Robusteel Engineering
02 / Design

Steel structure design — beyond transmission towers.

We design any industrial steel structure — industrial halls, overhead-crane halls, multi-storey industrial buildings, telecommunication towers and hall expert opinions — engineered in Consteel and delivered as an execution-ready fabrication package with shop drawings, connection details and bill of materials.

01Scope

Five steel-design domains, one engineering office.

The same research-grade analysis approach used on transmission towers applied to industrial steel structures — global stability, connection design and constructability handled in one continuous model.

Detailed project profiles — coming soon.

01

Industrial halls

Single- and multi-bay portal-frame and braced-frame halls — full structural design from concept to fabrication-ready drawings, with Consteel global analysis and Eurocode verification.

02

Overhead-crane halls

Halls with overhead travelling cranes — crane runway beams, fatigue checks, bracing systems and craneway-induced second-order effects handled in a coupled Consteel model.

03

Multi-storey industrial buildings

Process buildings, equipment platforms and stacked industrial floors — composite floors, vibration checks, brace systems and stability of slender steel grids.

04

Telecommunication towers

Self-supporting lattice telecom and instrumentation towers — wind-dominated design, platform layout, antenna-load configurations and foundation reactions.

05

Hall expert opinions

Independent structural opinions on existing steel halls — capacity reserve, defect assessment, change-of-use checks and rehabilitation roadmaps.

02Project library

Models in progress.

Selected Consteel models and detailed IFC coordination geometry from ongoing and recent steel-design assignments. Full project sheets, client context and engineering narrative — added next.

INDUSTRIAL HALL · 120 × 58 m · full Consteel model
INDUSTRIAL HALL · 120 × 58 m · full Consteel model
Two-bay industrial hall, ~120 m × 58 m footprint, primary portal frames with secondary bracing and roof truss system. Geometry, member sizing and stability verified in a single Consteel model.
FRAME ELEVATION · full-height bracing layout
FRAME ELEVATION · full-height bracing layout
Front elevation of the same complex — bracing geometry and floor levels (11 storeys of secondary structure on one side, full-height vertical bracing on the other) laid out on a 38 m grid.
CRANE-HALL · IFC model · column grid 4.7 / 4.9 / 6.15 m
CRANE-HALL · IFC model · column grid 4.7 / 4.9 / 6.15 m
Detailed IFC model of a crane hall with annotated column grid, support reactions and mezzanine extension — coordination-ready for fabrication and rebar layout.
CRANE-HALL · structural colour-coded layout
CRANE-HALL · structural colour-coded layout
Same hall rendered by structural family — columns, primary beams, crane girders, bracing and secondary structure separated by colour for design review.
MULTI-STOREY INDUSTRIAL · process building frame
MULTI-STOREY INDUSTRIAL · process building frame
Three-storey industrial process building — primary steel frame, intermediate floors and bracing system designed for equipment loads and vibration control.
MULTI-STOREY INDUSTRIAL · 15 × ~6 m · 9.25 m high
MULTI-STOREY INDUSTRIAL · 15 × ~6 m · 9.25 m high
Detailed Consteel model of a stiffened multi-storey industrial frame, 15 m × ~6 m in plan, 9.25 m tall, with secondary floor framing and braced bays highlighted.
AS-BUILT · steel-framed industrial building on site
AS-BUILT · steel-framed industrial building on site
Realised three-storey industrial building from the same project family — proof that the analytical model becomes a buildable, in-service structure.
TELECOM TOWER · 3 × 3 m base · 25.0 m height
TELECOM TOWER · 3 × 3 m base · 25.0 m height
Self-supporting lattice telecom tower — 3 × 3 m base, ~25 m tall, three intermediate platforms, designed for wind-dominated load cases and antenna configurations.

Have a structure that needs an honest opinion?

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