FLOTATION DEVICE FOR USE IN WATER RECREATION
A recreational water flotation device includes a central body defining an upper surface and a bottom surface and having a front and a rear. A left lateral element extends from a left end of the central body and defines a left canted surface canted toward the central body and further defines a left end of said flotation device. A right lateral element extends from a right end of the central body and defines a left canted surface canted toward the central body and further defining a right end of the flotation device. A propulsion unit is mounted to the bottom surface of the central body. The device is buoyant in water. Preferably, the central body, the left lateral element, the said right lateral element are fabricated of a material buoyant in water.
The present invention claims the benefit of co-pending U.S. Provisional Patent Application Ser. No. 61/931,119, filed Jan. 1, 2014, which is incorporated herein in its entirety.
FIELD OF THE INVENTIONThe present invention relates to a personalized recreational watercraft and method of use, and more particularly, to a watercraft offering stability and balance in both hydrostatic and hydrodynamic conditions.
BACKGROUND OF THE INVENTIONConventional types of personalized watercraft like surf boards require the presence of moving water to balance the surf board while a user stands on it. Typical surf boards are designed for movement by waves, requiring hydrodynamic conditions to support the surf board and inhibit rotation. The surf board has a high tendency to rotate when a user stands on it in calm waters. Accordingly, in calm waters, the surf board will rotate when standing on it, leading to a loss of balance and an overturn of the surf board.
Accordingly, there remains a need in the art for a watercraft that offers stability and user balance when deployed in hydrostatic conditions, without compromising the effectiveness of the watercraft in hydrodynamic conditions.
SUMMARY OF THE INVENTIONThe present invention overcomes the deficiencies of the known art and the problems that remain unsolved by providing a watercraft that features stability and balance in both hydrostatic and hydrodynamic conditions, and supports the capability of a user to self-propel the watercraft even in hydrostatic conditions.
The present disclosure is generally directed to a recreational water flotation device includes a central body defining an upper surface and a bottom surface and having a front and a rear. A left lateral element extends from a left end of the central body and defines a left canted surface canted toward the central body and further defines a left end of said flotation device. A right lateral element extends from a right end of the central body and defines a right canted surface canted toward the central body and further defining a right end of the flotation device. A propulsion unit is mounted to the bottom surface of the central body. The device is buoyant in water; for instance, the central body, the left lateral element, and the right lateral element are fabricated of a material buoyant in water.
In another aspect, the central body, the left lateral element, and the right lateral element are formed of a single homogenous body.
In still another aspect, a left side of the left lateral element and a right side of the right lateral element define a width of the flotation device, and the front end and rear end of the central body define a length of the flotation device wherein the width is greater than the length.
In yet another aspect, the left lateral side and the right lateral side have an arcuately convex peripheral shape, the front end and the rear end have an arcuately convex peripheral shape, and the peripheral areas connecting in adjacent ones of the left lateral side, front and, right lateral side, and rear end are arcuately concave.
In a still further aspect, the flotation device further includes a left rear fin and a right rear fin where in each fin is arcuately concave and protrudes from the bottom surface of the central body at a rear periphery thereof
In another aspect, the flotation device further includes a front fin extending along a front edge of the central body and further extending between the left lateral element and the right lateral element. The front fin and the front edge defining surface angled toward the rear for providing a smooth flow of water thereover.
In another aspect, the propulsion unit is at least partially rotatable with respect to the central body.
In a still further aspect, the flotation device further includes a bottom mount affixed to the bottom surface of the central body and includes an outer tube in fixed relation to the central body and an inner tube within the fixed outer tube that is at least partially rotatable with respect to the outer tube. The propulsion unit is attached to the inner tube.
In yet another aspect, the outer tube at least partially defines a forwardly oriented opening therethrough and the inner tube has attached thereto a transverse tube extending forwardly from the inner tube through the opening. A horizontal cross tube is attached to a distal forward end of the transverse tube. A bottom bracket is affixed to the cross tube. The propulsion unit includes a propeller mounted in a propeller mount, wherein the bottom bracket retains the propeller mount thereto.
In another aspect, the flotation device further includes vertical stop bars affixed to the fixed outer tube. The vertical stop bars define the left and right boundaries of the opening for limiting the rotation of the inner tube with respect to the outer tube.
In still another aspect, the device further includes a weight, wherein the weight and the propulsion unit are interchangeably mountable to the central body.
In yet another aspect, a recreational water flotation device includes a central body having an upper surface and a bottom surface and having a front and a rear. A left lateral element extends from a left end of the central body and defines a left canted surface which is canted toward the central body. The left lateral element defining a left end of the flotation device. A right lateral element extends from a right end of the central body and defines a right canted surface which is canted toward the central body. The right lateral element defines a right end of the flotation device. A propulsion unit is mounted to the bottom surface of the central body and is at least partially rotatable with respect to the central body. The device is buoyant in water; for instance, the central body, the left lateral element, and the right lateral element are fabricated of a single homogenous body of material buoyant in water.
In another aspect, the left lateral side and the right lateral side have an arcuately convex peripheral shape and the front end and rear and have an arcuately convex peripheral shape. The peripheral areas connecting adjacent ones of the left lateral side the front end the right lateral side and the rear end are arcuately concave.
In still another aspect, the flotation device includes a left rear fin and a right rear fin, where in each fin is arcuately concave and protrudes from the bottom surface of the central body at a rear periphery thereof.
In yet another aspect, the flotation device further includes a front fin extending along a front edge of the central body and further extending between the left lateral element and the right lateral element wherein the front fin and the front edge defining a surface angled toward the rear for providing a smooth flow of water thereover.
In a still further aspect, the flotation device further includes a bottom mount affixed to the bottom surface of the central body. The bottom mount includes an outer tube in fixed relation to the central body and an inner tube within the fixed outer tube which is at least partially rotatable with respect to the outer tube. The propulsion unit is attached to the inner tube.
In another aspect, a recreational water flotation device includes a central body defining an upper surface and a bottom surface and has an arcuately convex front end and an arcuately convex rear end. A left lateral element has a convexly arcuate left lateral side and extends from a left end of the central body. The left lateral element defines a left canted surface which is canted toward the central body. A right lateral element has a convexly arcuate right lateral side and extends from a right end of the central body. The right lateral element defines a right canted surface which is canted toward the central body and further defines a right end of the flotation device. The peripheral areas connecting adjacent ones of the left lateral side, front end, right lateral side, and rear end are arcuately concave. A front fin extends along at least a front edge of the central body. The front fin and the front edge define a surface which is angled toward the rear for providing a smooth flow of water thereover. A left rear fin and a right rear fin are arcuately concave and protrude from the bottom surface of the central body at a rear periphery thereof. A propulsion unit is mounted to the bottom surface of the central body and is at least partially rotatable with respect to the central body. The device is buoyant in water; for instance, the central body, the left lateral element, and the right lateral element are fabricated of a single homogenous body of material buoyant in water.
In another aspect, the flotation device further includes a bottom mount affixed to the bottom surface of the central body and includes an outer tube in fixed relation to the central body and inner tube within the fixed outer tube. The inner tube is at least partially rotatable with respect to the outer tube and the propulsion unit is attached to the inner tube.
In a still further aspect, the outer tube at least partially defines a forwardly oriented opening therethrough. The inner tube has attached thereto a transverse tube extending forwardly therefrom and through the opening. A horizontal cross tube is attached to a distal forward end of the transverse tube and a bottom bracket is affixed to the cross tube. The propulsion unit includes a propeller mounted in a propeller mount wherein the bottom bracket retains the propeller mount thereto.
In yet another aspect, the device further includes left and right stops affixed to the fixed outer tube and defining the left and right boundaries of the opening for limiting the rotation of the inner tube with respect to the outer tube.
These and other aspects, features, and advantages of the present invention will become more readily apparent from the attached drawings and the detailed description of the preferred embodiments, which follow.
The preferred embodiments of the invention will hereinafter be described in conjunction with the appended drawings provided to illustrate and not to limit the invention, in which:
Like reference numerals refer to like parts throughout the several views of the drawings.
DETAILED DESCRIPTIONThe following detailed description is merely exemplary in nature and is not intended to limit the described embodiments or the application and uses of the described embodiments. As used herein, the word “exemplary” or “illustrative” means “serving as an example, instance, or illustration.” Any implementation described herein as “exemplary” or “illustrative” is not necessarily to be construed as preferred or advantageous over other implementations. All of the implementations described below are exemplary implementations provided to enable persons skilled in the art to make or use the embodiments of the disclosure and are not intended to limit the scope of the disclosure, which is defined by the claims. For purposes of description herein, the terms “upper”, “lower”, “left”, “rear”, “right”, “front”, “vertical”, “horizontal”, and derivatives thereof shall be used to describe the invention in accordance with their common meaning. Furthermore, there is no intention to be bound by any expressed or implied theory presented in the preceding technical field, background, brief summary or the following detailed description. It is also to be understood that the specific devices and processes illustrated in the attached drawings, and described in the following specification, are simply exemplary embodiments of the inventive concepts defined in the appended claims. Hence, specific dimensions and other physical characteristics relating to the embodiments disclosed herein are not to be considered as limiting, unless the claims expressly state otherwise.
A water board 100 is presented in various configurations in the illustrations of
In its assembled form, water board 100 includes a dorsal or upper side 110 at upper layer 102, a ventral or lower side 112 at lower layer 108, a left lateral side 118, and a right lateral side 120. The dorsal side 110 defines a location where a user is situated in an operating position, such as a stand-up position while navigating the water board 100 through water. The user mounts and rides the water board 100 at the dorsal side 110. The ventral side 112 defines a location where the water board 100 is placed on or contacts the water. Water board 100 further includes a front, forward or anterior end 114 and a back, rearward or posterior end 116. The front end 114 serves as the nose section that defines the leading edge of water board 100 as the water board 100 travels through water. The rear end 116 serves as the tail section that defines the trailing edge of water board 100 as the water board 100 travels through the water. During operation, the user faces in the direction of the front end 114. The front end 114 and the rear end 116 define a longitudinal axis of the water board 100, while the left lateral side 118 and the right lateral side 120 define a lateral axis of the water board 100.
The assembled form of water board 100 has a generally diamond-shaped construction in plan view, preferably modified to include rounded vertices and curved sides. In an exemplary form, the water board 100 includes generally convex corners and generally concave sides. The water board 100 is preferably asymmetric along its longitudinal and lateral axes, such that the water board 100 is wider along its lateral (side-to-side) axis than along its longitudinal (front-to-back) axis. This asymmetry produces a generally oblong shape to the water board 100. One benefit of this axial asymmetry is that it produces a low turning moment about the longitudinal axis, resulting in a high resistance to rotation about the longitudinal axis. This asymmetry likewise produces a more stable platform or deck for the user to stand on and maneuver the water board 100. The geometry of the water board 100 is suitably chosen to present an underside surface area contacting the water that is sufficient to sustain the weight of an individual in water, while also inhibiting any rotation about the longitudinal axis to provide stability, especially in a resting (non-moving) state.
The water board 100 of the present embodiment has both hydrostatic and hydrodynamic flotation properties. At rest or in hydrostatic conditions, the water board 100 is very stable and permits the user to stand in an upright position without the risk of capsizing the water board 100. The asymmetry of water board 100 creates a very small turning moment about the longitudinal (front-to-back) axis, making it very difficult for the water board 100 to rotate about the longitudinal axis and capsize the water board 100. In hydrodynamic conditions, the water board 100 can readily move through water in a surfing-style travel that rides along the water surface.
The exemplary shape and geometry of the water board 100 is implemented by a suitable construction of the individual layers 102, 104, 106, and 108. As depicted in
The upper layer 102 further includes a front right edge or side 140 connecting the front corner 130 and the right side corner 136; a front left edge or side 142 connecting the front corner 130 and the left side corner 134; a right rear edge or side 144 connecting the rear corner 132 and the right side corner 136; and a left rear edge or side 146 connecting the rear corner 132 and the left side corner 134. The sides 140, 142, 144, and 146 are preferably curved in a concave shape. This concave geometry promotes smooth water flow along the periphery or boundary of water board 100 as the water board 100 travels through water.
The geometry and shape of the main body layer 104, the mid layer 106, and the lower layer 108 are similar to that of upper layer 102. Accordingly, once the upper layer 102, the main body layer 104, the mid layer 106, and the lower layer 108 are integrated together into a stacked configuration to produce the final assembled form of water board 100, the overall geometry of water board 100 is generally uniform throughout the layers 102, 104, 106, and 108. Various modifications to the geometry of the water board 100 can be made, however. For example, in order to promote greater hydrodynamic water flow at the front end 114 of water board 100, the layers 102, 104, 106, and 108 can be formed with progressively smaller sizes, while each still retains the same general shape. The upper layer 102 would have the largest size and the subsequent layers 104, 106, and 108 underneath it would be progressively smaller. The result would be a terraced-type profile. The scale factor used to create the different-sized layers 102, 104, 106, and 108 can be suitably selected to promote desired hydrodynamic flow patterns along and around the water board 100.
In an exemplary form, the lateral dimension extending between the left side corner 134 and the right side corner 136 is longer than the longitudinal dimension extending between the front corner 130 and the rear corner 132, producing an axial asymmetry that results in a generally oblong shape. The lateral and longitudinal dimensions can be adjusted to produce any type of oblong shape depending upon the hydrostatic and hydrodynamic properties that are desired. The combination of the front corner 130, rear corner 132, left side corner 134, and right side corner 136 can be collectively regarded as a set of vertices that define a generally diamond-shaped configuration, modified to produce a selected type of axial asymmetry, if desired.
Each of the layers 102, 104, 106, and 108 is preferably formed of a rigid foam or heavy duty foam material conducive to flotation. An advantageous embodiment will have at least one layer manufactured using Expanded polystyrene (EPS) foam or Polyurethane foam. It should be apparent to those skilled in the art that any type of material can be used to construct layers 102, 104, 106, and 108 that is compatible with maintaining a flotation capability for water board 100. In an exemplary form, the water board 100 is constructed so that the upper layer 102 is made of a 1″ (one inch) thick heavy duty EPS or Polyurethane foam layer; the main body layer 104 is made of a 2″ (two inch) thick heavy duty EPS or Polyurethane foam layer; the mid layer 106 is made of a 2″ (two inch) thick heavy duty EPS or Polyurethane foam layer; and the lower layer 108 is made of a 2″ (two inch) thick heavy duty EPS or Polyurethane foam layer. These specific dimensions should not be considered in limitation of the invention but merely illustrative, as other dimensional values can be used to practice the invention. All of the layers 102, 104, 106, and 108 are glued together to produce the assembled form of water board 100. However, other bonding techniques are possible to attach the layers 102, 104, 106, and 108. The assembled structure of water board 100 is preferably processed with a finishing exterior coat of waterproofing to protect the foam material from cracking or moisture. This exterior coat can be a water-resistant epoxy resin material or fiberglass, for example.
The water board 100 further includes a fin 122 attached to the bottom layer 108 at the front end 114 of water board 100, as best depicted in
As best shown in
The upper layer 102 includes a carved left footprint hole 150 and a carved right footprint hole 152. The carved left footprint hole 150 and the carved right footprint hole 152 are appropriately sized to receive the left foot and the right foot, respectively, of a user situated in a standing position on water board 100, as best depicted in
The water board 100 further includes a cable support tubing or conduit 160 as best depicted in
During installation of cable conduit 160, the first vertical section 164 of cable conduit 160 is inserted through the pair of aligned holes 156 and 157 formed in the upper layer 102 and the main body layer 104, respectively, and the second vertical section 166 of cable conduit 160 is inserted through the pair of aligned holes 154 and 155 formed in the upper layer 102 and the main body layer 104, respectively. In this installed position, the cable conduit 160 is positioned such that its horizontal section 162 lies between the main body layer 104 and the mid layer 106. Additionally, the top opening 165 of the first vertical conduit section 164 and the top opening 167 of the second vertical conduit section 166 lie above the upper surface of upper layer 102, as best depicted in
The water board 100 further includes a cable 170 that is threaded through cable conduit 160 and forms a loop accessible to the user 200, as best depicted in
The operation of water board 100 is best presented in
In order to start traveling from the crouched or standing position, the user 200 uses a side-to-side rocking motion in which the user 200 shifts his/her weight in an alternating sequence between the lateral sides of water board 100. This rocking motion effectuates rapid turns in the water board 100 that act to propel the water board 100 in the forward direction. The water board 100 can thus be self-propelling if used in calm waters, or can use the assistance of wave motion to supplement the motion activity performed by the user.
In particular, during operation, the user 200 shifts his/her weight onto one foot (e.g., the foot in recess 150 of
The user repeats this sequence of alternately shifting weight from one side to the next while simultaneously performing a forward kicking motion with the elevated foot at the currently unloaded side of the water board 100. The net effect of this alternating shift in body weight, accompanied by the alternating kicking motions at the alternately unloaded sides, is to create a rapid sequence of small turns in water board 100 that collectively propel the water board 100 in the forward direction. The user can steer the water board 100 by appropriately changing the relative intensity of the forward kicking motions at the opposite sides of the water board 100, creating more turning momentum in one direction than the other. The user can travel in a generally straight line by employing forward kicking motions of comparatively equal strength at the opposite sides of the water board 100. Observed from above (
In the standing operating position, the water board 100 sits downward in the water in the forward direction, creating a forward tilted orientation 310 as depicted in
The water board 100 provides several advantages over the current art. Conventional types of personalized watercraft like surf boards require the presence of moving water to balance the surf board while standing. The surf board has a high tendency to rotate when a user stands on it in calm waters. Typical surf boards are designed to be moved by waves, so in calm waters the surf board will rotate when standing on it, leading to a loss of balance and an overturn of the surf board. However, the design of the water board 100 inhibits this side-to-side rotation, allowing a user to readily stand on the water board 100 in a fully balanced position in calm waters. The water board 100 is also effective in hydrodynamic conditions, i.e., wavy waters. The design of the water board 100 facilitates a side-to-side rocking motion that alternately loads and unloads opposite sides of the water board 100, which in combination with alternating kicking motions at the unloaded sides enable the user to self-propel the water board 100. The water board 100 features stability and balance in both hydrostatic (e.g., lake or pool) and hydrodynamic (e.g., river or ocean) conditions, and supports the capability of a user to self-propel the watercraft even in hydrostatic conditions.
An alternative embodiment recreational water flotation device, also referred to as a water board, is illustrated in its various aspects in
In plan form, and as most clearly seen in
As shown in
As most clearly seen in
Referring now to
With continued reference to
As shown in
The water board 400 further comprises a propulsion unit 490 including a battery-powered propeller 492 and a propeller mount 494. When activated, the propeller 492 can aid in propelling the water board 400 across the surface of a body of water.
The water board 400 can also comprise a weight unit 495 which, as shown in
The propulsion unit 490 and the weight unit 495 of the present embodiment are interchangeably attached to the water board body 404 by having the propeller mount 494 or weight mount 498 hang from the horizontal segments 489b of the lower bracket bar 489. As best shown in
Operation of the water board 400 is demonstrated in
To further move the water board 400 across the surface of the water, and enjoy the full riding and exercising experience, the user 200 shifts his weight to the left, as indicated by the larger arrow of
After having kicked forward as shown in
The above-described embodiments are merely exemplary illustrations of implementations set forth for a clear understanding of the principles of the invention. Many variations, combinations, modifications or equivalents may be substituted for elements thereof without departing from the scope of the invention. Therefore, it is intended that the invention not be limited to the particular embodiments disclosed as the best mode contemplated for carrying out this invention, but that the invention will include all the embodiments falling within the scope of the appended claims.
Claims
1. A recreational water flotation device comprising:
- a central body defining an upper surface and a bottom surface and having a front and a rear;
- a left lateral element extending from a left end of said central body, said left lateral element defining a left canted surface, said left canted surface canted toward said central body, and further defining a left end of said flotation device;
- a right lateral element extending from a right end of said central body, said right lateral element defining a right canted surface, said right canted surface canted toward said central body, and further defining a right end of said flotation device; and
- a propulsion unit mounted to said bottom surface of said central body; wherein:
- said device is buoyant in water.
2. The recreational water flotation device according to claim 1, wherein said central body, said left lateral element, and said right lateral element are formed of a single homogenous body.
3. The recreational water flotation device according to claim 1, wherein a left side of said left lateral element and a right side of said right lateral element define a width of said flotation device, and the front end and rear end of said central body define a length of said flotation device, and further wherein said width is greater than said length.
4. The recreational water flotation device according to claim 3, wherein said left lateral side and said right lateral side have an arcuately convex peripheral shape, wherein said front end and said rear end have an arcuately convex peripheral shape, and further wherein peripheral areas connecting adjacent ones of said left lateral side, said front end, said right lateral side, and said rear end are arcuately concave.
5. The recreational water flotation device according to claim 4, further including a left rear fin and a right rear fin, wherein said left and right rear fins are arcuately concave and protrude from said bottom surface of said central body at a rear periphery thereof.
6. The recreational water flotation device according to claim 1, further including a front fin extending along a front edge of said central body and further extending between said left lateral element and said right lateral element, said front fin and said front edge defining a surface angled toward said rear for providing a smooth flow of water thereover.
7. The recreational water flotation device according to claim 1, wherein said propulsion unit is at least partially rotatable with respect to said central body.
8. The recreational water flotation device according to claim 1, further including a bottom mount affixed to said bottom surface of said central body, said bottom mount including an outer tube in fixed relation to said central body and an inner tube within said fixed outer tube, said inner at least partially rotatable with respect to said outer tube, and wherein said propulsion unit is attached to said inner tube.
9. The recreational water flotation device according to claim 8, wherein said outer tube at least partially defines a forwardly oriented opening therethrough and wherein said inner tube has attached thereto a transverse tube extending forwardly from said inner tube through said opening and a horizontal cross tube attached to a distal forward end of said transverse tube, and a bottom bracket affixed to said cross tube, said propulsion unit including a propeller mounted in a propeller mount, said bottom bracket retaining said propeller mount thereto.
10. The recreational water flotation device according to claim 9, further including vertical stop bars affixed to said fixed outer tube, said vertical stop bars defining the left and right boundaries of said opening for limiting the rotation of said inner tube with respect to said outer tube.
11. The recreational water flotation device according to claim 10, further comprising a weight, wherein the propulsion unit and the weight are interchangeably mountable to said central body.
12. A recreational water flotation device comprising:
- a central body defining an upper surface and a bottom surface and having a front and a rear;
- a left lateral element extending from a left end of said central body, said left lateral element defining a left canted surface, said left canted surface canted toward said central body, and further defining a left end of said flotation device;
- a right lateral element extending from a right end of said central body, said right lateral element defining a right canted surface, said right canted surface canted toward said central body, and further defining a right end of said flotation device; and
- a propulsion unit mounted to said bottom surface of said central body, said propulsion unit at least partially rotatable with respect to said central body; wherein:
- said device is buoyant in water.
13. The recreational water flotation device according to claim 12, wherein said left lateral side and said right lateral side have an arcuately convex peripheral shape, wherein said front end and said rear end have an arcuately convex peripheral shape, and further wherein peripheral areas connecting adjacent ones of said left lateral side, said front end, said right lateral side, and said rear end are arcuately concave.
14. The recreational water flotation device according to claim 13, further including a left rear fin and a right rear fin, wherein said left and right rear fins are arcuately concave and protrude from said bottom surface of said central body at a rear periphery thereof.
15. The recreational water flotation device according to claim 13, further including a front fin extending along a front edge of said central body and further extending between said left lateral element and said right lateral element, said front fin and said front edge defining a surface angled toward said rear for providing a smooth flow of water thereover.
16. The recreational water flotation device according to claim 12, further including a bottom mount affixed to said bottom surface of said central body, said bottom mount including an outer tube in fixed relation to said central body and an inner tube within said fixed outer tube, said inner tube at least partially rotatable with respect to said outer tube, and wherein said propulsion unit is attached to said inner tube.
17. A recreational water flotation device comprising:
- a central body defining an upper surface and a bottom surface and having an arcuately convex front end and an arcuately convex rear end;
- a left lateral element having a convexly arcuate left lateral side and extending from a left end of said central body, said left lateral element defining a left canted surface, said left canted surface canted toward said central body, and further defining a left end of said flotation device;
- a right lateral element having a convexly arcuate right lateral side and extending from a right end of said central body, said right lateral element defining a right canted surface, said right canted surface canted toward said central body, and further defining a right end of said flotation device, wherein
- peripheral areas connecting adjacent ones of said left lateral side, said front end, said right lateral side, and said rear end are arcuately concave;
- a front fin extending along at least a front edge of said central body, said front fin and said front edge defining a surface angled toward said rear for providing a smooth flow of water thereover;
- a left rear fin and a right rear fin, said left and right rear fins being arcuately concave and protruding from said bottom surface of said central body at a rear periphery thereof; and
- a propulsion unit mounted to said bottom surface of said central body, said propulsion unit at least partially rotatable with respect to said central body; wherein
- said device is buoyant in water.
18. The recreational water flotation device according to claim 17, further including a bottom mount affixed to said bottom surface of said central body, said bottom mount including an outer tube in fixed relation to said central body and an inner tube within said fixed outer tube, said inner tube at least partially rotatable with respect to said outer tube, and wherein said propulsion unit is attached to said inner tube.
19. The recreational water flotation device according to claim 18, wherein said outer tube at least partially defines a forwardly oriented opening therethrough and wherein said inner tube has attached thereto a transverse tube extending forwardly from said inner tube through said opening and a horizontal cross tube attached to a distal forward end of said transverse tube, and a bottom bracket affixed to said cross tube, said propulsion unit including a propeller mounted in a propeller mount, said bottom bracket retaining said propeller mount thereto.
20. The recreational water flotation device according to claim 19, further including left and right stops affixed to said fixed outer tube, said stops defining the left and right boundaries of said opening for limiting the rotation of said inner tube with respect to said outer tube.
Type: Application
Filed: Dec 1, 2014
Publication Date: Nov 12, 2015
Inventor: Gameli E. Cruz Ricardez (North Las Vegas, NV)
Application Number: 14/556,943