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Facade Engineering Free Calculation Tools

Facade Engineering Calculation Tools

Free Beam Program – Finite Element Method

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The facade calculation program is a browser-based tool that analyzes all beam models using the Finite Element Method — no download required. Results can be exported as a professional report. It is specifically developed for façade mullion (vertical) and transom (horizontal) profiles. In compliance with Eurocode and EN 13830, SLS (deflection) and ULS (stress) checks are performed, the structural response is calculated, and shear and bending moment diagrams are generated.

Mullion Structural Analysis Report

Facade Structural Analysis – Vertical Profile (Mullion)

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For vertical load-bearing profiles in curtain wall systems, calculates wind load, deflection limits, and required moment of inertia according to TS 498 and EN 1991-1-4 standards. This tool analyzes the performance of aluminium or steel mullion profiles under wind loads and generates a printable technical report.

Transom Structural Analysis Report

Facade Structural Analysis – Horizontal Profile (Transom)

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For horizontal load-bearing profiles in curtain wall systems, calculates glass load, deflection limits, and required moment of inertia according to TS 498 and EN 1991-1-4 standards. This tool analyzes transom profile performance under glass loads and provides a printable technical report.

Eurocode Wind Load Calculation

Wind Load Calculation – Facade Analysis per TS EN 1991-1-4

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Our facade consultant team calculates wind loads according to TS EN 1991-1-4 standard within the scope of facade structural analysis. Using basic wind speed, building height, and terrain roughness data, determines ZONE A and ZONE D suction/pressure loads, delivered as a printable technical report.

TS 498 Wind Load Calculation

TS 498 – Wind Load Calculation for Facades

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The Beus Facade facade consultant team determines wind loads for facades according to TS 498 principles. Taking into account building height and regional wind data, calculates suction/pressure loads acting on the facade and produces a printable technical report.

EN 1990 LOAD COMBINATION GENERATOR

EN 1990 (Eurocode 0) – ULS & SLS Load Combinations

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The Beus Facade engineering team automatically computes ULS (ultimate) and SLS (serviceability) combinations in accordance with EN 1990:2023 (Eurocode 0). Selected actions (dead, wind, snow, imposed, seismic, accidental) are combined with the relevant γ (partial safety) and ψ (combination) factors, and the results are presented in a clear tabular output.

THERMAL-BARRIER PROFILE CALCULATION

Facade Profile – Thermal-Break Structural Calculation

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The BEUS Facade consulting team provides effective inertia and stiffness values for thermally broken aluminium profiles. This enables a combined evaluation of structural performance and thermal insulation. Results are available as a printable technical report.

GLASS + FRAME (ACOUSTICS)

Combined Acoustic Rating (Rw) for Glass + Frame — ISO 12354-3 & ISO 717-1

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Browser-based calculator for glass + frame combined Rw. Enter the area/share (e.g., 80% glass, 20% frame) and each element’s Rw; the tool applies the area-weighted energy summation from ISO 12354-3: R = 10·log₁₀( Stotal / Σ Si·10^(−Ri/10) ). The result is presented as a single-number Rw per ISO 717-1. Optionally export a printable PDF report.

Glass Weight Calculator

Glass Weight Calculation – IGU / Laminated Analysis per EN 1991-1-1

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Browser-based glass weight calculator: for monolithic panes and IGU stacks, enter glass, laminated interlayer, and cavity thicknesses; with panel area and quantity you’ll instantly get mass per area (kg/m² | lb/ft²), weight per area (kN/m² | psf), total mass (kg | lb), and total weight (kN | kip). Switch between SI and US/Imperial units with one click. Defaults: glass density ρ = 2500 kg/m³ (≈ 156.07 lb/ft³) and interlayer contribution 0.010 kN/m²·mm (≈ 2.0885 psf/in). IGU cavities are excluded from weight. Export results as a print-ready PDF report.

Quick Beam Calculations

Simple Beam Analysis Calculator

Reaction Force R = - kN

Maximum Moment Mmax = - kN·m

Maximum Deflection Δmax = - mm

Symmetrical Double-Point Load Simple Beam

RA = RB = - kN

Mmax (at a) = - kN·m

Δmax (midspan) = - mm

U-Value Calculator (Thermal Insulation)

U-Value = - W/m²·K