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The Development of a Biomimetic Design Tool for Building Energy Efficiency

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Date 2020 Oct 15
PMID 33053756
Citations 2
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Abstract

The initial aim of the research was to develop a framework that would enable architects to look for thermoregulation methods in nature as inspiration for designing energy efficient buildings. The thermo-bio-architectural framework (ThBA) assumes designers will start with a thermal challenge in a building and then look in a systematic way for how this same issue is solved in nature. The tool is thus a contribution to architectural biomimicry in the field of building energy use. Since the ThBA was created by an architect, it was essential that the biology side of this cross-disciplinary tool was validated by experts in biology. This article describes the focus group that was conducted to assess the quality, inclusiveness, and applicability of the framework and why a focus group was selected over other possible methods such as surveys or interviews. The article first provides a brief explanation of the development of the ThBA. Given the focus here is on its validation, the qualitative data collection procedures and analysis results produced by NVivo 12 plus through thematic coding are described in detail. The results showed the ThBA was effective in bridging the two fields based on the existing thermal challenges in buildings, and was comprehensive in terms of generalising biological thermal adaptation strategies.

Citing Articles

Developing a Method to Connect Thermal Physiology in Animals and Plants to the Design of Energy Efficient Buildings.

Imani N, Vale B Biomimetics (Basel). 2022; 7(2).

PMID: 35735583 PMC: 9220311. DOI: 10.3390/biomimetics7020067.


Biomimicry for Energy-Efficient Building Design: A Bibliometric Analysis.

Varshabi N, Arslan Selcuk S, Mutlu Avinc G Biomimetics (Basel). 2022; 7(1).

PMID: 35225914 PMC: 8883929. DOI: 10.3390/biomimetics7010021.

References
1.
Kitzinger J . Qualitative research. Introducing focus groups. BMJ. 1995; 311(7000):299-302. PMC: 2550365. DOI: 10.1136/bmj.311.7000.299. View

2.
Kondracki N, Wellman N, Amundson D . Content analysis: review of methods and their applications in nutrition education. J Nutr Educ Behav. 2002; 34(4):224-30. DOI: 10.1016/s1499-4046(06)60097-3. View

3.
. Content analysis: method, applications, and issues. Health Care Women Int. 1992; 13(3):313-21. DOI: 10.1080/07399339209516006. View

4.
Freeman T . 'Best practice' in focus group research: making sense of different views. J Adv Nurs. 2006; 56(5):491-7. DOI: 10.1111/j.1365-2648.2006.04043.x. View

5.
Milling C, Rachlow J, Chappell M, Camp M, Johnson T, Shipley L . Seasonal temperature acclimatization in a semi-fossorial mammal and the role of burrows as thermal refuges. PeerJ. 2018; 6:e4511. PMC: 5858582. DOI: 10.7717/peerj.4511. View