The present invention is related to transportation vehicle, more particularly into multi-mode vehicles that can travel in land, air, over water and under water
The primary aim of the present invention is to provide a highly practical and functional design in making a single vehicle that is a perfect road car, perfect flying machine, perfect speedboat and perfect submarine.
There are lot challenges involved in designing a functional hybrid road and flying car. Some of the primary challenges are dimensions like size and shape which are highly restricted. So when the dimensions of the designs are reduces to accommodate the road and parking there needs to be a lot of compromise on flying ability.
Another main drawback with the other proposed designs for the market are not a traditional looking vehicle and with lot of exposed components.
Another main drawback with the other proposed designs are compromise of on road performance, safety, driving dynamics.
To address the issues with the other already proposed the present NADTVPMSV provides a highly practical and functional design that makes the single vehicle a perfect road vehicle, perfect air, perfect on water and under water vehicle.
According to one aspect the vehicle chassis comprising longitudinal and transverse ducts with tandem leading and trailing edge integrated with at least one concealed or non-concealed bidirectional thrust vectoring Propeller and Retractable Under Chassis Wings with single to multi directional fluid flow design, control, opening and closing mechanism to control the flight as well as to adapt according to mode of the vehicle.
According to another aspect the longitudinal and transverse duct can be of any length, width, height, dimension, size, shape based on length of the chassis and also to provide more space and accommodate more number of passengers.
According to another aspect other longitudinal and transverse ducts may are may not be inter connected or networked to the main neutral axis longitudinal and horizontal axis ducts.
According to another aspect the ducts may be oblique to longitudinal and transverse vehicle axis.
According to another aspect the transverse ducts are also user to control the transverse motion of the flying car more particularly to assist and maintain stability during strong cross winds.
According to another aspect the design comprises of one or more horizontal single or multi stage retractable section or non-section wings with canards, elevon, elevators, winglets, spoilers, ailerons and flaps integrated in bottom of the chassis. Front, middle and read vertical and horizontal stabilizers with elevators.
According to another aspect the present design may comprises of one or more of single or multi stage retractable or non-retractable front and rear wing horizontal and vertical stabilizer with canards, elevon, winglets, spoilers, ailerons and flaps rudders and elevators.
According to another aspect the present design may comprise of static or dynamic vortex generators that are deployed on the wings, roof top, chassis and stabilizers surfaces to improve the performance and controllability of the flying car.
According to another aspect the design comprises of front, side, middle, under and rear static or dynamic spoilers and diffusers to assist in fluid flow as well as vehicle control.
According to another aspect the present design comprises of one or more thrust vectoring propeller's with or without variable blade angle pitch control with variable thrust directing mechanism.
According to another aspect the present design deploys the retractable wings prior to take off or during take-off or after take-off according to requirement, design, configuration and scenarios.
According to another aspect the present design for safety front and rear propeller shaft are dynamically connected powertrain to optimize the power delivery as well as to compensate for failure, malfunction, loss of power in one powertrain.
According to another aspect to enhance the performance and control additional propellers may or may not be added to the ducts.
According to another aspect of the present design to enhance the performance and control jet propulsion could be added to the duct.
According to another aspect the design comprises of propeller utilising swashplate, pitch links and blade pitch change horn to control the propellers blades angle of attack.
According to another aspect the present design at least one or more of leading, intermediate and trailing propellers are networked and inter connected directly or variably with propeller shaft or drive shaft for torque sharing between propellers.
According to another aspect the present design the propeller has the potential to vary the orientation to 360 degrees on horizontal, vertical and oblique axis.
According to another aspect the present design the propellers act as regenerative propellers to generate and save electricity.
According to another aspect the design with ducts comprises of one or more stator and rotor blades to control fluid flow.
According to another aspect the present design's powertrain comprises or either one or more or combinations but not limited to electric motor, motor turbine, engine, hybrid etcetera.
According to another aspect the present design's the propeller rotor shaft is connected or coupled wirelessly with induction and stator may be integrated along the ducts.
According to another aspect the present design may comprise of at least one or more or combinations of thrust vectoring propeller or turbo fan or turbo jet engines, electric propellers, electric turbines, hybrids etcetera.
According to another aspect the present design's axial rotation and mobility comprises of forward, reverse, up, down, side, yaw, pitch and roll etcetera.
According to another aspect the present design In case of emergency like engine or motor or propeller or system damage/failure or malfunction the safety fluid flow through the interconnected and networked ducts of vehicle and are utilized to distribute and balance the thrust from working propeller for safely landing of the car. Parachute, balloon and under chassis/body airbags to protect the passengers in case of accident. One or more Deployable ejection seat system, parachute and balloon integrated according to the centre of gravity of the vehicle for car protection.
According to another aspect the present design comprises of vehicle suspension system that adapts and assists in landing. Vehicle suspension that control and holds the unspring mass of the wheel tire. A mechanism to cover the exposed wheel tires.
According to another aspect the present design comprises of 360 degree around and all direction environment sensing sensors and navigation system. The system comprises of radar, lidar, gps navigation system, visual and infrared cameras etcetera and have potential to complete autonomous navigation.
The design also comprises of one or more horizontal single or multi stage retractable section or non-section wings with canards, elevon, elevators, winglets, spoilers, ailerons and flaps integrated in bottom of the chassis. Front, middle and rear vertical and horizontal stabilizers with elevators. The present design's axial rotation and mobility comprises of forward, reverse, up, down, side, yaw, pitch, roll and angular motions etcetera.
The embodiments of the present invention is not limited to listed scenarios described here or its combinations and the above presented are just examples. There may be other scenarios and those who skilled in field can understand and modify, enhance, alter the herein system without departing from the scope of the invention in its widest form.
Number | Date | Country | Kind |
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201741006025 | Feb 2017 | IN | national |
Filing Document | Filing Date | Country | Kind |
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PCT/IN2018/000012 | 2/20/2018 | WO | 00 |