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It is used to create assets for interactive 3D applications including video gamesautodesk revit 2017 new features free films, TV series, and visual effects. The Frde -based projects were combined and animation features were added; the project codename was Maya. This was a particular influence in the open architecture of Maya, and partly responsible for it becoming popular in the animation industry.
After Silicon Graphics Inc. In the early days of development Free started with Tcl as the scripting language, in order to leverage its fsatures to a Unix shell language, but after the merger with Wavefront it was replaced with Maya Embedded Language MEL. Maya 1. Following a series of acquisitions, Maya was bought by Autodesk in However, the featuree "Maya" continues to be the dominant name featkres for the product. Maya is an application used to generate 3D assets for use in film, television, games, and commercials.
The software was initially released for the IRIX operating system. However, this support was discontinued in August after the release of version 6. Maya was available in both "Complete" and "Unlimited" adobe photoshop cc for photographers free until Augustwhen it autodesk revit 2017 new features free turned into a single suite. Users autodes, a virtual workspace scene to implement and edit media of a particular project.
Scenes can be saved in a variety of formats, the default being. Maya exposes a node graph architecture. Scene elements are node -based, each node having its own attributes and customization. As a result, the visual representation of a scene is based entirely on a network of interconnecting nodes, depending on each other's information. For the convenience of viewing these networks, there is a dependency and a directed acyclic graph.
Nowadays, the 3D models can be imported to game engines such as Unreal Engine and Unity. The widespread use of Maya in the film industry is usually associated with its development on the film Dinosaurreleased by Disney and The Secret Lab on May 19, From Wikipedia, the nsw encyclopedia.
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Free Software. We provide you with software Product Key Autodesk for the purpose of learning and research. Not allowed to use for business purposes. If you like it and to work effectively, you buy software support Product Key Autodesk publisher Autodesk. Accelerate documentation with the duplicate sheet dialog to reproduce title block and parameters, detailing, and views on sheets.
Connect form-making to documentation with improved Revit interoperability with tools like Rhino and FormIt Pro. Improvements to scheduling and annotation tools make it easier to capture and communicate design intent.
Model faster, more accurately, and with greater precision when placing and manipulating rebar elements. Articulate form in the Revit massing environment with freeform tools for profiling and massing, and refine geometry parametrically in the project environment. Add architectural elements to the building model, including walls, doors, and windows, or define custom components and families to meet any modeling need and level of detail.
Use scanning tools to capture existing and as-built conditions and import into Revit as point clouds. Explore, validate, and communicate design decisions visually. Revit renders with high quality and precision through the Autodesk Raytracer rendering engine. Quickly create and modify multistory buildings by connecting stairs to the levels in your project. Produce photorealistic visualizations without tying up your desktop or using special rendering hardware.
Leverage accurate and versatile structural analysis tools to assess and adapt design intent as the BIM model develops. Automate analytical representation, run multiple analyses from a single BIM model, schedule data for documentation, and assure quality control of structural design.
New in Revit Create 3D reinforcement designs for cast-in-place and precast concrete structures. Produce reinforcement shop drawing documentation with rebar schedules. Model connections with a higher level of detail using a variety of parametric steel connections in Revit or by creating your own custom steel connections.
Dynamo gives structural engineers, designers, and detailers tools to build structures with minimal energy and make their own design tools. Interoperability between Revit and Advance Steel helps provide a seamless BIM workflow from steel design to fabrication. Systems Analysis optimizes your HVAC systems design and modeling, letting you make data-driven design decisions.
Design complex duct and pipe systems to express intent, and model duct and pipe systems with mechanical design content. Design, model, and document electrical systems. Keep track of electrical loads throughout the distribution system. Create sanitary plumbing systems with sloped piping and layout piping systems to design and document intent.
Support for cantilevered elements enables you to extend the bearer on a hanger to support additional services. The improvements to hangers also enable you to place a hanger in free space. The new tools and enhancements enable you to quickly iterate from a design level of detail model to a fabrication level of detail model.
To prepare a model for detailed coordination modeling and construction, you can now convert design level of detail model elements to construction level of detail elements using the Design to Fabrication tool. The Design to Fabrication tool will present a list of potential related services for selected design level of detail duct and pipe elements. Reviewable Warnings help you to identify straight segments that are longer then their specified standard lengths.
After you optimize to standard lengths, you can adjust the location of short segments and extend fittings, such as elbows and tees, to consume the remaining short pieces. Now you can help increase modeling productivity and accuracy by automating layout with detailed options. The new Route and Fill tool enables you to select two open endpoints of a run, and Revit will give you options to connect them. You can preview which fittings will be inserted in each option. Additionally, you can specify which fittings are required and force solutions that incorporate only those fittings.
Additionally, the Cut Into option of Route and Fill enables you to connect tee and tap scenarios. The Trim and Extend tool works the way you would expect in Revit, and will also take into consideration conditions and connectivity rules when inserting fittings. When you know you want a specific fitting in a particular scenario, but do not know the dimensions of the fitting, you can place the fitting and stretch it into place using Quick Connect.
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Researchers envision applications ranging from construction to robotics. It was specifically built for MEP engineers and designers. This software provides engineers and designers with tools for the analysis, modeling, and design of various building elements and systems for MEP Mechanical, Electrical, and Plumbing services. Revit is a BIM software that helps users to coordinate the documentation of MEP designs with other engineering disciplines.
Its integrated parametric modeling technology is used to create the information model of a project and to collect and coordinate information across all its representations. In Autodesk Revit, drawing sheets, 2D views, 3D views, sectional view, callout details, and schedules directly represent the same building information model BIM as the real one does.
Autodesk Revit for MEP is developed with an approach to bring the Mechanical, Electrical, and Plumbing engineers together under the BIM framework and make the building services system efficient and interoperable with other systems. In Revit, a designer can not only work with various pre-designed elements of different MEP disciplines but can also model customized elements and add parameters to them. This helps in modeling complex designs with various permutations.
Different disciplines of Revit for MEP are briefly described next. The study of the energy requirements of the building is very essential for developing an efficient and cost effective design. In mechanical discipline, you can design the whole ducting network with the ventilation layout plan.
You can also route the piping or ducting networks manually or generate routing solutions by using various tools in this software. In this discipline, you can also develop a Fire Suppression System. While working with the electrical discipline, you can design an electrical system. In this system, you can add various lighting fixtures, switches, alarms, communication devices, and more as per the requirement of the project. You can also add panels and prepare panel schedules and perform the load analysis.
Further, you can connect the devices and fixtures through logical circuits. In this discipline, you can design a plumbing system for a project. In the plumbing system, you can add plumbing fittings, accessories, and fixtures as per the requirement of a project.
In addition, you can also design fire fighting system for a building and add fire safety components to the system. The history of computer aided design and documentation dates back to the early s when architects and engineers began using this technology for documenting their projects. Realizing its advantages, information sharing capabilities were developed, especially to share data with other consultants.
This led to the development of object-based CAD systems in the early s. Before the development of these systems, objects such as HVAC components, pipes, plumbing fixtures, electrical fixture, and more were stored as a non-graphical data with the assigned graphics. These systems arranged the information logically but were unable to optimize its usage in a building project.
Realizing the advantages of the solid modeling tools, the mechanical and manufacturing industry professionals began using the information modeling CAD technology. This technology enabled them to extract data based on the relationship between model elements. The Building Information Modeling BIM provided an alternative approach to building design, construction, and management. This approach, however, required a suitable technology to implement and reap its benefits.
In such a situation, the use of parametric technology with the Building Information Modeling approach was envisaged as an ideal combination. In , a group of mechanical CAD technologists began working on a new software dedicated to the building industry. They developed a software that was suitable for creating MEP projects. This led to the development of Autodesk Revit.
Autodesk Revit is a design and documentation platform in which a digital MEP model is created using the parametric elements such as HVAC system, mechanical equipment, plumbing network, fire fighting, and so on. All MEP elements have inherent characteristics, and therefore, they can be tracked, managed, and maintained by using computer.
It provides a new approach to MEP design and implementation process. For example, the 2D CAD platforms mostly use lines to represent all elements, as shown in Figure Using these 3D elements, you can visualize the MEP project with respect to its scale, volume, and proportions. This enables you to study design alternatives and develop superior quality design solutions.
Autodesk Revit automates routine drafting and coordination tasks and helps in reducing errors in documentation. This, in turn, saves time, improves the speed of documentation, and lowers the cost for the users. A project in Autodesk Revit is created using the inbuilt parametric building elements. Some of these relationships are defined by Autodesk Revit itself and others by the users.
For example, the relationship between air terminals and ceilings are defined by MEP and the relationship between connectors and ducts are defined by the users. In an MEP project, each element has inbuilt bidirectional associativity with many other elements. These elements together form an integrated building information model. This model contains all data needed for the design and development of the project. You can then use this data to create project presentation views such as ceiling plans, sections, elevations, and so on for documentation.
This capability is, therefore, the underlying concept in Autodesk Revit. As changes in the model are reflected immediately and automatically in the project, the time and effort required in coordinating the changes in other views is saved.
This feature provides immense flexibility in the design and development process along with an error-free documentation. Autodesk Revit also provides a variety of in-built parametric element libraries that can be selected and used to create a building model. It also provides you with the flexibility to modify the properties of these elements or to create your own parametric elements, based on the project requirement.
Before working with Autodesk Revit, it is important to understand the basic terms used for creating a building model. Various terms in Autodesk Revit such as project, level, category, family, type, and instance are described next. A project in Autodesk Revit is similar to an actual project. In an actual project, the entire documentation such as drawings, 3D views, specifications, schedules, cost estimates, and so on are inherently linked and read together.
Similarly, in Autodesk Revit, a project not only includes the digital 3D MEP model but also its parametrically associated documentation.
Thus, all the components such as the building model and its standard views, MEP drawings, and schedules together form a complete project. A project file contains all the project information such as building and MEP elements used in a project, drawing sheets, schedules, cost estimates, 3D views, renderings, and so on.
A project file also stores various settings such as environment, lighting, and so on. As the entire data is stored in the same file, so it becomes easier for Autodesk Revit to coordinate the database. In Autodesk Revit, a building model is divided into different levels. These levels may be understood as infinite horizontal planes that act as hosts for different elements such as roof, floor, ceiling, and so on. Each element that you create belongs to a particular level.
Apart from MEP elements, an Autodesk Revit project also contains other associated elements such as annotations, imported files, links, and so on. These elements have been divided into the following categories:. Consists of interactive project views such as the architectural, mechanical, and plumbing floor plans, elevations, sections, 3D views, and renderings. Consists of various MEP elements such as HVAC elements, ducts, air terminals, diffusers, pipes, plumbing fixtures, electrical conduits, and others used in creating systems.
In addition to these four categories, other categories such as Imported , Workset , Filter , and Revit Categories can also exist if the project has imported files, enabled worksets, or linked Autodesk Revit projects, respectively. Another powerful concept in Autodesk Revit is family. A family is described as a set of elements of the same category that are grouped together based on certain common parameters or characteristics.
Elements of the same family may have different properties, but they all have common characteristics. For example, Rectangular Diffuser - Round Connection is an air diffuser family and it contains different sizes of air diffusers.
Family files have the. You can load additional MEP component families from the libraries provided in Autodesk Revit package. Families are further divided into certain types. A type or family type, as it is called, is a specific size or style of a family. Family and family types can also be used to create new families using the Family Editor. Instances are the actual usage of model elements in an MEP model or annotations in a drawing sheet.
A family type, created at a new location, is identified as an instance of the family type. All the instances of the same family type have the same properties. Therefore, when you modify the properties of a family type, the properties of all its instances also get modified.
The family categorization of Revit elements is given below:. The hierarchy of service elements in Autodesk Revit plays an important role in providing flexibility and ease in managing a change in a building model. Figure shows the hierarchy of categories and families in a typical Autodesk Revit project. Another classification of categories of elements followed in Autodesk Revit is based on their usage. Autodesk Revit uses five classes of elements: Host, component, annotation, view, and datum.
Hosts are the element categories that form the basic system of an MEP model and include model elements such as ducts, pipes, cables, and more. Components are the elements that are added to host elements or act as stand-alone elements such as air terminals, diffusers, and conduits.
Annotations are the 2D, view-specific elements such as dimensions, tags, text notes, and so on that add content to the project documentation. Views represent various orientations of a building model such as plans, elevations, sections, 3D views, and so on. Datum refers to the reference elements that assist you in creating a building model, which include grids, levels, reference planes, and so on. There is no specific methodology available for creating a services model in Autodesk Revit.
It provides you with the flexibility of generating the MEP model based on the project requirement, design complexity, and other factors. However, the following steps describe a general procedure that may be followed for creating an MEP model using the built-in parametric elements provided in Autodesk Revit. In Revit, you can start designing a project for individual discipline Mechanical, Electrical, or Plumbing by selecting the specific template.
For example, to design a project for a mechanical discipline, you can select the Mechanical-Default. Alternatively, you can start a project to work in all the disciplines by selecting the Systems-Default. Once you have started a project, you need to copy the levels of the architectural model to the current project or create additional levels as per the requirement. Next, you can start with any of the disciplines by activating the specific view from the Project Browser.
In Revit, there are specific workflows for each discipline as per the requirement of the project. The workflow for disciplines generally includes analysis, design, and documentation. For mechanical discipline, you need to analyze spaces to design an appropriate HVAC system.
Then, based on the analysis, you need to place air terminals, equipment, and design ducts for the system. Figure shows an example of a mechanical system. Autodesk Revit enables you to control the display and graphic representation of a single element or the element category of various elements in the project views.
This is done by using the visibility and graphics overrides tools. You can select a model category and modify its linetype and detail level. This can also be done for various annotation category elements and imported files. These settings can be done for each project view based on its desired representation. You can also hide an element or an element category in a view using the Hide in view and Isolate tools.
The scale is another important concept in an Autodesk Revit project. As you set a scale, Autodesk Revit automatically sets the detail level that is appropriate for it.
You can also set the detail level manually for each project view. Each detail level has an associated linetype and the detail lines associated with it. The details of annotations, such as dimensions, tags, and so on, are also defined by the selected scale.
A single integrated building information is used to create and represent a building project. You can extract project information from a building model and create area schemes, schedule, and cost estimates, and then add them to the project presentation. Autodesk Revit also enables you to export the extracted database to the industry standard Open Database Connectivity ODBC compliant relational database tables.
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