Article ID Journal Published Year Pages File Type
248574 Building and Environment 2012 11 Pages PDF
Abstract

An empirical study was carried out from Jan/05 to Apr/06 in a high-rise office building to reveal blind operation patterns and to investigate the variables driving blind usage. The positions of internal Venetian blinds of every façade were recorded on a daily basis. A subsidiary questionnaire survey was also carried out to understand the occupant’s sensation and experience of their built environment. This paper reviews and extends current knowledge of the motivating forces involved by analysing actual blind occlusion against some potentially influential factors. The study reported aims to fill gaps in previous studies by addressing: an office building in its entirety (not just the offices towards a specific orientation), assessing larger offices as is typical (not single occupancy) and studying the building over a period of 16 months (not just several weeks or months). The work demonstrates the importance of solar altitude and solar radiation as the principal determinants of blind use. The seasonal effect is also very significant, when taking building orientation into consideration. The variation of the occlusion is located separately in a notable way according to how long the rooms are exposed to sunlight. Occupants’ preferences for blind position are based on a long-term perception of sunlight and the built environment they are accustomed to. The study uses the logit analysis to predict the probability of blind lowering and raising actions: when solar radiation rises above 150 W/m2, more blinds will be raised up than pulled down. Also, insights are reported about different behaviour patterns in non-office spaces within the building.

► We study on the factors influencing the occupants’ blind-control behaviour. ► Factors such as weather stimulus and building orientation are analysed. ► The importance of solar altitude and solar radiation is demonstrated. ► Seasonal effect is significant when taking the orientation into consideration. ► More blinds are raised up than pulled down when solar radiation is above 150 W/m2.

Related Topics
Physical Sciences and Engineering Energy Renewable Energy, Sustainability and the Environment
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