Eine Plattform für die Wissenschaft: Bauingenieurwesen, Architektur und Urbanistik
Evaluating the indoor thermal resilience of ventilative cooling in non-residential low energy buildings: A review
Abstract The quality of future working circumstances for many will be contingent on how low energy indoor spaces respond to challenges from accelerated ambient warming. Resilient cooling is increasingly relevant given the need to evaluate whether a building designed today is resilient against extreme disturbances to the thermal environment from events in the future. The most vulnerable spaces are likely to be those that adopt ventilative cooling. This study reviewed recent research relating to these buildings, discussing different definitions, metrics and approaches available to quantify indoor thermal resilience, also evaluating the extent to which existing published studies have captured each of the resilient criteria. Findings show that, while the vulnerability and resistance of indoor environments in low energy buildings has been investigated, more research is needed regarding the robustness and recoverability of ventilative cooling strategies. More studies are needed examining the resilience of designs that incorporate different heat sinks as well as multiple supplementary passive cooling interventions. There is also a lack of empirical data for ventilative cooling in low energy buildings to verify and support improvements in design practices and building regulations. Studies investigating the holistic response of occupants under extreme conditions in these spaces are also needed.
Evaluating the indoor thermal resilience of ventilative cooling in non-residential low energy buildings: A review
Abstract The quality of future working circumstances for many will be contingent on how low energy indoor spaces respond to challenges from accelerated ambient warming. Resilient cooling is increasingly relevant given the need to evaluate whether a building designed today is resilient against extreme disturbances to the thermal environment from events in the future. The most vulnerable spaces are likely to be those that adopt ventilative cooling. This study reviewed recent research relating to these buildings, discussing different definitions, metrics and approaches available to quantify indoor thermal resilience, also evaluating the extent to which existing published studies have captured each of the resilient criteria. Findings show that, while the vulnerability and resistance of indoor environments in low energy buildings has been investigated, more research is needed regarding the robustness and recoverability of ventilative cooling strategies. More studies are needed examining the resilience of designs that incorporate different heat sinks as well as multiple supplementary passive cooling interventions. There is also a lack of empirical data for ventilative cooling in low energy buildings to verify and support improvements in design practices and building regulations. Studies investigating the holistic response of occupants under extreme conditions in these spaces are also needed.
Evaluating the indoor thermal resilience of ventilative cooling in non-residential low energy buildings: A review
Tavakoli, Elahe (Autor:in) / O'Donovan, Adam (Autor:in) / Kolokotroni, Maria (Autor:in) / O'Sullivan, Paul D. (Autor:in)
Building and Environment ; 222
05.07.2022
Aufsatz (Zeitschrift)
Elektronische Ressource
Englisch
Ventilative Cooling in Residential Buildings
Springer Verlag | 2021
|Innovations in Ventilative Cooling
UB Braunschweig | 2021
|Analysis of resilience of ventilative cooling technologies in a case study building
BASE | 2020
|Fire Smoke Control and Ventilative Cooling of Atrium in High-Rise Buildings
Springer Verlag | 2023
|