Vortex-induced vibration simulation test device for deep sea riser model with movable top end under uniform flow

A deep-sea riser and vortex-induced vibration technology, which is applied in the field of marine engineering, can solve the problems of unavoidable scale effect, less test data, difficult vortex-induced vibration test, etc., and achieve the effect of avoiding scale effect and convenient installation and disassembly

Active Publication Date: 2012-04-11
SHANGHAI JIAO TONG UNIV
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

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Problems solved by technology

After analysis, the shortcomings of this test technology are: 1. Generally, it can only simulate the vortex-induced vibration of small-scale pipe fittings, and the scale effect is difficult to avoid; 2. Due to the speed limit of the ocean engineering pool trailer, it is difficult to effectively carry out the real Reynolds number. Vortex induced vibration test
3. Due to the limitation ...

Method used

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  • Vortex-induced vibration simulation test device for deep sea riser model with movable top end under uniform flow
  • Vortex-induced vibration simulation test device for deep sea riser model with movable top end under uniform flow
  • Vortex-induced vibration simulation test device for deep sea riser model with movable top end under uniform flow

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Embodiment 1

[0038] In this embodiment, the vortex-induced vibration rotation test device for the inclined riser with movable top under shear flow provided by the present invention includes a deep-sea riser module 1, a top support module 2, a bottom support module 3, two Vertical track module 4 , horizontal track module 5 , four motor modules 6 , four fairing modules 7 , and measurement analysis control module 9 . Wherein, the two vertical track modules 4 are respectively connected with the bottom of the horizontal track module 5, the top support module 2, and the bottom support module 3, and the horizontal track modules 5 are respectively connected with the bottom and two bottoms of the other side of the trailer 10. The tops of each of the vertical rail modules 4 are connected, the two ends of the deep-sea riser module 1 are respectively connected to the top support module 2 and the bottom support module 3, and the fairing edges of the four fairing modules 7 The plates 39 respectively pas...

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Abstract

The invention provides a vortex-induced vibration rotary test device for an oblique riser with movable top under shear flow. The test device comprises a deep sea riser module, a top support module, a bottom support module, two vertical track modules, a horizontal track module, four motor modules, four fairing modules and a measurement analysis control module, wherein the two vertical track modules are connected with the bottom of the horizontal track module, the top support module and the bottom support module respectively; the horizontal track module is connected with the tops of the two vertical track modules; the two ends of the deep sea riser module are connected with the top support module and the bottom support module respectively; and the measurement analysis control module is connected with the deep sea riser module, the top support module and the bottom support module. According to the test device, vortex-induced vibration of a large-sized riser model under the influence of asea platform can be simulated by fully utilizing the vertical track modules and the horizontal track module; and the test device is very convenient to install and detach.

Description

technical field [0001] The invention relates to a device in the technical field of marine engineering, in particular to a vortex-induced vibration simulation test device for a movable deep-sea riser model with a uniform flow down top. Background technique [0002] According to the knowledge of fluid mechanics, the columnar structure is placed in the incoming flow of a certain speed, and alternating eddies will occur on both sides. In association with the generation and discharge of vortices, the cylinders are subjected to pulsating pressures both laterally and in the flow direction. If the column is elastically supported at this time, then the pulsating fluid force will cause the column to vibrate, which in turn will change its wake structure. This fluid-structure interaction problem is called vortex-induced vibration. As offshore oil and gas production advances to deep water, the riser in the deep water environment can be regarded as a slender and flexible structure, and ...

Claims

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Application Information

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IPC IPC(8): G01M7/06
Inventor 付世晓宋斌王俊高胡克
Owner SHANGHAI JIAO TONG UNIV
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