Horizontal forced vibration experimental apparatus for FISHFRAM buoy segment model under action of inclined uniform flow

A segmented model and forced vibration technology, which is applied in the field of marine engineering, can solve the problems of large scale effects and limitations, and achieve the effect of solving boundary effects and avoiding scale effects

CN102313635BActive Publication Date: 2013-04-17SHANGHAI JIAOTONG UNIV
4 Cites 0 Cited by

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Publication Date
2013-04-17

Smart Images

  • Figure 1
    Figure 1
  • Figure 2
    Figure 2
  • Figure 3
    Figure 3
Patent Text Reader

Abstract

The invention provides a horizontal forced vibration experimental apparatus for a FISHFARM buoy segment model under the action of inclined uniform flow, which comprises a buoy segment module, prosthesis modules, fixing modules, sliding modules and a measurement analysis control module. Both ends of the buoy segment module are respectively connected with the end part prosthesis modules. The fixing modules are respectively connected with the corresponding end part prosthesis modules and the corresponding sliding modules. The sliding modules are fixedly connected with the bottom of a trailer. The measurement analysis control module is arranged on the trailer and is respectively connected with the buoy segment module, the end part prosthesis modules and the sliding modules. In the invention, by arranging an optical fiber sensor on a fishing net, the local stress condition of the fishing net can be measured; by arranging component balances inside the buoy module, the overall stress condition of the fishing net can be measured; by arranging component balances outside the buoy module, the overall stress condition of the fishing net and the buoy module can be measured; due to the adoption of the special end part prosthesis module devices, the problem of the boundary effect of the model is solved; and the test condition can reach an actual KC value range and the scale effect is avoided.
Need to check novelty before this filing date? Find Prior Art

Description

technical field

[0001] The invention belongs to the field of marine engineering, and in particular relates to a horizontal forced vibration experiment device of a segmented model of a FISHFARM buoy that flows obliquely and uniformly. Background technique

[0002] The entire FISHFARM structure is placed in the sea, and its upper buoys and fishing nets will be subjected to the hydrodynamic effects of ocean currents and waves. Therefore, the dynamic analysis of the overall structure of FISHFARM is the key to whether it can be applied to engineering practice, and most of the methods used are model tests.

[0003] However, most of the existing test models are the overall model of FISHFARM. In the limited space of the test pool, a large scale ratio needs to be adopted, resulting in too small KC number, which inevitably leads to scale effects. In addition, in order to simplify the research problem, in the study of FISHFARM's hydrodynamic response, theoretical researchers began to ...

Examples

Embodiment 1

[0026] Such as figure 1 , figure 2 and image 3 As shown, the experimental device provided by the present invention includes: a buoy segment module 1, a first end prosthesis module 2, a second end prosthesis module 3, a first fixing module 5, a second fixing module 4, a second fixing module A sliding module 6, a second sliding module 7 and a measurement analysis control module 8, wherein: the two ends of the buoy segment module 1 are respectively connected with the first end prosthesis module 2 and the second end prosthesis module 3, and the first fixed The modules 5 are respectively connected with the first end prosthesis module 2 and the first sliding module 6, the second fixed module 4 is respectively connected with the second end prosthesis module 3 and the second sliding module 7, and the first sliding module 6 is connected with the trailer 9 is fixedly connected to the bottom of one end, the second sliding module 7 is fixedly connected to the bottom of the other end o...