Application of Digital Tools for Modular Light Elements of Ephemeral Structures
DOI:
https://doi.org/10.24867/27FA09KrnjaicKeywords:
analysis, design, modular system, geometric cell, lightingAbstract
This paper explains the process of designing a modular system for defining interior spaces with integrated lighting. The analysis and design of the individual cell in the system was done, defining the best shape and dimensions of the cell. The concept of changing the brightness and colour of the lights was defined using a microcontroller in combination with sensors and the integration of light into the cell was performed. The work is concluded by creating a cell prototype and giving an example of creating a form using cells.
References
[1] Augustin, S., Frankel, N. and Coleman, C.; 2009. Place advantage: Applied psychology for interior architecture. John Wiley & Sons.
[2] Lelieveld, C.M.J.L., Voorbij, A.I.M. and Poelman, W.A., 2007. Adaptable architecture. Building Stock Activation, pp.245-252.
[3] Flynn, J.E., Spencer, T.J., Martyniuk, O. and Hendrick, C., 1973. Interim study of procedures for investigating the effect of light on impression and behavior. Journal of the Illuminating Engineering Society, 3(1), pp.87-94.
[4] Gardner, M.; 1984. The Sixth Book of Mathematical Games from Scientific American. Chicago, IL: University of Chicago Press, p.183-184.
[5] Patrick Lynch. "BIG's Serpentine Pavilion to be Moved to Permanent Home in Vancouver" 03 Apr 2017. ArchDaily. Pristupljeno: 28 Sep 2023. Dostupno na: https://images.adsttc.com/media/images/5756/e802/e58e/ce8b/5100/0001/large_jpg/big_pavilion_-_image_c_iwan_baan_2.jpg?1465313262
[6] Weaire, D. and Phelan, R., 1994. A counter-example to Kelvin's conjecture on minimal surfaces. Philosophical Magazine Letters, 69(2), pp.107-110.
[7] LAVA, DIGITAL ORIGAMI MASTERCLASS. Pristupljeno: 28 Sep 2023. Dostupno na: https://www.l-a-v-a.net/assets/Uploads/_resampled/croppedimage755510-DigitalOrigami300dpiIan-Barnes03-04-10.jpg
[8] Arthur, L.L., 1976. Space Structures, Their Harmony and Counterpoint, p. 127-132.
[9] Cundy, H.M. and Rollett, A.P., 1961. Mathematical models. p. 100-104.
[10] Steinhaus, H., 1999. Mathematical snapshots. Courier Corporation. p. 185-190
[2] Lelieveld, C.M.J.L., Voorbij, A.I.M. and Poelman, W.A., 2007. Adaptable architecture. Building Stock Activation, pp.245-252.
[3] Flynn, J.E., Spencer, T.J., Martyniuk, O. and Hendrick, C., 1973. Interim study of procedures for investigating the effect of light on impression and behavior. Journal of the Illuminating Engineering Society, 3(1), pp.87-94.
[4] Gardner, M.; 1984. The Sixth Book of Mathematical Games from Scientific American. Chicago, IL: University of Chicago Press, p.183-184.
[5] Patrick Lynch. "BIG's Serpentine Pavilion to be Moved to Permanent Home in Vancouver" 03 Apr 2017. ArchDaily. Pristupljeno: 28 Sep 2023. Dostupno na: https://images.adsttc.com/media/images/5756/e802/e58e/ce8b/5100/0001/large_jpg/big_pavilion_-_image_c_iwan_baan_2.jpg?1465313262
[6] Weaire, D. and Phelan, R., 1994. A counter-example to Kelvin's conjecture on minimal surfaces. Philosophical Magazine Letters, 69(2), pp.107-110.
[7] LAVA, DIGITAL ORIGAMI MASTERCLASS. Pristupljeno: 28 Sep 2023. Dostupno na: https://www.l-a-v-a.net/assets/Uploads/_resampled/croppedimage755510-DigitalOrigami300dpiIan-Barnes03-04-10.jpg
[8] Arthur, L.L., 1976. Space Structures, Their Harmony and Counterpoint, p. 127-132.
[9] Cundy, H.M. and Rollett, A.P., 1961. Mathematical models. p. 100-104.
[10] Steinhaus, H., 1999. Mathematical snapshots. Courier Corporation. p. 185-190
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Published
2024-07-06
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Section
Architecture