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Paving the Way to NZEB on two Historical Blocks in Lisbon Pombaline Quarter

机译:在里斯本八聚环属季度的两个历史街区铺平了云南

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The 1758 Lisbon Pombaline Quarter reconstruction plan is made of compact rectangular shaped residential blocks,built with a system that complies solid mass construction elements with a light wooden structure.If we take into consideration 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 interventions depth and efficiency,as the impact on the built heritage value has to be residual or null while energy-related improvements must be noticeable.With this in mind,this paper intends to analyse 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 display the best results on primary energy consumption while photovoltaic and solar thermal systems proved to have an essential role to achieve NZEB performance.
机译:1758年1758年Lisbon Pombaline重建计划由紧凑型矩形住宅块制成,采用符合浅木结构的固体批量建筑元件的系统构建。如果我们考虑原始薄波块的建设性和架构固有特征,它如果实施了块尺度的能量改造策略,则展示了实现NEEB水平的潜力,而不是通常的单一建筑物或分数方法。历史建筑的改造提出了关于干预措施深度和效率的问题,因为对建造遗产的影响价值必须是残留的或零,而能量相关的改进必须是明显的。在这方面,本文旨在分析和比较两次被动,主动和BIST / PV系统包的能源需求和初级能源消耗的结果原始块,具有最大限度地减少对案例研究外观的影响。建立e使用全部建筑的动态仿真软件能量应用来应用方便仿真方法。结果表明,外部包络改善可以减少50%的加热和冷却能量需求同时增加热舒适性。最后,组合的VRF /生物质加热溶液在初级能耗中显示最佳结果,而光伏和太阳能热系统证明具有重要作用以实现NZEB性能。

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