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A framework for the technical evaluation of residential buildings’ energy retrofit

机译:住宅建筑能源改造技术评估的框架

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Despite a wide range of energy-efficient technologies, financial products and public incentives are already available, the private as well as the public sector are struggling to invest in energy efficient solutions for buildings. The primary barriers are the high initial cost and the uncertain payback period of the energy refurbishment. Allowing for different scenario testing and considering interactions among different building energy systems, building energy simulation tools can help investors overcoming such barriers by offering support to the technical planning of energy refurbishment kits through quantitative information rather than qualitative. The energy performance and comfort of three reference multifamily residential buildings typologies were evaluated considering three envelope retrofitting performance levels (high-medium-low insulated and airtight) and different heating and domestic hot water systems (heat pump, boiler, district heating). The tested envelope retrofitting performance levels allow for heating need reduction between 50% and 90% compared to the reference case. The active cooling system is not accounted for and building energy simulations outputs include thermal comfort evaluation and overheating risk assessment during the summer season. The potential of photovoltaic system combined with heat pump is evaluated in the three reference cases leading to up to 30% of load coverage.
机译:尽管已经有了各种各样的节能技术,金融产品和公共奖励措施,但是私人和公共部门都在努力投资于建筑物的节能解决方案。主要障碍是高昂的初始成本和不确定的能源翻新投资回收期。允许进行不同的场景测试并考虑不同建筑能源系统之间的相互作用,建筑能源模拟工具可以通过定量信息而非定性信息为能源翻新套件的技术规划提供支持,从而帮助投资者克服这些障碍。评估了三种参考型多户住宅建筑类型的能源性能和舒适度,其中考虑了三种围护结构改造性能水平(高中低绝缘和气密性)以及不同的采暖和生活热水系统(热泵,锅炉,区域供暖)。经过测试的外壳改型性能水平使加热需求与参考案例相比减少了50%至90%。主动冷却系统未考虑在内,建筑能耗模拟输出包括夏季的热舒适性评估和过热风险评估。在三个参考案例中评估了结合热泵的光伏系统的潜力,该案例可实现高达30%的负载覆盖率。

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