All Videos Tagged Kangaroo (Grasshopper) - Grasshopper 2024-04-23T19:56:50Z https://www.grasshopper3d.com/video/video/listTagged?tag=Kangaroo&rss=yes&xn_auth=no Particle Collision using Kangaroo - Rhino Grasshopper tag:www.grasshopper3d.com,2022-09-14:2985220:Video:2260513 2022-09-14T16:32:17.121Z kgm https://www.grasshopper3d.com/profile/kgm <a href="https://www.grasshopper3d.com/video/particle-collision-using-kangaroo-rhino-grasshopper"><br /> <img src="https://storage.ning.com/topology/rest/1.0/file/get/10812190261?profile=original&amp;width=240&amp;height=180" width="240" height="180" alt="Thumbnail" /><br /> </a><br />Particle Collision using Kangaroo- Rhino Grasshopper <a href="https://www.grasshopper3d.com/video/particle-collision-using-kangaroo-rhino-grasshopper"><br /> <img src="https://storage.ning.com/topology/rest/1.0/file/get/10812190261?profile=original&amp;width=240&amp;height=180" width="240" height="180" alt="Thumbnail" /><br /> </a><br />Particle Collision using Kangaroo- Rhino Grasshopper Formfinding and physics simulation of bending active tent tag:www.grasshopper3d.com,2019-03-03:2985220:Video:1967609 2019-03-03T09:07:09.487Z Tim Fischer https://www.grasshopper3d.com/profile/TimFischer <a href="https://www.grasshopper3d.com/video/formfinding-and-physics-simulation-of-bending-active-tent"><br /> <img alt="Thumbnail" height="135" src="https://storage.ning.com/topology/rest/1.0/file/get/1249958227?profile=original&amp;width=240&amp;height=135" width="240"></img><br /> </a> <br></br>The calculation takes a reduction of the 1D mesh- curves as springs (using Hooks' law) and the undirected angle deformation of the poly lines (subdivided boundary curves) into account. The result showed a relationship of bending strength to membrane pretension of factor: 0.004, with a maximal displacement of: 0.202 m, for the irregular ~100 m³… <a href="https://www.grasshopper3d.com/video/formfinding-and-physics-simulation-of-bending-active-tent"><br /> <img src="https://storage.ning.com/topology/rest/1.0/file/get/1249958227?profile=original&amp;width=240&amp;height=135" width="240" height="135" alt="Thumbnail" /><br /> </a><br />The calculation takes a reduction of the 1D mesh- curves as springs (using Hooks' law) and the undirected angle deformation of the poly lines (subdivided boundary curves) into account. The result showed a relationship of bending strength to membrane pretension of factor: 0.004, with a maximal displacement of: 0.202 m, for the irregular ~100 m³ envelope. Basket Video tag:www.grasshopper3d.com,2019-01-29:2985220:Video:1960125 2019-01-29T04:06:36.620Z Yevgeny Koramblyum https://www.grasshopper3d.com/profile/YevgenyKoramblyum <a href="https://www.grasshopper3d.com/video/formfinding-and-physics-simulation-of-bending-active-tent"><br /> <img src="https://storage.ning.com/topology/rest/1.0/file/get/1249958227?profile=original&amp;width=240&amp;height=135" width="240" height="135" alt="Thumbnail" /><br /> </a><br />Recreating a physical process of folding a wire lattice with Kangaroo. The goal is to create a surface with equal edge lengths.<br /> <br /> <br /> -Oomsudios<br /> -Jason Krugman Studio <a href="https://www.grasshopper3d.com/video/formfinding-and-physics-simulation-of-bending-active-tent"><br /> <img src="https://storage.ning.com/topology/rest/1.0/file/get/1249958227?profile=original&amp;width=240&amp;height=135" width="240" height="135" alt="Thumbnail" /><br /> </a><br />Recreating a physical process of folding a wire lattice with Kangaroo. The goal is to create a surface with equal edge lengths.<br /> <br /> <br /> -Oomsudios<br /> -Jason Krugman Studio Grasshopper water drops simulation. tag:www.grasshopper3d.com,2017-11-19:2985220:Video:1855771 2017-11-19T21:19:05.231Z Alaa Serri https://www.grasshopper3d.com/profile/AlaaSerri <a href="https://www.grasshopper3d.com/video/grasshopper-water-drops-simulation"><br /> <img src="https://storage.ning.com/topology/rest/1.0/file/get/2778200479?profile=original&amp;width=240&amp;height=180" width="240" height="180" alt="Thumbnail" /><br /> </a> <a href="https://www.grasshopper3d.com/video/grasshopper-water-drops-simulation"><br /> <img src="https://storage.ning.com/topology/rest/1.0/file/get/2778200479?profile=original&amp;width=240&amp;height=180" width="240" height="180" alt="Thumbnail" /><br /> </a> Bending_Active_Simulation_02 tag:www.grasshopper3d.com,2017-08-31:2985220:Video:1807111 2017-08-31T16:02:57.200Z Zuardin Akbar https://www.grasshopper3d.com/profile/adinakbar <a href="https://www.grasshopper3d.com/video/bending-active-simulation-02"><br /> <img src="https://storage.ning.com/topology/rest/1.0/file/get/2778200097?profile=original&amp;width=240&amp;height=135" width="240" height="135" alt="Thumbnail" /><br /> </a><br />Self-Assembling System Simulation_02 | Composite of 2 Different Material Behavior | Green: Soft Membrane + Red: Plastic Surface <a href="https://www.grasshopper3d.com/video/bending-active-simulation-02"><br /> <img src="https://storage.ning.com/topology/rest/1.0/file/get/2778200097?profile=original&amp;width=240&amp;height=135" width="240" height="135" alt="Thumbnail" /><br /> </a><br />Self-Assembling System Simulation_02 | Composite of 2 Different Material Behavior | Green: Soft Membrane + Red: Plastic Surface