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Cimdata Cpdm Late-Breaking News
PLM Industry Summary Sara Vos, Editor Vol. 21 No. 8 - Friday, February 22, 2019 Contents CIMdata News _____________________________________________________________________ 2 Intelligence for Product Lifecycle Management (CIMdata Blog) __________________________________2 Read last week’s Top Ten Stories ___________________________________________________________2 SOLIDWORKS World 2019: Expanding the 3DEXPERIENCE Platform (CIMdata Commentary) _______3 Acquisitions _______________________________________________________________________ 6 Zix Closes Acquisition of AppRiver, Creating Leading Cloud-based Cybersecurity Solutions Provider ____6 Company News _____________________________________________________________________ 6 AMC Bridge Named to IAOP’s 2019 Best of The Global Outsourcing 100 __________________________6 Capgemini Presents Airbus with the Global Leadership Award for Innovation _______________________7 Business-Critical Cloud Adoption Growing yet Security Gaps Persist, Report Says____________________8 Creaform Engineering Expands its GD&T Service Offer with New Dimensional Management Services ___9 Digital Catapult collaborates with Siemens, BT and PTC on next generation network infrastructure ______10 Elysium Presents Gold Partner Award to Honlitech ____________________________________________12 Elysium Presents Platinum Partner Award to CAMTEX ________________________________________12 Maplesoft and Sigmetrix Announce Direct Operations in China __________________________________12 Signalysis and Vaughn Associates Partnership -
The Fondation Louis Vuitton
THE FONDATION LOUIS VUITTON A new ambition for LVMH's corporate patronage Created by the LVMH group and its Maisons in 2006 on the initiative of Bernard Arnault, the Fondation Louis Vuitton forms part of the art and culture patronage programme developed by the group for over twenty years. It also marks a new step driven by a renewed ambition: – A lasting commitment with the desire to become firmly rooted in a particular place and bring an institution to life over the long term. – A major philanthropic gesture towards the city of Paris with the construction of an exceptional building on municipal state property and the signature of a 55-year occupancy agreement with Paris city council. Driven by a desire to work for the common good, the Fondation Louis Vuitton demonstrates a clear commitment to contemporary art and looks to make it accessible to as many people as possible. To foster the creation of contemporary art on a national and international scale, the Fondation Louis Vuitton calls on a permanent collection, commissions from artists, temporary modern and contemporary art exhibitions and multidisciplinary events. One of its priorities is to fulfil an educational role, especially among the young. A new monument for Paris Frank Gehry has designed a building that, through its strength and singularity, represents the first artistic step on the part of the Fondation Louis Vuitton. This large vessel covered in twelve glass sails, situated in the Bois de Boulogne, on the edge of avenue du Mahatma Gandhi, is attached to the Jardin d'Acclimatation. Set on a water garden created for the occasion, the building blends into the natural environment, amidst the wood and the garden, playing with light and mirror effects. -
Conference Program
Ernest N. Morial ConventionConference Center Program • New Orleans, Louisiana HPC Everywhere, Everyday Conference Program The International Conference for High Performance Exhibition Dates: Computing, Networking, Storage and Analysis November 17-20, 2014 Sponsors: Conference Dates: November 16-21, 2014 Table of Contents 3 Welcome from the Chair 67 HPC Impact Showcase/ Emerging Technologies 4 SC14 Mobile App 82 HPC Interconnections 5 General Information 92 Keynote/Invited Talks 9 SCinet Contributors 106 Papers 11 Registration Pass Access 128 Posters 13 Maps 152 Tutorials 16 Daily Schedule 164 Visualization and Data Analytics 26 Award Talks/Award Presentations 168 Workshops 31 Birds of a Feather 178 SC15 Call for Participation 50 Doctoral Showcase 56 Exhibitor Forum Welcome 3 Welcome to SC14 HPC helps solve some of the SC is fundamentally a technical conference, and anyone world’s most complex problems. who has spent time on the show floor knows the SC Exhibits Innovations from our community have program provides a unique opportunity to interact with far-reaching impact in every area of the future of HPC. Far from being just a simple industry science —from the discovery of new exhibition, our research and industry booths showcase recent 67 HPC Impact Showcase/ drugs to precisely predicting the developments in our field, with a rich combination of research Emerging Technologies next superstorm—even investment labs, universities, and other organizations and vendors of all 82 HPC Interconnections banking! For more than two decades, the SC Conference has types of software, hardware, and services for HPC. been the place to build and share the innovations that are 92 Keynote/Invited Talks making these life-changing discoveries possible. -
CAD for VEX Robotics
CAD for VEX Robotics (updated 7/23/20) The question of CAD comes up from time to time, so here is some information and sources you can use to help you and your students get started with CAD. “COMPUTER AIDED DESIGN” OR “COMPUTER AIDED DOCUMENTATION”? First off, the nature of VEX in general, is a highly versatile prototyping system, and this leads to “tinkerbots” (for good or bad, how many robots are truly planned out down to the specific parts prior to building?). The team that actually uses CAD for design (that is, CAD is done before building), will usually be an advanced high school team, juniors or seniors (and VEX-U teams, of course), and they will still likely use CAD only for preliminary design, then future mods and improvements will be tinkered onto the original design. The exception is 3d printed parts (U-teams only, for now) which obviously have to be designed in CAD. I will say that I’m seeing an encouraging trend that more students are looking to CAD design than in the past. One thing that has helped is that computers don’t need to be so powerful and expensive to run some of the newer CAD software…especially OnShape. Here’s some reality: most VEX people look at CAD to document their design and create neat looking renderings of their robots. If you don't have the time to learn CAD, I suggest taking pictures. Seriously though, CAD stands for Computer Aided Design, not Computer Aided Documentation. It takes time to learn, which is why community colleges have 2-year degrees in CAD, or you can take weeks of training (paid for by your employer, of course). -
Development of a Coupling Approach for Multi-Physics Analyses of Fusion Reactors
Development of a coupling approach for multi-physics analyses of fusion reactors Zur Erlangung des akademischen Grades eines Doktors der Ingenieurwissenschaften (Dr.-Ing.) bei der Fakultat¨ fur¨ Maschinenbau des Karlsruher Instituts fur¨ Technologie (KIT) genehmigte DISSERTATION von Yuefeng Qiu Datum der mundlichen¨ Prufung:¨ 12. 05. 2016 Referent: Prof. Dr. Stieglitz Korreferent: Prof. Dr. Moslang¨ This document is licensed under the Creative Commons Attribution – Share Alike 3.0 DE License (CC BY-SA 3.0 DE): http://creativecommons.org/licenses/by-sa/3.0/de/ Abstract Fusion reactors are complex systems which are built of many complex components and sub-systems with irregular geometries. Their design involves many interdependent multi- physics problems which require coupled neutronic, thermal hydraulic (TH) and structural mechanical (SM) analyses. In this work, an integrated system has been developed to achieve coupled multi-physics analyses of complex fusion reactor systems. An advanced Monte Carlo (MC) modeling approach has been first developed for converting complex models to MC models with hybrid constructive solid and unstructured mesh geometries. A Tessellation-Tetrahedralization approach has been proposed for generating accurate and efficient unstructured meshes for describing MC models. For coupled multi-physics analyses, a high-fidelity coupling approach has been developed for the physical conservative data mapping from MC meshes to TH and SM meshes. Interfaces have been implemented for the MC codes MCNP5/6, TRIPOLI-4 and Geant4, the CFD codes CFX and Fluent, and the FE analysis platform ANSYS Workbench. Furthermore, these approaches have been implemented and integrated into the SALOME simulation platform. Therefore, a coupling system has been developed, which covers the entire analysis cycle of CAD design, neutronic, TH and SM analyses. -
NEI Crafts Program to Boost Tech
20120305-NEWS--0001-NAT-CCI-CD_-- 3/2/2012 6:47 PM Page 1 ® www.crainsdetroit.com Vol. 28, No. 10 MARCH 5 – 11, 2012 $2 a copy; $59 a year ©Entire contents copyright 2012 by Crain Communications Inc. All rights reserved Page 3 When film credits dried up, What’s behind Beaumont NEI crafts recruiting new chiefs? Cut! so did Raleigh’s payments Sale of Barden building brings estate closure closer NATHAN SKID/CRAIN’S DETROIT BUSINESS program to Focus: Innovations boost tech Grants to top $30M; Midtown a target BY CHAD HALCOM tax credits, Raleigh Michigan could CRAIN’S DETROIT BUSINESS continue to operate for five more years BY TOM HENDERSON CRAIN’S DETROIT BUSINESS aleigh Michigan Studios opened without returning another dime. Michigan Motion Picture Studios LLC The New Economy Initiative has embarked on an under a marquee of co-owners , which owns and operates Raleigh Stu- ambitious 10-year program called the Regional Inno- R with names almost as vation Network to boost high-tech development and Breast cancer ultrasound renowned in Michigan as the Holly- dios Detroit in Pontiac, is co-owned job creation in Southeast Michigan, with a particu- lar emphasis on Detroit’s Mid- wood stars and directors they hoped by its CEO, Linden Nelson; John tech nears marketplace, Rakolta, CEO of Detroit-based Wal- town. to attract. NEI Executive Director David bridge Aldinger Co. Page 11 But the studio in Pontiac likely will , which built the stu- Egner said the initiative — de- miss a second consecutive bond pay- dio; A. Alfred Taubman, founder of signed to connect the dots of in- Bloomfield Hills-based Taubman Cen- novation, from the riverfront to Crain’s lists: IP law firms, ment to investors in August unless it Ann Arbor and East Lansing — ters Inc.; and William Morris Endeavor En- biotech firms, Pages 17-18 lands another big-budget film pro- will make at least $30 million in tertainment, duction lease soon or the state eases headed by co-CEO Ari grants to an array of organiza- Emanuel, brother to Chicago Mayor tions. -
9783030335694.Pdf
Research for Development Bruno Daniotti Marco Gianinetto Stefano Della Torre Editors Digital Transformation of the Design, Construction and Management Processes of the Built Environment Research for Development Series Editors Emilio Bartezzaghi, Milan, Italy Giampio Bracchi, Milan, Italy Adalberto Del Bo, Politecnico di Milano, Milan, Italy Ferran Sagarra Trias, Department of Urbanism and Regional Planning, Universitat Politècnica de Catalunya, Barcelona, Barcelona, Spain Francesco Stellacci, Supramolecular NanoMaterials and Interfaces Laboratory (SuNMiL), Institute of Materials, Ecole Polytechnique Fédérale de Lausanne (EPFL), Lausanne, Vaud, Switzerland Enrico Zio, Politecnico di Milano, Milan, Italy; Ecole Centrale Paris, Paris, France The series Research for Development serves as a vehicle for the presentation and dissemination of complex research and multidisciplinary projects. The published work is dedicated to fostering a high degree of innovation and to the sophisticated demonstration of new techniques or methods. The aim of the Research for Development series is to promote well-balanced sustainable growth. This might take the form of measurable social and economic outcomes, in addition to environmental benefits, or improved efficiency in the use of resources; it might also involve an original mix of intervention schemes. Research for Development focuses on the following topics and disciplines: Urban regeneration and infrastructure, Info-mobility, transport, and logistics, Environment and the land, Cultural heritage and landscape, Energy, Innovation in processes and technologies, Applications of chemistry, materials, and nanotech- nologies, Material science and biotechnology solutions, Physics results and related applications and aerospace, Ongoing training and continuing education. Fondazione Politecnico di Milano collaborates as a special co-partner in this series by suggesting themes and evaluating proposals for new volumes. -
Evaluation of Shipbuilding Cadicam Systems (Phase I)
Final Report EVALUATION OF SHIPBUILDING CADICAM SYSTEMS (PHASE I) Submitted to: U.S. Navy by: National Steel & Shipbuilding Co. San Diego, CA 92186 Project Director: John Horvath Principal Investigator: Richard C. Moore October 1996 Technical Report Documentaition Page- 1. Report No. 2. Government Accession No. 3. Recipient's Waiog No. I I 4. Title and Subtitle I 5. Repon Date October 14. 1996 Evaluation of Shipbuilding CADICAM Systems 6. Performing Organization C e (Phase I) '32%'2.7 8. Performing Organization Report Ilo. 7. Author(s) Richard C. Moore UMTRI-96-35 9. Performing Organization Name and Address 10. Work Unit No. (TRAIS) The University of Michigan Transportation Research Institute 11. Contracl or Grant No. 290 1 Baxter Road, Ann Arbor, .Michigan 48 109-2150 PQ# MU7.56606-D - 13. Typ of Report and Period Coverud 12. Sponsoring Agency Name and Address Technical National Steel & Shipbuilding Co. 28th St. & Harbor ~r. 14. Sponsoring Agency Code San Diego, CA 92 1 13 US. Navy 15. Supplementary Notes 16. Abstract This report is the Phase I final report of the National Shipbuilding Research F'rogram (NSRP) project (Project Number 4-94-1) to evaluate world-class shipbuilders' existing CADICAMICIM system implementations. Five U.S. shipyards participated in this study along with personnel from University of Michigan, Proteus Engineering, and Cybo Robots. Project participants have backgrounds in design, computer-aided design (CAD), n~anufacturingprocesses, computer-aided manufacturing (CAM), production planning, and computer-integrated manufacturing/management (CIM). The results of this evaluation provided the basis for the CADICAMICIM Workshop presented in conjunction with the 1996 Ship Production Symposium, and will be used as background in Phase I1 of the project to develop requirements for future shipbuilding CADICAMICIM systems. -
Chapter 18 Solidworks
Chapter 18 SolidWorks As much as any company in the CAD industry, SolidWorks was inspired by the vision of a single individual, Jon Hirschtick. He received both a BS and an MS degree in mechanical engineering from MIT in 1983 and subsequently worked at the MIT CAD Laboratory under Dr. David Gossard. Hirschtick had a strong entrepreneurial streak in him from an early age including a period as a self-employed magician during high school. While working at the CAD Laboratory, he enrolled in an entrepreneurship class in 1987 where he teamed up with Axel Bichara to write a business plan for a new CAD software company they called Premise. Bichara was a graduate student from Germany who was also working at the CAD Laboratory at the time.1 The class business plan for Premise was submitted in mid-May, 1987 and in a little over a month the two founders had $1.5 million in venture funding from Harvard Management Company. It was no surprise that the company set up shop in Cambridge. Figure 18.1 Jon Hirschtick2 Premise’s initial software product, DesignView, was a two-dimension conceptual design tool that ran on IBM-compatible PCs and interfaced with Microsoft software packages such as Word and Excel. Users could sketch geometry, assign constraints and define dimensional relationships. If a dimension changed, the design would adapt to this new information. Since it could be interfaced to Excel, spreadsheets could be used to 1 Bygrave, William D. and D’Heilly, Dan – editors, The Portable MBA in Entrepreneurship Case Studies, Pg. -
Application of Bim and Construction Process Simulation Using 5D Bim for Residential Building Project
International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056 Volume: 04 Issue: 07 | July -2017 www.irjet.net p-ISSN: 2395-0072 APPLICATION OF BIM AND CONSTRUCTION PROCESS SIMULATION USING 5D BIM FOR RESIDENTIAL BUILDING PROJECT Snehal M. Jununkar1, Prof.D. S. Aswar2, Prof. D. L.Mittapalli3 1 Post graduate student, Department of Civil Engineering, RMD Sinhgad College of Engineering, Warje, Pune, Maharashtra, INDIA 2Professor, Department of Civil Engineering, Sinhgad college of Engineering, Wadgaon , Pune, Maharashtra, INDIA 3 Professor , Department of Civil Engineering, RMD Sinhgad College of Engineering, Warje, Pune, Maharashtra, INDIA ---------------------------------------------------------------------***--------------------------------------------------------------------- Abstract - In today’s growing construction field quality of which are computer readable. This process is recognised as work, time and cost these are the very important elements. n-dimensional (n-D) modelling, where different Building information which comes timely and correctly in “dimensions” of information are integrated into a digital multiple dimensions will facilitate a advanced decision building model. The construction field is constantly shifting building process which can develop these three things. 5D in an effort to recognize the construction process, minimize Building Information Modelling is raising development in the material waste, decrease overall cost, accelerate project construction industry that integrates all the key information achievement, and developed coordination among people from the initial design to the finishing stage. The habitual involved. The performance of Building Information Modeling construction industry's production effectiveness is moderately (BIM) related software, such as Autodesk‟s Revit and low and the waste of resources is serious, which has actually Nemetschek, into construction projects contributes to hindered the construction field green sustainable making this growth in the industry feasible. -
Altair Simsolid Installation Guide P.2
Altair SimSolid 2019 Installation Guide Learn more at altairhyperworks.com Intellectual Property Rights Notice: Copyrights, Trademarks, Trade Secrets, Patents & Third Party Software Licenses Altair SimSolid™ Altair Engineering Canada LTD Copyright© 2014-2018. All Rights Reserved. Altair Engineering Copyright© 2018. All Rights Reserved. Special Notice: Pre-release versions of Altair software are provided ‘as is’, without warranty of any kind. Usage of pre-release versions is strictly limited to non-production purposes. solidThinking Platform: Altair INSPIRE™ 2019 ©2009-2018 including Altair INSPIRE Motion and Altair INSPIRE Structures Altair INSPIRE Extrude-Metal 2019 ©1996-2018 (formerly Click2Extrude®-Metal) Altair INSPIRE Extrude-Polymer 2019 ©1996-2018 (formerly Click2Extrude®-Polymer) Altair INSPIRE Cast 2019 ©2011-2018 (formerly Click2Cast®) Altair INSPIRE Form 2019 ©1998-2018 (formerly Click2Form®) Altair COMPOSE™ 2019 ©2007-2018 (formerly solidThinking Compose®) Altair ACTIVATE™ 2019 ©1989-2018 (formerly solidThinking Activate®) Altair EMBED™ 2019 ©1989-2018 (formerly solidThinking Embed®) o Altair EMBED SE 2019 ©1989-2018 (formerly solidThinking Embed® SE) o Altair EMBED/Digital Power Designer 2019 ©2012-2018 HyperWorks® Platform: HyperMesh® ©1990-2018; HyperCrash® ©2001-2018; OptiStruct® ©1996-2018; RADIOSS® ©1986- 2018; HyperView® ©1999-2018; HyperView Player® ©2001-2018; HyperMath® ©2007-2017; HyperStudy® ©1999-2018; HyperGraph® ©1995-2018; MotionView® ©1993-2018; MotionSolve® ©2002-2018; HyperForm® ©1998-2018; HyperXtrude® ©1999- 2018; Process Manager™ ©2003-2018; Templex™ ©1990-2018; TextView™ ©1996-2018; MediaView™ ©1999-2018; TableView™ ©2013-2018; BatchMesher™ ©2003-2018; HyperWeld® ©2009-2018; HyperMold® ©2009-2018; Manufacturing Solutions™ ©2005-2018; Durability Director™ ©2009-2018; Suspension Director™ ©2009-2018; AcuSolve® ©1997-2018; AcuConsole® ©2006-2018; SimLab® ©2004-2018; Virtual Wind Tunnel™ ©2012-2018; FEKO® (©1999-2014 Altair Development S.A. -
Simulation Modelling for Computer Aided Design of Secondary Aerodynamic Wing Surfaces Aleksandr A
Advances in Systems Science and Application (2015) Vol.15 No.4 338-350 Simulation Modelling for Computer Aided Design of Secondary Aerodynamic Wing Surfaces Aleksandr A. Gorbunov, Aleksej D. Pripadchev, Irina S. Bykova and Valerij V. Elagin Federal State Educational Government-financed Institution of Higher Professional Education, Orenburg State University, Orenburg region, Russia Abstract The simulation modelling technique of secondary aerodynamic wing surface of the long-haul aircraft using a high-precision mathematical simulation in the aerody- namics and hydrodynamics computer programme has been formulated in the present article. The method proposed is based on the modern methods in the field of computer-aided design of aircraft using CATIA three-dimensional sim- ulation and simulation modelling in SALOME environment. The use of high- precision mathematical simulation in computer-aided design of secondary aero- dynamic wing surfaces allows us to determine the aerodynamic characteristics of the secondary aerodynamic surface of the model developed and to verify the previous results of the project definition. Keywords Secondary aerodynamic surfaces; High-precision computer mathemat- ical simulation; Simulation model; A long-haul aircraft; Synthesis; Design au- tomation; Project procedures; Three-dimensional modelling 1 Introduction Building the new long-haul aircraft (A/C) with improved performance character- istics and enhancing the currently used aircraft is effected in various ways. One of them is improving its aerodynamics depending largely on the A/C look. In our view, the most rational way to improve the aerodynamic characteristics of the A/C is to install the secondary aerodynamic surfaces (SAS) at the wingtip. The use of SAS reduces the induced drag of the aircraft, enhances the effective wing aspect-ratio and ascensional power at the wingtip, improves A/C longitu- dinal/transverse stability, reduces specific fuel consumption, cuts takeoff run and landing roll of the aircraft.