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Dynamic thermal simulation of advanced natural ventilation in buildings : current and future usage, UK exemplar

Ji, Y; Lee, A; Fernando, TP

Dynamic thermal simulation of advanced natural ventilation in buildings : current and future usage, UK exemplar Thumbnail


Authors

A Lee



Abstract

This paper evaluates the use of advanced natural ventilation (ANV) strategies in a range of climatic conditions from four cities in the UK. A prototype ANV system was proposed to determine the most effective case in mitigating overheating. The case was then assessed under identical simulation conditions for all four ANV strategies. The overheating criteria used in the research include the single temperature criterion from CIBSE Guide A and the adaptive thermal comfort overheating criteria from BS EN 15251. Both the current and future ‘Design Summer Year (DSY)’ weather data were used to examine the thermal performances of the proposed design. The findings show that shading, night cooling and heavy weight structures (ceiling) were all useful in mitigating overheating, with night cooling being identified as the most effective measure. The work assessed the use of ANV in both current and future scenarios to quantify the limits of outdoor environmental conditions under which natural ventilation is an effective strategy for achieving thermal comfort. The adaptive thermal comfort overheating criteria were proved to be easier to meet compared with the CIBSE single temperature criterion. With the adaptive overheating criteria, the given design is predicted to not overheat until 2050 in London Heathrow; and for other places evaluated in the UK (Edinburgh, Manchester & Birmingham), the design passes these criteria. The Centre-in ANV strategies proved to be more effective than the Edge-in strategies for space cooling due to the extended structure thermal mass.

Citation

Ji, Y., Lee, A., & Fernando, T. (2020). Dynamic thermal simulation of advanced natural ventilation in buildings : current and future usage, UK exemplar. Architectural Engineering and Design Management, 16(4), 293-309. https://doi.org/10.1080/17452007.2019.1693334

Journal Article Type Article
Acceptance Date Nov 12, 2019
Online Publication Date Nov 19, 2019
Publication Date Jul 3, 2020
Deposit Date Dec 3, 2019
Publicly Available Date Nov 19, 2020
Journal Architectural Engineering and Design Management
Print ISSN 1745-2007
Publisher Taylor and Francis
Volume 16
Issue 4
Pages 293-309
DOI https://doi.org/10.1080/17452007.2019.1693334
Publisher URL https://doi.org/10.1080/17452007.2019.1693334
Related Public URLs https://www.tandfonline.com/toc/taem20/current