ut it says "Did not succeed" and doesn't do any difference except adding plane division in the middle of the overall surface. Idea to Explode Brep and than delete unnecessary surfaces is the overkill.
2) Join all closed Breps together and use Solid Difference with the box, which totally covers the pipe, but there are still 30 pieces as output after Join Brep and this bring really weird result, see screenshot.
3) Trim basic pipe before Surface box or Divide Domain2 using Cull and Split but these operators still map boxes along untrimmed surfaces, as it was discussed on forum at least twice and is not helpful in my case.
I am almost sure that I searched whole forum for similar issues and could not find solution, however it is possible that I missed something. Hope You can give me some advice. Please, see attached files.
Cheers,
Dmytro.
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alità di Rhino, tra cui i comandi più avanzati per la creazione di superfici.
Struttura Le lezioni tratteranno in maniera sistematica argomenti riguardanti l'interfaccia utente, i comandi, la creazione e modifica di curve, superfici e solidi.
Risultati attesi Dopo questo corso lo studente dovrebbe essere in grado di: • Muoversi comodamente attraverso l’interfaccia di Rhino. • Identificare quando è richiesto modellare in maniera free-form o di precisione. • Creare e modificare curve, superfici e solidi. • Utilizzare ausili di modellazione per la precisione. • Produzione di semplici rendering per la visualizzazione dei modelli di Rhino.
Destinatari Questo corso è rivolto a progettisti e studenti che vogliono imparare in modo efficace i concetti e le caratteristiche del software di modellazione Rhinoceros. Le lezioni saranno ottimizzate ed esposte da un docente ART qualificato dalla McNeel. Alla fine del corso verrà rilasciata l’attestato di partecipazione ad un corso qualificato McNeel.
Prerequisiti Per affrontare il corso sono richieste competenze di Windows, passione e volontà di modellazione; precedenti esperienze di modellazione, anche con altri software, sono utili ma non indispensabili.…
Ein Aufrufziel hat einen Ausnahmefehler verursacht.TargetInvocationException}
Object: MeshMachineComponent3 (level 2){Die Datei oder Assembly "Plankton, Version=0.3.0.0, Culture=neutral, PublicKeyToken=null" oder eine Abhängigkeit davon wurde nicht gefunden. Das System kann die angegebene Datei nicht finden.FileNotFoundException}
Object: KangarooA (level 1){Ein Aufrufziel hat einen Ausnahmefehler verursacht.TargetInvocationException}
Object: KangarooA (level 2){Die Datei oder Assembly "KangarooLib, Version=0.0.9.9, Culture=neutral, PublicKeyToken=null" oder eine Abhängigkeit davon wurde nicht gefunden. Das System kann die angegebene Datei nicht finden.FileNotFoundException}
Object: KangarooZombie (level 1){Ein Aufrufziel hat einen Ausnahmefehler verursacht.TargetInvocationException}
Object: KangarooZombie (level 2){Die Datei oder Assembly "KangarooLib, Version=0.0.9.9, Culture=neutral, PublicKeyToken=null" oder eine Abhängigkeit davon wurde nicht gefunden. Das System kann die angegebene Datei nicht finden.FileNotFoundException}
Many thanks,
Oliver…
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ink you shared back then is not valid anymore.
I would really appreciate it. Thank you,
Helena
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Permalink Reply by Mostapha Sadeghipour Roudsari on November 30, 2015 at 6:35pm
Hi Caludio and Tatos,
For Daylight modeling you can use Radiance's image-mapping. I published a paper recently that discusses the process (http://www.simaud.org/2015/program.php#a-new-approach-to-modeling-f...). They haven't send it online but I can email you the paper if you're interested to read it in details.
Permalink Reply by Mostapha Sadeghipour Roudsari on November 30, 2015 at 7:44pm
Here is the link to the paper: https://copy.com/okY7JzPoVjbF6LrL
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google's data (please correct if I'm wrong):
"SRTM1 data is sampled at one arcsecond (about 30 meters) and SRTM3 data is sampled at three arcseconds (about 90 meters). The higher resolution SRTM1 data is available for most of the US and the lower res SRTM3 data is available for most of the world."
The 3x3 stitching definition above is done in Rhino 4 but it doesn't actually "stitch together" or merge the surfaces into one. I had to do it manually in Rhino with the merge surfaces command. Which I think does a better job than grasshopper.
Also I think the calculations within it (distance of one degree change in lat/lng) won't be accurate enough (or high enough in resolution) even though they are correct so I cannot guarantee the 3x3 pieces are perfectly neighbouring sets of data (they might contain very very tiny strips of overlapped/missed topography data). However this error is really insignificant next to the limited resolution of the generated topography so it is neglectable if you're not a perfectionist like me.
Edit: For bigger areas Elk is much easier, but for smaller areas where you want to specify the area size Xiaoming's component is more convenient I think.…
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low for a degree of variation that my previous option was not allowing. There are two problems with this however.
1. i need to restrict the minimum and maximum distance of the curves at 30<100 mm respectively.
2. i also need to repeat the cycle of waves, so i dont think that splitting the curves at the cycle change and doing this method.would be useful because this would cause overlaps right?
3. most annoying constraint that I have is that the length of the elements cannot exceed 1500. :(
so basically there is limited room to play in the extent of the wave but, there is scope in repetition.
thanks for all your help so far man! once this is done I would like to make my definition as neat and communicative as yours and share it with everyone!
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