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Perhaps AutoDesk Revit for Dummies would be better for me. See all reviews. Top reviews from other countries. Book in perfect condition. Just a concern about the envelope that has to have more hard. Report abuse. Good comprehensive book. Images could be of higher quality electronic version. Perfect for any Revit user from novice to advanced. Good information.

The book is helpful for navigating the circuitous and opaque software that is Revit. An otherwise frustrating bit of software that produces errors constantly, meaning work-arounds are essential to any real productivity gains over conventional CAD softwares.

Compared to learning Rhino, or Adobe Suite apps, this is like designing and drawing via excel. This software does not encourage any real intuitive and flexible design process. That said, the book provides something of a toe-hold to do basics. Ultimately, your office will have its own workflow and you'll need to use this book with that in mind. Kindly share this post with your friends to make this exclusive release more useful.

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Please enter your name here. You have entered an incorrect email address! Understand basic BIM concepts and the Revit interface Explore templates, work-sharing, and project management workflows Learn modeling, massing, and visualization techniques for other industries Work with complex structures, annotation, detailing, and much more To master what is quickly becoming an essential industry tool, Mastering Revit Architecture is your ultimate practical companion.

Previous page. Publication date. Print length. See all details. Next page. From the Inside Flap Conquer Revit Architecture with This Approved Guide Endorsed by Autodesk, this complete guide is packed with in-depth discussions, comprehensive tutorials, and real-world examples that give you a solid foundation in the most popular BIM software package.

Read more. About the author Follow authors to get new release updates, plus improved recommendations. Eddy Krygiel. Brief content visible, double tap to read full content.

Full content visible, double tap to read brief content. Read more Read less. This led to the development of object-based CAD systems in the early s. Before the development of these systems, objects such as walls, doors, windows 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. In , a group of mechanical CAD technologists began working on a new software for the building industry. 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.

They developed a software that was suitable for creating building projects. This led to the development of a software that later came to be known as Autodesk Revit Building, and has now been changed to Autodesk Revit Architecture. Autodesk Revit Architecture is a building design and documentation platform, in which a digital building model is created using the parametric elements such as walls, doors, windows, and so on.

All the building elements have inherent relationship with one another, which can be tracked, managed, and maintained by the computer. Autodesk Revit Architecture enables you to envisage and develop a building model with actual 3D parametric building elements.

It provides a new approach to the architectural thought and the implementation process. In a way, it replicates the way architects conceive a building. However, in Autodesk Revit Architecture, you can create a building model using 3D elements such as walls, floors, doors, and windows, as shown in Figure Figure Autodesk Revit Architecture project created using parametric building model. Using these 3D elements, you can visualize the architectural or interior project with respect to its scale, volume, and proportions.

This enables you to study design alternatives and develop superior quality design solutions. Autodesk Revit Architecture automates routine drafting and coordination tasks and assists in reducing errors in documentation. This, in turn, saves time, improves the speed of documentation, and lowers the cost for users. A project in Autodesk Revit Architecture is created using the in-built parametric building elements. The term parametric refers to the relationship parameters between various building elements.

Some relationships are made by Autodesk Revit Architecture itself, and others by the user. For example, doors, which have an inherent parametric relationship with walls cannot be created without first creating a host wall. A door always moves with the host wall. Similarly, floors too are parametrically linked to walls.

When you move walls, the floor extents are also modified automatically. Each building element has in-built bidirectional associativity with many other elements in the project. A building information model is created using different interdependent parametric building elements such as walls, floors, roof, ceiling, stairs, ramps, curtain walls, and so on. As they are bidirectionally associated elements, any change made in one element is automatically adopted by others.

The integrated building information model thus created contains all the data for a project. You can then create project presentation views such as plans, sections, elevations, and so on for documentation. This capability is, therefore, the underlying concept in Autodesk Revit Architecture.

As changes are made immediately and automatically, it saves the time and effort in coordinating them in all other associated views which for most projects is an inevitable part of the design process.

Autodesk Revit Architecture 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 of modifying properties of these elements or create your own parametric elements based on the project requirement. Before using Autodesk Revit Architecture, it is important to understand the basic terms used for creating a building model.

Various terms in Autodesk Revit Architecture such as project, level, category, family, type, and instance are described next. A project in Autodesk Revit Architecture is similar to an actual architectural or interior 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 Architecture, a project not only includes the digital 3D building model but also its parametrically associated documentation.

Thus, all the components such as the building model, its standard views, architectural drawings, and schedules combine together to form a complete project.

A project file contains all the project information such as building elements used in a project, drawing sheets, schedules, cost estimates, 3D views, renderings, walkthroughs, and so on. A project file also stores various settings such as environment, lighting, and so on. As data is stored in the same file, it becomes easier for Autodesk Revit Architecture to coordinate the entire database.

In Autodesk Revit Architecture, 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. The defined levels in a building model can in most cases relate to different floor levels, or stories of the building project.

Each element that you create belongs to a particular level. Apart from building elements, an Autodesk Revit Architecture project also contains other associated elements such as annotations, imported files, links, and so on. These elements have been divided into following categories:. Model Category : Consists of various building elements used in creating a building. Annotation Category : Consists of annotations such as dimensions, text notes, tags, symbols,. Datum Category : Consists of datums such as levels, grids, reference planes, and so on.

View Category : Consists of interactive project views such as floor plans, ceiling plans, elevations, sections, 3D views, renderings, and walkthroughs. 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 Architecture projects, respectively.

Another powerful concept in Autodesk Revit Architecture is family. A family is described as a set of elements of the same category that can be 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, Double Hung is a single window family, but it contains different sizes of double hung windows.

Family files have a. You can load additional building component families from the libraries provided in Autodesk Revit Architecture package. Families are further divided into certain types. Type or family type, as it is called, is a specific size or style of a family. For example, Double Hung : 36 x 48 is a window type. All uses of the same family type in a project have same properties. 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 a building model or annotations in a drawing sheet. A family type created in a new location is identified as an instance of the family type. All instances of the same family type have 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 building elements in Autodesk Revit Architecture plays an important role in providing the flexibility and ease of managing a change in the building model. Figure shows the hierarchy of categories and families in a typical Autodesk Revit Architecture project.

The following is another example of the terms described in this section. Another classification of categories of elements followed in Autodesk Revit Architecture is based on their usage.

Autodesk Revit Architecture uses five classes of elements: host, component, annotation, view, and datum. Hosts are the element categories that form the basic structure of a building model and include model elements such as walls, floor, roof, and ceiling. Components are the elements that are added to host elements or act as stand-alone elements such as doors, windows, and furniture. Annotations are the 2D, view-specific elements that add content to the project documentation such as dimensions, tags, text notes, and so on.

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 building model in Autodesk Revit Architecture. It provides you with the flexibility of generating building geometry 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 architectural building model using the in-built parametric elements provided in Autodesk Revit Architecture.

The first step is to create the exterior walls of a building at the predefined lowest level level 1. Next, create interior walls at that level and add components to the building model. Then, define the upper levels based on the story height of the building.

You can also link the control height of the walls to the levels and extend the exterior walls to their full height. Next, create floors and roof using the defined levels. Add the site topography to the building model and then add site components to complete the building project. You can then create drawing sheets with the desired views for its presentation. Autodesk Revit Architecture also provides tools to create rendered 3D views and walkthroughs. Figure shows an example of a building section with various building elements and annotations.

Autodesk Revit Architecture enables you to control the display and graphic representation of a single element or the element category of various elements in project views 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 Architecture project.

As you set a scale, Autodesk Revit Architecture automatically sets the detail level 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 Architecture also enables you to export the extracted database to the industry standard Open Database Connectivity ODBC compliant relational database tables. The use of the building information model to extract database information eliminates the error-prone method of measuring building spaces individually. After creating the building model, you can easily arrange the project views by plotting them on drawing sheets. Drawing sheets can also be organized in a project file based on the established CAD standards followed by the firm.

In this manner, the project documentation can easily be transformed from the conceptual design stage to the design development stage and finally to the construction document stage. Kindly share this post with your friends to make this exclusive release more useful.

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