IP Library › Granted Patent US 11,471,780
Granted Patent B2
US 11,471,780 · App. 17/592,337 · Granted Oct 18, 2022

Sequenced chamber wave generator controller and method

Inventors: Bruce McFarland (Solana Beach, CA); Clement Ginestet (Paris, FR)
Assignee: AMERICAN WAVE MACHINES, INC.
A63G31/007E04H4/0006G06F3/0482G06F3/0486G06F3/04817G06F3/04842G06F3/04847A63B69/0093B63B34/70
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Quick Facts
Patent No.
US 11,471,780
App. No.
17/592,337
Granted
Oct 18, 2022
Kind
B2
Abstract

A wave generating apparatus mobile application controller and method are provided in which a mobile controller actuates a plurality of wave generating chambers in sequence using a delay between the actuation of each chamber to produce a rideable wave in a pool. The mobile application controller allows the user to select the exact type of wave to be produced by the wave generator apparatus by selecting the size, shape, and pattern of the wave. The application also allows the user to use a camera to photograph or record herself or someone else, even while riding a wave.

Claims (57)

1. A method of creating a rideable wave in a pool, the pool having a plurality of pneumatic wave generating chambers with a plurality of air supply valves, the plurality of pneumatic wave generating chambers constructed to push water in the pool to create the rideable wave, the method comprising:

a. providing an application controller that is connected to the plurality of air supply valves;

b. creating a wave sequence profile that includes instructions to actuate the air supply valves in the plurality of air supply valves according to a sequence;

c. programming the application controller according to the wave sequence profile;

d. the controller actuating a first air supply valve in the plurality of air supply valves to inject air into a first chamber in the plurality of pneumatic wave generating chambers thereby pushing water in the pool;

e. after a delay, the controller actuating a second air supply valve in the plurality of air supply valves to inject air into a second chamber in the plurality of pneumatic wave generating chambers thereby pushing water in the pool;

wherein steps (d) and (e) are based on the wave sequence profile.

2. An aquatic sports apparatus, comprising:

a pool;

a plurality of pneumatic wave generating chambers constructed to release water into the pool;

a plurality of air supply valves;

a wave sequence profile comprising instructions to actuate the air supply valves in the plurality of air supply valves according to a sequence; and

a controller connected to the plurality of air supply valves, and constructed to perform the following steps to create a ridable wave with a peak:

a. actuating a first air supply valve in the plurality of air supply valves to inject air into a first chamber in the plurality of pneumatic wave generating chambers thereby releasing water into the pool;

b. after a delay, actuating a second air supply valve in the plurality of air supply valves to inject air into a second chamber in the plurality of pneumatic wave generating chambers thereby releasing water into the pool;

wherein steps (a) and (b) are based on the wave sequence profile.

3. The apparatus of claim 2 , wherein:

the pool comprises a beach;

the plurality of pneumatic wave generating chambers have a chamber face that forms a chamber edge of the pool opposite to the beach, wherein a projection of the chamber edge across the pool to the beach defines an area;

the pool comprising a region that extends away from the area; and

the peak travels into the region.

4. The apparatus of claim 2 , wherein:

the plurality of pneumatic wave generating chambers have a chamber face that forms a chamber edge of the pool, wherein the pool extends away from the plurality of pneumatic wave generating chambers in a direction parallel to the chamber face, forming a region; and

the peak travels into the region.

5. The apparatus of claim 2 , wherein the pool has a floor, the floor comprising a first portion and a second portion, wherein the first portion has a steeper slope than that of the second portion, and wherein the first portion is positioned closer to the plurality of pneumatic wave generating chambers than is the second portion.

6. The apparatus of claim 2 , wherein the pool has a floor, the floor comprising a first portion and a second portion, wherein the second portion has a steeper slope than that of the first portion, and wherein the first portion is positioned closer to the plurality of pneumatic wave generating chambers than is the second portion.

7. The apparatus of claim 2 , wherein the controller generates a graphical model of the wave based on the wave sequence profile.

8. The apparatus of claim 7 , wherein a wave creation module allows the operator to modify the wave sequence profile after the controller generates the graphical model.

9. The apparatus of claim 2 , wherein the wave sequence profile is created on a separate device from the controller.

10. The apparatus of claim 2 , further comprising a source of pressurized air connected to the plurality of air supply valves.

11. The apparatus of claim 2 , wherein the controller performs the following steps:

(a)(1) after step (a), actuating the first chamber in the plurality of pneumatic wave generating chambers to draw water from the pool; and

(b)(1) after step (b), actuating the second chamber in the plurality of pneumatic wave generating chambers to draw water from the pool.

12. The apparatus of claim 11 , wherein step (a)(1) is performed by depressurizing the first chamber in the plurality of pneumatic wave generating chambers; and step (b)(1) is performed by depressurizing the second chamber in the plurality of pneumatic wave generating chambers.

13. The apparatus of claim 11 , comprising a plurality of venting valves connected to the plurality of pneumatic wave generating chambers and connected to the controller, wherein step (a)(1) is performed by actuating a first venting valve in the plurality of venting valves; and step (b)(1) is performed by actuating a second venting valve in the plurality venting valves.

14. An aquatic sports apparatus, comprising:

a pool;

a plurality of pneumatic wave generating chambers constructed to release water into the pool;

a plurality of air supply valves;

a wave sequence profile comprising instructions to actuate the air supply valves in the plurality of air supply valves according to a sequence; and

a controller connected to the plurality of air supply valves, and wherein the controller performs the following steps:

to create a first ridable wave with a peak:

a. actuating a first air supply valve in the plurality of air supply valves to inject air into a first chamber in the plurality of pneumatic wave generating chambers thereby releasing water into the pool;

b. after a delay, actuating a second air supply valve in the plurality of air supply valves to inject air into a second chamber in the plurality of pneumatic wave generating chambers thereby releasing water into the pool;

to create a second ridable wave with a peak:

c. actuating a third air supply valve in the plurality of air supply valves to inject air into a third chamber in the plurality of pneumatic wave generating chambers thereby releasing water into the pool;

d. after a delay, actuating a fourth air supply valve in the plurality of air supply valves to inject air into a fourth chamber in the plurality of pneumatic wave generating chambers thereby releasing water into the pool;

wherein steps (a), (b), (c) and (d) are based on the wave sequence profile;

wherein the first wave comprises a first peak traveling in a first direction, and the second wave comprises a second peak traveling in a second direction that is different from the first direction.

15. The apparatus of claim 14 , wherein the pool has a floor, the floor comprising a first portion and a second portion, wherein the first portion has a steeper slope than that of the second portion, and wherein the first portion is positioned closer to the plurality of pneumatic wave generating chambers than is the second portion.

16. The apparatus of claim 14 , wherein the pool has a floor, the floor comprising a first portion and a second portion, wherein the second portion has a steeper slope than that of the first portion, and wherein the first portion is positioned closer to the plurality of pneumatic wave generating chambers than is the second portion.

17. The apparatus of claim 14 , further comprising a source of pressurized air connected to the plurality of air supply valves.

18. The apparatus of claim 14 , wherein the controller performs the following steps:

(a)(1) after step (a), actuating the first chamber in the plurality of pneumatic wave generating chambers to draw water from the pool; and

(b)(1) after step (b), actuating the second chamber in the plurality of pneumatic wave generating chambers to draw water from the pool.

19. The apparatus of claim 18 , wherein step (a)(1) is performed by depressurizing the first chamber in the plurality pneumatic wave generating chambers; and step (b)(1) is performed by depressurizing the second chamber in the plurality of pneumatic wave generating chambers.

20. The apparatus of claim 18 , comprising a plurality of venting valves connected to the plurality of pneumatic wave generating chambers and connected to the controller, wherein step (a)(1) is performed by actuating a first venting valve in the plurality of venting valves; and step (b)(1) is performed by actuating a second venting valve in the plurality of venting valves.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 18, 2026
From: MCFARLAND, BRUCE; GINESTET, CLEMENT
To: AMERICAN WAVE MACHINES, INC.
Reel/Frame 075692/0898 →
Continuity (11)
Continuation 17467042 · Sep 3, 2021
Continuation 16795492 · Feb 19, 2020
Continuation 16402070 · May 2, 2019
Continuation 16149051 · Oct 1, 2018
Continuation 14808076 · Jul 24, 2015
Division 13740419 · Jan 14, 2013
Continuation In Part PCTUS2020021576 · Mar 2, 2020
Continuation 16795483 · Feb 19, 2020
Provisional Application 61721304 · Nov 1, 2012
Provisional Application 62885768 · Aug 12, 2019
Related Publication 20220203250A1 · Jun 30, 2022
Cited By (1)
US 12,565,785