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Calculation method of pipe joint hoop strain of tide load sinking pipe tunnel

A calculation method and technology of hoop strain, applied in the direction of calculation, design optimization/simulation, special data processing application, etc., can solve the cracking of pipe joints in immersed tunnels, research on the calculation method of hoop strain of unseen pipe joints, and normal use of tunnels Hazards and other issues, to achieve the effect of improving computing power

Active Publication Date: 2017-05-17
ZHEJIANG UNIV CITY COLLEGE
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  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0002] At present, there are many studies at home and abroad on the dynamic response of immersed tube tunnel pipe joints under the influence of wave loads, but there are few studies on the influence of tidal loads. Research on Calculation Method of Nodal Ring Strain
[0003] According to domestic and foreign engineering cases, some immersed tube tunnel joints cracked and leaked during the operation period, which brought great harm to the normal use of the tunnel

Method used

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  • Calculation method of pipe joint hoop strain of tide load sinking pipe tunnel
  • Calculation method of pipe joint hoop strain of tide load sinking pipe tunnel
  • Calculation method of pipe joint hoop strain of tide load sinking pipe tunnel

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Embodiment Construction

[0048] The specific implementation manner of the present invention will be described in detail below in conjunction with the accompanying drawings.

[0049] Table 1 Backfill soil parameters

[0050]

[0051] Table 2J2 section load

[0052]

[0053]

[0054]Table 3 Calculation results of the maximum tensile strain in the middle section of the pipe joint

[0055]

[0056] Specific examples of this patent

[0057] 1. Project overview

[0058] This patent is based on the Submarine Immersed Tube Tunnel Project in Shenjiamen Port, Zhoushan [1] As a background, the tide in this port area is an irregular semi-diurnal tide, with an average high tide level of 1.39m and an average low tide level of -1.13m (1985 National Elevation Datum). For detailed tide information, see literature [2].

[0059] 2. Monitoring system

[0060] This monitoring adopts the fiber Bragg grating (FBG) sensing technology, and the section at the temporary block of the E2 pipe joint is selected as...

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Abstract

The invention provides a calculation method of a pipe joint hoop strain of a tide load sinking pipe tunnel. The method includes steps of, assuming a back silt layer on the pipe joint as an impervious bed, and regarding the change of the tide level as a large area load pO added on the impervious bed, wherein the location of an underground level is the top face of the impervious bed; not considering about influence of tide on the pipe joint structure, calculating water, soil pressure and subgrade reaction acted on the outer wall of the pipe joint; applying a winkler foundation module, regarding the loop strain calculation as the plane strain problem; analyzing the loop stress and deformation of the pipe joint structure by a load-structure method; through the calculation of cross model stress of the pipe joint, acquiring the relationship of the loop stress strain relationship of the pipe joint; finally, through calculation, acquiring the loop strain distribution of inner and outer walls of the pipe joint under one tide level and influence of the loop strain of every point of inner and outer walls of the pipe joint along with the change of the tide level. The calculation result can be used for predicting the loop strain of the pipe joint of the sinking pipe tunnel in operation stage, judging the part where may generate crack, and carrying out key monitoring and prevention.

Description

technical field [0001] The invention relates to a method for calculating the circumferential strain of a tube joint of an immersed tube tunnel under tidal load, and belongs to the technical field of underground engineering. Background technique [0002] At present, there are many studies at home and abroad on the dynamic response of immersed tube tunnel pipe joints under the influence of wave loads, but there are few studies on the influence of tidal loads. Research on calculation method of nodal hoop strain. [0003] According to engineering cases at home and abroad, some pipe joints of immersed tube tunnels cracked and leaked during the operation period, which brought great harm to the normal use of the tunnel. Due to the special structural form of immersed tube tunnels, a large number of them are built in large rivers, so the tidal load has a great influence on the strain of pipe joints. In order to explore the influence of tidal loads on the circumferential strain dist...

Claims

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Application Information

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IPC IPC(8): G06F17/50
CPCG06F30/23
Inventor 魏纲陆世杰黄絮朱田宇俞国骅崔程虹许奎鑫宋宥整林雄华鑫欣
Owner ZHEJIANG UNIV CITY COLLEGE
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