IP Library › Granted Patent US 11,845,517
Granted Patent B2
US 11,845,517 · App. 16/955,139 · Granted Dec 19, 2023

Viscous-drag-reducing cladding

Inventor: Micheal O'Ceallaigh (Dublin, IE)
B63B1/34B63B71/00B63B2221/10
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Quick Facts
Patent No.
US 11,845,517
App. No.
16/955,139
Granted
Dec 19, 2023
Kind
B2
Abstract

A viscous-drag-reducing cladding for a ship's hull whereby the wetted area of the hull is reduced by interspersing air between the hull surface and the water. A substantial portion of the submerged area of the ship's hull comprises densely packed air pockets. The dimension of the air pocket is less than twice the capillary length of water. Each air pocket is supplied with pressurised gas by means of a restrictor. The pressurised air is supplied to each air pocket by means of a network of corrugated channels.

Claims (32)

1. A viscous drag reducing cladding comprising an outer surface with a plurality of air pockets therein, each air pocket having an air inlet and an outlet; wherein

the cross-sectional area of each air inlet is less than one tenth of the cross-sectional area of the air pocket's outlet, wherein the radius of each air pocket is less than twice the capillary length of water.

2. The viscous drag reducing cladding of claim 1 , wherein each pocket is conical in shape.

3. The viscous drag reducing cladding of claim 1 , wherein the plurality of air pockets are closely packed.

4. The viscous drag reducing cladding of claim 1 , wherein the pocket outlets overlap.

5. The viscous drag reducing cladding of claim 1 , wherein the outer surface of each air pocket comprises a hydrophobic material.

6. The viscous drag reducing cladding of claim 1 , wherein its outer surface comprises a plurality of loops of hydrophobic thread where the loops are attached to said surface at both ends.

7. The viscous drag reducing cladding of claim 1 , wherein its outer surface comprises strands of thread comprising of a hydrophilic core and a hydrophobic outer surface, and where one thread end is attached to the cladding outer surface and the other thread end is unattached.

8. The viscous drag reducing cladding of claim 1 , further comprising an air distribution system, and at least two corrugated sheets, at least one of which comprises multiple perforations; wherein the sheets are arranged so that the ridges of the corrugated profiles of at least two sheets are substantially orthogonal to each other thereby creating at least two air chambers each in communication with each other via the perforations.

9. The viscous drag reducing cladding of claim 8 , wherein the air distribution system comprises a wave-form sheet.

10. The viscous drag reducing cladding of claim 8 , wherein the wave-form sheet is bonded to a top sheet to form a single panel.

11. The viscous drag reducing cladding of claim 1 , wherein the outer surface comprises a fibrous surface tape bonded to a perforated sheet assembly.

12. An air distribution system for a cladding system on a ship comprising:

at least two corrugated sheets, at least one of which comprises multiple perforations; wherein the at least two sheets are arranged so that the ridges of the corrugated profiles of at least two sheets are substantially orthogonal to each other thereby creating at least two air chambers each in communication with each other via the perforations.

13. A tape for coating the hull of a ship comprising:

a hydrophobic backing film, comprising a front side and a back side, wherein

the back side of said tape is configured for adhesion bonding, and

strands of thread comprising two ends, whereby one end is attached to the front side of said hydrophobic backing film, and

wherein the other end is unattached, and

wherein the outer surface of the thread is hydrophobic, and

wherein the inner core comprises a hydrophilic material, and

wherein the hydrophilic core is exposed at the unattached ends of each strand.

14. A method of forming a metal sheet with conical holes comprising:

perforating a metal sheet with cylindrical holes;

stamping each cylindrical hole with a forming die having a conical base;

coating the inside of each hole to reduce the size of the hole at the tip of the cone;

applying a tape to the metal sheet and pressing the tape into the conical holes; and

perforating the tape to further reduce the size of the hole at the tip of the cone.

15. The viscous drag reducing cladding of claim 1 , comprising elongated air pockets wherein air flow emerging from each air pocket is substantially perpendicular to the outer surface.

16. A viscous drag reducing cladding comprising an outer surface with a plurality of air pockets therein, each air pocket having an air inlet and an outlet; wherein the cross-sectional area of each air inlet is smaller than the cross-sectional area of the air pocket's outlet, and wherein the pocket outlets overlap.

17. A viscous drag reducing cladding comprising an outer surface with a plurality of air pockets therein, each air pocket having an air inlet and an outlet; wherein the cross-sectional area of each air inlet is smaller than the cross-sectional area of the air pocket's outlet, and wherein the outer surface of the viscous drag reducing cladding comprises a plurality of loops of hydrophobic thread where the loops are attached to said surface at both ends.

18. The viscous drag reducing cladding of claim 1 , wherein the cross-sectional area of each air inlet is less than one hundredth of the cross-sectional area of the air pocket's outlet.

Priority Claims (3)
IE 2017/0273 · Dec 22, 2017 · national
IE 2017/0274 · Dec 22, 2017 · national
IE 2018/0030 · Jan 26, 2018 · national
Continuity (1)
Related Publication 20200317295A1 · Oct 8, 2020