The present invention relates to a water vehicle enabling movement on or under water. It in particular, but not exclusively, relates to a water vehicle preferably propelled by human force, allowing users to be positioned below or above the surface.
It is known that small underwater vehicles exist, propelled by a motor and/or action on a pedal and gear mechanism, comprising a closed receptacle and capable of moving independently at shallow depths. Nevertheless, this type of vehicle is specifically designed for movement under the water at an average depth generally between 15 and 30 m, which requires:
The present invention therefore first aims to eliminate these drawbacks.
To that end, it proposes a water vehicle moving on or in a liquid, which comprises float means connected by connecting means to a support, characterized in that said connecting means are configured so as to allow said support to assume at least two positions, i.e.:
Preferably, said support can assume at least two positions, i.e.:
Preferably, the float means are made up of two substantially parallel floats having sufficient spacing to allow the support to extend in the space thus formed, the longitudinal axis of the support being substantially parallel to that of the floats.
Preferably, the support comprises at least one location allowing at least one passenger to settle therein.
The water vehicle according to the invention includes:
Furthermore, the water vehicle according to the invention can also comprise breathing means, which may comprise at least one pressure reducer or a snorkel tip with or without a valve, connected by at least one flexible hose to at least one opening formed in the portion of the structure of said water vehicle that remains on the surface, said opening emerging in the open air.
According to one alternative embodiment of the invention, said snorkel can be connected to a compressor—pressure reducer system associated with a valve that makes it possible, when open, to reduce the pressure of the air supplied by said system when the latter is greater than the pressure of the ambient air.
In this way, in the lowered position, each user present in the completely submerged support can breathe by using a pressure reducer or an elongated snorkel, positioned in the mouth beforehand.
Advantageously, users of the device according to the invention can thus go to the “dive” site while remaining on the surface and order the submersion of said support after arriving at the vertical of the area to be explored, the device according to the invention thus having multiple uses.
According to one alternative embodiment of the invention, said connecting means can be configured so as to allow said support to assume at least one intermediate position so as, for example, to be partially submerged, the passengers thus being able to have their legs underwater and the upper part of the body above the surface.
Furthermore, the water vehicle according to the invention comprises steering means that may consist of the least one handlebar connected to a rudder.
According to one alternative embodiment of the invention, the support of the water vehicle can include a closed receptacle comprising at least one porthole.
One embodiment of the invention will be described below, as a non-limiting example, in reference to the appended drawings, in which:
In this example, as shown in particular in
These two floats 1 are connected to one another by connecting means 2 that may consist of at least one cross tie 2 connected at each of its ends to the upper portion of the corresponding float 1, each cross tie 2 being able to be substantially hoop-shaped.
In the case at hand, the water vehicle according to the invention includes two substantially parallel cross ties 2 of the aforementioned type. In this way, the assembly formed by the floats 1 and the cross ties 2 is substantially in the shape of the lower structure of a catamaran.
The floats 1 can be rigid, semi-rigid or inflatable.
The volume of air comprised in the floats 1, when they are inflatable, can be adapted as a function of the submerged or emerged state of the support 3. In this way, as an example, when the support 3 is submerged, the floats 1 can be partially filled with air, the complete inflation of the floats 1 being able to be performed by an air pump (not shown) actuated using a pedal and gear mechanism 9 and/or a motor after emersion of the support 3, which facilitates forward motion of the water vehicle during surface movements.
As shown in
This support 3, which is intended to be submerged and emerged, is preferably configured aerodynamically and in such a way as to offer little water resistance.
In the case at hand, the support 3 comprises, on the upper surface thereof, two locations 4 making it possible to place two passengers, each of said locations comprising a seat 4. As shown in
As shown in
As shown in
As an example, said connecting means 6 can include rigid elements such as rods and/or tubes and/or bars, and/or flexible elements such as belts and/or ropes and/or chains and/or cables whereof the respective ends are connected to the float means 1 and the support 3, said connecting means 6 then being able to cooperate with gear mechanisms (not shown) when they are rigid, or to wind around pulleys (not shown) when they are flexible. Thus, by controlling the translation of said rods 6 and/or the winding or unwinding of said belts 6, the support 3 can be provided in the raised position or lowered position.
The water vehicle according to the invention can comprise control means allowing passengers to control the raising or lowering of said support 3, said control means, which comprise force reduction gear mechanisms, in particular being able to consist of:
Advantageously, said control means make it possible to control the submersion depth of the support 3, the latter generally being able to be between a meter and a meter and a half.
Advantageously, the force reduction gear mechanisms included in the control means make it possible to facilitate the raising and lowering of said support 3. In this way, for example using the gearbox, the user can select a relatively low gear reduction when the support 3 is underwater, and a relatively high gear reduction when the support 3 is above water, which makes it possible to limit the necessary forces.
The water vehicle according to the invention also comprises fastening means (not shown) that make it possible to fasten the support 3 to the float means 1 and/or to the cross ties 2 when said support 3 is in the raised position, said fastening means thus making it possible to keep the support 3 in position relative to the float means 1. These fastening means can for example consist of hooks or straps.
According to one alternative embodiment of the invention, the support 3 can be separated from the float means 1 so as to allow independent underwater movement of the latter part 3. In that case, the water vehicle according to the invention comprises disconnectable fastening means (not shown) that may for example consist of a spring hook—fastening ring assembly respectively connected to the ends of the connecting means 6, and to the support 3 and/or the float means 1.
Preferably, the support 3 can include at least one compartment (not shown) provided with at least one opening enabling filling with seawater when the support 3 is submerged, said compartment, which may be associated with a pump, thus constituting a ballast.
The water vehicle according to the invention also includes propulsion means preferably made up of a pedal and gear 9—transmission means—propeller 11 assembly and/or a motor—transmission means—propeller 11 assembly.
Thus, as shown in
The pedal and gear mechanisms 9 are of course provided so as to allow users seated on said seats 4 to be able to pedal.
Preferably, the seat 4—pedal and gear mechanism 9 assembly can be inclined so as to allow said pedal and gear mechanism 9 to be more easily provided above the surface when the support 3 is above water, the height of the pedal and gear mechanism 9 preferably being adjustable.
According to one alternative embodiment of the invention (not shown), irrespective of whether it includes pedal and gear mechanisms, the water vehicle may include two propellers of the aforementioned type, oriented in opposite directions, one being positioned in front and the other in back.
Preferably, each propeller 11 is pivotable, and provided under the main body of the support 3 so as to remain under water even when the support 3 is in the raised position. According to one alternative embodiment of the invention, the height positioning of each propeller 11 can be controlled so that the propeller 11 remains in the water when the support 3 is on the surface, and is in the axis of the support 3 when the latter is submerged.
According to one alternative embodiment the invention, as shown in
The support 3 of the water vehicle according to the invention can comprise a gearbox (not shown) allowing users to select the speeds, and to thereby adapt the forces to be provided as a function of the condition of the sea.
According to one alternative embodiment of the invention, the propulsion means can be made up of the motor (not shown) driving, owing to the transmission means, at least one propeller, the motor possibly being a heat or electric engine. These propulsion means may also consist of a water jet propulsion system such as a hydrojet.
Preferably, the water vehicle according to the invention can comprise at least one electric motor in each float 1, each of which can be associated with a set of rechargeable batteries, preferably by means of a unit comprising a 12 V generator.
Advantageously, the propulsion means can comprise both at least one pedal and gear mechanism 9 and a motor that makes it possible to ease or reduce the force necessary to move the water vehicle.
The water vehicle according to the invention may also comprise photovoltaic panels (not shown) preferably provided on the float means 1, which in particular make it possible to power the electric motor.
According to another alternative embodiment of the invention, the water vehicle according to the invention may comprise at least one compressor, preferably electric (not shown), potentially associated with a pump, making it possible to compress the air, which can be suctioned on the surface by peddling. In this way, a controlled discharge of a flow of air makes it possible to propel the water vehicle.
Advantageously, this compressor can serve as an air tank allowing users, by means of pressure reducers 14 or elongated snorkels, to breathe while submerged.
The water vehicle according to the invention can also include a compressor of the aforementioned type making it possible to inflate said floats when the latter are flexible.
Furthermore, the water vehicle according to the invention include steering means that may consist of at least one handlebar 15, provided on the upper surface of the support 3, connected by transmission means (not shown) to at least one rudder extending under the support 3, and placed in front of or behind the water vehicle.
According to one alternative embodiment of the invention, said propellers 11 may be steerable and include a protuberance 16 comparable to a rudder blade.
Advantageously, the support 3 can also comprise, on the upper surface thereof, at least one support means constituting a wrist rest 17, serving as support for the hands of the passenger situated at the back.
In order to guarantee good visibility while submerged, the water vehicle may include a periscope (not shown) and/or a diving compass (not shown). Nevertheless, in most cases, users may see what is happening on the surface by standing up.
Advantageously, the support 3 may include at least one compartment (not shown) in which a ballast, for example consisting of sounding leads, may be provided, said compartment being provided and formed so as to guarantee the balance of the assembly even when it is full.
Furthermore, in order to ensure balance of the users underwater, the latter may:
Furthermore, the water vehicle according to the invention can also comprise breathing means that may include at least one pressure reducer 14 or an elongated snorkel, connected by at least one flexible hose 22 to at least one opening 23 formed in the part of the structure of said water vehicle that remains on the surface, said opening 23 emerging in the open air.
The flexible hoses 22 preferably have a length substantially equal to 15 m, which advantageously makes it possible to move in a relatively large area around the submerged support 3.
Advantageously, due to the low pressures to which it will be subjected, the structure of the pressure reducer 14 may be simplified, and may be configured to make it possible to expel the exhaled gases into the water and not into the breathing system.
As shown in
The openings 23 can be formed in the float means 1 and configured so as to be able to provide a tip therein comprising, at the apex thereof, a means making it possible to prevent water from becoming inserted therein, such as a valve or a protuberance in the form of a dome or funnel.
Said tip, which is similar to a vent, is preferably made from a slightly flexible plastic material.
According to one preferred embodiment of the invention, as shown in
Advantageously, the tips 25 can be secured by screwing and unscrewing, which makes it possible to empty them and clean them easily.
According to one alternative embodiment of the invention, as shown in
The water vehicle according to one alternative embodiment of the invention may also include at least one of the following elements:
According to one alternative embodiment of the invention, as shown in
Each float 1 may include at least one portion constituting a ballast. Preferably, each float 1 includes a central portion constituting a ballast as well as a front portion and a back portion provided on either side of the central portion.
The water vehicle according to this alternative embodiment of the invention may also comprise a rail (not shown) made up of a raised ramp relative to the floats 1, and fastened to itself. This rail, which is provided above the cradle 3, is connected to the front and rear portions of the floats 1 by four arms (not shown) each extending from one of the corners of the rail that preferably delimits a rectangular surface.
The support 3 according to this alternative embodiment of the invention is provided with no pedal and gear mechanisms and is substantially in the shape of a cradle that may comprise:
In order to ensure the raising and lowering of the cradle 3, the water vehicle according to this alternative embodiment of the invention may include means such as:
said means being connected, at one end thereof, to any part of the water vehicle remaining above water.
Advantageously, in order to optimize the stability of the cradle 3 underwater, the water vehicle according to this alternative embodiment of the invention may comprise folding or telescoping arms 100, which are fully deployed when the cradle is completely above water, said arms being connected on the one hand to the floats 1 and/or to any portion of the water vehicle that remains above water, and on the other hand to the cradle 3.
The water vehicle according to this alternative embodiment of the invention may also include two surface bridges (not shown), stationary, preferably made up of grids, provided between the floats 1, in front of and behind the above-water cradle 3, said bridges for example making it possible to move around, store equipment, etc.
The water vehicle according to this alternative embodiment of the invention may also comprise breathing means that may include at least one pressure reducer or an elongated snorkel connected by at least one flexible hose to at least one opening formed in the portion of the structure of said water vehicle that remains on the surface, said opening emerging in the open air.
Number | Date | Country | Kind |
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0904942 | Oct 2009 | FR | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/FR2010/000684 | 10/14/2010 | WO | 00 | 5/22/2012 |