Field of the invention
[0001] The present invention generally relates to devices for hydrotherapy and spa systems
and in particular to a device for the generation of micro bubbles in such systems.
Background
[0002] Hydrotherapy and spa systems are known including tanks, for example bathtubs for
domestic use, wherein pressurized water flows are generated by way of pumps and supplied
through suitable conduits so as to massage a user's body in order to relax muscles
and/or for therapeutic purposes. These systems are also known as hydro-massage systems.
[0003] Also known are devices for hydrotherapy systems configured to generate micro bubbles,
i.e. bubbles of micrometric size. It is known that micro bubbles have considerable
benefits for human health, particularly because they contain gases such as oxygen
and ozone, as well as oxygen ions, that are very effective to neutralize a wide variety
of toxins. More generally, micro bubbles effectively contribute to the wellness feeling
that a hydrotherapy system can usually give to users.
[0004] Patent US 8646759 B2 describes a micro bubbles generating device connectable to a bathtub. The device
comprises a pump for feeding water to a tank and a device for injecting a gas into
the water, for example air. The device is arranged downstream of the pump with respect
to a direction along which water is fed. Gas injection occurs by Venturi effect due
to the passage of the water fed to the tub, or with the aid of a pump.
[0005] The water with the gas dissolved therein are fed to the tank through a saturation
and mixing device, wherein micro bubbles are formed due to the swirling motion generated
inside it. The liquid coming out from the saturation and mixing device is fed to the
tub through a suitable pipe and a connection port.
[0006] Patent US 8505575 B2 describes a micro bubbles generating device connectable to a bathtub. Water sucked
by a pump through an inlet port is fed to two separate outlet ports, one configured
to supply pressurized water with micro bubbles, and the other one configured to supply
pressurized water only, as in a traditional whirlpool system. Micro bubbles are generated
by sucking air by Venturi effect through a valve connected to a mixer. The mixer is
arranged externally to the pump and is fed with water through a suitable pipe connected
to an inlet pipe of the pump. The water enriched with air coming out from the mixer
is fed to a relief valve to which a flow of pressurized water is also directly supplied
by the pump. Inside the relief valve water is subjected to a swirling motion, which
allows to generate micro bubbles.
[0007] A further device for the generation of micro bubbles is described in the Japanese
patent publication
JP 2011-31190 A. Also in this case, a pump draws water from a tank and feeds it to a group within
which a mixer is arranged. The mixer features a reduced cross section adapted to generate
turbulence in the flow of fluid. The device also comprises an inlet valve for the
suction of air, which is injected into the water flow through a unidirectional valve
arranged upstream of the group where the mixer is arranged. The water reaching the
mixer contains a gas that forms micro bubbles due to the turbulent flow generated
by the mixer.
[0008] The publication
US 2007/094784 A1 describes a system for a spa comprising a water flow path and an air injection port
in communication with the water flow path. An air supply system comprising an inlet
opening and an inlet valve is periodically put in fluid communication with the air
injection port. The air fed from the air supply system is fed into the water flow
path by Venturi effect.
[0010] The devices for the generation of micro bubbles known in the art and exemplified
above feature a remarkable structural complexity and thus have high manufacturing
costs.
[0011] Moreover, the devices exploiting the Venturi effect as a means to draw air into a
flow of water require delicate tuning operations in order to establish a pressure
gradient allowing to ensure air suction during operation of a hydrotherapy system.
Summary of the invention
[0012] There is therefore a need to simplify the devices for tub from a structural point
of view, which is an object of the present invention. Said object is achieved with
a device for the generation of micro bubbles whose main features are specified in
the first claim, while other features are specified in the remaining claims.
[0013] An idea of solution underlying the invention is to generate micro bubbles without
resorting to mixers or special valves nor by exploiting the Venturi effect. To this
aim, the device according to the invention comprises a first pump comprising a multistage
pumping unit and a second pump configured to generate a flow of air and to feed it
into the multistage pumping unit of the first pump through a suitable conduit.
[0014] More particularly, the conduit of the second pump is connected to a first stage of
the multistage pumping unit having a minimum head, whereby air is mixed with the water
sucked by the pumping unit along the flow path leading to a stage of maximum head
of the multistage pumping unit. A plurality of micro bubbles are thus generated inside
the multistage pumping unit due to the swirling motion generated by its impellers.
[0015] The water flow coming out from the stage of the pumping unit having the maximum head
is thus enriched with micro bubbles and is supplied to a tank. In other words, micro
bubbles are generated by pumping air directly into the pump supplying water, in particular
into its multistage pumping unit, which is exploited as a mixing and homogenization
means. This configuration is different from that of the devices known in the art,
which generally exploit the Venturi effect by way of fittings and/or valves arranged
upstream or downstream of a pump.
[0016] The main advantage offered by the invention is to provide a device for the generation
of micro bubbles whose structure is simple and cheap because no external mixing device
is employed. Differently, thanks to the use of a second pump for the generation of
an air flow, the pump supplying water to a tank is also used to generate micro bubbles
and homogenize them with the water.
[0017] The second pump may advantageously be a diaphragm pump, or an equivalent thereof,
which features a simple structure and has low maintenance requirements. This type
of pump is very cheap thereby having a minimum impact on the overall costs of the
device according to the invention.
[0018] The configuration of the device according to the invention is therefore simple and
robust thanks to the presence of a limited number of components, and extremely cheap.
[0019] According to an embodiment of the invention, the device for the generation of micro
bubbles may advantageously comprise a control system configured to manage operation
of the second pump in an intermittent manner. This feature of the invention allows
to avoid an excessive accumulation of air within the multistage pumping unit, which
would prevent the correct operation of the pump.
[0020] According to a further embodiment of the invention, a discharge pipe of the device
may advantageously be provided with a flow control valve, for example a throttling
sleeve or a ball valve, which serves to reduce the water flow rate downstream of the
stage of maximum head of the multistage pumping unit, thereby causing a pressure increase
inside it and promoting the swirling motions in order to enhance generation of micro
bubbles.
[0021] Further advantages and features of the present invention will become clear from the
following detailed description of embodiments thereof, given by way of nonlimiting
example.
Brief description of the drawings
[0022] Reference will be made to the figures of the accompanying drawings, wherein figure
1 is a side view that schematically shows a device for the generation of micro bubbles
according to the invention.
Detailed description of preferred embodiments of the invention
[0023] Referring to figure 1, a device for the generation of micro bubbles according to
the invention it is indicated in general by reference number 100 and is schematically
shown with respect to a reference system V, L. In this reference system a vertical
direction V represents the direction along which gravity acts and a longitudinal direction
L, perpendicular to the vertical direction V, represents the direction along which
conduits of the device 100 mainly extend.
[0024] The device 100 comprises a first pump 110 in turn comprising a multistage pumping
unit 111, for example comprising centrifugal impellers, and a motor 112 to which the
multistage pumping unit 111 is operatively connected.
[0025] At least one suction pipe 120 is connected to the multistage pumping unit 111. In
an operative configuration of the device 100 the suction pipe 120 for example extends
in the longitudinal direction L and is connected to a tank 200, for example a bathtub,
that is only partially and schematically shown in figure 1. The suction pipe 120 is
connected to the tank 200 through a first port 210.
[0026] At least one discharge pipe 130 is also connected to the multistage pumping unit
111. In an operative configuration of the device 100 the discharge pipe 130 for example
extends in the longitudinal direction L and is connected to the tank 200 at a second
port 220.
[0027] The suction pipe 120 and the discharge pipe 130 are respectively connected in a known
manner to a first stage 111a of the multistage pumping unit 111 having a minimum head,
as well as to a stage 111b of the multistage pumping unit 111 having a maximum head.
[0028] More particularly, as shown in figure 1, the stage 111a having a minimum head is
arranged at a free end of the multistage pumping unit 111 in the longitudinal direction
L, whereas the stage 111b of the multistage pumping unit 111 having a maximum head
is adj acent to the motor 112 of the pump 110.
[0029] The first and the second ports 210, 220 are arranged close to the bottom of the tank
200, thereby ensuring water suction and supply of a water stream with micro bubbles
even when the tank is not completely full.
[0030] The device 100 and the tank 200 so connected together define a hydrotherapy system.
[0031] It will be appreciated that the operational configuration of the hydrotherapy system
disclosed above allows a recirculation of water already present in the tank 200. Alternatively,
the suction pipe 120 connected to the multistage pumping unit 111 may be in turn connected
to the mains so as to allow filling of the tank 200. Moreover, additional suction
pipes might also be connected between the multistage pumping unit 111 and the tank
200 through suitable valve systems and hydraulic fittings.
[0032] According to the invention, the device 100 for the generation of micro bubbles further
comprises a second pump 140 configured to supply a flow of air. The device 100 also
comprises a supply conduit 141 connected at one end to an outlet of the second pump
140 and at the opposite end to the first stage 111a of minimum prevalence of multistage
pumping unit 111 of the first pump 110. The second pump 140 may for example be a membrane
type pump, that features a particularly simple and cheap structure, or an equivalent
thereof.
[0033] The flow of air fed by the second pump 140 to the first stage 111a of the multistage
pumping unit 111 is mixed with the water coming from the suction pipe 120 and, as
a result of the swirling motion caused by the impellers of the multistage pumping
unit 111, micro bubbles are progressively generated. The micro bubbles are discharged
together with the water from the stage 111b of maximum head of the multistage pumping
unit 111 and flow through the discharge pipe 130.
[0034] In other words, the connection of the supply conduit 141 of the second pump 140 to
the multistage pumping unit 111 allows to exploit the entire water path inside it
for the generation of micro bubbles.
[0035] According to an embodiment of the invention, the discharge pipe 130 is advantageously
provided with a flow adjusting means 131, for example a throttling sleeve or a ball
valve, which serves to reduce the water flow rate coming out from the stage 111b of
maximum head of the multistage pumping unit 111, thereby causing a pressure increase
inside it. This enhances the generation of micro bubbles.
[0036] According to an embodiment of the invention, the device for the generation of micro
bubbles may advantageously comprise a control system (not shown) configured to manage
operation of the second pump 140 intermittently. This feature of the invention allows
to avoid accumulation of air in the multistage pumping unit, which would penalize
the correct operation of the pump.
[0037] During operation of the device 100, the pump 140 is cyclically activated for a first
predetermined time, for example 2 minutes, and then turned off for a second predetermined
period of time, for example 30 seconds. Possible excess air within the multistage
pumping unit 111 can thus be effectively discharged.
[0038] According to an embodiment of the invention, the conduit 141 of the second pump 140
for feeding the air flow to the pumping unit 111 is advantageously provided with flow
intercepting means configured to prevent entry of water into the second pump 140 should
water leak out from the multistage pumping group 111.
[0039] Such flow intercepting means can be formed in a simple and economic manner by a siphon
142 arranged above the multistage pumping unit 111 with respect to a vertical direction
V.
[0040] Alternatively, the supply conduit 141 a one-way valve may be installed, the one-way
valve being arranged so as to allow a fluid flow, i.e. an air flow, only from the
second pump 140 to the multistage pumping unit 111.
[0041] As shown in figure 1, the suction pipe 120 is connected to the multistage pumping
unit 111 at a lower portion thereof with respect to the vertical direction V, thus
allowing to drain by gravity residual water present in the pumping unit 111 of the
pump 110 at the end of an operating cycle of the hydrotherapy system, for example
when the tank 200 is empty in the operational configuration illustrated.
[0042] Furthermore, in an operative configuration of the hydrotherapy system, such as that
shown in figure 1, and with reference to the vertical direction V, the multistage
pumping unit 111 is arranged higher than the port 210 connecting the suction pipe
120 to the tank 200. In this way the suction pipe 120 connected to the tank 200 in
the longitudinal direction L is slightly inclined downwards in the vertical direction
V, thereby allowing to discharge by gravity residual water from the first pump 110
to the tank 200 after it has been emptied, thus allowing complete drain of the first
pump 110.
[0043] In the alternative embodiment of the invention shown in figure 2, the device 100
comprises the same components, the only difference being that the stage 111a having
a minimum head of the multistage pumping unit 111 is arranged adjacent to the motor
112 of the pump 110, whereas the stage 111b having a maximum head is arranged at a
free end of the multistage pumping unit 111 in the longitudinal direction L.
[0044] The invention has hereto been disclosed with reference to preferred embodiments thereof.
It will be appreciated that there may be further embodiments based on the same inventive
idea as defined by the scope of protection of the claims set out below.
1. A device (100) for generating micro bubbles in a hydrotherapy system, said device
(100) comprising:
i) a first pump (110) comprising a multistage pumping unit (111) and a motor (112)
operatively connected thereto,
ii) at least one intake pipe (120) intended to be connected to a water supply;
iii) at least one discharge pipe (130) intended to be connected to a tub (200) of
a hydrotherapy system;
the device being
characterized by further comprising:
iv) a second pump (140) configured to generate an air flow;
v) a supply conduit (141) for supplying said air flow, wherein said supply conduit
(141) is connected at one end to an outlet of the pump (140) and at the opposite end
to a first stage (111a) of said multistage pumping unit (111) of said first pump (110),
said first stage (111a) featuring a minimum head within the multistage pumping unit
(111).
2. A device (100) according to claim 1, wherein said second pump is a diaphragm type
pump.
3. A device (100) according to claim 1 or 2, wherein said discharge pipe (130) comprises
a flow intercepting and regulating member (131).
4. A device (100) according to any one of claims 1 to 3, wherein the supply conduit (141)
for feeding the air flow comprises flow intercepting means configured to prevent entry
of water into the second pump (140).
5. A device (100) according to claim 4, wherein said flow intercepting means consist
of a siphon (142), said siphon (142) being arranged above the pumping unit (111) of
the first pump (110) with respect to a vertical direction (V).
6. A hydrotherapy system, said hydrotherapy system comprising a device (100) for the
generation of micro bubbles according to any one of claims 1 to 5 and a tub (200),
wherein said device (100) is connected to said tub (200) via at least one intake pipe
(120) and at least one discharge pipe (130).
7. A hydrotherapy system according to the preceding claim, wherein, with reference to
a vertical direction (V), a pumping unit (111) of the device (100) for the generation
of micro bubbles is arranged higher than a nozzle (210) connecting said intake pipe
(120) to the tub (200).
Amended claims in accordance with Rule 137(2) EPC.
1. A device (100) for generating micro bubbles in a hydrotherapy system, said device
(100) comprising:
i) a first pump (110) comprising a multistage pumping unit (111) and a motor (112)
operatively connected thereto,
ii) at least one suction pipe (120) intended to be connected to a water supply;
iii) at least one discharge pipe (130) intended to be connected to a tub (200) of
a hydrotherapy system;
wherein said suction pipe (120) and said discharge pipe (130) are respectively connected
to a first stage (111a) of said multistage pumping unit (111) having a minimum head,
and to a second stage (111b) of the multistage pumping unit (111) having a maximum
head,
the device being
characterized by further comprising:
iv) a second pump (140) configured to generate an air flow;
v) a supply conduit (141) for supplying said air flow, wherein said supply conduit
(141) is connected at one end to an outlet of the second pump (140) and at the opposite
end to said first stage (111a) of the multistage pumping unit (111) of said first
pump (110), whereby air is mixed with the water sucked by the multistage pumping unit
(111) along the flow path leading to its stage (111b) of maximum head and micro bubbles
are generated and discharged together with the water through the discharge pipe (130).
2. A device (100) according to claim 1, wherein said second pump (140) is a diaphragm
type pump.
3. A device (100) according to claim 1 or 2, wherein said discharge pipe (130) comprises
a flow intercepting and regulating member (131).
4. A device (100) according to any one of claims 1 to 3, wherein the supply conduit (141)
for feeding the air flow comprises flow intercepting means configured to prevent entry
of water into the second pump (140).
5. A device (100) according to claim 4, wherein said flow intercepting means consist
of a siphon (142), said siphon (142) being arranged above the pumping unit (111) of
the first pump (110) with respect to a vertical direction (V).
6. A hydrotherapy system, said hydrotherapy system comprising a device (100) for the
generation of micro bubbles according to any one of claims 1 to 5 and a tub (200),
wherein said device (100) is connected to said tub (200) via at least one suction
pipe (120) and at least one discharge pipe (130).
7. A hydrotherapy system according to the preceding claim, wherein, with reference to
a vertical direction (V), a pumping unit (111) of the device (100) for the generation
of micro bubbles is arranged higher than a nozzle (210) connecting said suction pipe
(120) to the tub (200).