Thermal comfort standards, measured internal temperatures and thermal resilience to climate change of free-running buildings: A case-study of hospital wards
Стандарты теплового комфорта, измеренные внутренние температуры и устойчивость зданий со свободным режимом вентиляции к изменению климата: тематическое исследование больничных палат
2011-12-22
SCID: 54.1/8r9pfaez
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climate change overheatinghospital wardshybrid ventilationthermal comfort standardsthermal resilience
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Abstract (AI)
In view of the warming climate, there is increasing concern about the likelihood of overheating inside UK buildings that are not mechanically cooled. A number of studies are examining this matter, of which the DeDeRHECC project is one. The recent availability of the UKCP09 future climate data projections has acted as a stimulus to such work. This paper illustrates how field measurement, thermal modelling and the generation of current and future typical and extreme weather years, can be used to provide a picture of the resilience of buildings to climate change. The unified framework for assessing both measurements and current and future predictions that is offered by the BSEN15251 thermal comfort standard is a crucial component. The paper focuses on internal temperatures during the day and at night in wards within the tower building at Addenbrooke’s hospital, which has a hybrid ventilation strategy. The maintenance of thermal comfort in such spaces is critically important and installing air-conditioning in response to climate change is expensive and potentially energy intensive. Fans appear to be a simple retrofit measure that may substantially improve the wards’ resilience to climate change even in extreme years. Whilst healthcare provides the back cloth, the methodology developed has a much wider utility for assessing thermal comfort in buildings in the current and future climate of the UK.
Key Findings
1
BS EN 15251 provides a unified framework for evaluating measured and predicted indoor temperatures and thermal comfort under present and future climates.
2
Hospital wards in Addenbrooke’s tower building, using hybrid ventilation, are evaluated for daytime and nighttime overheating and comfort maintenance.
3
Installing air-conditioning could be expensive and energy intensive, whereas fans may substantially improve ward resilience to climate change, including during extreme weather years.
4
The assessment methodology has broader applicability for evaluating thermal comfort in UK buildings under current and projected climates.
5
The study combines field measurements, thermal modelling, and current and future typical and extreme weather years to assess building resilience to climate change.
Research Object
Hospital wards in the hybrid-ventilated tower building at Addenbrooke’s Hospital
Research Subject
Daytime and nighttime internal temperatures, thermal comfort, and resilience to current and future UK climate conditions, including the potential effect of fan retrofits
Publication Details
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2011-12-22
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