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- W2889414882 abstract "Artificial lighting energy consumption in buildings can be reduced by efficiently daylighting the occupied spaces. Artificial lighting comprehends 21 % of the total energy consumption in tertiary buildings (Swedish energy agency, 2015). In many buildings daylight access is neglected, thus redirecting daylight is an efficient strategy to optimize daylighting while keeping the same area of openings for daylight. Furthermore, daylighting has proven to improve health and productivity of users (G. i Pallardo, 2011). This thesis, which final goal is to improve daylight in buildings, describes the methodology to design and develop a tool to assess optimal tilt for planar daylight reflectors in courtyards. This methodology builds a tool which extracts efficiency values related to input data and reach a result. The tool development has four phases: First, the factors influencing daylight with reflectors in courtyards were described. Through computer simulation with Honeybee for Grasshopper in Rhinoceros 5.0, case condition were simulated by varying one factor per simulation while keeping others constant. Afterwards, efficiency results were obtained by comparing the simulation with reflector results with the results of the simulation without reflector. And finally, using a study case condition input in the tool and comparing those conditions to the previously simulated with similar conditions, a tilt is assessed. With the developed methodology, a tool was achieved with which a tilt for fixed reflectors was assessed for a case condition. Moreover, the tool results included efficiency table with an estimated efficiency for each result. This document also includes a parametric study to assess the optimal tilt for a reflector in a case and compare its results with the result obtained by the tool. The comparison showed an accurate tilt assessment and comparable daylight improvement assessment. By developing the tool, the time taken to assess possible efficiency and tilt for a reflector is reduced. Furthermore, the tool is transferable and easy to use by non-qualified users." @default.
- W2889414882 created "2018-09-07" @default.
- W2889414882 creator A5007726070 @default.
- W2889414882 date "2018-01-01" @default.
- W2889414882 modified "2023-09-24" @default.
- W2889414882 title "Methodology for a tool to assess daylight reflector tilt" @default.
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- W2889414882 hasPublicationYear "2018" @default.
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