Universal multimodal transportation system and associated infrastructure
Disclosed is a transportation system with integrated infrastructure. In one embodiment, this infrastructure takes the form of a hollow elevated load bearing guideway structure designed to support the weight of traveling vehicles. The structure supports a backbone beam, or rail, that has multiple functions. These functions may include vehicle control, security, and energy delivery. The structure is bimodal meaning vehicles can have wheels like cars or steel rimmed wheels like a train or any combination thereof.
1. A universal surface transportation system comprising:
a hollow guideway having a triangular cross section with a horizontally oriented cross beam, a vertically oriented center strut, and a pair of angled side struts, the guideway being defined by two upper corners and a lower corner, a control beam centrally located on the cross beam;
a pair of upper triangular-shaped tubular members positioned within the two upper corners of the hollow guideway, each of the upper triangular-shaped tubular members including an outside edge, a lower triangular-shaped tubular member positioned within the lower corner of the guideway;
a rail positioned at the outside edge of each of the upper tubular members, a contact surface formed adjacent each of the rails, the rail and adjacent contact surface adapted to be engaged by a bi-modal wheel;
a series of structural columns for supporting the hollow guideway at a distance above the ground;
whereby loads applied to the rails and contact surfaces are transferred to the control beam via compressive and tensile loads in the side struts, lower tubular member, and center strut.
2. A universal surface transportation system comprising:
a hollow guideway having a triangular cross section, the guideway being defined by two upper corners and a lower corner;
a pair of upper triangular-shaped tubular members positioned within the two upper corners of the hollow guideway, each of the upper triangular-shaped tubular members including an outside edge, a lower triangular-shaped tubular member positioned within the lower corner of the guideway;
whereby loads applied to the outside edges of the upper tubular members are transferred to the lower tubular member.
3. The transportation system as described in claim 2 wherein the hollow guideway is formed from a horizontally oriented cross beam, a vertically oriented center strut, and a pair of angled side struts.
4. The transportation system as described in claim 2 wherein a rail is positioned at the outside edge of each of the upper tubular members, and a contact surface formed adjacent each of the rails, the rail and adjacent contact surface adapted to be engaged by a bi-modal wheel.
5. The transportation system as described in claim 2 wherein a series of structural columns are included for supporting the hollow guideway at a distance above the ground.
6. The transportation system as described in claim 3 wherein a control beam is centrally located upon the cross beam.
7. The transportation system as described in claim 6 wherein loads applied to the outside edges of the upper tubular members are transferred to the control beam via compressive and tensile loads in the side struts, lower tubular member, and center strut.
8. The universal surface transportation system of claim 6 wherein the control beam is used as a steering reference for the vehicle located thereon.
9. The universal surface transportation system of claim 6 wherein the control beam provides a switching reference for the vehicle located thereon for controlling switching from guideway to guideway or switching from guideway to or from the on and off access ramps.
10. The universal surface transportation system of claim 6 wherein the control beam is used to further guide the vehicle into the system while being funneled into the system on the access ramp.
11. The universal surface transportation system of claim 6 wherein the control beam is a conduit for the utilities infrastructure located in the central column such that the vehicle located in the system can access the utilities infrastructure.
12. The universal surface transportation system of claim 6 wherein the control beam is used to secure the vehicle to the guideway so vehicles remain on the guideway at all times.
13. The universal surface transportation system of claim 6 wherein the control beam provides secure communications contact interface and traction control with vehicle systems.
14. The universal surface transportation system of claim 6 wherein the control beam provides vehicle stability when road conditions are hazardous.
15. The universal surface transportation system of claim 6 wherein the control beam prevents hijacking of vehicles.
16. The universal surface transportation system of claim 6 wherein the control beam provides emergency steering control in event of catastrophic systems failures.
17. The universal surface transportation system of claim 6 wherein the control beam enables precise, predictable vehicle tracking and operation in all weather conditions.