Amphibious pumping vehicle
An amphibious pumping vehicle has a floatable vehicle body, a ground engaging propulsion structure, a fluid pump, a plurality of fluid nozzles comprising a first fluid nozzle connected by a fluid conduit to the fluid pump and at least one second fluid nozzle connected to the fluid conduit, a valve structure in the fluid conduit, the plurality of fluid nozzles and the valve structure co-operating to provide directional control and motive power for the vehicle when floating, and a power source configured to provide power to both the ground engaging propulsion structure and the fluid pump.
1. An amphibious vehicle comprising:
a floatable vehicle body;
ground engaging propulsion structure;
a fluid pump for pumping liquid manure;
at least one fluid nozzle connected by a fluid conduit to the fluid pump;
a power source connected to a hydraulic pump and configured to provide power to both the ground engaging propulsion structure and the fluid pump; and,
remote control structure configured to control the ground engaging propulsion structure and a flow of fluid from the fluid nozzle, wherein the speed and/or direction of the vehicle is remotely controllable by an operator remote from the vehicle when the vehicle is ground engaging and when the vehicle is floating.
2. The vehicle according to claim 1 , wherein the ground engaging propulsion structure comprises a set of wheels or an endless track.
3. The vehicle according to claim 1 , wherein the power source is configured to provide hydraulic fluid power to both the ground engaging propulsion structure and the fluid pump.
4. The vehicle according to claim 3 , wherein the ground engaging propulsion structure is operable at variable speed by a hydraulic motor.
5. The vehicle according to claim 1 , wherein the at least one fluid nozzle comprises a plurality of fluid nozzles connected to the fluid conduit.
6. The vehicle according to claim 1 , wherein the location of the ground engaging propulsion structure, power source and fluid pump are selected to provide a desired location for a center of gravity of the vehicle.
7. The vehicle according to claim 1 , wherein the amount of fluid flow from the at least one fluid nozzle and/or the direction of the at least one fluid nozzle are remotely controllable by the operator remote from the vehicle when the vehicle is floating.
8. An amphibious vehicle comprising:
a floatable vehicle body;
four hydraulically powered ground engaging wheels;
four hydraulic motors, one hydraulic motor per wheel, for powering the four hydraulically powered ground engaging wheels;
a fluid pump for pumping liquid manure;
at least one directionally adjustable nozzle through which the liquid manure is pumped;
an internal combustion engine configured to provide power to both the four variable speed hydraulic motors and the fluid pump;
the location of the four hydraulically powered ground engaging wheels, the internal combustion engine and the fluid pump selected to provide a desired location for a center of gravity of the vehicle; and,
remote control structure configured to control the four variable speed hydraulic motors and the fluid pump, wherein the speed and/or direction of the vehicle is remotely controllable by an operator remote from the vehicle when the vehicle is ground engaging and when the vehicle is floating.
9. The vehicle according to claim 8 , wherein the power source is configured to provide hydraulic fluid power to the four hydraulic motors and the fluid pump.
10. The vehicle according to claim 9 , wherein the four hydraulic motors are variable speed hydraulic motors and wherein the four hydraulically powered ground engaging wheels are each operable at variable speed.
11. The vehicle according to claim 8 , wherein the at least one directionally adjustable nozzle is connected to a fluid conduit connected to the fluid pump.
12. The vehicle according to claim 11 , wherein a plurality of nozzles comprising the at least one directionally adjustable nozzle is connected to the fluid conduit.
13. The vehicle according to claim 8 , wherein the amount of fluid flow from the directionally adjustable nozzle and/or the direction of the directionally adjustable nozzle are remotely controllable by the operator remote from the vehicle when the vehicle is floating.