TOILET VENTILATION DEVICE
The toilet ventilation device is used for drawing air from inside a toilet bowl of a toilet having a toilet tank and having an overflow pipe located inside the toilet tank. The device includes an adaptor fitting over an opened top end of the over-flow pipe. The adaptor forms a first bottom- opened chamber and a second bottom-opened chamber that are in fluid communication with one another through a restricted flow passage. At least one among the first and the second chamber is configured and disposed to surround the top end of the overflow pipe and creates an oversized hood extending substantially parallel to an outer wall surface of the overflow pipe. The open bottom of the first and of the second chamber is located below a filled water level. The device also includes an air conduit network extending between the outlet of the adaptor to outside the toilet.
The present case claims the benefit of U.S. patent application No. 61/344,211 filed 11 Jun. 2010, which is hereby incorporated by reference in its entirety.
TECHNICAL FIELDThe technical field relates generally to toilet ventilation devices.
BACKGROUNDMany different toilet ventilation devices have been suggested over the year. These devices are often operated after or during use of a toilet to extract odoriferous air, having unwanted odor resulting from use of the toilet and generally coming from the toilet bowl. The devices are often connected to a ventilation conduit or pipe leading outside to expel the odoriferous air.
Some toilet ventilation devices extract odoriferous air through the top end of the overflow pipe provided in toilet tanks. The overflow pipe is already in fluid communication with the interior of the toilet bowl. Creating a vacuum pressure inside the overflow pipe can thus draw air from inside the toilet bowl. Examples of devices using this approach are disclosed for instance in U.S. Pat. No. 1,342,716 (Johnston) issued 8 Jun. 1920, in U.S. Pat. No. 3,626,554 (Martz) issued 14 Dec. 1971 and in U.S. Pat. No. 4,583,250 (Valarao) issued 22 Apr. 1986.
The filled water level in a toilet tank is normally relatively close to the top end of the overflow pipe. Additionally, the available space between the top end of the overflow pipe and the tank lid is often very limited. One of the challenges in designing a toilet ventilation device operating under a vacuum pressure in this context is preventing water from possibly leaking out of the toilet through the toilet ventilation device. A toilet ventilation device generally operates before the toilet is flushed and continues to operate while it is flushed. When the toilet is flushed, internal splashes due to the sudden variations of the pressure at the inlet of the toilet ventilation device may happen. These splashes generate airborne water drops that can potentially be carried out with the extracted air. In some cases, several successive internal splashes created while the toilet ventilation device operates can ultimately result in a leak. This made the prior toilet ventilation devices considerably less attractive for their widespread use.
Accordingly, there is still room for many improvements in this area of technology.
SUMMARYIn one aspect, there is provided a toilet ventilation device for drawing air from inside a toilet bowl of a toilet having a toilet tank and having an overflow pipe located inside the toilet tank, the device including: an adaptor fitting over an opened top end of the overflow pipe, the adaptor forming a first bottom-opened chamber and a second bottom-opened chamber that are in fluid communication with one another through a restricted flow passage, at least one among the first and the second chamber being configured and disposed to surround the top end of the overflow pipe and create an oversized hood extending substantially parallel to an outer wall surface of the overflow pipe, the open bottom of the first and of the second chamber being located below a filled water level, the adaptor defining an internal air path extending from the first chamber to an outlet of the adaptor positioned downstream of the second chamber; and an air conduit network extending between the outlet of the adaptor and outside the toilet tank.
In another aspect, there is provided an adaptor of a ventilation device for a toilet, the adaptor being insertable over an overflow pipe located inside a toilet tank of the toilet, the adaptor having an internal air path extending from inside the overflow pipe and an outlet of the adaptor, the adaptor including: a first vertically-extending tube fitting over an opened top end of the overflow pipe, the first vertically-disposed tube having a bottom opened end; a second vertically-extending tube that is juxtaposed to the first vertically-extending tube and having a bottom opened end, the first and the second vertically-extending tube being in fluid communication through a restricted flow passage; and an outlet tube having a first end connected to the second vertically-extending tube, and a second end, opposite the first end, defining the outlet of the adaptor, the internal air path passing through the first vertically-extending tube, the restricted flow passage, the second vertically-extending tube and then the outlet tube.
In another aspect, there is provided a method of mitigating water ingestion in a toilet ventilation device for a toilet having a toilet tank, the method including: mounting an adaptor over an overflow pipe extending vertically inside the toilet tank of the toilet, the adaptor forming an oversized hood surrounding a top end and an outer wall surface of the overflow pipe; filing the toilet tank up to a filled water level; applying a vacuum pressure at an outlet of the adaptor to draw air coming from inside a toilet bowl of the toilet through the overflow pipe; upon flushing the toilet, preventing airborne water drops, caused by at least one splash occurring inside the adaptor as the water level goes down in the toilet tank, from coming out of the adaptor through the outlet.
In another aspect, there is provided a manufacturing process for making an adaptor for a toilet ventilation device as defined herein.
Further details on these aspects as well as other aspects of the proposed concept will be apparent from the following detailed description and the appended figures.
The following description will refer to a building for the sake of simplicity but this is not limitative.
The toilet 12 has a toilet tank 14 and the toilet bowl 16. The interior of the toilet bowl 16 is shown in
The toilet tank 14 is opened at the top. This opening is generally closed by a tank lid 24 having a shape complementary to that of a rim 26 (
The toilet 12 is connected to a pressurized water supply line that sends water to a valve unit 30 (
The toilet 12 includes an overflow pipe 40 extending vertically inside the toilet tank 14. The overflow pipe 40 has an opened top end that is configured and disposed to prevent the water level from rising above a certain limit in case of a failure or an error in setting the valve unit 30. The overflow pipe 40 has an opened bottom end that is in fluid communication with the toilet bowl 16. This way, if the water level goes above the filled water level L and continues to rise for some reason, the excess water can leave the toilet tank 14 through the top end of the overflow pipe 40 so as to prevent water level from reaching the rim 26 of the toilet tank 14 and causing a major water leak into the room.
As shown in
Flushing the toilet 12 involves quickly sending most of the water from the toilet tank 14 through a flush conduit 50 that is in fluid communication with the toilet bowl 16. The flush conduit 50 is normally closed by a pivotable rubber flapper 52 that is configured and disposed to open when someone flushes the toilet 12. As is well known, activating the flush handle 54 (
In
At the beginning of the flush cycle, water will be directed to a space 56 (
In the illustrated example, the vacuum source required to operate the toilet ventilation device 10 includes a fan unit 60 connected to a nearby wall section located behind the toilet 12. It is also possible to locate the fan unit 60 a few meters away or even elsewhere, for instance on the floor. Still, one can also use a remote vacuum source located outside the room and not use the fan unit 60 near the toilet 12 to draw air therefrom.
The fan unit 60 includes a fan having a plurality of blades driven into rotation by an electric motor, for instance a 12-volt DC motor or the like. The rotation of the blades will create a vacuum pressure at an inlet 60a of the fan unit 60. A skilled reader will understand that the vacuum pressure is selected so as to draw enough air from the device 10 to be efficient in removing odoriferous air but the vacuum pressure should not be high enough to syphon the water. Given the relative low clearance between the filled water level and the air inlet of the device 10, applying a high vacuum pressure, for instance the vacuum pressure of a domestic vacuum cleaner, is likely to syphon the water. The device 10 will require a moderated vacuum pressure. A sufficient minimum height is also maintained between the water level and the outlet of each bottom-opened part of the device 10.
The electric motor of the fan unit 60 can be switched on and off by the user through a corresponding switch or the like. In other implementations, the switch can be made automatic and/or can be linked to another device, for instance the lighting system of the room where the toilet 12 is located. Other variants include an automatic switch within the toilet seat 18 or a proximity sensor, to name just a few. The switch can also be coupled to a timer for interrupting the operation of the electric motor after a given running time, for instance from 1 to 4 minutes. Many other variants are possible as well.
If desired, the same fan unit 60 can be connected to a plurality of devices 10, each being mounted on a corresponding toilet, and be made powerful enough to draw air from all the toilet bowls simultaneously.
The fan unit 60 has an outlet 60b that is connected to an exhaust conduit 62 (
In the present concept, air enters the toilet ventilation device 10 through a component called an “adaptor” 70 that is mounted over the top end of the overflow pipe 40. This adaptor 70 is designed to prevent the ingestion of water by the toilet ventilation device 10 while still not preventing the overflow pipe 40 from functioning in case of an overflow. It does not have any moving parts.
The first vertically-extending tube 72 has a closed top end. The first vertically-extending tube 72 can be connected to the overflow pipe 40 using different arrangements, such as an arrangement including side screws engaging the outer wall surface of the overflow pipe 40 or an arrangement including an element resting over the edge of the top end of the overflow pipe 40, to name just a few.
The first vertically-extending tube 72 is in fluid communication with a second vertically-extending tube 80, juxtaposed to the first vertically-extending tube 72, and that also has an opened bottom end. The first and the second vertically-extending tube 72, 80 communicate through a side port 82 made through their respective side wall. The side port 82 creates a lateral restricted flow passage. In the illustrated example, the restricted flow passage is formed by a short horizontal tube extending inside the first chamber 74 and having a beveled end engaging the edge of the top end of the overflow pipe 40. The beveled section is located on the top side. This mitigates water ingestion in case of a splash occurring inside the first chamber 74.
Air leaves the adaptor 70 through an outlet tube 84 located on the side wall of the second vertically-extending tube 80. The outlet tube 84 is located vertically higher than the side port 82 between the two tubes 72, 80. This way, any water drops carried with the air have an additional opportunity of falling by gravity when they are within the second vertically-extending tube 80. They can thus go back inside the toilet tank 14 through the opened bottom end of the second vertically-extending tube 80. The interior of the second vertically-extending tube 80 defines a second chamber 86.
Between the adaptor 70 and outside the toilet tank 14 is provided a network of air conduits. The exact configuration and arrangement may vary from one implementation to another. As shown in
In the illustrated example, and as best shown in
The inlet portion 96 has an upper longitudinal slot 100 to which is connected to the inlet of a flat portion 104 of the air conduit 92. The flat portion 104 has a curved upper end 106. The flat portion 104 is made relatively thin so as to fit easily between the rim 26 of the opening of the toilet tank 14 and the tank lid 24. It is made relatively large in width so as to increase the cross section area and compensate for the reduced thickness. The curved upper end 106 allows the weight of the air conduit 92 to be supported by the toilet tank 14. Most of the air conduit 92 is located outside the back wall of the toilet tank 14. The outlet of the air conduit 92 includes a horizontally-extending outlet portion 108. One of the ends of the outlet portion 108 is closed and the other is opened. This opened end 110 is connected to another intermediary air conduit 112, for instance a flexible air conduit, whose opposite end is connected to the inlet 60a of the fan unit 60 in the illustrated example.
Also in the illustrated example, the various air conduits of the device 10, with the exception of the flat portion 104 of the air conduit 92, have a circular cross section. The diameter of the air conduits can be for instance between 1.25 cm (0.5 inch) and 2.5 cm (1.0 inch). Variants are also possible. Still, the air conduits can have other shapes and/or diameters.
When the air conduit 92 is hooked to the toilet tank 14, it may create a small inclination of the tank lid 24. To ensure a more uniform fit, the rim and/or the bottom of the tank lid 24 can include pads and/or strips of a foam-like material to slightly raise the height of the tank lid 24 and level it. The foam-like material can also be used to reduce the air leaks between the rim 26 of the toilet tank 14 and the tank lid 24. However, some air should still be allowed to flow inside the toilet tank 14 to compensate for the water level drop during a flush. Sealing the interior of the toilet tank 14 may otherwise prevent water from flushing properly.
It should be noted that network of air conduits can be designed differently than what is shown and described herein. For instance, one can provide a hole through the upper top portion of one of the walls of the toilet tank 14 for allowing air to exit the toilet tank 14.
In the example illustrated in
In
In
In
In
In
The device 10 can be made using a manufacturing process that includes any one of the following acts or combinations thereof: cutting, bending, punching, molding, gluing, painting.
Overall, the proposed concept provides a way to ensure a good interface between the top end of the overflow pipe 40 and the toilet ventilation device 10 while minimizing the risks of causing a water leak through the toilet ventilation device 10. It also provided a method of mitigating the risks of water ingestion in a toilet ventilation device 10.
The present detailed description and the appended figures are meant to be exemplary only. A skilled person will recognize that variants can be made in light of a review of the present disclosure without departing from the proposed concept.
Claims
1. A toilet ventilation device for drawing air from inside a toilet bowl of a toilet having a toilet tank and having an overflow pipe located inside the toilet tank, the device including:
- an adaptor fitting over an opened top end of the overflow pipe, the adaptor forming a first bottom-opened chamber and a second bottom-opened chamber that are in fluid communication with one another through a restricted flow passage, at least one among the first and the second chamber being configured and disposed to surround the top end of the overflow pipe and create an oversized hood extending substantially parallel to an outer wall surface of the overflow pipe, the open bottom of the first and of the second chamber being located below a filled water level, the adaptor defining an internal air path extending from the first chamber to an outlet of the adaptor positioned downstream of the second chamber; and
- an air conduit network extending between the outlet of the adaptor and outside the toilet tank.
2. The toilet ventilation device as defined in claim 1, wherein the hood is created by the first chamber, the first chamber including a first and a second portion, the first portion being generally located vertically above the top end of the overflow pipe, and a second portion generally surrounding the overflow pipe below an edge of the top end of the overflow pipe.
3. The toilet ventilation device as defined in claim 2, wherein the first chamber is defined inside a first vertically-extending tube and the second chamber is defined inside a second vertically-extending tube.
4. The toilet ventilation device as defined in claim 3, wherein the first vertically-extending tube is coaxially-disposed with reference to the overflow pipe when the adaptor is mounted thereon.
5-6. (canceled)
7. The toilet ventilation device as defined in claim 4, wherein the first and the second vertically-extending tube are juxtaposed to one another, the restricted flow passage being provided through corresponding side walls of the first and the second vertically-extending tube.
8. The toilet ventilation device as defined in claim 7, wherein the restricted flow passage is vertically higher than the edge of the top end of the overflow pipe.
9. The toilet ventilation device as defined in claim 8, wherein the first and the second vertically-extending tube each have a bottom opened end that correspond to the bottom end of the first and the second chamber, respectively, the bottom ends of the first and the second vertically-extending tube extending below the filled water level of the toilet tank, the bottom end of the second vertically-extending tube being vertically below the bottom end of the first vertically-extending tube.
10. (canceled)
11. The toilet ventilation device as defined in claim 1, wherein the restricted flow passage includes a horizontally-extending tube, the horizontally-extending tube having at least one beveled end.
12. The toilet ventilation device as defined in claim 10, wherein the horizontally-extending tube engages the edge of the top end of the overflow pipe when the adaptor is mounted thereon, at least a part of the weight of the adaptor being supported by the horizontally-extending tube.
13. The toilet ventilation device as defined claim 1, wherein the air conduit network includes a substantially J-shaped air conduit having a curved top end, the curved top end being configured and disposed to fit between a top edge of a toilet tank wall and a bottom surface of a tank lid of the toilet.
14. The toilet ventilation device as defined in claim 13, wherein the J-shaped air conduit includes an inlet portion having a first end located above the filled water level and a second end located below the filled water level, the first end of the inlet portion being connected to the outlet of the adaptor through an intermediary air conduit.
15. The toilet ventilation device as defined in claim 14, wherein the intermediary air conduit is made of a flexible material and is positioned above the filled water level, the device further including a fan unit to create a vacuum pressure inside the adaptor, the fan unit is located outside the toilet tank.
16-17. (canceled)
18. An adaptor of a ventilation device for a toilet, the adaptor being insertable over an overflow pipe located inside a toilet tank of the toilet, the adaptor having an internal air path extending from inside the overflow pipe and an outlet of the adaptor, the adaptor including:
- a first vertically-extending tube fitting over an opened top end of the overflow pipe, the first vertically-disposed tube having a bottom opened end;
- a second vertically-extending tube that is juxtaposed to the first vertically-extending tube and having a bottom opened end, the first and the second vertically-extending tube being in fluid communication through a restricted flow passage; and
- an outlet tube having a first end connected to the second vertically-extending tube, and a second end, opposite the first end, defining the outlet of the adaptor, the internal air path passing through the first vertically-extending tube, the restricted flow passage, the second vertically-extending tube and then the outlet tube.
19. The adaptor as defined in claim 18, wherein the first vertically-extending tube includes a first and a second portion, the first portion being generally located vertically above the top end of the overflow pipe, and a second portion generally surrounding an outer wall surface of the overflow pipe.
20. The adaptor as defined in claim 19, wherein the first vertically-extending tube is coaxially-disposed with reference to the overflow pipe when the adaptor is mounted thereon.
21-22. (canceled)
23. The adaptor as defined in claim 18, wherein the restricted flow passage is provided through corresponding side walls of the first and the second vertically-extending tube, the restricted flow passage being vertically higher than an edge of the top end of the overflow pipe.
24. The adaptor as defined in claim 18 wherein the bottom end of the second vertically-extending tube is vertically below the bottom end of the first vertically-extending tube.
25-27. (canceled)
28. A method of mitigating water ingestion in a toilet ventilation device for a toilet having a toilet tank, the method including:
- mounting an adaptor over an overflow pipe extending vertically inside the toilet tank of the toilet, the adaptor forming an oversized hood surrounding a top end and an outer wall surface of the overflow pipe;
- filing the toilet tank up to a filled water level;
- applying a vacuum pressure at an outlet of the adaptor to draw air coming from inside a toilet bowl of the toilet through the overflow pipe;
- upon flushing the toilet, preventing airborne water drops, caused by at least one splash occurring inside the adaptor as the water level goes down in the toilet tank, from coming out of the adaptor through the outlet.
29. The method as defined in claim 28, wherein preventing airborne water drops from coming out of the adaptor through the outlet includes passing air between two juxtaposed bottom-opened chambers through a lateral restricted air passage, the chambers and the restricted air passage being located inside the adaptor, one of the chambers surrounding the top end of the overflow pipe.
30. The method as defined in claim 29, wherein preventing airborne water drops from coming out of the adaptor through the outlet includes having the bottom of the chamber surrounding the top end of the overflow pipe being out the water, when the water level goes down, before the bottom of the other chamber.
31-32. (canceled)
Type: Application
Filed: Apr 26, 2011
Publication Date: Apr 11, 2013
Inventor: Rene Larouche (Laval)
Application Number: 13/703,153