Implementation method for multiple stress systems of beam bridge in straddle type monorail transport line

A technology of straddle-type monorail and traffic lines, which is applied in the field of realization of various stress systems of girder bridges in straddle-type monorail traffic lines

Inactive Publication Date: 2013-12-11
BEIJING JIAOTONG UNIV
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0007] The technical problem to be solved by the present invention is to change the design of the existing straddle-type monorail traffic line from a single simply supported system to a simply supported variable continuous system, a simply supported variable continuous rigid frame system, a simply supported variable rigid frame system and a simply supported variable rigid frame system. A variety of force-bearing systems com...

Method used

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  • Implementation method for multiple stress systems of beam bridge in straddle type monorail transport line
  • Implementation method for multiple stress systems of beam bridge in straddle type monorail transport line
  • Implementation method for multiple stress systems of beam bridge in straddle type monorail transport line

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Experimental program
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Embodiment 1

[0031] Embodiment 1 simply supported variable continuous system+simply supported system

[0032] The stress system of a girder bridge in a straddle monorail transit line consists of two systems: simply supported variable continuous system and simply supported system, such as Image 6. Among them, the simple-supported variable continuous system has only one expansion joint between two continuous track girder bridges; the number of supports in a simple-supported variable continuous system track beam bridge with 5 spans on the left or right line is 6, one of which is fixed Supports, 5 are movable supports; the straddle-type monorail seamless line composed of 5-span simply supported variable continuous system is a joint, if the line length is longer, the number of joints will be more; a joint with 5 spans Simply supported variable continuous system track girder bridge is formed by transporting and hoisting the track girder prefabricated in the factory to the top surface of the br...

Embodiment 2

[0034] Embodiment 2 simply supported variable continuous rigid frame system+simply supported system

[0035] The beam bridge bearing system in a straddle monorail traffic line is composed of two systems: simply supported variable continuous rigid frame system and simply supported system, such as Figure 7 . Among them, the simply supported variable continuous rigid frame system has only one expansion joint between two continuous track girder bridges; the number of supports in a simply supported variable continuous rigid frame system track girder bridge with 5 spans on the left or right line is 2, The supports are all movable supports; the straddle-type monorail seamless line composed of 5-span simple-support variable continuous rigid frame system is a joint, and the longer the line length is, the more the number of joints is; a 5-span Simply supported variable continuous rigid frame system track girder bridge is formed by transporting and hoisting the prefabricated track gird...

Embodiment 3

[0037] Embodiment 3 simply supported variable rigid frame system+simply supported system

[0038] The girder bridge stress system in a straddle monorail transit line consists of two systems: simply supported variable rigid frame system and simply supported system, such as Figure 8 . Among them, the simply supported variable rigid frame system has only one expansion joint between two consecutive track girder bridges; the number of supports in a simply supported variable rigid frame system track girder bridge with 5 spans on the left or right line is 2, and the support All are movable supports; the straddle-type monorail seamless line composed of 5-span simply supported variable rigid frame system is a joint, and the longer the line length is, the more the number of joints is; a 5-span simply supported variable Rigid frame track girder bridge is formed by transporting and hoisting the track girder prefabricated in the factory to the top surface of the bridge pier cap beam by s...

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Abstract

The invention relates to an implementation method for multiple stress systems of a beam bridge in a straddle type monorail transport line, and belongs to the technical field of bridge engineering, wherein the implementation method is applied to all types of straddle type monorail transport including light-duty, medium-duty and heavy-duty straddle type monorail transport. According to the implementation method, an existing straddle type monorail transport line design is changed from a single simply supported system to the multiple stress systems including a simply supported variable continuous system, a simply supported variable continuous rigid frame system, a simply supported variable rigid frame system, a simply supported system and the like. Therefore, adaptability to the terrain, landforms, geological conditions, road conditions and the like on the line is enhanced, the smoothness of the line is enhanced, the number of expansion joints and supports on the monorail transport line is greatly reduced, abrasion of rubber tires and construction cost are lowered, the service life of a vehicle is prolonged, and operation and maintenance cost is lowered. The implementation method is a huge innovation in a true sense and has great significance in boosting the development of the straddle type monorail transport.

Description

technical field [0001] The invention relates to a method for realizing multiple stress systems of girder bridges in a straddle monorail traffic line, which is applied to the civil engineering of a straddle monorail traffic system, specifically to the stress of a girder bridge in a straddle monorail traffic line The system consists of simply supported variable continuous system, simply supported variable continuous rigid frame system, simply supported variable rigid frame system and part or all of simply supported system, and is applied to all straddle-type monorail traffic such as light, medium and heavy . Background technique [0002] Most of the girder bridge stress systems in any line of the existing straddle monorail transit system are composed of simply supported systems. Considering the expansion and contraction deformation of the track girder or turnout when the temperature changes or the foundation settlement, Expansion joints shall be provided at both ends of the t...

Claims

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Application Information

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IPC IPC(8): E01D21/00E01D19/06E01B25/08
Inventor 朱尔玉施明源李秀华郭占明王宏亮
Owner BEIJING JIAOTONG UNIV
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