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AutoCAD LT is the lower-cost version of AutoCAD, with reduced capabilities, first released in November 1993. Autodesk developed AutoCAD LT to have an entry-level CAD package to compete in the lower price level. Priced at $495, it became the first AutoCAD product priced below $1000. It was sold directly by Autodesk and in computer stores unlike the full version of AutoCAD, which must be purchased from official Autodesk dealers. AutoCAD LT 2015 introduced Desktop Subscription service from $360 per year; as of 2018, three subscription plans were available, from $50 a month to a 3-year, $1170 license.
AutoCAD WS began with a version for the iPhone and subsequently expanded to include versions for the iPod Touch, iPad, Android phones, and Android tablets.[21] Autodesk released the iOS version in September 2010,[22] following with the Android version on April 20, 2011.[23] The program is available via download at no cost from the App Store (iOS), Google Play (Android) and Amazon Appstore (Android).
Autodesk stopped supporting Apple's Macintosh computers in 1994. Over the next several years, no compatible versions for the Mac were released. In 2010 Autodesk announced that it would once again support Apple's Mac OS X software in the future.[30] Most of the features found in the 2012 Windows version can be found in the 2012 Mac version. The main difference is the user interface and layout of the program. The interface is designed so that users who are already familiar with Apple's macOS software will find it similar to other Mac applications.[22] Autodesk has also built-in various features in order to take full advantage of Apple's Trackpad capabilities as well as the full-screen mode in Apple's OS X Lion.[21][22] AutoCAD 2012 for Mac supports both the editing and saving of files in DWG formatting that will allow the file to be compatible with other platforms besides macOS.[21] AutoCAD 2019 for Mac requires Mac OS X 10.11 (El Capitan) or later.
The following instructions step through the process of manually configuring your Office 365 Exchange Online account with Outlook 2010, 2013, and 2016 for Windows. This may be needed when configuring a secondary account, or if you run into issues with the automatic configuration process.
Architecture is one of those fields that has benefitted hugely from the influx of amazing specialized apps available. Ranging from apps that allow you jot or sketch out ideas on top of images and plans to app version of the large-scale programs you use every day, there are tons of options to make your life as an architect easier. Check out our list of the 10 best iPad apps for architects.
This high-performance app allows users to collaborate on projects of all sizes and implement effective plan management solutions. BlueVue Plans will help to improve coordination between the field and office, deploys revised plan sets, increase efficiency of decisions, saves time, mitigates risk and costs, annotate plans and more. The app features a secured cloud-based platform, super-fast touch controls like pan and zoom, master set of plans, plenty of in-project edits and drawing tools, create projects on the go, automatically sync projects and more.
HTTP Commander supports Microsoft Office and free OpenOffice, LibreOffice for online editing of documents using desktop applications. Users do not need to bother with downloading documents to the local machine, editing, and uploading them back to the server. They can open the document right in HTTP Commander, edit, and save it, as they normally do with local documents. Thanks to WebDAV technology, users should not care about the difference between local documents and documents in HTTP Commander. Microsoft Office and free OpenOffice, LibreOffice allow the user to work with more than 100 document formats (text, tables, images, presentations). It is possible to convert one format to another and save new documents on the server. This feature works in any browser and with both Windows and Mac OS. Microsoft Office 2007, 2010, 2013, 2016, 2019 are supported.
AutoCAD is an industry-leading program for computer-aided design (CAD). CAD is valuable for architects, engineers, and construction professionals, who can use it to reliably create precision 2D and 3D drawings. AutoCAD is the flagship for CAD software, the standard tool that drafters or architects call upon for computerized assistance in drawing up plans for buildings. That said, AutoCAD has many more uses than solely putting together blueprints.
The application is intended to improve the efficiency of common tasks including infrastructure maintenance management, planning and zoning, property ownership, engineering, permitting. licensing and code enforcement. To do this the system accesses multiple disparate data sources from different data custodians including Public Works, Safety and Inspections, Planning and Economic Development, Parks & Recreation, Office of Technology, Fire, Police, Real Estate, and District Councils. The public has access to 73 layers of data through OGC web standard interfaces. The tool, called GeoMoose, is an open source project (MIT license) on OSGeo and uses only open source components. There are quite a few governmental agencies around the U.S participating in the GeoMoose project.
3 Scanning industrial plants - Cepsa (Compañía Española de Petróleos, S.A.U.) is a Spanish energy company who are scanning their chemical plants which requires thousands of scans. A major software advance (Leica Cyclone) allows them to automate the registration process saving a lot of time.
Highway construction is being transformed, due in part to the arrival of autonomous vehicles. I've blogged about the startling (at least to traditional construction contractors) vision of the future of highway construction of the Chief of Surveys at the Oregon Department of Transportation (DoT) which targets the full lifecycle of highway assets from planning through design and construction and operation and maintainenance. Some large construction projects are already being designed, built and operated and maintained with a full lifecycle perspective.
Urbanization is a worldwide phenomenon. Smart city technology is becoming an essential element in the development of the world's megacities. For example, the new Indian government's just released budget includes an allocation for initiating the development of 100 smart cities. Songdo IDB in Korea and Fujisawa in Japan are two smart cities already under development. China has 36 smart cities in development and a low carbon model city in Tianjin. Singapore plans to become a smart nation by 2015. Iskandar is Malaysia's first smart city. The Delhi-Mumbai Industrial Corridor (DMIC) incorporates smart city concepts.
According to Gartner national and regional governments in the Middle East and North Africa will spend US $12.2 billion on IT products and services in 2014, up 1.3 % from 2013. This includes internal services, software, IT services, data center, devices and telecom services. Saudi Arabia is investing in various digital government initiatives including King Abdullah Economic City (KAEC). The United Arab Emirates (UAE) is planning multiple smart cities.
The OSR process consists of two phases; first conductors are created and then equipment is added. A wire can be created by simply selecting three points, first anchor point, maximum sag point and end anchor point. For tubes, two or more points can be selected. Wires and tubes are available in the library for different conductor types according to international standards. After conductors has been created and placed, the OSR tool provides a list of compatible library symbols for each symbol type. It is up to the user to choose which symbol should be selected. The user can select the perfect matching symbol or another one in the list. A similar workflow applies to all the other symbols like support structures and foundation heads. The system then combines the symbols to create assemblies (electrical device, support structure, foundation head) and places them in the model. Once an assembly has been created, the OSR tool will recognize identical assemblies in the point cloud and propose it for those positions in the substation. The wires are automatically attached to the respective electrical connection points on the equipment upon the insertion of the assemblies. After the OSR tool has examined all objects in the point cloud and they have been mapped to an assembly in the model, a logical and intelligent primtech BIM model has been created. The model can be used as a full-fledged template for extension or retrofit - to create parts lists and plans as well as to carry out calculations including phase checking, clearance calculation, lightning protection calculation, sag and short-circuit effects calculations.
The first project I have come across that has attempted estimate total savings attributable to an integrated BIM+geospatial full life-cycle approach to construction is the Napgur Metro project. This is a US$1.3 billion project underway in Nagpur, and appears to be the first project in Asia to integrate a digital twin with an asset management system to eliminate information loss about assets during design and construction. Since the Nagpur system implements a full-lifecycle approach to project management, the location of each of the 500,000 assets comprising the systems is recorded making it possible to click on an asset in SAP and be shown the location of the asset in a 3D map. Final deliverables are digital models rather than paper drawings providing a basis for digitalizing operations and maintenance. The benefits of a 3D BIM+geospatial approach have been projected based on a 25 year lifetime for the project. It is estimated that this will result in US$400,000 savings during plan, design and build. But the big benefit of an integrated BIM+geospatial approach is expected during the 25 year maintain and operate phase of the project. It is expected that operating manpower requirements will be reduced by 20%. The really big payoff is an estimated savings of US$222 million over the lifetime of the project. 2b1af7f3a8