Bridge monitoring system based on BIM

A monitoring system and bridge technology, applied in general control systems, control/regulation systems, comprehensive factory control, etc., can solve problems such as incomprehension by non-professionals, linkage analysis, lack of communication and coordination, etc.

Active Publication Date: 2016-06-08
RAILWAY ENG RES INST CHINA ACADEMY OF RAILWAY SCI +2
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0005] 1. With two-dimensional drawings as the main carrier of information, it is not easy to carry, transmit and store, and it is difficult for non-professionals to understand;
[0006] 2. Most of the key construction procedures use traditional construction machinery and tools, which are inefficient and greatly influenced by human factors. The transmission of construction information still relies on uploading and distributing, insufficient communication and coordination, and poor information tracking;
[0007] 3. Bridge management and maintenance measures mainly rely on the results of regular inspections and manual inspections, and do not carry out joint analysis of design, construction, and various inspection and monitoring data

Method used

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  • Bridge monitoring system based on BIM
  • Bridge monitoring system based on BIM
  • Bridge monitoring system based on BIM

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0046] Example 1, such as figure 1 As shown, a BIM-based bridge monitoring system according to an embodiment of the present invention includes a bridge collaborative management platform, a communication device, a terminal device, a computer, a display device, and intelligent mechanical equipment. The terminal device is connected to the bridge collaborative management platform through the communication device. The bridge collaborative management platform performs information interaction with the terminal device, the bridge collaborative management platform is connected to the computer, the computer is connected to the display device, and the intelligent mechanical equipment is connected to the bridge collaborative management platform through the communication device; the communication device is a network communication device, a TV communication device, a voice Information communication devices, e-mail servers, in which network communication devices are wired communication equipm...

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Abstract

The invention discloses a bridge monitoring system based on a BIM. The bridge monitoring system comprises a bridge cooperative management platform, communication devices, a terminal device, a computer, a display device and intelligent mechanical equipment. The terminal device is connected with the bridge cooperative management platform through the communication device. The bridge cooperative management platform performs information interaction with the terminal device. The bridge cooperative management platform is connected with the computer which is connected with the display device. The intelligent mechanical equipment is connected with the bridge cooperative management platform through the communication device. The beneficial effects of the bridge monitoring system based on the BIM are that three stages of bridge design, construction and operation and maintenance are integrated together with the BIM technology acting as the core and the internet, internet of things, mobile internet, big data and cloud computing information technologies acting as the means so that information sharing can be realized; facing multiple participating parties and multiple stages, an information platform is provided for the BIM application of all the stages and data exchange of all the participating parties so that lossless transferring and sharing of information of all parties can be realized; and the technical basis is provided for subsequent design, construction and operation and maintenance of the bridge project.

Description

technical field [0001] The invention relates to the technical field of bridges, in particular to a BIM-based bridge monitoring system. Background technique [0002] In the past ten years, with the rapid development of high-speed railways, my country has successively built a number of representative railway or road-rail dual-use bridges such as Wuhan Tianxingzhou Yangtze River Bridge, Nanjing Dashengguan Yangtze River Bridge, Jinan Yellow River Bridge, Tongling Yangtze River Bridge, etc. Span bridges, they are not only large in size, heavy in load and high in operation speed, but also novel in structure and beautiful in design. [0003] The design, construction, and operation and maintenance stages of these bridges are all independent, resulting in the inability to share information, resulting in the emergence of information islands, application islands, and resource islands. The traditional bridge monitoring system is mostly limited to the bridge body structure, and its main...

Claims

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Application Information

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IPC IPC(8): G05B19/418
CPCY02P90/02G05B19/41875
Inventor潘永杰赵欣欣胡所亭刘晓光郭维王严艺肖鑫
OwnerRAILWAY ENG RES INST CHINA ACADEMY OF RAILWAY SCI