Canadian wood frame construction manual




















Insert gravity points. Add additional information about real wall orientation, elevation, or coordinates. Split walls at exact locations by using grid lines, openings, or other walls. Split walls automatically by predefined panel size.

Cut Opening. Add openings with predefined sizes in accordance with MEP line based element sizes, categories and system classifications. Automatically join openings with predefined configurations. Automatically insert Fire Dampers where ducts clash with walls, floors, ceilings or roofs with fire rating. Automatically insert structural openings for separated architectural and structural models. Sort Mark. Detects grid geometry and renumbers them after any change in the project.

Creates new shared parameters. Possibility to save numbering settings under the separate name. Smart Views. Uses configurations instead of manual work Crops views to the element size Creates automatic dimensions based on defined configurations Applies view templates to all new views Creates the number of views you set in the configurations for multiple selected elements Renames views based on configurations Apply dimensioning rules to any Revit view or selected elements in view.

Duration: 2 hour. Get Best Offer. Available licensing options System requirements Related blog posts Customers. Free Trial. Frame My Project. Tags Wood Framing Wall. Benefits Saves Lots of Time. Wood Framing Wall is built for quick project development.

Standardized and automated wall framing and workshop drawing generation enables users to jump over a few major steps in building design. Shop Drawings on the Go. Shop drawings are produced almost at the same time you frame your first wall. Easy to make templates allow user to forget about this process. Easy-to-Use User Interface. Everything in Wood Framing Wall is a mouse click away. Choose what needs to be modified and click the function which is comfortably listed in easily operated menu.

Workflow was tested with untrained professionals who helped to optimize and find the perfect solution for you. Completeness does the modelling of framing, tagging of elements, dimensioning and scheduling with single solution. Complete the process in one place. Your team does great work! Related products. Recommended products. This site uses cookies - they help us provide you with a better online experience.

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These cookies help provide information on metrics the number of visitors, bounce rate, traffic source, etc. The WFCM includes design and construction provisions for connections, wall systems, floor systems, and roof systems.

A range of structural elements are covered, including sawn lumber, structural glued laminated timber, wood structural sheathing, I-joists, and trusses.

The design example uses plans from a 2-story residence as the basis for a structural design to resist wind, seismic and snow loads. This webinar provides an overview of the prescriptive and engineered provisions, tabulated values, design examples, and requirements for installation per the SDPWS and WFCM. The WFCM has recently been updated and contains both a prescriptive and engineering design approach.

Although the prescriptive design will tend to provide more conservative results than the more efficient engineered design, designers may arrive more readily at a solution. This seminar includes examples of seismic and wind shear wall designs for segmented and perforated shear walls, utilizing the WFCM and the SDPWS along with a comparison of the results.

Equivalencies: 1. Both code-referenced standards provide procedures for designing diaphragms for wood construction. This presentation will demystify diaphragm design by providing wind and seismic design examples for in-plane lateral design of wood- and gypsum-sheathed diaphragms including high-load diaphragms. This presentation will provide an overview of the significant changes in the WFCM relative to the previous edition. The WFCM provides code officials and designers with time-saving tools based on engineered and prescriptive solutions based on structural engineering principles for wood structures to resist anticipated lateral and gravity loads.

Using plans from a 2-story residence, a structure is prescriptively designed to resist high wind, seismic, and typical residential gravity loads.

This webinar will deal specifically with design of roof systems, and appropriate connections between roof, floor, wall, and foundations to maintain load path for wind uplift.



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