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Service

Designing

We design industrial halls, production facilities, logistics sites, and large commercial buildings – from concept visualisations to full technical design ready for delivery.

Our work

Real project examples

Intermodal rail terminal

POLAND

We help the client build a 500,000 m² intermodal terminal in Central Europe – starting from a deep soil study that defined the right treatment approach for the entire investment.

Notebook production facility

POLAND

We helped the client deliver a manufacturing facility under tight EU funding rules and challenging soil conditions – keeping documentation, schedule, and safety standards aligned throughout.

Automotive parts production facility

POLAND

We helped the client deliver a 25,000 m² automotive facility under tight schedules, demanding weather, and limited material availability across Europe – on time, without compromising quality.

Production facilities for AGV train wagons

POLAND

We helped the client modernise a live rail production facility to current standards – delivered in tight phases that protected continuous 24/7 operations.

Live-site plant reconstruction with furnace 
and warehouses

Bulgaria

We helped the client reconstruct most of an active glass plant – demolishing 35 buildings across multiple work fronts – while production continued 24/7 without interruption.

Logistics center for finished-goods handling

Romania

We helped the client deliver a 91,000 m² logistics centre against a demanding 11-month target – procurement, design, and execution kept in one tight chain to protect the timeline.

Expanding glass production facilitieswith furnace

Romania

We helped the client expand a 1960s glass plant while production continued 24/7 – no stoppages, no operational risk, and a result that feels new without losing the building’s character.

FAQ

Reduce friction

Industrial building design is the process of planning and designing facilities such as factories, production halls, and logistics buildings, so they work safely and efficiently in daily use. It translates operational needs, site constraints, and performance requirements into a coordinated concept and full technical design that can be delivered on site.

Warehouse design and layout planning define how the facility will operate before it is built: zones, routes, docks, storage areas, staging, and safe movement. The goal is to reduce unnecessary movement, keep flows clear, and support future growth. Strong layout planning helps avoid redesign later by aligning operations and space early.

A warehouse layout is designed by starting with operational requirements – what moves in and out, how it is handled, and what capacity is needed – then translating that into zones and routes: receiving, storage, staging, dispatch, and safe circulation. The best layouts are built around real workflows and constraints, not generic templates.

Factory layout design starts from the production process: sequence, interfaces, material and people flows, safety zones, and access for maintenance. These requirements are then translated into space planning and facility decisions, so the building supports the process. A good layout protects throughput and makes future changes easier to implement.

A warehouse design plan typically includes the functional layout logic, zoning, flow routes, key requirements, and the coordinated design outputs needed to move into delivery. It should reflect operational priorities, safety and access needs, and site constraints. The goal is to give construction teams clear, build-ready documentation aligned to how the warehouse will run.

Concept design defines the direction: key assumptions, layout logic, priorities, and visualisations that make decisions easier. Full design turns that direction into coordinated technical documentation ready for delivery. With GFS, the concept creates a shared picture early, and full design provides the build-ready detail that keeps execution smoother.

Buildability comes from designing with execution in mind: clear decisions early, coordinated outputs across disciplines, and practical detailing that avoids clashes and ambiguity. When design and delivery thinking are aligned from the start, fewer issues appear on site and changes are easier to control – helping protect time, quality, and budget.

Maintenance-efficient design considers service access, safety, and operability early – so the facility is easier to run and cheaper to maintain over time. That means planning layouts and solutions around real upkeep routines, not just initial construction. The result is smoother day-to-day operation and less friction after handover.

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