CA2744566C

Method and apparatus for dampening waves in a wave pool

Abstract

Disclosed is a method and apparatus for dampening waves preferably comprising a wave pool having two portions, a first wave forming portion with an inclined section oriented obliquely relative to the travel direction of the waves that causes the waves to begin breaking, and a second wave dampening portion having a relatively deep solid chamber floor and a raised perforated floor above it for dampening the waves after they begin to break. The properties of the raised floor, including its porosity, its depth (relative to the chamber depth), and the characteristics of the waves to be dampened, including the wave height and shape, are taken into account in designing a dampening system that substantially dissipates the waves, which in turn, reduces wave reflections and rip currents that can interfere with the next oncoming waves, and thereby, help to maintain quality surfing waves at high frequencies without increasing pool size.

CA2744566C, drawing sheet 1
Sheet 1 of 19

Term

3.2 yearsleft in the term

Expires 25 November 2029.

  1. Priority
  2. Filed
  3. Granted
  4. Today
  5. Expires

6 claims: 4 independent, 2 dependent

  1. 1
    CA 02744566 2016-05-11 CA 2,744,566 Agent Ref:77824/00002 4. The wave pool of claim 1 of 0.05 < y < 0.25. 5. The wave pool of claim 1 based on the following formula: What is claimed is: 1. A wave pool having a body of water therein with a standing mean water level comprising: a wave generator substantially at a first end of said wave pool for propagating waves that travel across said body of water from said first end toward a second end, opposite said first end;a first pool portion comprising a floor extended from said first end in the direction of said second end, said floor comprising an inclined section extended upward to at least the breaker depth of said inclined section;a second pool portion extended from said inclined section toward said second end comprising a wave dampening chamber located substantially between said inclined section and said second end;and wherein said wave dampening chamber comprises a perforated raised floor above a bottom floor, wherein said raised floor has a predetermined porosity (/) within the range of 0 < y < 0.5, wherein as the waves travel across said raised floor toward said second end, a boundary layer of energy absorbing vortices and eddies is created above and below said raised floor, resulting from water passing up and down through the perforations, wherein the boundary layer helps to dampen the waves traveling across said wave dampening chamber. 2. The wave pool of claim 1, wherein said first pool portion comprises a horizontal section followed downstream by said inclined section, wherein said inclined section is oriented obliquely relative to the travel direction of the waves. 3. The wave pool of claim 1, wherein said inclined section peaks at a maximum height that is substantially equivalent to the breaker depth thereof, and wherein said raised floor is extended substantially horizontally from said inclined section to said second end and is positioned no deeper than the break depth of said inclined section. wherein said raised floor has a porosity within the range wherein the porosity of said raised floor is determined (j 22919859.2 CA 02744566 2016-05-11 CA 2,744,566 Agent Ref: 77824/00002 wherein K is the dampening rate, γ is the porosity of said raised floor, dfjcoM C h 0 .mtser is the ratio of the depth of said raised floor to the distance between said raised floor and said bottom floor, H/d paa \ is the incident wave height relative to the maximum depth of said first pool portion, L is the wave length, Tis the wave period, and the breaker shape is defined by iribarren ξ ύ , 6. The wave pool of claim 1, wherein the distance that said bottom floor extends below said raised floor is about two to four times the distance that said raised floor extends below the standing mean water level of said body of water. 7. The wave pool of claim 2, wherein the porosity of said raised floor is within the range of between about 0.05 to 0.25 and the distance that said bottom floor extends below said raised floor is about two and a half to three times the distance that said raised floor extends below the standing mean water level of said body of water. 8. The wave pool of claim 1, wherein in operation, the height of the waves propagated by said wave generator is greater than or equal to the depth of said raised floor beneath the standing mean water level of said body of water. 9. The wave pool of claim 1, wherein said raised floor comprises at least one of the following features: 1) first and second layers wherein said first layer has a porosity that is greater than that of said second layer;
  2. 2
    2) first and second layers wherein said first layer has a porosity that is greater than that of said second layer, said first layer is extended above said second layer, and a predetermined space is provided between said first and second layers;
  3. 3
    3) the porosity of said raised floor varies in different locations thereof;
  4. 4
    4) the porosity of said raised floor is less near said second end than it is near said first end;
  5. 5
    5) said raised floor is extended along an incline;and
  6. 6
    6) said raised floor and bottom floor are extended along an incline. 10. A method of dampening waves in a wave pool having a body of water therein with a standing mean water level comprising:providing a wave generator substantially located at a first end of said wave pool;propagating waves that travel across said body of water from said first end toward a second end, substantially opposite said first end;22919859.2 CA 02744566 2016-05-11 CA 2,744,566 Agent Ref: 77824/00002 allowing the waves to travel through a first pool portion comprising a floor having an inclined section extended upward substantially from said first end toward said second end, and causing the waves to begin breaking at or near said inclined section;allowing the waves to travel through a second pool portion comprising a wave dampening chamber located substantially between said inclined section and said second end, wherein said wave dampening chamber comprises a bottom floor and a perforated raised floor above it, wherein said raised floor has a predetermined porosity (y) within the range of 0 < y < 0.5;and causing the waves to be acted upon by said raised floor wherein the waves are dampened by the generation of a boundary layer of energy absorbing vortices and eddies extending above and below said raised floor, resulting from water passing up and down through the perforations, as the waves pass across said wave dampening chamber. 11. The method of claim 10, wherein as the waves travel through said first pool portion they travel through a horizontal section followed downstream by said inclined section, wherein said inclined section is extended upward to at least the breaker depth of said inclined section, and said inclined section is oriented obliquely relative to the travel direction of the waves, wherein the waves that are propagated tend to break obliquely relative to the travel direction of the waves. 12. The method of claim 10, wherein the waves begin to break at or near the top of said inclined section which peaks at a maximum height that is substantially equivalent to the breaker depth thereof, wherein said raised floor is extended substantially horizontally from the top of said inclined section toward said second end. 13. The method of claim 10, wherein the waves travel over said raised floor which has a porosity within the range of 0.05 < y < 0.25. 14. The method of claim 10, wherein the waves travel over said raised floor which has a porosity determined based on the following formula: wherein Kis the dampening rate, y is the porosity of said raised floor, is the ratio of the depth of said raised floor to the distance between said raised floor and said bottom floor, Hld poo i is the incident wave height relative to the maximum depth of said first pool portion, L is the wave length, Tis the wave period, and the breaker shape is defined by iribarren 22919859.2 CA 02744566 2016-05-11 CA 2,744,566 Agent Ref: 77824/00002 15. The method of claim 10, wherein the waves travel over said raised floor which is extended at a distance above said bottom floor that is about two to four times the distance that said raised floor extends below the standing mean water level of said body of water. 16. The method of claim 10, wherein the waves are allowed to travel toward said second end and allowed to be refiected by an end wall located at said second end, wherein said wave dampening chamber helps to reduce the reflections and rip currents that may otherwise occur within said wave pool. 17. The method of claim 10, wherein in operation, the height of the waves propagated by said wave generator is greater than or equal to the depth of said raised floor beneath the standing mean water level of said body of water. 18. The wave pool of claim 1, wherein said raised floor is extended substantially horizontally or along an incline of no more than about a 1:20 slope. 19. The wave pool of claim 1, wherein said second pool portion forms an enclosed space between said raised floor and said bottom floor. 20. The method of claim 10, wherein said step of allowing the waved to pass through said second pool portion comprises extending said raised floor substantially horizontally or along an incline of no more than about a 1:20 slope. 21. The method of claim 20, wherein said step of dampening the waves results from allowing a predetermined amount of water and wave energy to pass up and down through the perforations in said raised floor. 22. A wave pool having a body of water therein with a standing mean water level comprising: a wave generator substantially at a first end of said wave pool for propagating waves that travel across said body of water from said first end toward a second end, opposite said first end: a first pool portion comprising a floor extended from said first end in the direction of said second end, said floor comprising an inclined section extending upward in the direction toward said second end, a second pool portion extended from said inclined section toward said second end comprising a wave dampening chamber located substantially between said inclined section and said second end;wherein said wave dampening chamber comprises a solid bottom floor and a single perforated raised floor above it, wherein said raised floor is extended substantially 22919859.2 CA 02744566 2016-05-11 CA 2,744,566 Agent Ref: 77824/00002 horizontally or along an incline of no more than about a 1:20 slope, and said raised floor has a predetermined porosity (yj within the range of 0 < y < 0.5;and wherein said second pool portion helps to dampen the waves traveling across said wave dampening chamber by the generation of a boundary layer of energy absorbing 5 vortices and eddies extending above and below said raised floor resulting from allowing a predetermined amount of water and wave energy to pass up and down through the perforations in said raised floor. 22919859.2