Claims
- 1. In a viaduct system made from a plurality of viaduct segments, each viaduct segment including a central load bearing body having opposite side portions, a pair of lateral vehicle support platform structures, one of said platform structures mounted to opposite side portions of said central body, a lower portion located beneath said platform structures, and an upper portion located above said platform structures, said central body extending upwardly from said platform structures to provide a barrier between vehicles disposed on said vehicle support structures, a method for post tensioning said viaduct segments, comprising the steps of:
- arranging a plurality of said viaduct segments in a longitudinally abutting adjacent relationship in a first group, a second group, and a third group;
- locating said first group between said second group and said third group;
- routing a selected number of straight horizontally extending post tensioning cables through the lower portion of the viaduct segments in said first group of adjacent viaduct segments for reacting positive bending moments; and
- providing a selected number of straight horizontally extending post tensioning cables along the upper portion of the viaduct segments in said second and third groups of adjacent viaduct segments for providing segment continuity.
- 2. The method of claim 1 wherein said plurality of viaduct segments are supported on at least two upright piers, and wherein said upper post tensioning cables of said second and third viaduct segment groups span said upright piers.
- 3. The method of claim 1 wherein said upper and lower straight cables are routed through said central body portion of said viaduct segments.
- 4. The method of claim 3 wherein said upper and lower cables are routed so as to be accessible for post tensioning at locations outside said central body portion of said segments.
- 5. The method of claim 1 wherein said viaduct segments are supported between a pair of upright piers and wherein said first second and third viaduct segment groups are post tensioned in order to form a continuous viaduct span between said piers prior to forming a continuous viaduct span across subsequent piers.
- 6. A rapid transit viaduct system with post-tension cabling, comprising:
- a plurality of precast concrete viaduct segments arranged in a longitudinally abutting relationship in a first group, a second group, and a third group, each of said viaduct segments including a central load bearing body having opposite side portions and a pair of lateral vehicle support platform structures, one of said platform structures being mounted to each of said opposite side portions of said central body; said central body extending upwardly from said lateral platform structures to provide a barrier between said vehicle support structures;
- a plurality of upright piers disposed below and supporting said viaduct segments;
- a plurality of lower post-tensioning cable groups extending substantially horizontally through said first group of viaduct segments for reacting positive moments; and
- a plurality of upper post-tensioning cable groups extending substantially horizontally through said second and third groups of viaduct segments for providing segment continuity, said lower post-tensioning cable groups extending through at least one, but not all of said viaduct segments in said second group, and said lower post-tensioning cable groups extending through at least one, but not all of said viaduct segments in said third group.
- 7. The viaduct system of claim 6 wherein said upper post tensioning cables of said second and third viaduct segment groups span said upright piers.
- 8. The viaduct system of claim 6 wherein said upper and lower cable groups are routed through said central body portion of said viaduct segments.
- 9. The method of claim 8 wherein said upper and lower cables are routed so as to be accessible for post tensioning at locations outside said central body portion of said segments.
- 10. A method for fabricating a rapid transit viaduct system, comprising the steps of:
- fabricating a plurality of precast viaduct segments each having an upper portion and a lower portion, said viaduct segments being configured to be arranged end-to-end and tied together to form a viaduct span for supporting one or more rapid transit vehicles;
- fabricating a plurality op upright piers for supporting said viaduct segments;
- arranging a first group of said precast viaduct segments end-to-end over a first one of said upright piers;
- securing together said first group of precast segments with one or more substantially horizontal first cables extending through the upper portion of the segments in said first precast segment group, for providing segment continuity;
- arranging a second group of said precast viaduct segments end-to-end adjacent an end of said first precast segment group;
- securing together said second group of precast segments with one or more substantially horizontal second cables extending through the lower portion of the segments in said second precast segment group, for reacting positive moments;
- arranging a third group of said precast viaduct segments end-to-end adjacent an end of said second precast segment group and over a second upright pier; and
- securing together said third group of precast segments with one or more substantially horizontal third cables extending through the upper portions of the segments in said third precast segment group, for providing segment continuity;
- wherein said first cables extend through at least one, but not all of the segments in said second precast segment group, and wherein said third cables extend through at least one, but not all of the segments in said second precast segment group.
- 11. A rapid transit viaduct system, said system comprising:
- a plurality of precast viaduct segments each having an upper portion and a lower portion, said viaduct segments being configured to be arranged end-to-end and tied together to form a viaduct span for supporting one or more rapid transit vehicles;
- a plurality of upright piers for supporting said viaduct segments;
- a first group of said precast viaduct segments arranged end-to-end over a first one of said upright piers, said first group of precast segments being secured together with one or more substantially horizontal first cables extending through the upper portion of the segments in said first precast segment group, for providing segment continuity;
- a second group of said precast viaduct segments arranged end-to-end adjacent an end of said first precast segment group, said second group of precast segments being secured together with one or more substantially horizontal second cables extending through the lower portion of the segments in said second precast segment group, for reacting positive moments;
- a third group of said precast viaduct segments arranged end-to-end adjacent an end of said second precast segment group and over a second upright pier, said third group of precast segments being secured together with one or more substantially horizontal third cables extending through the upper portions of the segments in said third precast segment group, for providing segment continuity; and
- wherein said first cables extend through at least one, but not all of the segments in said second precast segment group, and wherein said third cables extend through at least one, but not all of the segments in said second precast segment group.
RELATED APPLICATIONS
The present application is a continuation-in-part of application Ser. No. 07/839,858, filed Feb. 21, 1992, now U.S. Pat. No. 5,231,931, which is a continuation-in-part of application Ser. No. 07/824,502, filed Jan. 23, 1992, now abandoned.
US Referenced Citations (6)
Continuation in Parts (2)
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Number |
Date |
Country |
Parent |
839858 |
Feb 1992 |
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Parent |
824502 |
Jan 1992 |
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