VORTEX VENTURI WATER SPRAYING ASSEMBLY
20220314245 · 2022-10-06
Inventors
Cpc classification
B05B1/1654
PERFORMING OPERATIONS; TRANSPORTING
B05B1/3442
PERFORMING OPERATIONS; TRANSPORTING
B05B7/0425
PERFORMING OPERATIONS; TRANSPORTING
B05B15/65
PERFORMING OPERATIONS; TRANSPORTING
B05B1/3436
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
A water spraying assembly is provided which includes a fluid conduit, a vortex chamber, an intermediate chamber, and a nozzle chamber. The intermediate chamber has a constricted section which increases the velocity of water that passes through the nozzle chamber. Further, the nozzle has one or more holes which project through the nozzle chamber's sidewall where the intermediate chamber enters into the nozzle chamber. The vortex chamber is positioned between the fluid conduit and the intermediate chamber. The vortex chamber rotates the flow of water around the showerhead's longitudinal axis before the water enters the nozzle's intermediate chamber. This causes the water to swirl within the intermediate chamber and nozzle chamber to increase the effect of air aspirating into water within the showerhead's nozzle.
Claims
1. A water spraying assembly comprising: a fluid conduit for connecting and for receiving water from a water supply, said fluid conduit including an outlet for expelling water from within said fluid conduit; a vortex chamber having an entrance connecting to said fluid conduit's outlet and an exit, said vortex chamber including a hollow interior having a longitudinal axis, a plurality of blades each having a periphery and an interior side, and a plurality of passageways between said blades, said blades arranged around said longitudinal axis and spaced laterally away from said nozzle's longitudinal axis to position said blades in an annular arrangement with said hollow interior in the middle of said blades, and said blades spaced apart from one another with the spacing between them forming said passageways, said blades receiving water at their peripheries from said fluid conduit and directing such water to flow in a direction inwardly at least partially perpendicular and rotationally around said longitudinal axis to cause water to rotate within said vortex chamber's hollow interior and to be expelled from said vortex chamber in a rotating manner through said vortex chamber's exit; an intermediate chamber having an intermediate chamber inlet connected to said vortex chamber outlet and an intermediate chamber outlet; a nozzle chamber including sidewall, a nozzle chamber inlet for receiving water from said intermediate chamber outlet, and a nozzle chamber outlet for spraying water; said intermediate chamber outlet having a diameter and said nozzle chamber inlet having a diameter wherein said intermediate chamber outlet's diameter is smaller than said nozzle chamber inlet's diameter, and said intermediate chamber includes as tubular section which projects into said nozzle chamber so as to form an annular region within said nozzle chamber around said intermediate chamber's tubular section; and said nozzle sidewall includes one or more holes which project through said nozzle's sidewall, said one or more holes located to project through said sidewall either into said nozzle chamber's annular region or into said nozzle chamber immediately downstream of said intermediate chamber outlet, said one or more holes exposed to the ambient air for receiving air into said one or more holes to aspirate into said nozzle chamber when water flows through said nozzle chamber from said nozzle chamber inlet to said nozzle chamber outlet.
2. The water spraying assembly of claim 1 wherein said nozzle chamber has a frusto-conical shape with said nozzle chamber outlet being larger than said nozzle chamber inlet
3. The water spraying assembly of claim 2 wherein said intermediate chamber has a frusto-conical shape with said intermediate chamber inlet being smaller than said intermediate chamber outlet.
4. The water spraying assembly of claim 1 wherein said plurality of blades includes three blades.
5. The water spraying assembly of claim 1 wherein said vortex chamber includes a cap located upstream of said blades, said cap engages said blades and covers said vortex chamber's hollow interior so as to obstruct the flow of water received from said fluid conduit's outlet and divert the water to said blades' peripheries.
6. The water spraying assembly of claim 1 further comprising a housing which substantially encapsulates said nozzle's sidewall, said housing radially spaced from said nozzle to form an annular cavity in fluid communication with said one or more holes, and said housing having a plurality of notches positioned around said nozzle's outlet, and said notches permitting the passage of ambient air from exterior of said showerhead assembly into said annular cavity for passage of air to said one or more holes.
7. The water spraying assembly of claim 1 wherein said passageways extend perpendicular to said longitudinal axis so as to direct water to flow inwardly into said vortex chamber's hollow interior in a direction perpendicular to said nozzle's longitudinal axis.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0016] These and other, further and more specific objects and advantages of the invention will be apparent to those skilled in the art from the following detailed description thereof, taken in conjunction with the Drawings, in which:
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DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
[0033] While the present invention is susceptible of embodiment in various forms, as shown in the drawings, hereinafter will be described the presently preferred embodiments of the invention with the understanding that the present disclosure is to be considered as an exemplification of the invention, and it is not intended to limit the invention to the specific embodiments illustrated.
[0034] With reference to
[0035] The fluid conduit 2 connects the nozzles 9 and 11 to a water source 61. Preferably, the water source consists of a male threaded pipe 61 which is typically found in a traditional shower stall. The fluid conduit 2 has an inlet 3 for receiving water, an outlet 4 for expelling water, and a body for conveying water 63 from the inlet 3 to the outlet 4. Preferably, the fluid conduit's inlet 3 includes a female threaded neck 5 for connecting to the water supply's male threaded pipe 61 and a ball joint 7 which allows the housing 13 to pivot or swivel relative to the male threaded pipe 61.
[0036] As illustrated in
[0037] The showerhead assembly 1 further includes a vortex chamber 41 which is located between the showerhead assembly's fluid conduit 2 and primary nozzle 9. As best illustrated in
[0038] The intermediate chamber 25 has an intermediate chamber inlet 19 and an intermediate chamber outlet 20. Importantly, the intermediate chamber 25 has a reduced diameter which causes an increase in water velocity. More specially, the intermediate chamber 25 has a decreased cross-section which forms a constricted section which increases the velocity of water flowing through the nozzle. The intermediate chamber may be constructed of various shapes. For example, a preferred intermediate chamber shown in
[0039] The showerhead assembly's nozzle chamber 21 is immediately downstream of the intermediate chamber 25 so that water exiting the intermediate chamber 25 inters the nozzle chamber's inlet 22. The nozzle chamber inlet 22 has a diameter larger than the intermediate chamber's outlet 20. Further, the intermediate chamber's outlet 20 includes a tubular section 26 which projects into the nozzle chamber 21 to form an annular region 28 within the nozzle chamber 21 which is located around the tubular section 26. The nozzle chamber 21 may be constructed in various shapes. However, as illustrated in
[0040] As best illustrated in
[0041] The showerhead assembly 1, and particularly the nozzle construction 9, aspirates air into the shower water stream to produce oxygen enriched water. As water flows through the nozzle, the low-pressure area within the nozzle chamber aspirates air through the one or more nozzle holes so as to mix water and air together. The quicker the water flow, the greater the pressure differential and resulting introduction of air into the water. As illustrated in
[0042] With reference to
[0043] The nozzle with vortex chamber construction can be incorporated into any shower assembly. However, in the preferred embodiment illustrated in
[0044] While a preferred showerhead assembly has been illustrated and described, it would be apparent that various modifications of the showerhead assembly can be made without departing from the spirit and scope of the invention. Accordingly, it is not intended that the invention be limited except by the following claims. Having described my invention in such terms to enable a person skilled in the art to understand the invention, recreate the invention, and practice it, and having identified the presently preferred embodiments thereof, I claim: