Claims
- 1. In a cable-stayed bridge structure positioned between anchorages, especially of the type having a bridge floor for a transportation system and a bridge pier positioned beneath the bridge floor, comprised of
- a first plurality of generally horizontally oriented cables which extend between and are coupled under tension to the anchorages;
- a tower section which protrudes from said bridge pier and between the horizontal cables, and to which the horizontal cables are attached;
- a first frame lateral girder/node member, which is spaced apart from said tower section and positioned between and in a connecting relationship with said horizontal cables to form a frame; and
- an upper stayed cable connecting an upper portion of said tower to said first frame lateral girder/node member;
- wherein tension applied by said upper stayed cable to said first frame lateral girder/node member is opposed by tension applied by the first plurality of horizontal cables, and said bridge floor can be supported by said first frame lateral girder/node member.
- 2. The cable-stayed bridge of claim 1, a second plurality of generally horizontally oriented cables positioned below the first plurality of generally horizontally oriented cables and which extend between and are coupled under tension to the anchorages and to the tower section and frame lateral girder/node member.
- 3. The cable-stayed bridge of claim 1, a lower stayed cable which connects a lower portion of said tower and said frame lateral girder/node member.
- 4. The cable-stayed bridge of claim 1, additional frame lateral girder/node members, each spaced apart from said tower section and the first frame lateral girder/node member, and positioned between and in a connecting relationship with said horizontal cables at a location along the horizontal cables to form an associated frame.
- 5. The cable-stayed bridge of claim 1, wherein the tower section includes a built in frame lateral girder/node member to which the plurality of horizontal cables are connected.
- 6. A cable-stayed bridge structure positioned between anchorages, especially of the type having a bridge floor for a transportation system and a bridge pier positioned beneath the bridge floor, comprising
- a plurality of generally horizontally oriented cables which extend between and are coupled under tension to the anchorages;
- a tower section which protrudes from said bridge pier and between the horizontal cables, and to which the horizontal cables are attached;
- a plurality of frame lateral girder/node members, which are spaced apart from said tower section and positioned between and in a connecting relationship with said plurality of horizontal cables, wherein each of the plurality of frame lateral girder/node members is spaced apart from one another and positioned along the horizontal cables to form frames with the horizontal cables;
- a plurality of upper stayed cables connecting upper portions of said tower to said plurality of frame lateral girder/node members; and
- a plurality of lower stayed cables connecting lower portions of said tower to said plurality of frame lateral girder/node members;
- wherein tension applied by said upper and lower stayed cables to said first frame lateral girder/node member is opposed by tension applied by the first plurality of horizontal cables, and said bridge floor can be supported by said first frame lateral girder/node member.
- 7. A method of constructing a cable-stayed bridge structure of the type which is positioned between anchorages, especially of the type having a bridge floor for a transportation system and a bridge pier positioned beneath the bridge floor, comprising the steps of
- (a) installing a plurality of horizontal cables between the anchorages so that the plurality of horizontal cables are under tension;
- (b) positioning a tower on the bridge pier and between the plurality of horizontal cables;
- (c) positioning a frame lateral girder/node member between and in a connecting relationship with the plurality of horizontal cables;
- (d) connecting an upper portion of said tower to said frame lateral girder/node member with an upper stayed cable to apply an upward tension on said lateral girders/node member;
- (e) further tensioning said horizontally oriented cables and said upper stayed cable so that the tension applied to the frame lateral girder/node member by the horizontal cables is balanced against the tension applied by the upper stayed cable; and
- (f) installing said transportation system onto said frame lateral girder/node member.
- 8. The method of claim 7 further including the step of (e) connecting a lower portion of said tower to said frame lateral girder/node member with an lower stayed cable to apply a downward tension on said lateral girders/node member.
Priority Claims (1)
Number |
Date |
Country |
Kind |
5-168296 |
Jun 1993 |
JPX |
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Parent Case Info
This is a divisional of application Ser. No. 08/249,154, filed May 25, 1994.
US Referenced Citations (9)
Foreign Referenced Citations (2)
Number |
Date |
Country |
3-80203 |
Dec 1991 |
JPX |
4-26002 |
May 1992 |
JPX |
Non-Patent Literature Citations (1)
Entry |
A. S. Beard, "Development of the Tsing Ma Bridge," The Structural Engineer, pp. 192-195, vol. 71, No. 11, Jun. 1, 1993. |
Divisions (1)
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Number |
Date |
Country |
Parent |
249154 |
May 1994 |
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