This disclosure relates generally to inflatable boats, and, more particularly, to inflatable shuttle boats.
Many people enjoy water sports, including being towed at high speeds while sitting in or on an inflatable raft or boat. These boats are designed in a variety of shapes and sizes, for different levels of intensity. Some are designed specifically for ease of flipping the passengers on board into the water, while others are designed to never flip and maximize safety for smaller kids. Other inflatable boats are used for transferring passengers from the shore to a moving motorized boat; for example to reach a moving motorized boat that is being used for parasailing or other pleasure riding.
The “banana boat” is another popular inflatable boat, and includes a long tube to straddle, usually with much smaller tubes on each side for foot placement and boat stability. The main tube is usually yellow and shaped like a banana, contributing to its name. Other versions of the banana boat include two connected “banana” tubes that are side-by-side, with three or four stabilizing tubes. Many operations use these or similar inflatable boats as shuttles from the shore to moving power boats that are used for parasailing or other pleasure riding, with riders hopping from the shuttle boat to the motorized boat while both are stationary or in motion.
While banana boats are common and quite popular, especially among tourists in destination locales, they can also be very dangerous when used as shuttles from shore to moving motorized boats. Many people have been injured or died after being thrown from a banana boat at 30 miles per hour, breaking bones, becoming unconscious and floating face down, or even getting trapped under the boat. During transfer to motorized boats, people often fall due to the bumpy riding as the shuttle and motorized boats are both in motion. Thus, there is a need for a safer and more stable inflatable shuttle boat that includes an inflated tube to be straddled, and that will facilitate safe transfer of riders during movement.
Embodiments described or otherwise contemplated herein substantially provide a watersport user with a safe, stable, inflatable shuttle boat to be used for towing behind a motorized watercraft on the water and to be used for safe transfer of riders to moving motorized boats used for parasailing and the like. While certain embodiments may be compared to a banana boat to illustrate the method of use of the boat, disclosed embodiments are plainly distinguishable and should not be considered banana boats. Rather, they are novel, inflatable, and towable shuttle boats.
In various embodiments, the boat includes an interior “seat” tube, foot support tubes on each side, and additional larger diameter exterior buoyancy tubes on the outer sides of the foot support tubes. Additionally, the seat tube and larger diameter exterior buoyancy tubes connect at the prow of the boat and lift upwards away from the water, to facilitate with fluid dynamics during towing, and increase safety during rough water. In other embodiments, the number of seat tubes, foot support tubes, and external tubes may be greater or less than in the preferred embodiment, and the prow may be designed at various heights and angles.
The larger diameter exterior buoyancy tubes are designed to fit tightly against any motorized boat hull, to facilitate safe transfer of riders from the shuttle to the motorized boat while both are in motion. This lessens the chance of falling overboard, and increases stability during motion.
In an embodiment, the seat tube may extend farther forward toward the prow end than the larger diameter exterior buoyancy tubes so as to act as a keel. The seat tube may also extend farther aft then the larger diameter exterior buoyancy tubes. The aft end of the seat tube may have a variety of shapes including a shape to match the larger diameter exterior buoyancy tubes.
In an embodiment, the center seat tube has a forward flared end to mate with the prow tube. Additionally, the foot support tubes disposed between the center seat tube and the larger diameter exterior buoyancy tubes are angled at the aft end to mate with the center tube.
In an embodiment, the larger diameter exterior buoyancy tubes are connected at the prow to form a “U” shape. In another embodiment, a prow tube may connect the larger diameter exterior buoyancy tubes. PVC panels may extend from the larger diameter exterior buoyancy tubes to the seat tube approximate the prow to cover any exposed openings between the tubes. Additional PVC panels may extend on the underside of the boat and across the prow, to act as a water shield during forward movement of the shuttle.
In an embodiment, the prow tube extends upward from 0-30 degrees, and preferably 15 degrees from the horizontal axis. The angle of the prow tube upwards from the water creates a natural keel shape, which is useful for the attachment of the water shield as described above. The keel shape is also created due to the fact that the top of the boat begins to angle upwards before the bottom of the boat begins to angle upwards.
In an embodiment, a variety of “D” rings and other handles may be positioned about the larger diameter exterior buoyancy tubes and the center seating tubes. Towing harness attachments are also disposed about the prow tube area for towing connections, to facilitate spreading towing forces across multiple points on the shuttle for improved stability.
In an embodiment, the shuttle has extra reinforced bottom layers for added abrasion resistance during beachfront landing and boarding, comfortable seating on a stable, wide center tube and easy grip PVC handles and numbered seats for easily directing passengers. The wide and high foot step tubes with non-slip pads provide a very stable ride and safer boarding and debarking.
Other features include: five air chambers ensure floatation in the event of an unexpected puncture; and easily tows behind personal watercraft with a sliding tow bridle constructed of super strong 10,500 lbs. parasail cord; or similar material.
Some embodiments provide stability in beach surf and rough wave conditions to allow parasailing operations on more days than previously possible with traditional banana boats.
Some embodiments provide improved efficiency for boarding and loading passengers which results in more rides per day and increased revenue for parasail operators.
Some embodiments provide uniquely designed outer buoyancy tubes to provide a tight fit and close height to passenger loading area on most parasail boats. This reduces risk of potential injury while boarding and debarking.
An embodiment relates to an inflatable shuttle boat including a seat tube, a pair of exterior buoyancy tubes, and a pair of foot support tubes. The seat tube has an elongate, cylindrical outer surface that is centrally located and extends from a front end to an aft end, the seat tube sized for single-file, straddled seating of a plurality of riders on top of the cylindrical outer surface. The pair of exterior buoyancy tubes have an elongate shape providing exterior sides of the inflatable shuttle boat, each of the pair of exterior buoyancy tubes having a larger diameter and height than the seat tube and extend in a parallel disposition to the seat tube at right and left sides. The pair of foot support tubes have elongate shapes extending adjacent and parallel to the seat tube in coupled engagement between the pair of exterior buoyancy tubes and the seat tube. Further, the seat tube and the pair of exterior buoyancy tubes each diverge from parallel orientations at the front end and converge to a prow which is further oriented in an upward disposition.
An embodiment relates to an inflatable shuttle boat, including an interior seat tube, foot support tubes, and a U-shaped exterior buoyancy tube. The interior seat tube has an elongate, cylindrical outer surface that is centrally located and extends from a front end to an aft end. The foot support tubes are located along adjacent parallel sides of the interior seat tube. The U-shaped exterior buoyancy tube defines side portions and a front portion of the perimeter of the inflatable shuttle boat. The side portions are located adjacent the sides of the foot support tubes and terminate at aft ends. Further, the interior seat tube and U-shaped exterior buoyancy tube connect at a prow portion which is oriented in an upward disposition.
The above summary is not intended to describe each illustrated embodiment or every implementation of the subject matter hereof. The figures and the detailed description that follow more particularly exemplify various embodiments.
Subject matter hereof may be more completely understood in consideration of the following detailed description of various embodiments in connection with the accompanying figures, in which:
While various embodiments are amenable to various modifications and alternative forms, specifics thereof have been shown by way of example in the drawings and will be described in detail. It should be understood, however, that the intention is not to limit the claimed inventions to the particular embodiments described. On the contrary, the intention is to cover all modifications, equivalents, and alternatives falling within the spirit and scope of the subject matter as defined by the claims.
To arrive at a tow boat, inflatable shuttle boat 100 may be connected to a motorized boat or Jet Ski by way of a towing rope connected to prow 400, and thus pulls inflatable shuttle boat 100 behind it while on the water. Users may sit on seat tube 200 as depicted in
Various embodiments of systems, devices, and methods have been described herein. These embodiments are given only by way of example and are not intended to limit the scope of the claimed inventions. It should be appreciated, moreover, that the various features of the embodiments that have been described may be combined in various ways to produce numerous additional embodiments. Moreover, while various materials, dimensions, shapes, configurations and locations, etc. have been described for use with disclosed embodiments, others besides those disclosed may be utilized without exceeding the scope of the claimed inventions.
Persons of ordinary skill in the relevant arts will recognize that the subject matter hereof may comprise fewer features than illustrated in any individual embodiment described above. The embodiments described herein are not meant to be an exhaustive presentation of the ways in which the various features of the subject matter hereof may be combined. Accordingly, the embodiments are not mutually exclusive combinations of features; rather, the various embodiments can comprise a combination of different individual features selected from different individual embodiments, as understood by persons of ordinary skill in the art. Moreover, elements described with respect to one embodiment can be implemented in other embodiments even when not described in such embodiments unless otherwise noted.
The present application claims the benefit of U.S. Provisional Application No. 62/930,912 entitled “INFLATABLE SHUTTLE BOAT”, filed Nov. 5, 2019, which is incorporated herein by reference in its entirety.
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Number | Date | Country | |
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62930912 | Nov 2019 | US |