建筑性能评估——苏格兰一座小型传统建筑翻新的设计方法

Janice A. Foster, A. Poston, S. Foster
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引用次数: 0

摘要

近年来,为了实现具有法律约束力的苏格兰二氧化碳(CO2)减排,越来越多的历史建筑应用了热性能改进。苏格兰超过20%的建筑环境是在1919年之前建造的,如果采取不适当的措施,这些建筑的结构改进目标可能会带来性能风险。本文通过一个案例研究,讨论了建筑性能评估(BPE)方法与位于苏格兰阿里塞格的社区历史建筑翻新设计过程的结合。该社区获得了资金,以改善这座19世纪的石头建筑的能源性能,并承诺将二氧化碳排放量减少75%。BPE于2014年作为设计过程的一部分进行,并于2015年进行了多次翻新以验证设计。最初的BPE确定了高热量损失,低效的供暖和照明系统导致居住者不适,高运行成本,最终导致冬季社区设施的损失。由此产生的BPE量化了建筑结构、居住者舒适度和降低能耗的改进,提倡将这种设计方法作为一种有益的工具,为历史建筑翻新提供信息。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Building Performance Evaluation – A Design Approach for Refurbishment of a Small Traditional Building in Scotland
Abstract In recent years, thermal performance improvements have been applied to an increasing number of historic buildings towards the achievement of the legally binding Scottish carbon dioxide (CO2) emission reductions. Over 20 % of the built environment in Scotland was constructed pre 1919 and the targeting of fabric improvements in these buildings can pose a performance risk if inappropriate measures are applied. This paper discusses through a case study a Building Performance Evaluation (BPE) approach used in conjunction with the design process for refurbishment of a community owned historic building, located in Arisaig, Scotland. The community received funding to improve the energy performance of this nineteenth century stone building and committed to a 75 % reduction in CO2 emissions. BPE was conducted in 2014 as part of the design process and repeated post-refurbishment in 2015 to validate the design. The initial BPE identified high heat losses, inefficient heating and lighting systems that resulted in occupant discomfort, high running costs and consequently the loss of a community facility during the winter months. The resulting BPE quantified improvements to the building fabric, occupant comfort and reduced energy consumption, which advocated this design approach as a beneficial tool for informing historic building refurbishment.
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