Integrative Passive Design for Climate Change: A New Approach for Tropical House Design in the 21st Century
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Creator 1. Chalermwat Tantasavasdi
2. Torwong Chenvidyakarn
3. Maniporn Pichaisak
Title Integrative Passive Design for Climate Change: A New Approach for Tropical House Design in the 21st Century
Publisher G.B.P. Center Co., Ltd.
Publication Year 2554
Journal Title International Journal of Building, Urban, Interior and Landscape Technology
Journal Vol. 1
Page no. 5-19
Keyword Passive design,Natural ventilation,Thermal mass,Evaporative cooling,Climate change,Tropical house
ISSN 2228-9194
Abstract This article presents a new approach to passive building design which takes into account the impacts of climate change. The approach involves considering the relative performance of a range of low-energy, passive design alternatives under a projected future climate. A low-cost housing project in the hot-humid tropics of Thailand is used herein to demonstrate the application of this new design approach. Theoretical analysis is carried out and shows that if the potential changes in the ambient temperature, solar radiation and humidity driven by climate change are taken into account, a combination of a number of passive design techniques, including passive cooling, is likely to be required to achieve interior thermal comfort and energy efficiency in these houses. To eliminate the requirement for air-conditioning, the houses should be laid out in a staggered fashion on the plot to maximize airflows between the houses. Each house would also benefit from having its service areas (e.g. kitchen and bathroom) located on the west side to act as a thermal buffer for its main spaces (e.g. bedroom and living room). A combination of a double roof and shaded double fa?ades would also be advisable to provide effective protection from strong solar radiation. The use of thermal mass in conjunction with passive evaporative cooling and natural ventilation would help further to provide the cooling needed in more extreme weather. The analysis shows that, with all the above techniques in place, up to a 95 per cent reduction in energy use for cooling could be achieved in the passive house, compared to the energy used in a typical air-conditioned house operating in the same conditions, while achieving a comparable level of comfort. A discussion on how to generalize this new design approach to houses in different settings is provided.
International Journal of Building, Urban, Interior and Landscape Technology

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