Uploaded November 2017 | Updated September 2026, 9 hours ago
Digging through my archives I found this series of attempts to reproduce thick and large scale smoke with Blender smoke simulator from 2011 including some buggy behavior being fixed later. While it looks pretty at times it also shows that sometimes it takes an awful lot of time to get to satisfactory results. ;)
Domain resolution: 512 + 1 division for high-res wavelets
kostackstudio.de
Digging through my archives I found this series of attempts to reproduce thick and large scale smoke with Blender smoke simulator from 2011 including some buggy behavior being fixed later. While it looks pretty at times it also shows that sometimes it takes an awful lot of time to get to satisfactory results. ;)
Domain resolution: 512 + 1 division for high-res wavelets
kostackstudio.de




![WTC Simulation 2.0 Announcement [8K]
To improve building designs you need to understand their behavior. 10 years ago there was a first simulation attempt of the top of the north tower uploaded to this channel. 6 years ago this led to the opportunity to develop a new software for structural simulation within a scientific environment. And now is a good time to put the Bullet Constraints Builder to the ultimate test... Stay tuned!
https://inachuslaurea.wordpress.com WTC Simulation 2.0 Announcement [8K]](https://i.ytimg.com/vi/WbsQrsN3mIU/mqdefault.jpg)




![Surfside Collapse Air Pockets Visualization | Champlain Towers Condo Miami Florida [8K]
This video follows up on our earlier simulation of the Champlain Towers South collapse in Surfside, Florida (https://youtu.be/HPwJ0JvTcg8). It demonstrates the formation of air pockets within the collapsed structure allowing to identify potential zones of interest for search and rescue teams to plan escape routes or adopt first aid strategies for the rescue of victims.
The simulation result can be post-processed to visualize cavities within the debris heap. In this analysis empty space is represented by color-coded bubbles allowing the assessment where big enough air pockets for survival may possibly have formed.
Even though the initial distribution of the dummy dolls has been randomized and thus they cannot be used to trace back the fate of individuals, it can be observed that most of them ended up in very dense areas with very little chance of survival.
The authors hope to not distress relatives of victims with the application of dummy dolls in this simulation that have the sole purpose of tracking victims in potential cavities within the debris.
Credits:
Simulation & video by Kai Kostack
http://kostackstudio.de
Made with Blender + BCB + Fracture Modifier
https://blender.org
https://inachuslaurea.wordpress.com
https://github.com/KaiKostack/bullet-constraints-builder
https://blenderartists.org/forum/showthread.php?343637-Custom-Build-Blender-Fracture-Modifier
The BCB structural simulation software has been developed at the Laurea University of Applied Sciences, Finland. Written within the scope of EU Inachus FP7 Project (607522): Technological and Methodological Solutions for Integrated Wide Area Situation Awareness and Survivor Localisation to Support Search and Rescue (USaR) Teams Surfside Collapse Air Pockets Visualization | Champlain Towers Condo Miami Florida [8K]](https://i.ytimg.com/vi/XkwHxVGKQKU/mqdefault.jpg)
