Search Results - 📍能量/trx闪兑📍自动trx兑换机器人👉【TG:@trxHomeBot】,不会被冻结的冷钱包.h (2025)

Topic: How to assign inclined surfaces? + How can I get "interiorWalls"?
faces (maked in RED, GREEB and BLUE) are shared by two zones. The small zones (in GRAY) attached to the big hall are not taken into consideration in the research.In this case, inclined surfaces are included, as the simplification of the grandstand for spectators.As the image shows, I have some questions:1 - What should be the correct “surface type” of the inclined surfaces? floor?wall? or else?(Actually, I have tried both floors and walls, but warnings shown below were received. The weird thing is that they had been assigned asfloors and walls respectively having checked by the "decomposeByType"component.2 - Can I ignore these warnings? if not, why and how can I deal with it - how to assign inclined surfaces as proper "type"?3 - How can I get "interiorWalls"?Although the small zones attached to the large hall are not considered in the research, I still need to assigned the shared walls asinterior Walls (and set EPBC as "Adiabatic"), right? But, having checked bythe "decomposeByType"component regrading walls, all I got were "walls" instead of "interiorWalls". Then, how can I get "interiorWalls" as I want?Btw, due to the complexity of the geometry (e.g. containing inclined surfaces), I formed the thermal zone of the sports hall surface by surface using the "createHBSrfs" component as shown in above images. Do you think if it is a proper way in my case?Any help will be much appreciated!Ding…
Added by Ding to Ladybug Tools at 9:13am on October 13, 2015
Comment on: Video 'BB8 vs Tie Fighter Swarm in Rhino (C#)'
sheer force in numbers of the Tie Fighter Swarm. For an in-depth analysis of this epic clash, check out https://sites.google.com/view/teddy-daniels-famine-fighter/home. It's a confrontation that captures the essence of the Star Wars universe, blending technology, strategy, and the enduring spirit of heroes and villains.…
Added by Michael Dubby at 7:05am on September 21, 2023
Event:
mbre de 9:00 am a 8:00 pm Este taller está dirigido principalmente a arquitectos y diseñadores interesados en el aprendizaje del diseño paramétrico y generativo aplicados a la generación y racionalización de geometrías complejas para su implementación en diferentes procesos de diseño. En el curso se abordarán los conceptos básicos y metodología para hacer frente a diversas problemáticas del diseño mediante el desarrollo de herramientas algorítmicas a través de un lenguaje de programación visual y el desarrollo de esquemas de fabricación digital. No se requieren conocimientos previos de Rhinoceros 3D ni de programación, conocimientos previos de CAD deseables. Estudiantes: 2,500 MXN Profesionales: 3,000 MXNCONCURSO DE RENDERS - BECA DEL 100% - Parametric & Generative Architecture & Design Grasshopper Workshop. - Publica tu render enwww.facebook.com/3dmetrica - El render con más likes será el ganador. - Fecha límite de votaciones 15 de septiembre del 2012. Informes e Inscripciones: workshop@3dmetrica.com 04455 28790084 www.3dmetrica.com www.facebook.com/3dmetrica…
Added by Angel Quintana at 12:28pm on September 5, 2012
Event: Grasshopper Workshop_ROMA_Livello Base/Basic Level
rogettisti, artisti di vari media, paesaggisti, studenti.Orario_9.00-18.00 ( 1 ora pausa pranzo). 16 ore_2 giorni da 8 ore.Descrizione_Il livello base di Grasshopper serve come introduzione al plugin parametrico Grasshopper per Rhino 3d. I partecipanti saranno esposti a flussi di lavoro di livello principiante /intermedio ed a strategie di progettazione per la MODELLAZIONE PARAMETRICA. L'accento sarà posto sulle tecniche di flusso di dati, la visualizzazione e l'analisi in grado di fornire una solida base per la futura ricerca e sviluppo.Le lezioni saranno composte da una parte teorica ed una pratica in cui si svilupperanno esercizi basati su elementi di Design ed Architetture contemporanee.Iscrizioni_generativef@gmail.com+info_Grasshopper Workshop_Livello baseOrganizza_generativeflow.comChi_I docenti saranno Marco Bonucci & Fernando Rial___________________________________________When?_ 27/28 October 2012 (Saturday and Sunday)Where?_ AD Comunicazione. Via di Sant'Anna, 3, Roma. (Centro Storico)Schedule_ 9:00 to 18:00 (1 hour lunch break). Ore_2 days_16 hours_8 h/dayWho is the target Audience?_Architects, Engineers, Industrial Designers, Interior Designers, Product Designers, Artists of various media, Landscapers.Abstract_ The basic level of Grasshopper serves as an introduction to Grasshopper, the parametric plugin for Rhino 3d. Participants will be exposed to beginner / intermediate workflows and design strategies for PARAMETRIC MODELING. The focus will be on techniques of data flow, visualization and analysis that will provide a solid basis for future research and development.Registration_ generativef@gmail.com+ info_Grasshopper Workshop_Basic LevelOrganizes_generativeflow.comWho_I docenti saranno Marco Bonucci & Fernando Rial…
Added by Fernando Rial at 10:48am on October 18, 2012
Event: INTRODUCTION TO PARAMETRIC DESIGN [IPD]
s, the participants will focus on the key advantages of Grasshopper’s capabilities through a range of design challenges in order to aid designers in both their drafting tasks and modelling capabilities.The workshop covers many concepts such as Object Attributes/Parameters, Data Types, Data Structures, and Designing with Algorithms. Specifically, this course will focus on understanding both Lists and Data Trees, as well as the best practices for integrating Grasshopper into your Professional Design Workflow. Theworkshop offers guided curriculum and continuous support, based on in-depth and professional learning experiences.Workshop outcomes:Teach the participants how to:-+ be proficient in parametric logics learning the key benefits of parametric techniques in architecture design workflow (when to use it & how to use it)+ Correctly communicate with different 3D and BIM packages in order to keep the geometry clean and light while preserving all NURBS information.+ Develop architecture design based on mathematical equations to create non-standard free form building skin.+ Create a pattern that changes dynamically based on specific inputs which can be applied over the building façade, interior walls or ceiling or even floor pattern.+ Automate and Optimize design variables to achieve the optimum solution for the design problem.Program Outline:DAY 1:-Introduction to Parametric Design -Introduction to Grasshopper & Rhino (technical tools).DAY 2:-Exploring the parametric workflow. -Setup the design algorithm & generating a list of data.DAY 3:-Introducing the new ways of generating parametric curves and surfaces.-Parametric form generation in-deptDAY 4:-Introducing Data Tree logic and parametric transformations.-Creating Associative techniques – Attractors (points, curves and vectors).DAY 5:-Working with advanced form generation with dynamic pattern.-Parametric optimization based on environmental analysis -featuring the Performance-Driven Design possibilitiesDURATION:6 – 8 hours per day [50 - 60 hours Total]Every Saturday [9.00 Am : 1.00 Pm & 2.30 Pm : 6.00 Pm]PREREQUISITES:No need of any specific knowledge of Rhinoceros or Grasshopper.REGISTRATION:In order to register, you will need to fill the Registration Form .https://docs.google.com/forms/d/1PckdW1hrWs9fJAHWBZlVsuhH8K0PfDuMWIpXHT_4FYw/viewformREGISTRATION DEADLINE:23th October 2014.…
Added by ayman wagdy at 7:48am on October 19, 2014
Comment on: Topic 'Nursery - Agent based modelling framework for grasshopper'
more intuitive, because you formulate the definition of one iteration to the next, instead the global system, you can have dynamic behaviors without having to be the same instance, or store the history of the agents.In short, more control that can help simplify things.B)Does it somehow compensate for operating with the same instance instead of making copies as gh does?Using approach A you can internally copy the objects to isolate theinstance forsimulation from the initial instance.The input component of the loop can internally store the copies that will be used in the loop, and the output component can also access them.I think this approach would allow you the advantages of the current approach but without its problems.C)Perhaps a log as output of the simulator would help debug the algorithms.And maybe a visualizer of the energy of the agents, to help find the balance of parameters in the system.D)I have needed to know the length of a graph or springs, is there a component for that?E)You could customize the text conversion of the AgentList so that it can be displayed if it is a list of agents of particles, or varied/compound several types ... When you see the volatile data of a parameter and says that it is AgentList, you do not know which agents it contains. Perhaps the AgentList can be added attributes like name, generation, family, etc.F) My initial experience was to be very lost. Everything is very atomized, the icons are cool :) but they do not help. It is too complex (many elements and many interactions between elements) even if one knows about agent theory. This paradigm is simple, the interesting comes when you create complex behavior, so I think it would be better for the user and plugins to compact it as much as possible, to allow only to bother to create complex behaviors, the rest should be easy and fast to implement, because it is always the same. User objects allow you to know the internal composition for those who want to go deep, or you can also create snippets like Metahopper or brickbox plugins does.G)Do you plan to upload it to github? I encourage you to do so.This field of modeling can grow a lot.H)With non-classical agents I meant those who have not been studied tens of thousands of times, such as the classic boids, the classic colony of ants, the classic game of life, etc.I)It would be interesting to add a field from mathematical equations using the GH parser, the parameters are text with equations for x, y, z.-Creating graph from curve seems to add one more point with a closed polyline (duplicate first and last).- FixParticle allows to change the position of an anchored particle?, or is it that I could not?-In the first input of Repel you have set "seperation". :P- GraphTopology seems to return only 0s.(changing a bit the Nursery_DifferentialGrowth example)…
Added by Daniel González Abalde at 5:38am on May 30, 2017
Group: KingKong
ractor systems. Download the software, manual and example files from: www.food4rhino.com/project/robofoldkingkongManufacture: The results of design usingthe KingKong facade tool are produced by RoboFold. The data generated will drive our robotics software, enabling manufactureusingtheRoboFold technology.Installation: When you need it, we generate the necessary detailing and layout data for mounting to a wall, wooden panelling system or subframe.Engineering: You are responsible for the engineering.What shapes can I fold in KingKong?The easiest way to check this is to test your ideas using paper or card. Scan in you fold pattern to get the curved fold lines and edge lines, and let KingKong fold it.What shapes can RoboFold manufacture?Most shapes you can fold in paper by hand, we can fold in metal with robots. If you want to build a facade, or anything else, feel free to contact us and we can determine whether the fold type is feasible. Join one of our workshops to learn through making your own facade designs.Pre-requisites:KingKong makes use of components from the Kangaroo Physics plugin by Daniel Piker. Please download and install this before you opentheexample files.Planned features:Rotation controlled by flow-line attractor.Clash detection.More info and workshop dates:The technology:www.robofold.comWorkshop dates: http://www.robofold.com/index.php?WEBYEP_DI=18Design techniques with curved folding:www.curvedfolding.comDownload the software, manual and example files from: www.food4rhino.com/project/robofoldkingkongExample output:…
Added by Gregory Epps at 10:33am on February 15, 2013
Topic: How could I divide a tree with branches of different sizes to multiple trees with the branches of the same size?
j1cehk2f-------------------------------------------------------------------------------------------------To these... 0;0 0;1 0 a i------------------------------------------------------------0;00;10;2 0 b g j 1 c h k------------------------------------------------------------ 0;0 0 d 1 e 2 f------------------------------------------------------------Thanx……
Added by sadegh at 9:52pm on June 15, 2015
Event:
hopper) and High Definition visualizations (V-Ray) and exploring its scientific innovations supporting the users' platform philosophicalideas.SESSIONS:5 sessions of 8 hours (40 hours total)E-MAIL:educacion@chconsultores.netREGISTRATION:(55) 56 62 57 93TECHNICAL INFO:044 (55) 31 22 71 83INSTRUCTORS:Have past experience working at Gehry Technologies, and participated at studios with Eric Owen Moss and Tom Wiscombe at SCI-Arc (Southern California Institute of Architecture).Day 1: Introduction to MAYA tools, 3D exercise start.Day 2:Continue 3D exercise.Day 3:Original 3D architecture design.Day 4: Grasshopper optional application on 3D architecture design.Day 5: V-Ray Application on 3D architecture design.30 DAY TRIAL SOFTWARE DOWNLOAD:MAYA 2012:http://www.autodesk.com/products/autodesk-maya/free-triaRHINO 4:http://s3.amazonaws.com/files.na.mcneel.com/rhino/4.0/2011-02-11/eval/rh40eval_en_20110211.exe3DS MAX 2010:http://www.autodesk.com/products/autodesk-3ds-max/free-trialVRAY FOR 3DS MAX:http://www.vray.com/vray_for_3ds_max/demo/thankyou.shtml#thankyouPHOTOSHOP e ILLUSTRATOR:https://creative.adobe.com/apps?trial=PHSP&promoid=JZXPS​​​www.helenico.edu.mxwww.scifi-architecture.com/#!workshops/c1wuaLIKE US ON:www.facebook.com/scifiarchitecture…
Added by Luis A. Corona at 12:07pm on May 16, 2013
Event: rese arch LIVE Workshop
and 3d rapid prototyping using state of the art material simulation and optimisation. Participants will be guided through methods of advanced structural analysis and evolutionary algorithms implemented in Grasshopper, Karamba and Octopus in a 5 day workshop taught by Robert Vierlinger and Matthew Tam within the premises of the Academy of Fine Arts & Design in Bratislava, Slovakia. The workshop will cover the basics of setting up a karamba definition and more advanced form finding techniques with beams and shells through to preparing files for 3d printing and 2d documentation. For the Grasshopper newcomers there is a preparatory crash course on 20 July 2015 taught by Ján Pernecký. The workshop will be held entirely in English. VENUE Academy of Fine Arts and Design in Bratislava:VŠVU / AFAD, Hviezdoslavovo námestie 18, Bratislava, Slovakia ROOM 135 PRICING Early bird Student (until Jun 30, 2015) €320 Early bird Professional (until Jun 30, 2015) €380 Regular Student (from Jun 30, 2015) €400 Regular Professional (from Jun 30, 2015) €475 The fee covers only the tuition. Travel expenses, accommodation and food is to be covered by the participants. SCHEDULE Day 1 Lecture - Karamba in Projects from Competition to Construction Introduction to karamba - Setting up a basic karamba model Shells & Beams - Understanding the impact of load on geometries. Beams - Cross Section Optimization, Load Path Emergence Day 2 Extraction and Visualization of data from Karamba Complex Geometry - Processing of Free Forms for Karamba Force Flow - Understanding and Visualizing results on shells 3d Printing - Preparing geometries for rapid prototyping Day 3 Lecture - Form Finding in Karamba Isler Shells - Hanging Forms with karamba Shells - Shape Optimisation with Galapagos Trusses - Topology Optimization with Galapagos Columns - Positioning with Galapagos Multiobjective optimisation strategies with Octopus Day 4 Frequency Analysis & Non-Linear Analysis with Karamba Extraction and Visualization Part 2 BIS - Building Information Systems with karamba Day 5 Participant’s Examples and Topics Reviewing 3d Print Studies Large Complex Models Reviewing learn techniques and strategies Concluding lecture - public PARTNERS rese arch Academy of fine arts and design…
Added by rese arch at 4:00pm on June 15, 2015
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Search Results - 📍能量/trx闪兑📍自动trx兑换机器人👉【TG:@trxHomeBot】,不会被冻结的冷钱包.h (2025)
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