This application is a 371 National Stage Entry of International application number PCT/GB2012/050304, having an international filing date of Feb. 10, 2012, which was published in English, and which claims priority to Great Britain Patent Application No. GB 1102766.1, filed Feb. 17, 2011, the entirety of which are hereby incorporated by reference as if fully set forth herein.
This invention relates to shower heads.
It is well known that showering uses less water, and therefore less energy to heat the water, that bathing. Nevertheless, there are concerns about the amount of water and energy used when showering. For example, in an attempt to reduce water and energy usage, federal regulations were introduced in the USA in 1992 limiting shower head flow rate to 2.5 US gallons of water per minute (about 9.5 liters per minute), and some cities are already imposing tighter regulations. However, many people find that such a low flow rate does not provide them with a shower that feels sufficiently powerful. As reported in an article in the online Wall Street Journal dated 13 Nov. 2009, consumers often remove the flow restrictor in the shower head to increase the flow rate (and indeed the packaging provided with some shower heads includes details of how to do this). Alternatively or additionally, they install more than one shower head in their shower cubicle.
It is known that the apparent power of a shower can be improved by mixing air with the water, for example by providing a turbine in the shower head, or by forcing the water through a Venturi which draws air into the water flow.
It is also known from patent document WO2009/056887A1 that the apparent power of the shower can be further improved by pumping air at a relatively high flow rate to the shower head, forcing the air through a Venturi, and introducing water into the air flow in the Venturi.
The type of shower head disclosed in WO2009/056887A1 is shown schematically in
The arrangement disclosed in WO2009/056887A1 has many advantages over conventional showers, as detailed in WO2009/056887A1, but most importantly it has a drastically reduced water consumption and energy consumption compared with a conventional shower of the same apparent power.
The arrangement shown in
An aim of the present invention, or at least of specific embodiments of it, is to overcome this problem with the prior art.
In accordance with a first aspect of the present invention, there is provided a shower head having, in common with the shower head of WO2009/056887A1, a passageway for a flow of pressurised air from a pressurised air supply, via a Venturi having a convergent portion, throat and divergent portion, to a shower discharge opening, and a passageway for a flow of water from a water supply to a water discharge opening in the Venturi. By contrast to the shower head of WO2009/056887A1, in the shower head of the first aspect of the invention, the Venturi is such that, in use, the general direction of the flow of air is turned through a substantial angle in the Venturi. This folding of the Venturi, preferably at or adjacent its throat, and preferably though an angle of between 45° and 135°, enables a compact configuration of shower head to be provided, as will become apparent from the detailed description below.
The Venturi is preferably such that, in use, the general direction of the flow of air in the divergent portion of the Venturi is along an axis.
In one embodiment of the invention, the Venturi is such that, in use, the general direction of the flow of air in the convergent portion of the Venturi is also along an axis, but an axis which is at said substantial angle to the flow axis of the divergent portion of the Venturi. In this case, the shower head preferably includes an elongate handle having a distal end for connection to the air supply, the convergent portion of the Venturi being provided adjacent a proximal end of the handle and being substantially aligned with the handle, and the air passageway extending through the handle from the distal end of the handle to the convergent portion of the Venturi.
In another embodiment of the invention, the Venturi is such that, in use, the general direction of the flow of air in the convergent portion of the Venturi is radially or conically towards the throat of the Venturi. In a preferred form of this embodiment, the shower head includes a housing having a rear wall, a frusto-conical wall is disposed within the housing, with the frusto-conical wall tapering in a direction towards the rear wall and being spaced from the rear wall. The convergent portion of the Venturi is provided between the rear wall and the outer surface of the frusto-conical wall, and the throat of the Venturi is provided at least in part between the rear wall and the smaller diameter end of the frusto-conical wall. In a more preferred form, the divergent portion of the Venturi is defined by the inner surface of the frusto-conical wall. In this case, the air passageway preferably includes a plenum chamber upstream of the convergent portion of the Venturi. Again, the shower head preferably includes an elongate handle having a distal end for connection to the air supply, the plenum chamber being provided adjacent a proximal end of the handle; and the air passageway extending through the handle from the distal end of the handle to the plenum chamber. The plenum chamber preferably surrounds the divergent portion of the Venturi. All of these features add to the compactness of the shower head and also provide good symmetry in the shower pattern.
The water discharge opening may be disposed in the throat of the Venturi, but more preferably is disposed at or adjacent the beginning of the divergent portion of the Venturi.
The shower head preferably further includes a convergent nozzle downstream of the divergent portion of the Venturi. The nozzle can act to accelerate the droplets of water, shape the shower pattern and reduce the noise produced by the shower head.
The shower head is preferably devoid of a rose of the like adjacent the shower discharge opening.
In accordance with the second aspect of the invention, there is provided a shower apparatus comprising: a shower head according to the first aspect of the invention, an air blower, and a flexible air hose for connecting the air blower to the air passageway of the shower head. A flexible water hose is preferably also provided for connecting a water supply to the water passageway of the shower head. The water hose preferably extends to the shower head within the air hose so that the water hose is concealed.
Specific embodiments of the present invention will now be described, purely by way of example, with reference to the accompanying drawings, in which:
Referring to
In operation of the arrangement of
From a comparison of
A potential problem with the arrangement of
In the exemplary arrangement of
The air flow in the arrangement of
An embodiment of the invention in accordance with the second arrangement of
A first plastics moulding 80 generally in the form of a cylinder having one open end forms the side wall 68 and rear end wall 74. A large hole 82 is formed in the side wall 68 of the moulding 80 to receive the handle 42, and a small hole is formed in the centre of the rear end wall 74 to provide the end 60 of the water passageway. A second plastics moulding 84 provides the front end wall 70, the discharge opening 56 and the convergent nozzle 54. A third plastics moulding 86 provides the divergent portion 52 of the Venturi 48 and the frusto-conical wall 72. The first, second and third mouldings 80,84,86 are fixed together in the configuration shown in
A fourth plastics moulding 88 provides the handle 42. The moulding 88 is generally tubular to provide the air passageway 90 through the handle 42. However, the wall of the moulding 88 is thickened in one part and formed with a passageway 92 for hot water extending from the distal end 94 of the handle 42 almost to its proximal end 96, where the passageway exits outwardly through the wall of the handle 42. This proximal end 96 of the handle 42 is fixed in the hole 82 in the side wall 68 of the first moulding 80, and projects to some extent into the plenum chamber 78.
A fifth plastics moulding 98 has the form of an L-shaped channel and is fixed to the first moulding 80 so as to communicate the water passageway 92 in the handle with the end 60 of the water passageway in the Venturi 48, as shown in
A sixth plastics moulding 100 is fixed to the distal end 94 of the handle 42. The moulding 100 provides a screw thread 102 to which a coupling 104 of the air hose 44 can be connected, and a nipple 106, communicating with the water passageway 92, to which the hot-water hose 62 inside the air hose 44 can be fitted.
A third exemplary arrangement of shower head will now be described with reference to
First, the convergent portion 46 and divergent portion 52 of the Venturi 48 and the convergent nozzle 54 converge or diverge more steeply than in the first and second arrangements of
Second, a cylindrical duct portion 110 is provided between the divergent portion 52 of the Venturi 48 and the convergent nozzle 54.
Although not shown in
With any of the arrangements of
Many modifications and developments may be made to the arrangements described above.
For example, a bracket may be provided for releasably mounting the shower head 40 on a wall in a shower cubicle of above a bath, and the handle 42 may be suitably shaped for engagement with the bracket.
Although in
It should be noted that the embodiments of the invention have been described above purely by way of example and that many modifications and developments may be made thereto within the scope of the present invention
Number | Date | Country | Kind |
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1102766.1 | Feb 2011 | GB | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
---|---|---|---|---|
PCT/GB2012/050304 | 2/10/2012 | WO | 00 | 8/15/2013 |
Publishing Document | Publishing Date | Country | Kind |
---|---|---|---|
WO2012/110790 | 8/23/2012 | WO | A |
Number | Name | Date | Kind |
---|---|---|---|
2026743 | Kurtz | Jan 1936 | A |
3281864 | Linnehan | Nov 1966 | A |
3568668 | Neis | Mar 1971 | A |
3965494 | Baker | Jun 1976 | A |
4134547 | Gamst | Jan 1979 | A |
4341347 | DeVittorio | Jul 1982 | A |
4426040 | Smith | Jan 1984 | A |
8857740 | Wurz | Oct 2014 | B2 |
20070246577 | Leber | Oct 2007 | A1 |
20090166448 | Wurz | Jul 2009 | A1 |
20090202293 | Kajuch et al. | Aug 2009 | A1 |
20100252658 | Honeyands | Oct 2010 | A1 |
Number | Date | Country |
---|---|---|
201313083 | Sep 2009 | CN |
202174022 | Mar 2012 | CN |
19813366 | Oct 1998 | DE |
202011001711 | May 2011 | DE |
329157 | May 1930 | GB |
4122227 | Apr 1992 | JP |
9262512 | Oct 1997 | JP |
2000237082 | Sep 2000 | JP |
2001149252 | Jun 2001 | JP |
2002119435 | Apr 2002 | JP |
2006116518 | May 2006 | JP |
2007326082 | Dec 2007 | JP |
WO 2009056887 | May 2009 | WO |
Entry |
---|
Written Opinion of the International Searching Authority, International Application No. PCT/GB2012/050304, Completed Feb. 10, 2012, dated May 4, 2012, Authorized Officer Yorick Lostetter, European Patent Office. |
International Search Report, International Application No. PCT/GB2012/050304, Completed Apr. 24, 2012, dated May 4, 2012, Authorized Officer Yorick Lostetter, European Patent Office. |
“Lung deposition predictions of airborne particles and the emergence of contemporary diseases”, Hussain et al., theHealth 2011, vol. 2, Issue 2, pp. 51-59. |
Number | Date | Country | |
---|---|---|---|
20130320112 A1 | Dec 2013 | US |