能源改造和被动冷却:小学过热和空气质量

Q1 Engineering
Buildings & cities Pub Date : 2022-04-06 DOI:10.5334/bc.159
D. Grassie, Y. Schwartz, P. Symonds, I. Korolija, A. Mavrogianni, D. Mumovic
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引用次数: 9

摘要

虽然以前使用建筑存量模型来调查国家能源效率改造对空间供暖需求的影响,但也会对室内过热和空气质量产生影响,特别是在具有高度间歇性占用模式的学校。本文基于对包含英国9629所小学建筑的全国性财产数据调查计划(PDSP)的分析,在包含111个原型的英语教室库存模型中评估了室内过热风险和空气质量。在自然通风的教室中,评估了室内温度、供暖需求和三种污染物(co2、NO 2、PM 2.5)浓度的指标,同时探索了未来的气候预测、改造和过热缓解方案,以分析学校库存的恢复能力。东南朝向教室的过热时间是北朝向教室的四到六倍。1976年后的原型最容易过热,这表明了更好的绝缘和密封教室与过热预防之间的冲突。一系列的改造和被动冷却措施可以减轻过热,虽然机械
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Energy retrofit and passive cooling: overheating and air quality in primary schools
While building stock modelling has been used previously to investigate the space heating demand implications of national energy efficiency retrofitting, there are also implications for indoor overheating and air quality, particularly in schools, with highly intermittent occupancy patterns. This paper assesses indoor overheating risk and air quality within an English classroom stock model containing 111 archetypes, based on the analysis of the nationwide Property Data Survey Programme (PDSP) containing 9629 primary school buildings in England. Metrics for indoor temperatures, heating demand and concentrations of three contaminants (CO 2 , NO 2 , PM 2.5 ) were estimated in naturally ventilated classrooms, while exploring future climate projections, retrofit and overheating mitigation scenarios to analyse school stock resilience. Classrooms with a south-east orientation experience around four to six times the overheating-hours compared with those with a northern orientation. Post-1976 archetypes are most susceptible to overheating, indicative of the conflict between better insulated and airtight classrooms and overheating prevention. A range of retrofit and passive cooling measures can mitigate against overheating alone, although mechanically
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来源期刊
CiteScore
5.40
自引率
0.00%
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审稿时长
25 weeks
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