Computer Modeling of Pool Covers | Unibad

Tailor-Made Design from the Very First Step

At Unibad, every pool cover project is unique. To ensure a perfect fit for your pool, we’ve developed an advanced computer modeling process that virtually designs your cover according to the pool specifications and winding system selected.

Our 3D modeling software reproduces your pool environment with high precision, factoring in all technical parameters:

Exact pool dimensions
Copings, decking, and obstacles
Type of cover (submerged, above-ground, isothermal, solar…)
Motorized winding system

This allows us to fine-tune every component of your cover, anticipate installation challenges, and eliminate guesswork or on-site errors.

Modeling Adapted to All Winding Types

The choice of winding system directly affects the design and integration of your cover. That’s why our modeling tool adapts to every scenario:

Above-ground winding: space planning, cover box or bench integration
Submerged winding: slatted floor (grating), stainless steel frame, motor access, technical compartment
Floating cover: volume, positioning, and operation on the water surface

This preparatory work ensures a final result that is both aesthetically pleasing and functionally efficient.

Benefits for Our Clients

Thanks to our digital modeling process, Unibad offers:

– A fully customized pool cover solution
Technical validation before production
Faster, error-free manufacturing
Smooth installation, even for complex layouts

It’s a guarantee of a fully controlled project, from design to installation, without compromising on quality or safety.

Technical Expertise That Ensures Reliability

3D modeling is an integral part of our workflow. It ensures perfect compatibility between your pool and the selected cover, while optimizing installation, longevity, and aesthetic integration.

By choosing Unibad, you’re selecting a manufacturer that combines cutting-edge technology, expertise, and precision, delivering a durable, reliable pool cover, perfectly integrated into its environment.