Watch the heel sensor signal the master panel, then transfer water through the reversible pump + remote valves or the pneumatic air push/purge — with level & limit switches guarding each tank.
Drag to orbit · scroll to zoom · click a part to isolate it · use W A S D to fly
What's inside this 3D model
- Port & starboard tanks
- Reversible heeling pump
- Remote-controlled valves
- Pneumatic transfer
- Heel sensor & panel
- Level & limit switches
How to use this 3D view
- Orbit & zoom — drag to rotate around the anti-heeling, scroll or pinch to zoom into details.
- Isolate parts — click any component in the side panel (or its floating label) to highlight it and dim the rest.
- Run the simulation — switch modes at the top of the viewer to animate loads, sequences and operating cycles.
- Read the topic — open Anti-Heeling System: Operation, Types & Safety for theory, sketches and oral-prep questions.
About: Anti-Heeling in 3D
Watch the heel sensor signal the master panel, then transfer water through the reversible pump + remote valves or the pneumatic air push/purge — with level & limit switches guarding each tank. This free interactive 3D view of the anti-heeling is built for marine engineers, cadets and seafarers preparing for orals — open it on any device, explore every 6 labelled part, and then continue with the full Anti-Heeling System: Operation, Types & Safety topic.
FAQs
What can I explore in this 3D view of the anti-heeling?
You can orbit, zoom and isolate Port & starboard tanks, Reversible heeling pump, Remote-controlled valves, Pneumatic transfer and 2 more parts. Click any component to focus it and read what it does.
Do I need to install anything to open the Anti-Heeling 3D model?
No. The Anti-Heeling 3D view runs entirely in your browser with WebGL — just open the page on a phone, tablet or desktop and drag to orbit.
Where can I learn the theory behind the anti-heeling?
Open the linked topic “Anti-Heeling System: Operation, Types & Safety” below the viewer for the full explanation, sketches, oral-prep questions and related 3D simulations.