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Search Results - 福彩3天齐网首页正版保真『0TBH·COM』福彩三d试机号码开机号码2023年3月19日7时42分22秒.H5c2a3.kcssaaksa.com

Topic: Problems with radiation result
rch, september, june. I did two kind of simulation. The first one - just one hour 10h and then 15:30. The second, 10:00 to 15:30h. I think that's something wrong with the results kWh/m² because the biggest values for radiation, are for winter. And the results simulation 10:00 to 15:30h the result are different too, the biggest values for winter (june), then september, march, and them december (summer)   The results are (kWh/m²) 10:00h           15:30h     10 to15:30h 21/03 0,69      1,15        2,61 21/06 1,14      1,13        3,71 23/09 0,96      0,90        2,79 21/12 1,31      1,22        2,45   I will be very gratiful with your answer I'm using this software to a important academic work, and in my Country Its not commom use this software, I don't know anyone that could help me with this. I'd like to encourage university start to use this kind of software.   Thank you   Camila  …
Added by Camila Leone to Ladybug Tools at 8:50pm on May 25, 2017
Topic: Beginner - 3D high rise building model cross sections optimization
rking with. I am architecture student as well so please bear with me :). I am currently working on a high rise building. All elements (that is core, slabs and colums) will be analyzed as made of reinforced concrete. I do not want to optimize reinforcement distribution, I will create a material that would be close to reinforced concretes properties. I think i understand how to create and assemble models made of beams (COLUMNS in my model) in Karamba, but I get totally lost when it comes to combining them with shells (CORE, SLABS in my model).  I would like to optimize use of material (volume or mass) with: A) slab deflection limited to 3cm (GRAVITY + LIFE LOAD) B) top of the building cannot "lean out" (horizontal defletction from WIND LOAD) more than 1/500 of its height I post my questions below: 1) I would like to apply wind load on bigger exterior walls of the building. What would the best method bo to do that? I thought about applying load on the level of slabs as uniform line load (marked blue in model). Uniform line load needs to be supplied with beam ID. How can i simulate that? would i have to add beams on slabs edges for that to work correctly? If yes - how would i connect them with slab, so that all elements are transfering the loads cooperatively. Also in that case - how to convert wind pressure (kN/m^2 to kN/m) 2) I know that living load I want to apply is 4kn/m2. How to apply such load to mesh so that results are realiable? it is hard to turn it to point load, as mesh faces (and points where loads are applied) would have to be 1x1m if I understand correctly. 3) How would you place supports under core part? 4)I do not want to vary Slabs/Cores section - I would like to find the minimal value so that mentioned conditions are met. For example - 25cm slabs, 40x40 columns, 50cm core walls. I wouldn't like slab and core to have different heights in different places. Is it possible to use "Optimize Cross Section" Component or should i use Galapagos for that? Sorry for such long post, Thank you for your time and help…
Added by Wujo to Karamba3D at 1:11pm on September 27, 2017
Group: DixieVR | DixieIO
rent actors to work together in real time on an architectural project. DixieVR was born from the idea that virtual reality could become a fantastic tool for architecture and architects, not only for virtual tours but for the conception at its very core. Inspired by the efficiency of sandbox games, DixieVR will allow you to build a fully parametric 3D model from scratch in a very intuitive way and to simulate various factors like natural and artificial light, gravity, and more.  DixieVR is also multi-user oriented : several people, architects or not, are able to work together in real time on the same 3D model and in the same shared immersive environment ! The project started in the Digital Knowledge department of Paris-Malaquais Architecture School. The DixieVR Softwares can be found here : dixievr.github.io // Interoperability DixieVR deals with .dix files. For more information about this file format, please refer to the Interoperability documentation of DixieVR. You can use this DixieIO plugin for Grasshopper/Rhinoceros for exchanging data between DixieVR (PC) & DixieViewer (Android). You can import or export objects at any time inside a DixieVR scene. The Software also come with a library of premade objects that you might find useful. Adding your own premade objects to this library might be a good habit. If you are hosting a scene, you also have the choice to open a .dix file directly from the main menu, this will load the last scene in which the geometry has been saved. // Plugin The DixieVR Plugin can be found in the Extra tab, come with 3 components and a example definition: Dixie2Gh : Import DixieVR geometry to Grasshopper/Rhinoceros reading a .dix file (up to 1000 beams and/or 750 faces). G2D_Polylines : Export Grasshopper/Rhinoceros Polylines to DixieVR writing a .dix file (up to 1000 line segments). G2D_Mesh : Export Grasshopper/Rhinoceros Mesh to DixieVR writing a .dix file (up to 750 triangulated faces). To install: In Grasshopper, choose File > Special Folders > Components folder. Place the DixieIO_01.gha file there. Right-click the file > Properties > make sure there is no "blocked" text. Restart Rhinoceros or Unload Grasshopper. // Contact - DixieVR vr.dixie@gmail.com dixievr.github.io - Oswald Pfeiffer oswaldpfeiffer.com - Mathieu Venot mathieuvenot.com…
Added by Mathieu Venot at 6:18am on April 22, 2017
Blog Post: Emergent Design: 8 Reasons Why Parametric Design is Changing Architecture

This is my short list of 8 reasons why parametric design is changing Architecture.

PARAMETRIC DESIGN

I first came across systemic and parametric design approaches while…

Added by Mr. Gudjon Thor Erlendsson at 7:47am on April 15, 2020
Topic: How could I divide a tree with branches of different sizes to multiple trees with the branches of the same size?
j 1   c e h   k 2     f         ------------------------------------------------------------------------------------------------- To these...     0;0    0;1    0    a     i ------------------------------------------------------------     0;0 0;1 0;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
Comment on: Topic 'Angular steel cross sections to cross section table'
rring to the above image) Area effective effective Second Elastic Elastic Plastic Radius Second Elastic Plastic Radius of Vy shear Vz shear Moment Modulus Modulus Modulus of Moment Modulus Modulus of Section Area  Area  of Area upper lower Gyration of Area Gyration (strong axis) (strong axis) (strong axis) (strong axis) (strong axis) (weak axis) (weak axis) (weak axis) (weak axis) A Ay Az Iy Wy Wy Wply i_y Iz Wz Wplz i_z cm2 cm2 cm2 cm4 cm3 cm3 cm3 cm cm4 cm3 cm3 cm I have a very similar table which I could import to the Karamba table. But I have i_v or i_u values as well as radius of inertia for instance.  1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 dimensjon Masse Areal akse Ix Wpx ix akse Iy Wpy iy akse Iv Wpv iv Width Thickness Radius R [kg/m] [mm2] [mm4] [mm3] [mm] [mm4] [mm3] [mm] [mm4] [mm3] [mm] [mm] [mm] [mm] L 20x3 0.89 113 x-x 4,000 290 5.9 y-y 4,000 290 5.9 v-v 1,700 200 3.9 20 3 4 L 20x4 1.15 146 x-x 5,000 360 5.8 y-y 5,000 360 5.8 v-v 2,200 240 3.8 20 4 4 L 25x3 1.12 143 x-x 8,200 460 7.6 y-y 8,200 460 7.6 v-v 3,400 330 4.9 25 3 4 L 25x4 1.46 186 x-x 10,300 590 7.4 y-y 10,300 590 7.4 v-v 4,300 400 4.8 25 4 4 L 30x3 1.37 175 x-x 14,600 680 9.1 y-y 14,600 680 9.1 v-v 6,100 510 5.9 30 3 5 L 30x4 1.79 228 x-x 18,400 870 9.0 y-y 18,400 870 9.0 v-v 7,700 620 5.8 30 4 5 L 36x3 1.66 211 x-x 25,800 990 11.1 y-y 25,800 990 11.1 v-v 10,700 760 7.1 36 3 5 L 36x4 2.16 276 x-x 32,900 1,280 10.9 y-y 32,900 1,280 10.9 v-v 13,700 930 7.0 36 4 5 L 36x5 2.65 338 x-x 39,500 1,560 10.8 y-y 39,500 1,560 10.8 v-v 16,500 1,090 7.0 36 5 5 I have diagonals (bracings) which can buckle in these "non-regular" directions too, and they do. If I could add those values then in the Karamba model I could assign specific buckling scenarios.....  I can see another challenge which will be at the ModifyElement component, I will not be able to choose these buckling lengths, in these directions. Do you think this functionality can be added within  short, or should I try to find another way to model these members? Br, Balazs …
Added by Balazs Kisfali to Karamba3D at 2:14am on May 23, 2017
Event: Light Design Workshop
en la práctica de nuevos métodos de diseño y fabricación utilizando herramientas digitales. Estos procedimientos emergentes están cambiando radicalmente la manera en que nos aproximamos al proceso de diseño en términos de concepción y producción. Los participantes serán introducidos en el uso de softwares de modelado 2d y 3d para la generación de geometrías que serán posteriormente mecanizadas in situ en una máquina de control numérico CNC de 3 ejes.   ¡AL FINAL DEL CURSO TE LLEVAS TU LÁMPARA A CASA!  Profesores:  Equipo MEDIODESIGN* + TOOLINGROUP* *Official Rhino Trainners. Acreditación otorgada por McNeel, desarrolladores del software Rhinoceros.  Lugar: Mediodesign. Pallars 85-91 5-2 BCN                Duración: 16 / 20 horas                   Fecha: sábado 9 / domingo 10 julio de 2011           Horario:  de 10h a 14h / de 16h a 20h         Plazas: 20 participantes  REQUISITOS       < Dirigido a estudiantes y profesionales de la arquitectura, diseño y profesiones afines.          < Ordenador portátil.                    < Softwares instalados. En el momento de la inscripción, los participantes recibirán las instrucciones para la descarga e instalación de versiones gratuitas (trials) de los softwares.     CONTENIDOS < Introducción al diseño avanzado y la fabricación digital. < Entorno Rhinoceros y sus plug-ins. < Herramientas y estrategias de trabajo CNC. < Materiales y sus características. < Planteamiento del ejercicio: diseño de una luminaria < Desarrollo del archivo de RhinoCam para el mecanizado CNC. < Mecanizado y post-producción. < Entrega de propuestas: Presentación en formato digital del proceso de diseño y fabricación (pdf, powerpoint, etc…) y del prototipo de luminaria realizado. INSCRIPCIONES  Precio: 199 €   Materiales incluidos.  Forma de pago: mediante transferencia bancaria.     Límite fecha de inscripción: lunes 4 de julio  2011       Se otorgará certificado de asistencia. …
Added by Affonso Orciuoli at 4:57am on June 21, 2011
Event: Ciclo de Workshops “ADN Methodology” / México 2011
sando las nuevas tecnologías de la información en la arquitectura para la gestión del conocimiento de sistemas que desarrollen estructuras sustentables, desde los procesos de diseño generativos o algorítmicos. Donde se contempla la P.O.O. (programación orientada a objetos) como nuevo lenguaje de expresión para el arquitecto-diseñador en el siglo XXI.Los talleres están pensados para sigan un hilo conductual en el que al mismo tiempo que se enseña se investiga y experimenta. Por primera vez se contará con diversos miembros de SEED como docentes de forma presencial y por video conferencia, logrando de esta forma acercar a los especialistas que se encuentran en Europa a los asistentes de los talleres sin encarecer los costos.+info:http://www.studioseed.net/ adn-methodology/   Los talleres están dirigidos a personas que tengan o quieran conseguir un perfil alto de innovación, creatividad, flexibilidad: profesionales con actividades de dirección, gerencia, proyectistas, investigadores, así como a estudiantes a partir de 5to semestre en adelante. Cada taller abarca perfiles diversos de profesionales, mientras unos están más orientados a directivos y gerencias, otros más a proyectistas. LOS TALLERES:FAB DIG I / ITESM – CEM / Estado de México / 20 hrs / 8 – 11 al de diciembre 2011 (En este taller no se aplican descuentos ni becas)PARAMETRIC GREEN HOUSING / Colegio de Arquitectos del estado de Jalisco (Por confirmar Sede) / Guadalajara / 20h + 5h proyecto / 30 enero 2012 al 4 de diciembre 2012FAB DIG II / ITESM – CEM / Estado de México / 30h + 5h proyecto / 8 a 12 febrero 2012TERCERA REVOLUCIÓN INDUSTRIAL: TIC`s + SOSTENIBILIDAD. Procesos y paradigmas emergentes / Querétaro / 20 hrs / 15 al 18 de febrero 2012INTRODUCCIÓN AL DISEÑO GENERATIVO / UAM-azc / DF / 8hrs / 13, 14 de enero (Costo representativo $650, máximo 40 personas, mínimo 15 personas)INTRODUCCIÓN A: SCRIPTING CON GRASSHOPPER ( Python) Y PLUGINS / Estudio SEED México / Estado de México / 30 hrs / 23, 24, 25 febrero y 1,2, 3 de marzo 2012…
Added by SEED studio at 3:30am on November 24, 2011
Event: AA Istanbul Visiting School 2013
with Istanbul Technical University, will continue to rediscover verticality through novel generative design techniques and large-scale physical prototypes. Abstracted as a fusion of various sub-systems, each subsystem of the tower will be investigated in relation to their various performance criteria. The correlations between the separate sets of performance criteria and evaluation methods will be analyzed, leading to the generation of unified design alternatives for a vertical system typology. In addition to the custom-made digital design and evaluation tools supporting the core methodology, Vertical Interventions will also highlight the fabrication and assembly of a large scale working prototype integrating the performative characteristics of each system in examination. As in 2012, the design agendas of AA Athens and AA Istanbul Visiting Schools will directly create feedback on one another, allowing participation in either one or both Programmes. Discounts The AA offers several discount options for participants wishing to apply as a group or participants wishing to apply for both AA Istanbul and AA Athens Visiting Schools:   1.       Standard application The AA Visiting School requires a fee of £695 per participant, which includes a £60 Visiting Membership. If you are already a member, the total fee will be reduced automatically by £60 by the online payment system. Fees are non refundable.   2.       Group registration For group applications, there will be a range of discounts depending on the number of people in the group.  The discounted fee will be applied to each individual in the group. Type A. 3-6 people group: £60 (AA Membership fee) + 635*0.75 = £536.25 (25 %) Type B. 6-15 people group: £60 + 635*0.70 = £504.5 (30%) Type C. more than 15 people group: £60 + 635*0.65 = £472.75 (35%)   3.       Participants attending both AA Istanbul and AA Athens | 40% discount For people wishing to attend both AA Istanbul 2013 and AA Athens 2013, a discount of 40% will be made for each participant. (The participant will pay the £60 membership fee only once.) £60 (AA Membership fee) + (635*0.60)*2 = £822   For more information in discounts, please visit: http://ai.aaschool.ac.uk/istanbul/portfolio/discounts-2013/   Applications The deadline for applications is 21 March 2013. A portfolio or CV is not required, only the online application form and payment. The online application can be reached from: http://www.aaschool.ac.uk/STUDY/VISITING/istanbul…
Added by elif erdine at 11:41am on December 13, 2012
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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