DETAIL IT Einzel Umschlag 131011 Kopie.Indd
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Date Created Size MB . تماس بگیر ید 09353344788
Name Software ( Search List Ctrl+F ) Date created Size MB برای سفارش هر یک از نرم افزارها با شماره 09123125449 - 09353344788 تماس بگ ریید . \1\ Simulia Abaqus 6.6.3 2013-06-10 435.07 Files: 1 Size: 456,200,192 Bytes (435.07 MB) \2\ Simulia Abaqus 6.7 EF 2013-06-10 1451.76 Files: 1 Size: 1,522,278,400 Bytes (1451.76 MB) \3\ Simulia Abaqus 6.7.1 2013-06-10 584.92 Files: 1 Size: 613,330,944 Bytes (584.92 MB) \4\ Simulia Abaqus 6.8.1 2013-06-10 3732.38 Files: 1 Size: 3,913,689,088 Bytes (3732.38 MB) \5\ Simulia Abaqus 6.9 EF1 2017-09-28 3411.59 Files: 1 Size: 3,577,307,136 Bytes (3411.59 MB) \6\ Simulia Abaqus 6.9 2013-06-10 2462.25 Simulia Abaqus Doc 6.9 2013-06-10 1853.34 Files: 2 Size: 4,525,230,080 Bytes (4315.60 MB) \7\ Simulia Abaqus 6.9.3 DVD 1 2013-06-11 2463.45 Simulia Abaqus 6.9.3 DVD 2 2013-06-11 1852.51 Files: 2 Size: 4,525,611,008 Bytes (4315.96 MB) \8\ Simulia Abaqus 6.10.1 With Documation 2017-09-28 3310.64 Files: 1 Size: 3,471,454,208 Bytes (3310.64 MB) \9\ Simulia Abaqus 6.10.1.5 2013-06-13 2197.95 Files: 1 Size: 2,304,712,704 Bytes (2197.95 MB) \10\ Simulia Abaqus 6.11 32BIT 2013-06-18 1162.57 Files: 1 Size: 1,219,045,376 Bytes (1162.57 MB) \11\ Simulia Abaqus 6.11 For CATIA V5-6R2012 2013-06-09 759.02 Files: 1 Size: 795,893,760 Bytes (759.02 MB) \12\ Simulia Abaqus 6.11.1 PR3 32-64BIT 2013-06-10 3514.38 Files: 1 Size: 3,685,099,520 Bytes (3514.38 MB) \13\ Simulia Abaqus 6.11.3 2013-06-09 3529.41 Files: 1 Size: 3,700,856,832 Bytes (3529.41 MB) \14\ Simulia Abaqus 6.12.1 2013-06-10 3166.30 Files: 1 Size: 3,320,102,912 Bytes -
D2.1-BIM-Models V2.Pdf
03-2019 BIMy D2.1 v1.01 BIMy Project: D2.1 BIM Model Document metadata Date 2021-03-23 Status Draft Version 2.01 Authors Hashmat Wahid – Willemen Dieter Froyen – Willemen Lise Bibert - Willemen Stijn Goedertier – GIM Steven Smolders - GIM Stijn Van Thienen – GeoIT Elena Pajares – Assar Architects Thomas Goossens – Assar Architects Niki Cauberg – BBRI François Robberts – BBRI Jens Lathouwers – Geo-IT Erick Vasquez - LetsBuild Coordinator Franky Declercq – GeoIT Reviewed by Thomas Goossens – Assar Architects Jens Lathouwers – Geo-IT Version history Version Date Author Change 0.01 2019-04-09 SGO Introduction and scope 0.02 2019-05-03 EPA Overview of model data used 0.03 2019-05-14 SGO/SS Stability of object identifiers through time and scale 0.04 2019-06-04 HWA Modelling conventions to filter by time & IFC use 0.05 2019-06-05 SVT Scope: Parameters within Revit, Methodology: fire parameters 0.06 2019-06-06 HWA 0.07 2019-06-07 SGO Modelling time and scale: notes from the workshop 0.08 2019-06-19 SVT, TGO Modelling fire 0.09 2019-06-20 HWA Modelling time and scale 0.10 2019-09-23 HWA,LBI Document structure, modelling geometry, information, time & scale, export & filtering 0.11 2019-11-27 HWA,LBI How to model Circular Economy data 1.01 2019-12-19 TGO Reviewed – Submitted to ITEA 1 | P a g e 03-2019 BIMy D2.1 v1.01 1.02 2020-09-21 JLA Checking in native software, Path of travel functionality (Revit) 2.0 2021-03-22 All Final review 2.01 2021-03-23 JLA Reviewed – Submitted to ITEA 2 | P a g e 03-2019 BIMy D2.1 v1.01 Table of Contents Table of Contents .................................................................................................................................... -
02 Příklady Využití a Přínosy Bim
NWA014 STAVEBNĚ TECHNOLOGICKÉ PROJEKTOVÁNÍ INFORMAČNÍ MANAGEMENT BUDOV (BIM) 02 PŘÍKLADY VYUŽITÍ A PŘÍNOSY BIM 3. 12. 2020 + 10. 12. 2020 ING. VÁCLAV VENKRBEC OBSAH 02 Odlišné vnímání BIM Příklady využití BIM - Architektura Příklady využití BIM – Stavební část Příklady využití BIM – Statika Další využití Přínosy BIM ODLIŠNÉ VNÍMÁNÍ BIM BIM lZe růZně vnímat: - BIM jako produkt (model / dílo) - BIM jako metoda (nástroje, procesy) - BIM jako nástroj - softwarové nástroje - technologie, vybavení - BIM jako proces - zajištění interoperability - spolupráce - změna - BIM jako metodika (zavádění, dodávka projektu) ODLIŠNÉ VNÍMÁNÍ BIM BIM lZe růZně vnímat: - BIM jako produkt (model / dílo) - BIM jako metoda (nástroje, procesy) - BIM jako nástroj - softwarové nástroje - technologie, vybavení - BIM jako proces - zajištění interoperability - spolupráce - změna - BIM jako metodika (zavádění, dodávka projektu) ODLIŠNÉ VNÍMÁNÍ BIM BIM jako produkt (model) Druhy moDelování: - Objektové modelování – založeno na logické struktuře 3D moDelu, která Definuje objekty budov, konstrukcí, zařízení apoD. - Parametrické modelování – pro vytvoření moDelu využívá parametrů (např. matematických funkcí) - Procedurální modelování - využívá programovací jazyky k automatickému generování komplexních moDelů bez nutnosti velkého množství vstupních Dat - Informační modelování – je modelování komplexně propojeného systému ODLIŠNÉ VNÍMÁNÍ BIM BIM jako produkt (model) Agregované modely Distribuovaný moDel Aktivní model Pasivní moDel Není jeden správný typ moDelu ! Závisí na -
BIM in the Real World
product spotlight BIMin the RealEDITED BY GEOFF WEISENWorldBERGER Revit Structure appears to be leading the pack in terms of building information modeling software, and some of its users share their thoughts. Alexander Baumel James A. Corsiglia Will F. Ikerd II Tom Bartolomucci Justin Den Herder Randy Karl Hagens Atul Khanzode ALLOW ME TO REPeat A statement THat HAS BEEN latter program weigh in on its pros and cons, its interoper- MADE AD NAUSEAM: BIM IS HERE TO staY. ability with other packages, and BIM use in general. Does this mean that all structural engineering firms are using building information modeling on all projects? Cer- Is Revit Structure/BIM in regular use at your firm? tainly not. But a survey conducted in 2008 by the Structural Bartolomucci: We have already implemented and used Revit Engineering Institute’s BIM Committee, in collaboration with Structure for about two years on many projects. Revit has the Structural Engineers Association of Texas’ IT Committee, been used on a majority of structural projects and several indicates that more than half of structural engineering firms at least have BIM software at their offices. Further, approximately architectural projects. We are attempting to use Revit on all 65% of the respondents said that they think they will have to projects as scope and budgets allow. use BIM to meet client needs within the next two years; almost 80% said within the next five years. (The survey was sent to Khanzode: Revit/BIM is in regular use at DPR, and we are using more than 15,000 SEI members and received more than 700 it on about 70 total projects across the company. -
Reference Study of IFC Software Support: the Geobim Benchmark 2019 — Part I
Reference study of IFC software support: the GeoBIM benchmark 2019 — Part I Francesca Noardo1, Thomas Krijnen1, Ken Arroyo Ohori1, Filip Biljecki2,3, Claire Ellul4, Lars Harrie5, Helen Eriksson5, Lorenzo Polia6, Nebras Salheb1, Helga Tauscher7, Jordi van Liempt1, Hendrik Goerne8, Dean Hintz9, Tim Kaiser7, Cristina Leoni10, Artur Warchoł11 and Jantien Stoter1 13D Geoinformation, Delft University of Technology, Delft, The Netherlands — [email protected], [email protected], [email protected], [email protected], [email protected], [email protected] 2Department of Architecture, National University of Singapore, Singapore — fi[email protected] 3Department of Real Estate, National University of Singapore, Singapore 4Department of Civil, Environmental and Geomatic Engineering, University College London, London, UK — [email protected] 5Department of Physical Geography and Ecosystem Science, Lund University, Sweden — (lars.harrie, helen.eriksson)@nateko.lu.se 6Architect — [email protected] 7Faculty of Spatial Information, Dresden University of Applied Sciences, Dresden, Germany — (helga.tauscher, tim.kaiser)@htw-dresden.de 8GMX, Germany — [email protected] 9Safe Software, Surrey, Canada — [email protected] 10Department of Civil, Constructional and Environmental Engineering, Sapienza Univerisity of Rome, Rome — [email protected] 11Institute of Technical Engineering, PWSTE Bronisław Markiewicz State University of Technology and Economics in Jarosław, Poland / ProGea 4D sp. z o.o. — [email protected] January 8, 2021 arXiv:2007.10951v2 [cs.DB] 7 Jan 2021 This is the author’s version of the work. It is posted here only for personal use, not for redistribution and not for commercial use. The definitive version is published in the journal Transactions in GIS. -
Peddisubx Inch.Pdf
A Letter from the CEO Welcome to the World of Peddinghaus - The World of “BETTER”. In the world of Peddinghaus we aim to be better. Take a look at any of our 5,000+ installations throughout the globe. These fabricators experience reduced costs and higher production using our equipment. Why? Because with Peddinghaus they receive better technology, better service, and better quality than anyone else can provide. These things aren’t easy to do, and not every company can guarantee what Peddinghaus does. I am proud that I can say these things because at Peddinghaus we work harder than anyone to give our customers the best. Whether they are located in New York, Los Angeles, or Chicago; they all receive the very same service, spare parts, and support that is second to none. Welcome to Partnerships – From Software to Service to Sales. At Peddinghaus we maintain strong partnerships with industry leaders to ensure your success. Whether this is our relationship with leading software providers (such as Shop Data Systems, Sigmanest, Steel Office, AceCad, Tekla, FabTrol, Design Data, and more) or our partnership with regional sales and support organizations - our goal is to work together to serve you better. Welcome to the PeddiSubX-1120 – The Fastest Drill Line in the Steel Industry. At long last my dream has come true, the Peddinghaus team has designed the fastest drill line in the steel industry. The last drill line you will ever need is now at your doorstep with the all new PeddiSubX-1120. Drilling and milling processes have been re-revolutionized and fabricators’ profits have been re-energized! This drill line has the ability to simultaneously drill holes, mill copes, rat holes, flange thins and ArcWrite. -
AEC Software Landscape TMT [email protected]
HW AEC Software Introduction HARRIS WILLIAMS (“HW”) HW TECHNOLOGY, MEDIA & TELECOM (“TMT”) GROUP • 25+ years and more than 1,000 closed transactions • 35+ professionals across Boston, San Francisco, and London • 350+ professionals across eight office globally • 170+ closed transactions in the last 24 months KEY THEMES • 10 industry groups ✓SaaS / Cloud ✓Data & Analytics ✓Digital Transformation ✓A.I. / Machine Learning HORIZONTAL FOCUS AREAS VERTICAL FOCUS AREAS FOCUSED ADVISORY SERVICES • Application Software • Architecture, Engineering, and Construction Software • Mergers and Acquisitions (M&A) • Cloud Managed Services and Hosting Solutions • Education Technology and Services • Capital Raises • Compliance Solutions • Energy Technology • Corporate Divestitures • CRM and Marketing Automation • Facilities and Real Estate Software • Human Capital Management • Financial Technology and Payments • Infrastructure and Security Software • Government Technology CONSISTENT RECOGNITION FOR QUALITY • IT and Tech-Enabled Services • Healthcare IT • Marketing, Research, and Insights Services • Industrial and Supply Chain Technology • Internet and eCommerce • Retail Technology HW ARCHITECTURE, ENGINEERING, AND CONSTRUCTION TEAM TECHNOLOGY, MEDIA & TELECOM GROUP BUILDING PRODUCTS & MATERIALS GROUP Tyler Dewing Thierry Monjauze Priyanka Naithani Michael Hogan Tim Webb [email protected] [email protected] [email protected] [email protected] [email protected] Office: +1 617-654-2133 Office: +44 20 7518 8901 Office: -
BIM 4 PROJECTS Jyrki Keinänen, CEO, D.Sc
BIM 4 PROJECTS Jyrki Keinänen, CEO, D.Sc. A-Insinöörit – a skillful and reliable partner since 1959 Constant growth 45 41,2 40 36,5 33,7 35 30 28,0 2009 25,8 25 2010 20 Combining people and technology 15 2011 10 2012 5 Better built 2013 0 environment Turnover, EUR million with human Integrated service offering touch 450 436 400 400 370 350 Building 350 297 2009 Information Structural 300 Management 2010 engineering 250 provider 200 2011 150 100 2012 Construction 50 management Infrastructure 0 2013 design Personnel Wide-ranging international experience in over 50 countries Extension of Helsinki Inter- Extension of Museum ”Gösta”. The Open Innovation House at Aalto Music hall ”NyaPaviljongen” - national Airport Terminal. Awarded with International Science Institute. Modern facilitywith multi-faceted wood building offers Modelling and co-operation ArhitecturalPrize. ”Simlab” virtual workingspacefor modern spaces for cultural events were the keys to the project’s large groups. and music institutes. success. Campus Arena in Tampere, a Outokumpu F3 Steel Mill, Tornio. Helsinki Music Centre is the home for P-Hämppi – the new generation’s hub of science, research and The ferrochrome plant is the world’s the Helsinki Philharmonic Orchestra, innovative car park in a special cave technology. most integrated stainless steel the Finnish Radio Symphony environment. The best new car park production unit. Orchestra and the Sibelius Academy. in Europe 2013 with it’s 972 parking spaces. Western Metro – new 14 km Modern land reclamation: Highway E18 project comprises Road project no. 11746 long metroline with 8 bridge over a highway and supplement to the current road for comprised construction of three stations. -
Based Building Energy Simulation
PAVING THE WAY FOR EXHAUSTIVE AND SEAMLESS BIM- BASED BUILDING ENERGY SIMULATION Sylvain Robert, senior researcher, [email protected] CEA LIST, Information, signal and sensors departement, Gif-sur-Yvette, France Bruno Hilaire, senior researcher, [email protected] Paul Sette, senior researcher, [email protected] Souheil Soubra, head of division, [email protected] Centre Scientifique et Technique du Bâtiment (CSTB), Mod-Eve division, Sophia-Antipolis, France ABSTRACT This paper presents an on-going work, which aims at improving the support for BIM-based energy simulation. The contribution is twofold. Firstly, a discussion about BIM-based energy simulation is provided, with an in-depth review of the state-of-the-art and a synthetic highlighting of the main related research issues, i.e. provision of an extensive IFC toolkit to perform the various translations and to make the link with BIM-based collaborative work support; validation of IFC models (completeness and correctness) and translation into the data formats used by the simulation tools; enrichment of IFC to enable exhaustive description of building elements and HVAC systems; user interfaces and usability. Then, the paper focuses on the issue of HVAC systems BIM descriptions and gives the result of a study performed on the capabilities of the IFC in this matter. This study entailed reviewing the properties and parameters needed to describe HVAC systems in a representative selection of simulation environments, and proposing ways to describe accordingly the systems in IFC (relying on proper enrichment of native IFC constructs). From these two contributions, the paper draws conclusions about the limitations of current support, and about the directions to take to fully enable BIM-based energy simulations. -
Get Started As a Tekla Structures Administrator
Tekla Structures 2020 Manage Tekla Structures March 2020 ©2020 Trimble Solutions Corporation Contents 1 Get started as a Tekla Structures administrator.......................9 1.1 Information sources for administrators ....................................................... 9 2 Tekla Structures installation for administrators.................... 11 2.1 Installation requirements..............................................................................11 2.2 Installing Tekla Structures.............................................................................12 2.3 Folder structure...............................................................................................13 2.4 Tekla Structures settings in the Windows registry.....................................14 2.5 Centralized installation of Tekla Structures................................................14 2.6 Installation in a virtual environment........................................................... 15 2.7 Installing the license server...........................................................................15 2.8 Installing .tsep packages................................................................................ 15 2.9 Collaborative modeling.................................................................................. 18 2.10 Upgrading Tekla Structures........................................................................... 18 2.11 Create start-up shortcuts with customized initializations........................ 19 Create a start-up shortcut with customized -
Working Collaboratively Within a Tekla Structures Model
Tekla Structures 2019 Share models and files March 2019 ©2019 Trimble Solutions Corporation Contents 1 Working collaboratively within a Tekla Structures model....... 9 1.1 What is Tekla Model Sharing..........................................................................10 Prerequisites for Tekla Model Sharing................................................................................ 11 Tekla Model Sharing licenses............................................................................................... 12 How Tekla Model Sharing uses the sharing service.......................................................... 12 Get to know Tekla Model Sharing basic working methods...............................................13 1.2 Work with Tekla Model Sharing ....................................................................16 Share a model in Tekla Model Sharing................................................................................17 Start sharing a model.......................................................................................................17 User roles in Tekla Model Sharing..................................................................................18 Information on users and sharing actions in Tekla Model Sharing............................20 Join a shared model in Tekla Model Sharing...................................................................... 21 Join a shared model......................................................................................................... 21 Information on shared -
Présentation Powerpoint
Sommaire • Définition du BIM • Enjeux : BIM et Niveaux de Développement • Les Missions de BIM management • Travailler avec une base de donnée : Quelle diversité des données? • Aperçu des principaux « formats » de fichier • Aperçu de solutions logicielles (Revit, Revit Viewer, Navisorks freedom, Navisworks ultimate/manage) • Concepts et principes dans Revit – Travail collaboratif (liens, central local…) – Familles…. BIM - Définition Conception/Construction : Un processus très hétérogène Une implication de nombreux acteurs, chacun avec ses propres outils et ses méthodes CHAUFFAGE-CLIM-VENTILATION MANAGEMENT DE PROJET ARCHITECTURE FACILITY MANAGEMENT PREFABRICATION STRUCTURES MIXTES CALCUL DE STRUCTURE THERMIQUE & ETUDES DE COUTS DEVELOPPEMENT DURABLE VISUALISATION METHODES DE CHANTIER BIM - Définition Building Information Modeling (BIM) = processus de travail et d’échange d’informations supporté par des maquettes numériques tout au long du cycle de vie du bâtiment. « maquette numérique » = base de données métiers décrivant un ouvrage // Définition du BIM BIM Les niveaux de BIM Niveau 0 Niveau 1 Niveau 2 Niveau 3 DAODAO BIM BIMBIM BIM Traditionnelle Modélisation Collaboration Intégration Traditionnelle orientée objet orientée modèle orientée Réseaux • Plans, métré 2D • Modèle mono- • Modèle Multi- • Co-modélisation métier métiers Muli-métiers • Echanges PDF 2D, DXF, • Cohérence de la • Simulation / • Echange de DWG… documentation Analyse données et du modèle 3D synchrone • Processus • Import/Export d’échange • Stockage Cloud uni-directionnel