algorithmic modeling for Rhino
Welcome to
Grasshopper
Added by Parametric House 0 Comments 0 Likes
Added by Parametric House 0 Comments 0 Likes
Added by Parametric House 0 Comments 0 Likes
Added by Parametric House 0 Comments 0 Likes
Added by Parametric House 0 Comments 0 Likes
© 2024 Created by Scott Davidson. Powered by
Comment Wall (1 comment)
You need to be a member of Grasshopper to add comments!
Hi karla grijalva
first of all ,i would like to thank you for your work and your research ,especially in your master thesis ( Associative Design for Building Envelopes’’ Sun Control and Shading Devices" which i found very intresting , I have your thesis and it will be the base of my futur work, I'm a graduate student in bioclimatic architecture and environment in Constantine -Algeria , I will prepare a thesis for my master degree in the theme of " parametric design, the dynamic envelope and intelligent façade" and really I need your help, if you can send me your work in grasshopper in(.ghx) mentioned in the "APPENDIX D SOLAR CONTROL VISUAL DEFINITION "(GRASSHOPPER),because i can't download it from the web site , I'm juste a beginner in grasshopper so I want to master the link between all the elements ,for this reason I would like to master your exemple in grasshopper as beginning , and I'll work with daylighting + thermal comfort in my thesis which is the continuity of your work, can you share your exemple with me please ? and why did you choose a 200 btu/ft² as a limits for direct normal irradiance , what is the formula ?
I'm waiting for your response because it's so importante for my work , and i promise you , i will put your name in my references .
thank you karla.
the files needed are:
the part which contains:
1-Solar Irradiance / TMY3 Excel Data (in grasshopper)
2-:Surface Geometry Analysis / Grid Pattern Selection (in grasshopper)
3-: Solar Profile Angles (in grasshopper)
4- Shading Geometry Profile Angles (in grasshopper)