IP Library Granted Patent US 12,600,453
Granted Patent B2
US 12,600,453 · App. 18/369,072 · Granted Apr 14, 2026

Air supply apparatus for a ship, ship including the same, and method of supplying air to an air lubrication device

Inventors: Jean-Francois Tissot (Bergheim, FR); Jari Keinaenen (Brugg, CH); Daniel Rusch (Wettingen, CH)
Assignee: ACCELLERON SWITZERLAND LTD.
B63H21/38B63B1/38H01M8/04761B63B2001/385B63H2021/003
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Quick Facts
Patent No.
US 12,600,453
App. No.
18/369,072
Granted
Apr 14, 2026
Kind
B2
Abstract

An air supply apparatus for a ship is described. The air supply apparatus includes a fuel cell and an air lubrication device for resistance reduction of the ship. An exhaust gas outlet of the fuel cell is connected with the air lubrication device via an exhaust gas line for supplying exhaust gas to the air lubrication device. Further, a ship comprising an air supply apparatus according to any embodiments described herein as well as a method of supplying air to an air lubrication device of a ship are described.

Claims (33)

1 . An air supply apparatus for a ship, comprising:

a fuel cell;

an air lubrication device for resistance reduction of the ship;

a compressor connected to a pressurised line system for providing a pressurised fluid to the pressurised line system, wherein:

the pressurised line system is connected to the fuel cell for providing the fuel cell with pressurised fluid from the compressor, and wherein

the pressurised line system is further connected to the air lubrication device for providing pressurised fluid to the air lubrication device,

wherein a compressor outlet of the compressor is connected with the air lubrication device via a bifurcated intake gas line of the pressurised line system for supplying pressurised fluid from the compressor outlet to the air lubrication device, and

wherein the bifurcated intake gas line includes a first branch-off intake line connected to the fuel cell and a second branch-off intake line connected to the air lubrication device.

2 . The air supply apparatus of claim 1 , further comprising a fuel cell bypass connected to the pressurised line system.

3 . The air supply apparatus of claim 1 , wherein the fuel cell is connected to a fuel supply for providing the fuel cell with fuel, the fuel being at least one of hydrogen, methane, methanol, ammonia or any other suitable fuel.

4 . The air supply apparatus of claim 1 , wherein the fuel cell is a proton exchange membrane fuel cell (PEMFC) or a solid oxide fuel cell (SOFC), a fuel cell hybrid system or any other fuel cell for mobile applications.

5 . The air supply apparatus of claim 1 , further comprising a turbine connected to the exhaust gas line, wherein the turbine is provided in series to the flow control device upstream of the flow control device.

6 . The air supply apparatus of claim 1 , wherein an exhaust gas outlet of the fuel cell is connected with the air lubrication device via an exhaust gas line of the pressurised line system for supplying exhaust gas to the air lubrication device.

7 . The air supply apparatus of claim 6 , further comprising a fuel cell bypass connected to the bifurcated intake gas line or an intake gas line and the exhaust gas line.

8 . The air supply apparatus of claim 1 , further comprising at least one of a flow control device connected to the exhaust gas line or the second branch-off intake line and a blow-off valve for releasing pressurised fluid, wherein the blow-off valve is connected to the exhaust gas line.

9 . The air supply apparatus of claim 8 , wherein the blow-off valve is arranged downstream of the turbine or upstream of the turbine bypass merging or uniting with the exhaust gas line.

10 . The air supply apparatus of claim 1 , further comprising a turbine connected to the exhaust gas line, wherein the turbine is provided in series to the flow control device.

11 . The air supply apparatus of claim 10 , further comprising a turbine bypass and a turbine bypass valve connected to the exhaust gas line.

12 . The air supply apparatus of claim 1 , further comprising an inflow control device arranged downstream of the compressor and upstream of the fuel cell for controlling a charging pressure of the fuel cell.

13 . The air supply apparatus of claim 12 , wherein the inflow control device is at least one of a valve, a flap and a second turbine.

14 . The air supply apparatus of claim 1 , further comprising at least one of a high-pressure compressor arranged downstream of the compressor and upstream of the fuel cell for providing the fuel cell with pressurised fluid; and an intercooler arranged between the compressor and the high-pressure compressor.

15 . The air supply apparatus of claim 14 , wherein the high-pressure compressor is configured for supplying the pressurised fluid to the air lubrication device via the fuel cell.

16 . A ship comprising an air supply apparatus, the air supply apparatus comprising:

a fuel cell;

an air lubrication device for resistance reduction of the ship;

a compressor connected to a pressurised line system for providing pressurised fluid to the pressurised line system, wherein

the pressurised line system is connected to the fuel cell for providing the fuel cell with pressurised fluid from the compressor, and wherein

the pressurised line system is further connected to the air lubrication device for providing pressurised fluid to the air lubrication device,

wherein a compressor outlet of the compressor is connected with the air lubrication device via a bifurcated intake gas line of the pressurised line system for supplying pressurised fluid from the compressor outlet to the air lubrication device, and

wherein the bifurcated intake gas line includes a first branch-off intake line connected to the fuel cell and a second branch-off intake line connected to the air lubrication device.

17 . A method of installing a fuel cell in an air supply apparatus for a ship, the air supply apparatus comprising an air lubrication device for resistance reduction of the ship, and a compressor for providing the air lubrication device with pressurised fluid, the method comprising:

connecting an outlet of the compressor and an inlet of the fuel cell via a bifurcated intake gas line for providing the fuel cell with pressurised fluid from the compressor; and

connecting an inlet of the air lubrication device with the compressor outlet via the bifurcated intake gas line.

Assignments (2)
CHANGE OF NAME Recorded Dec 11, 2024
From: TURBO SYSTEMS SWITZERLAND LTD.
To: ACCELLERON SWITZERLAND LTD.
Reel/Frame 069551/0640 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 19, 2023
From: TISSOT, JEAN-FRANCOIS; KEINAENEN, JARI; RUSCH, DANIEL
To: TURBO SYSTEMS SWITZERLAND LTD.
Reel/Frame 064956/0273 →
Priority Claims (2)
EP 21163163 · Mar 17, 2021 · regional
EP 21184556 · Jul 8, 2021 · regional
Continuity (2)
Continuation 18282306
Related Publication 20240002027A1 · Jan 4, 2024
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