How To Get Old Style Control Panel In Windows 10 Roof Design Drafting – Revit/AutoCAD?

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Roof Design Drafting – Revit/AutoCAD?

They have the strangest names: gable, hip, jerkinheads, clerestory, sew-tooth, witch’s hats, karahafu, mansard, rainbow, butterfly, satari and many more. No, they are not a list of insect species. They are the names of different styles of roofs. Although the various designs must be treated with care due to their complexity, even traditional roof design is often recognized as one of the most challenging skills to master in architectural design design. Both Revit and AutoCAD are well equipped to enable the delivery of these roof designs in residential design drawings, but for many, AutoCAD is a bit ahead.

Since the Stone Age, having a roof over our heads, or shelter, has been one of life’s greatest priorities and a recognized human right. The designs have come a long way from the rudimentary designs of yesteryear. So how does it work and what are the basic designs?

Roofs can be drawn by themselves, or they can be created as a result of placing them in a space that has been enclosed by a polyline or set of walls. Once defined, the dimensions, slope, faces or edges can be modified. For more complex designs, an “object” is selected and modified until it is almost complete. For more flexibility in customizing edges and other features, the roof can be converted into slabs, to which many details such as orientation, angle, fascia and soffit profiles can be added or changed. These design details can be added globally.

In addition to the more complex ones with fancy names, the basic types include gable, hip, shed or flat. Cheap and easy to build, the pitched gable is the most common type around the world. Because of its slope, rain and snow are not preserved and leakage is prevented, increasing its durability. The “chair” has slopes on four sides, which helps anchor the house beneath it. They are less affected by strong winds and can be added to a new or existing home. A “shed” features only an inclined plane, which may have skylights or solar panels, increasing the potential for energy efficiency. The ‘flats’ are almost completely horizontal with a slight slope for drainage, favorable for solar panels and cost effective. There are also gable, hip and other combinations.

So how do AutoCAD and Revit fare in the roof design process?

AutoCAD

AutoCAD software offers a variety of options for creating and modifying a wide range of styles. In AutoCAD, planes must be contrasted with elevations and ridges.

The commands in AutoCAD to create different layouts are versatile. They can be changed individually with changes in height, slope, edges and the addition of dormers. A simple outline can be drawn as a polyline of a group of walls, which can be converted into a roof, so that the draftsman can concentrate on the outline first and the modifications later.

Flats and slopes can be created with the same process, with a low height number and a 0″ overhang set for the floor. Points inside the exterior walls are chosen so that the tops of the walls form parapets.

The “Properties” palette can change the thickness, pitch and overhang.

AutoCAD ‘grips’ allow editing so that 2D objects such as lines, polylines and arcs can be stretched, moved, rotated, scaled, copied or mirrored. Grips can also change edges and vertices, ridge points, fix missed intersections, change the angle, climb or traverse slabs, and can help create gables.

Materials can be defined. They can be displayed in frames and work shadow views.

Features of roof layout design in AutoCAD include:

  • Tool properties for an existing

  • Change of dimensions

  • Changing faces and edges

  • Plate conversion

  • Material selection

  • Selection of display properties

  • Hatching selection

  • Changing location

  • Attaching hyperlinks, notes or files

Revit

Designing a roof in Revit is considerably different from doing it in AutoCAD. Revit is considered best for large-scale projects and has many options. Although the tool for elevations and plans is effective, designing sections and other details can be challenging, especially for traditional houses with sloping, sloping, curved, bent and custom units. When creating complex roofs in Revit, it may be preferable to create them as separate units and then join them to the other section with the “Join Roof” tool.

Usually, it may not be aesthetically appealing and the edges may not meet where expected. This usually happens because Revit tries to develop slopes from edges. The edges may not fit perfectly and there are a few ways to work around this problem. One way is to create a mass, select mass faces and create a roof. This can be complicated and time-consuming, as a slope arrow must be used to change the angle and direction of the slope.

Another option involves shape editing tools. Once the lines are drawn, the default 3D view can allow shape, height and movement adjustment, but cannot be attached to another roof in this way.

In Revit, a roof can be created from: a building footprint, such as an extrusion, with slanted glazing, or from a mass instance, but it cannot go through doors or windows, although trusses can be joined in the design.

Create by footprint involves:

  • 2D sketches of the closed loop perimeter

  • Selection of walls or drawing lines from the plan view

  • Closed loops for openings

  • Slope parameters for sketch lines

Extrusion creation involves:

  • An open-loop sketch of the profile

  • Using lines and arcs to draw the profile in an elevation view

  • Edition of the work plan

Challenges with creating roof design in Revit

  • When creating a hip with beam construction (for a vaulted ceiling), Revit does not automatically allow a ridge pole or other support element to support the intersection of the hip.

  • The individual elements of a layout are placed on the same plane.

  • It is more difficult to edit.

  • With changes in reference levels (for example, elevations), other dimensions must also be modified.

Comparing the roof design design capabilities of AutoCAD and Revit, users find AutoCAD easier to use because:

  • Create and modify layouts with more control

  • Makes it easy to add details and options

  • Make editing easy

  • Facilitates the preparation and documentation

However, Revit modeling allows less architectural or technical drafters to produce more complex designs, whereas in AutoCAD, accuracy and precision are entirely dependent on the draftsman’s ability to correctly interpret the design.

Ultimately, although Revit and AutoCAD software have extensive tools for roof design, it is AutoCAD’s user-friendly global approach that residential design service professionals have found slightly more preferable.

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