里斯本两个18世纪历史街区通往新经济园区的道路研究

Carlos M. Duarte, A. Morais
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摘要

1758年里斯本Pombaline街区重建计划包括紧凑的矩形住宅街区,该住宅街区采用轻木结构的实体建筑元素。考虑到原Pombaline街区的建设性和建筑固有特征,如果在街区尺度上实施能源改造策略,而不是通常的单个建筑或部分方法,它显示出实现NZEB水平的潜力。历史建筑的改造对干预的深度和效率提出了质疑。对建筑遗产价值的影响必须是剩余或零,而与能源有关的改善必须是明显的。本文旨在分析和比较在两个原始区块上实施被动、主动和BIST/PV系统包对能源需求和一次能源消耗的结果,并挑战最小化对案例研究外观的影响。建筑能源模拟方法应用于整个建筑动态模拟软件EnergyPlus。结果表明,外墙围护结构的改进可以减少高达50%的供暖和制冷能源需求,同时提高热舒适性。最后,VRF/生物质组合加热解决方案在一次能源消耗方面显示出最佳效果,而光伏和太阳能热系统被证明在达到NZEB水平的性能方面发挥了重要作用。
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Study on Paving the Road to NZEB on Two 18th Century Historical Blocks in Lisbon
The 1758 Lisbon Pombaline Quarter Reconstruction Plan comprises compact rectangular-shaped residential blocks built with a system that complies solid mass construction elements with a light wooden structure. Considering both constructive and architectural inherent features of the original Pombaline block, it shows the potential to achieve NZEB level if an energy retrofit strategy at a block scale is implemented instead of the usual single building or fraction approach. The retrofit of historic buildings has raised questions regarding intervention’s depth and efficiency. The impact on the built heritage value must be residual or null, while energy-related improvements must be noticeable. This paper intends to analyze and compare the result on energy demand and primary energy consumption of passive, active, and BIST/PV systems packages implementation on two original blocks, with the challenge of minimizing the impact on case studies appearance. A Building Energy Simulation methodology is applied using the whole-of-building dynamic simulation software EnergyPlus. The results show that exterior envelope improvements can reduce up to 50% heating and cooling energy demands increasing thermal comfort at the same time. Finally, a combined VRF/Biomass heating solution displays the best results on primary energy consumption, while photovoltaic and solar thermal systems proved to have an essential role to reach NZEB level performance.
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