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Using the RF-TIMBER CSA module, timber beam design is possible according to the CSA O86-14 standard. Accurately calculating timber member bending resistance and adjustment factors is important for safety considerations and design. The following article will verify the factored bending moment resistance in the RFEM add-on module RF-TIMBER CSA using step-by-step analytical equations as per the CSA O86-14 standard including the bending modification factors, factored bending moment resistance, and final design ratio.
- 001554
- Modellazione | Caricamento
- RFEM 5
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- RSTAB 8
- RX-TIMBER Glued-Laminated Beam 2
- Tetto RX-TIMBER 2
- Trave continua RX-TIMBER 2
- Arcareccio RX-TIMBER 2
- Telaio RX-TIMBER 2
- RX-TIMBER colonna 2
- Controvento RX-TIMBER 2
- Strutture in calcestruzzo
- Strutture in acciaio
- Strutture di legno
- Edifici
- Analisi e progettazione strutturale
- Eurocode 0
- Eurocode 1
In Germania, la DIN EN 1991-1-4 con l'allegato nazionale DIN EN 1991-1-4/NA regola i carichi del vento. La norma si applica alle opere di ingegneria civile fino a un'altitudine di 300 m.
Quando si tratta di carichi del vento su strutture tipo edifici secondo ASCE 7, è possibile trovare numerose risorse per integrare le norme di progettazione e aiutare gli ingegneri con questa applicazione di carico laterale. However, engineers may find it more difficult to find similar resources for wind loading on non-building type structures. This article will examine the steps to calculate and apply wind loads as per ASCE 7-16 on a circular reinforced concrete tank with a dome roof.
The Steel Joist Institute (SJI) previously developed Virtual Joist tables to estimate the section properties for Open Web Steel Joists. These Virtual Joist sections are characterized as equivalent wide-flange beams which closely approximate the joist chord area, effective moment of inertia, and weight. Virtual Joists are also available in the RFEM and RSTAB cross-section database.