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Determination of the most influential and cost-optimal building characteristics on the energy performance of commercial and industrial buildings

机译:确定对商业和工业建筑的能源性能影响最大,成本最优的建筑特征

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Unlike other types of buildings, commercial and industrial buildings have been so far “forgotten”. In addition, EPBD requirements are increasingly challenging for this type of buildings. This paper aims to identify the most building determinants of the energy performance of commercial and industrial buildings, focussing on the building envelope. Building energy simulations (BES) in TRNSYS are used to simulate the energy demand for heating and cooling in five building variants. The Pareto optimality approach that considers the economic and energetic objectives equally, is used to determine the cost-optimal solutions. The sensitivity analysis and cost-optimal study clearly reveal that airtightness seems to be the most important factor. Although heat recovery on a balanced mechanical ventilation system has a major impact on the energy demand for heating, this measure is not cost-optimal. The large impact of the U-value of the roof on the energy demand for heating is also reflected in the cost-optimal study. The insulation of the floor do not appear to be cost-optimal. Moreover, attention to construction detailing is important. The additional energy losses that can occur due to thermal bridges quickly reach significant values although solving the thermal bridges seems not to be cost-optimal.
机译:迄今为止,与其他类型的建筑物不同,商业和工业建筑物已被“遗忘”。另外,对于这类建筑物,EPBD的要求越来越具有挑战性。本文旨在确定建筑物和商业建筑物能源性能的最主要决定因素,重点是建筑物围护结构。 TRNSYS中的建筑能耗模拟(BES)用于模拟五个建筑变体中供暖和制冷的能源需求。帕累托最优方法平等地考虑了经济和精力目标,用于确定成本最优的解决方案。敏感性分析和成本优化研究清楚地表明,气密性似乎是最重要的因素。尽管平衡的机械通风系统上的热量回收对加热的能源需求有重大影响,但这种措施并非成本最优的。成本优化研究也反映了屋顶U值对供暖能源需求的巨大影响。地板的隔热效果似乎不是最佳的。此外,注意构造细节很重要。尽管解决热桥似乎并不是成本最优的,但由于热桥而可能发生的额外能量损失很快就达到了可观的水平。

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