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Influence of simulation assumptions and input parameters on energy balance calculations of residential buildings

机译:模拟假设和输入参数对住宅建筑能量平衡计算的影响

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In this study, we modelled the influence of different simulation assumptions on energy balances of two variants of a residential building, comprising the building in its existing state and with energy-efficient improvements. We explored how selected parameter combinations and variations affect the energy balances of the building configurations. The selected parameters encompass outdoor microclimate, building thermal envelope and household electrical equipment including technical installations. Our modelling takes into account hourly as well as seasonal profiles of different internal heat gains. The results suggest that the impact of parameter interactions on calculated space heating of buildings is somewhat small and relatively more noticeable for an energy-efficient building in contrast to a conventional building. We find that the influence of parameters combinations is more apparent as more individual parameters are varied. The simulations show that a building's calculated space heating demand is significantly influenced by how heat gains from electrical equipment are modelled. For the analyzed building versions, calculated final energy for space heating differs by 9-14 kWh/m(2) depending on the assumed energy efficiency level for electrical equipment. The influence of electrical equipment on calculated final space heating is proportionally more significant for an energy-efficient building compared to a conventional building. This study shows the influence of different simulation assumptions and parameter combinations when varied simultaneously. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在本研究中,我们对不同模拟假设对住宅建筑的两种变体的能量平衡的影响进行了建模,其中包括住宅的现有状态并进行了节能改进。我们探索了选定的参数组合和变化如何影响建筑物配置的能量平衡。所选参数包括室外小气候,建筑物隔热层以及包括技术装置在内的家用电气设备。我们的建模考虑了不同内部热量获取的每小时以及季节性变化。结果表明,与常规建筑相比,参数交互作用对建筑物的计算出的空间供暖的影响相对较小,并且对于节能建筑而言相对更明显。我们发现,随着更多单个参数的变化,参数组合的影响更加明显。仿真显示,建筑物的计算空间供暖需求受电气设备热量建模的影响很大。对于分析的建筑版本,空间加热的最终能量计算值相差9-14 kWh / m(2),具体取决于电气设备的假定能效水平。与传统建筑相比,对于节能建筑,电气设备对最终空间供暖的影响成比例地更大。这项研究显示了同时变化时不同的模拟假设和参数组合的影响。 (C)2016 Elsevier Ltd.保留所有权利。

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