC). By comparing SAP with a modern, dynamic modelling system, this study quantifies internal temperatures and thereby heating energy consumption. Results show that for the considered test house SAP results correspond closely to a dynamic model using an idealistic heating system, with perfect control and instant responsiveness. However, the introduction of a dynamic, physically realistic gas fired boiler and water based heating system to the model results in a consistent increase in internal temperature (0.5 ???°C) and energy demand (by ca. 1000 kWh/a). Variation of further parameters within the dynamic model, controls and heat source size, are presented and compared to SAP results and assumptions. The inclusion of more realistic dynamics in building energy modelling for NCMs may provide a better basis for effective decision making with respect to a wide range of heating systems.
机译:欧洲国家计算方法(NCM),例如英国标准评估程序(SAP),用于对建筑能源性能进行标准化和简化的评估。这些NCM包含简化内容,以帮助简化易用性并与由此产生的能源绩效证书(EPC)进行比较。通过将SAP与现代的动态建模系统进行比较,本研究量化了内部温度,从而加热了能耗。结果表明,对于所考虑的测试室,SAP结果与使用理想加热系统的动态模型非常接近,并具有完美的控制和即时响应能力。但是,在模型中引入动态的,物理上现实的燃气锅炉和水加热系统会导致内部温度(0.5℃)和能量需求(约1000 kWh / a)的持续增加。提出了动态模型,控制和热源尺寸内其他参数的变化,并与SAP结果和假设进行了比较。在NCM的建筑能耗模型中包含更逼真的动态特性,可以为各种供暖系统的有效决策提供更好的基础。

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