IP Library Granted Patent US 9,371,114
Granted Patent B2
US 9,371,114 · App. 14/689,203 · Granted Jun 21, 2016

Method and system for a towed vessel suitable for transporting liquids

Inventors: Allen Szydlowski (Santiago, CL); Ian Szydlowski (New York, NY)
B63B35/285B63B25/12H01L31/042B63B2025/085
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Quick Facts
Patent No.
US 9,371,114
App. No.
14/689,203
Granted
Jun 21, 2016
Kind
B2
Abstract

A towed vessel suitable for containing and transporting various liquids is disclosed. The vessel further comprises various features useful in the transportation, navigation, and storage of the towable vessel, both when in use for transporting fluids and when transported in an emptied state. Such features include navigational and positioning devices and methods, power supply devices and methods, and means for filling, inflating, emptying, and deflating a non-rigid, towed vessel. Aspects of embodiments of the present invention further include features useful for purifying or preserving the purity of the fluid to be transported.

Claims (68)

1. A method for storing and conveying fluids, said method comprising:

(a) providing:

a non-rigid, water-impermeable device with an elongate shape having a first end, a second end and having a generally streamlined shape in plan view;

the first end comprising a first attachment device;

the second end comprising a second attachment device;

at least two ports for intake and exhaust of fluids;

at least a portion of the non-rigid, water-impermeable device containing a fluid of lower density than a fluid through which said non-rigid, water-impermeable device is transported;

one or more valves in two-way communication with at least a portion of an interior volume of the non-rigid, water-impermeable device and an outside environment;

a transmitter for conveying information related to the geographic position of the device;

at least a portion of an internal surface area of the non-rigid, water-impermeable device being comprised of a flexible and tear resistant material; and

at least one mooring device;

(b) securing the first attachment device of the first end to one of the at least one mooring device;

(c) storing an entirety of the fluid of lower density in said non-rigid, water impermeable device, wherein the fluid of lower density is fresh water;

(d) stabilizing the non-rigid, water-impermeable device by connecting the non-rigid, water-impermeable device to a fixed or floating object;

(e) signaling a physical position of the non-rigid, water-impermeable device;

(f) tracking the non-rigid, water-impermeable device;

(g) conveying the non-rigid, water-impermeable device to a predetermined destination through salt water;

(h) emptying the non-rigid, water-impermeable device of fluids through one of said at least two ports; and

(i) providing one or more photovoltaic arrays to collect solar energy, said arrays being adapted to contact a non-submerged surface of the non-rigid, water-impermeable device.

2. The method as set forth in claim 1 , further comprising using the solar energy to provide one or more functions of the non-rigid, water-impermeable device, said one or more functions selected from a group consisting of supplying power to engines employed in said conveying step; supplying power to enable said emptying step; supplying power to at least one of a beacon, a light, and a sensor; and supplying power to one or more devices responsible for said steps of tracking, stabilizing, transmitting, and signaling.

3. The method as set forth in claim 1 , further comprising, deflating the non-rigid, water-impermeable device to reduce a volume of the device for ease of transport.

4. The method as set forth in claim 1 , further comprising providing a water purification system and treating the fresh water.

5. The method as set forth in claim 1 , further comprising providing one or more drones, wherein the drones are capable of maneuvering the non-rigid, water-impermeable device.

6. The method as set forth in claim 1 , further comprising, segregating different liquids within said device.

7. The method as set forth in claim 1 , further comprising, controlling the amount of air within a portion of the device to adjust buoyancy of the device.

8. A method for storing and conveying fluids, said method comprising:

(a) providing:

a non-rigid, water-impermeable device with an elongate shape having a first end, a second end, the first end comprising a first attachment device, and the second end comprising a second attachment device;

a plurality of ports for intake and exhaust of fluids;

at least a portion of the non-rigid, water-impermeable device containing a fluid of lower density than a fluid through which the non-rigid, water-impermeable device is transported;

one or more valves in two-way communication with at least a portion of an interior volume of the non-rigid, water-impermeable device and an outside environment;

a transmitter for conveying information related to the geographic position of the non-rigid, water-impermeable device; and

at least a portion of an internal surface area of the non-rigid, water-impermeable device being comprised of a flexible and tear resistant material;

(b) securing the first attachment device of the non-rigid, water-impermeable device to a fixed or floating object;

(c) signaling a physical position of the non-rigid, water-impermeable device;

(d) tracking the non-rigid, water-impermeable device using a device that receives GPS information;

(e) transmitting coordinates of the non-rigid, water-impermeable device at predetermined temporal increments; and

(f) providing one or more photovoltaic arrays to collect solar energy, said arrays being adapted to contact a non-submerged surface of the non-rigid, water-impermeable device; and

(g) storing said fluid of lower density in said non-rigid, water-impermeable device.

9. The method as set forth in claim 8 , further comprising, rapidly emptying the non-rigid, water-impermeable device of fluids through at least one of said plurality of ports.

10. The method as set forth in claim 8 , further comprising, steering the non-rigid, water-impermeable device via one or more skegs positioned on said device.

11. The method as set forth in claim 8 , further comprising providing at least one windmill to collect renewable energy.

12. The method as set forth in claim 8 , further comprising, deflating the non-rigid, water-impermeable device to reduce a volume of the device for ease of transport.

13. The method as set forth in claim 8 , further comprising, preserving the fluid contained within the non-rigid, water-impermeable device when the non-rigid, water-impermeable device in a state of original integrity is in a submerged position.

14. The method as set forth in claim 8 , further comprising, coating the internal surface of the non-rigid, water-impermeable device to preserve the purity of said lower density fluid.

15. The method as set forth in claim 8 , further comprising identifying the plurality of ports for the intake and exhaust of fluids via a marking system that identifies which of the plurality of ports for the intake and exhaust of fluids are associated with compartments that are connected to at least one of said ports.

16. The method as set forth in claim 8 , wherein said positioning step further comprises storing the non-rigid, water-impermeable device in a generally horizontal position with respect to a water line.

17. The method as set forth in claim 8 , further comprising:

generating electrical power from said one or more photovoltaic arrays; and

conveying the electrical power to at least one component selected from the group consisting of an engine, a liquid filling system, an emptying system, a draining system, an inflating system, a pump, a beacon, a light, a sensor, a GPS system, a navigation system, a steering system, a drone, a breaking system, a tracking device, a computer, a stabilizing device, a transmitter, and a signaling device.

18. A method for storing and conveying fluids, said method comprising:

(a) providing:

a non-rigid, water-impermeable device with an elongate shape having a first end, a second end, the first end comprising a first attachment device, and the second end comprising a second attachment device;

a plurality of ports for intake and exhaust of fluids;

at least a portion of the non-rigid, water-impermeable device containing a fluid of lower density than a fluid through which the non-rigid, water-impermeable device is transported;

one or more valves in two-way communication with at least a portion of an interior volume of the non-rigid, water-impermeable device and an outside environment;

a transmitter for conveying information related to the geographic position of the non-rigid, water-impermeable device; and

at least a portion of an internal surface area of the non-rigid, water-impermeable device being comprised of a flexible and tear resistant material;

(b) securing the first attachment device of the non-rigid, water-impermeable device to a fixed or floating object;

(c) signaling a physical position of the non-rigid, water-impermeable device;

(d) tracking the non-rigid, water-impermeable device using a device that receives GPS information;

(e) operatively associating one or more photovoltaic arrays to the non-rigid, water impermeable device;

(f) generating electrical power from said one or more photovoltaic arrays;

(g) conveying the electrical power to at least one component selected from the group consisting of an engine, a liquid filling system, an emptying system, a draining system, an inflating system, a pump, a beacon, a light, a sensor, a GPS system, a navigation system, a steering system, a drone, a breaking system, a tracking device, a computer, a stabilizing device, a transmitter, and a signaling device; and

(h) providing one or more photovoltaic arrays to collect solar energy, said arrays being adapted to contact a non-submerged surface of the non-rigid, water-impermeable device; and

(i) storing said fluid of lower density in said non-rigid, water-impermeable device.

19. The method as set forth in claim 18 , further comprising providing one or more drones, wherein the drones are capable of maneuvering the non-rigid, water-impermeable device.

20. The method as set forth in claim 18 , further comprising providing at least one windmill to collect renewable energy.

Continuity (13)
Continuation 14049539 · Oct 9, 2013
Continuation In Part 14047663 · Oct 7, 2013
Continuation In Part 13767675 · Feb 14, 2013
Continuation 13025796 · Feb 11, 2011
Continuation 14689203 · Apr 17, 2015
Continuation In Part 14023311 · Sep 10, 2013
Continuation In Part 13222940 · Aug 31, 2011
Continuation In Part 14689203 · Apr 17, 2015
Continuation In Part 12905590 · Oct 15, 2010
Provisional Application 61303519 · Feb 11, 2010
Provisional Application 61378811 · Aug 31, 2010
Provisional Application 61251912 · Oct 15, 2009
Related Publication 20150217837A1 · Aug 6, 2015