All Videos Tagged Radiation (Grasshopper) - Grasshopper 2024-04-25T13:28:28Z https://www.grasshopper3d.com/video/video/listTagged?tag=Radiation&rss=yes&xn_auth=no Thermal Walker tag:www.grasshopper3d.com,2016-04-08:2985220:Video:1503619 2016-04-08T11:08:39.163Z navid https://www.grasshopper3d.com/profile/navidhatefnia <a href="https://www.grasshopper3d.com/video/thermal-walker"><br /> <img src="https://storage.ning.com/topology/rest/1.0/file/get/2778197908?profile=original&amp;width=240&amp;height=180" width="240" height="180" alt="Thumbnail" /><br /> </a><br />This movie illustrates how NV method simulates Mean Radiant Temperature by gathering short wave radiation from direct, diffuse and reflected solar radiation ... <a href="https://www.grasshopper3d.com/video/thermal-walker"><br /> <img src="https://storage.ning.com/topology/rest/1.0/file/get/2778197908?profile=original&amp;width=240&amp;height=180" width="240" height="180" alt="Thumbnail" /><br /> </a><br />This movie illustrates how NV method simulates Mean Radiant Temperature by gathering short wave radiation from direct, diffuse and reflected solar radiation ... SONNENUHR - SELBSTLERNENDES COMPUTER TOOL FÜR PLANUNG tag:www.grasshopper3d.com,2016-04-05:2985220:Video:1501782 2016-04-05T21:29:29.235Z Igor Mitrić Lavovski https://www.grasshopper3d.com/profile/Igor425 <a href="https://www.grasshopper3d.com/video/sonnenuhr-selbstlernendes-computer-tool-f-r-planung"><br /> <img src="https://storage.ning.com/topology/rest/1.0/file/get/2778198314?profile=original&amp;width=240&amp;height=180" width="240" height="180" alt="Thumbnail" /><br /> </a><br />SELBSTLERNENDES COMPUTER TOOL FÜR PLANUNG Auf Basis definierter Parameter findet das Programm selbstständig Lösungen, errechnet mögliche Lösungsvarianten, un... <a href="https://www.grasshopper3d.com/video/sonnenuhr-selbstlernendes-computer-tool-f-r-planung"><br /> <img src="https://storage.ning.com/topology/rest/1.0/file/get/2778198314?profile=original&amp;width=240&amp;height=180" width="240" height="180" alt="Thumbnail" /><br /> </a><br />SELBSTLERNENDES COMPUTER TOOL FÜR PLANUNG Auf Basis definierter Parameter findet das Programm selbstständig Lösungen, errechnet mögliche Lösungsvarianten, un... Multi and Single-objective optimization by Igor Mitrić Lavovski tag:www.grasshopper3d.com,2015-07-15:2985220:Video:1326153 2015-07-15T10:34:09.884Z Igor Mitrić Lavovski https://www.grasshopper3d.com/profile/Igor425 <a href="https://www.grasshopper3d.com/video/multi-and-single-objective-optimization-by-igor-mitri-lavovski"><br /> <img alt="Thumbnail" height="180" src="https://storage.ning.com/topology/rest/1.0/file/get/2778198693?profile=original&amp;width=240&amp;height=180" width="240"></img><br /> </a> <br></br>This video is showing main principles for multi and single-objective optimization on one cubic meter.<br></br> 1. Part :<br></br> Multi-objective optimization for winter and summer period.<br></br> -Maximize solar radiation in winter<br></br> -Minimize solar radiation in summer<br></br> 2.Part<br></br> Single-objective optimization for annual solar radiation.… <a href="https://www.grasshopper3d.com/video/multi-and-single-objective-optimization-by-igor-mitri-lavovski"><br /> <img src="https://storage.ning.com/topology/rest/1.0/file/get/2778198693?profile=original&amp;width=240&amp;height=180" width="240" height="180" alt="Thumbnail" /><br /> </a><br />This video is showing main principles for multi and single-objective optimization on one cubic meter.<br /> 1. Part :<br /> Multi-objective optimization for winter and summer period.<br /> -Maximize solar radiation in winter<br /> -Minimize solar radiation in summer<br /> 2.Part<br /> Single-objective optimization for annual solar radiation.<br /> - Maximize solar radiation on 1m3 during a year<br /> 3. Multi-objective optimization for wind.<br /> - Measuring and optimizing a flow lines around 1m3 in order to "calm" curvature graph<br /> - maximizing surface area of 1m3<br /> <br /> For Evolutionary Solver used Galapagos<br /> For Solar simulation used LadyBug<br /> For Curvature Graphs and flow lines used Grasshopper3D Real Time Hourly Radiation Result Visualization in Grasshopper tag:www.grasshopper3d.com,2013-04-29:2985220:Video:839482 2013-04-29T01:50:14.004Z Mostapha Sadeghipour Roudsari https://www.grasshopper3d.com/profile/MostaphaSadeghipour <a href="https://www.grasshopper3d.com/video/live-hourly-radiation-result-visualization-in-grasshopper"><br /> <img src="https://storage.ning.com/topology/rest/1.0/file/get/2778186970?profile=original&amp;width=240&amp;height=180" width="240" height="180" alt="Thumbnail" /><br /> </a><br />A preview of one of the new Ladybug/Honeybee components which gives a real time visualization of hourly radiation results. The component imports the result f... <a href="https://www.grasshopper3d.com/video/live-hourly-radiation-result-visualization-in-grasshopper"><br /> <img src="https://storage.ning.com/topology/rest/1.0/file/get/2778186970?profile=original&amp;width=240&amp;height=180" width="240" height="180" alt="Thumbnail" /><br /> </a><br />A preview of one of the new Ladybug/Honeybee components which gives a real time visualization of hourly radiation results. The component imports the result f... Galapagos Annual Radiation Form Finding tag:www.grasshopper3d.com,2011-01-28:2985220:Video:154079 2011-01-28T18:40:51.925Z Jeff Niemasz https://www.grasshopper3d.com/profile/JeffNiemasz <a href="https://www.grasshopper3d.com/video/galapagos-annual-radiation"><br /> <img alt="Thumbnail" height="121" src="https://storage.ning.com/topology/rest/1.0/file/get/2778156514?profile=original&amp;width=240&amp;height=121" width="240"></img><br /> </a> <br></br>Using the latest release of diva-for-grasshopper component with the diva-for-rhino environmental analysis tool available at <a href="http://www.diva-for-rhino.com">www.diva-for-rhino.com</a>. Parametric form is a closed triangular panelized shape with 13 vertices constrained in movement along vectors determined by the corners and centroids of a cube. The genetic algorithm component… <a href="https://www.grasshopper3d.com/video/galapagos-annual-radiation"><br /> <img src="https://storage.ning.com/topology/rest/1.0/file/get/2778156514?profile=original&amp;width=240&amp;height=121" width="240" height="121" alt="Thumbnail" /><br /> </a><br />Using the latest release of diva-for-grasshopper component with the diva-for-rhino environmental analysis tool available at <a href="http://www.diva-for-rhino.com">www.diva-for-rhino.com</a>. Parametric form is a closed triangular panelized shape with 13 vertices constrained in movement along vectors determined by the corners and centroids of a cube. The genetic algorithm component galapagos- part of the grasshopper program by David Rutten- was used. The "genes" were the location of the 13 vertices and the rotation of the form. The "fitness" function is described by the maximal surface irradiation per unit volume. This was calculated using the GenCumumlativeSky program which is part of Radiance and accessible through DIVA. A Boston weather file was used.