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Influence of envelope, structural thermal mass and indoor content on the building heating energy flexibility

机译:围护结构,结构热质量和室内成分对建筑物供热弹性的影响

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This article presents the results of a numerical study investigating the influence of the main building parameters on the indoor space heating energy flexibility of a Danish house. The focus is placed here on the envelope insulation level, the structural thermal mass, the additional thermal mass of indoor content (indoor items/furniture, PCM integrated in furnishing, PCM wallboards) and the type of heating system. The heating energy flexibility is defined as the dwelling's ability to shift heating use in time without jeopardizing indoor comfort and technical constraints. A heat storage strategy with indoor temperature set point modulation controlled by a price signal is implemented in the building model. It is shown that the insulation level of the envelope is the building's characteristic with the largest effect on the heating energy flexibility. To a lesser extent, the total thermal inertia also presents a significant influence. It was also found that the presence of indoor items and furniture in the built environment can increase the building time constant and energy flexibility potential by up to 42% and 21% respectively, in the case of dwellings with low structural thermal mass. Finally, phase change materials integrated in wallboards or in furnishing elements can increase substantially the time constant and heating energy flexibility of a house. (C) 2018 Elsevier B.V. All rights reserved.
机译:本文提供了一项数值研究的结果,该研究调查了主要建筑参数对丹麦房屋室内空间供暖能源灵活性的影响。这里的重点放在外壳的隔热层,结构热质量,室内内容物的附加热质量(室内物品/家具,集成在家具中的PCM,PCM墙板)以及加热系统的类型。加热能量的灵活性定义为住宅在不影响室内舒适度和技术约束的情况下及时改变供暖用途的能力。在建筑模型中实现了一种具有价格信号控制的室内温度设定点调制的储热策略。结果表明,围护结构的隔热等级是建筑物的特征,对加热能的柔韧性影响最大。在较小程度上,总热惯性也有很大的影响。还发现,在具有低结构热质量的房屋的情况下,室内环境中存在的室内物品和家具可以分别将建筑时间常数和潜在的能量灵活性分别提高42%和21%。最后,集成在墙板或装饰元素中的相变材料可以大大增加房屋的时间常数和热能灵活性。 (C)2018 Elsevier B.V.保留所有权利。

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