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Intelligent medium-latitude large-scale buoy observation system and method

An observation system and buoy technology, applied in buoys, measuring devices, surveying and navigation, etc., can solve the problems of difficult survival of observation buoys, easy to be overturned by waves, and poor accuracy of test data, so as to increase signal radiation ability and prevent wanton drifting , Received and transmitted signal smooth effect

Inactive Publication Date: 2021-06-15
OCEAN UNIV OF CHINA
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

These objective conditions make it difficult for traditional observation buoys to survive in this sea area
[0003] At present, in the actual use of mid-latitude buoys, with the undulations of the sea surface and the tumbling of waves, the buoys tend to float freely and are easily overturned by waves, resulting in the measurement area of ​​the buoys changing at any time, and the accuracy of the test data is relatively low. Difference

Method used

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  • Intelligent medium-latitude large-scale buoy observation system and method
  • Intelligent medium-latitude large-scale buoy observation system and method
  • Intelligent medium-latitude large-scale buoy observation system and method

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Embodiment Construction

[0037] In order to enable those skilled in the art to better understand the technical solutions of the present invention, the present invention will be further described in detail below in conjunction with the accompanying drawings.

[0038] The present invention provides such Figure 1-7A kind of intelligent mid-latitude large-scale buoy observation system shown includes a buoy body 1, the top view section of the buoy body 1 is set to a circle, and the bottom peripheral edge of the buoy body 1 is fixed with first steel ropes 2 at equal intervals, The bottom of the first steel rope 2 is fixed with a counterweight 3, the bottom of the counterweight 3 is fixed with a second steel rope 4, the bottom of the second steel rope 4 is fixed with a locking block 5, and the bottom of the second steel rope 4 is fixed with a locking block 5. The outer side of the buoy body 1 is sleeved with a suspension stabilization ring 6, the outside of the suspension stabilization ring 6 is fixed with ...

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Abstract

The invention discloses an intelligent medium-latitude large-scale buoy observation system and method. The system comprises a buoy body, an overlook section of the buoy body is arranged to be circular, first steel ropes are fixed to the circumferential edge of the bottom of the buoy body at equal intervals, balancing weights are fixed to the bottoms of the first steel ropes, and second steel ropes are fixed to the bottoms of the balancing weights; a locking block is fixed to the bottom of each second steel rope, the outer side of the buoy body is connected with a suspension stabilizing ring, floating balls are fixed to the outer side of the suspension stabilizing ring at equal intervals, a mounting base is fixed to the middle of the upper side of the buoy body, the mounting base is in a circular truncated cone shape, and a supporting column is fixed to the top of the mounting base; and a mounting table is fixed to the top of the supporting column. The buoy body is pulled and limited through the locking blocks, the balancing weights and the first steel ropes, the buoy body can be ensured to be accurately reset when the wind is smooth and quiet, the buoy body can be limited in a moving area, and the phenomenon that the buoy body drifts freely is eradicated.

Description

technical field [0001] The invention relates to the field of buoy observation, in particular to an intelligent mid-latitude large-scale buoy observation system and method. Background technique [0002] The challenges of moored buoy observations in mid-latitude seas are considerable. The water depth in this sea area is often nearly 6000 meters. In the mid-latitude sea area of ​​the Northwest Pacific Ocean, the current velocity exceeds 3kn on the surface and exceeds 0.5kn at the bottom of 3000 meters, which will cause great strain on the mooring system. Additionally, typhoons and winter storms produce damaging winds and waves. These objective conditions make it difficult for traditional observation buoys to survive in this sea area. [0003] At present, in the actual use of mid-latitude buoys, with the undulations of the sea surface and the tumbling of waves, the buoys tend to float freely and are easily overturned by waves, resulting in the measurement area of ​​the buoys ...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): B63B22/00B63B22/20G01W1/02G01C13/00H02J7/35H01T19/04
CPCB63B22/00B63B22/20B63B2022/006G01C13/00G01W1/02H01T19/04H02J7/35Y02A90/30
Inventor 马昕陈朝晖吴立新王伟成
Owner OCEAN UNIV OF CHINA
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