CN205643712U - Laser radar wind measurement system based on remove boats and ships platform - Google Patents

Laser radar wind measurement system based on remove boats and ships platform Download PDF

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Publication number
CN205643712U
CN205643712U CN201620387349.XU CN201620387349U CN205643712U CN 205643712 U CN205643712 U CN 205643712U CN 201620387349 U CN201620387349 U CN 201620387349U CN 205643712 U CN205643712 U CN 205643712U
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China
Prior art keywords
laser radar
wind
protective housing
ship platform
system based
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Expired - Fee Related
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CN201620387349.XU
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Chinese (zh)
Inventor
薛洋洋
陈刚
窦培林
裴满意
李晓东
江俊杰
闫越
唐焱彬
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Jiangsu University of Science and Technology
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Jiangsu University of Science and Technology
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Priority to CN201620387349.XU priority Critical patent/CN205643712U/en
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02ATECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE
    • Y02A90/00Technologies having an indirect contribution to adaptation to climate change
    • Y02A90/10Information and communication technologies [ICT] supporting adaptation to climate change, e.g. for weather forecasting or climate simulation

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  • Optical Radar Systems And Details Thereof (AREA)

Abstract

The utility model discloses a laser radar wind measurement system based on remove boats and ships platform, including removing boats and ships platform, protective housing, anemometry laser radar, real -time gesture measured module, communication module, control module, storage battery, meteorological measured module, radar antenna, this system has that the size is little, light in weight, installation cloth are put conveniently and stronger portable characteristics to can comprehensively reduce the operation on the sea cost. The utility model discloses the short -term surveying work of the initial wind field wind regime in special sea area can be solved effectively, the problem that verification work, the real -time wind regime data acquisition of wind field construction period, the debugging of marine wind field and other special needs such as surveying work of operation stage carry out short -term measuring operation is measured for corresponding sea area wind regime numerical simulation and marine long -term measuring short -term.

Description

Laser radar wind measuring system based on mobile ship platform
Technical field
This utility model belongs to marine wind field wind profile fields of measurement.
Background technology
In the last few years, national governments increased the exploitation dynamics to offshore wind energy resource.Offshore wind farm industry Development prospect is considerable, and future is gradually comprehensively to maximization, scale and the development of territory, flood deep-sea.Wind energy provides Source whether enrich and situation of change can directly influence development cost and returns of investment, the most at sea wind energy At the beginning of exploitation, collect overhead, relevant marine site, in the range of corresponding height, in high precision, the short-term of high reliability and Long-term wind profile data are most important, and it is by wind energy on the sea assessment, wind field sitting and marine wind field operation The important foundation safeguarded.
At present, the method collecting sea turn cross-sectional data common in industry wide is to build in corresponding marine site The Large marine anemometer tower of respective numbers, utilizes and is arranged on the anemometer at offshore anemometer tower differing heights, determine Wind data is measured and collected to point, or the oceanographic buoy technology proposed the recently just utilization that combines with laser radar is sharp Wind profile measured by optical radar.But, these methods are only applicable to long-term wind regime data collection, for short Phase measures significant discomfort and closes, no matter from design-build and operation maintenance cost and difficulty or use flexible in terms of Seeing in degree, existing methods all can not meet short-term wind regime DATA REASONING and the demand of collection.
Utility model content
Utility model purpose: not enough in order to overcome present in existing methods, this utility model provides one Laser radar wind measuring system device based on mobile ship platform, it can adapt to short-term sea wind regime DATA REASONING With collect job requirements, have obvious cost advantage, operation maintenance easily, higher flexible convenience, chi Very little weight is little, portable transportation is with the obvious advantage, and can make full use of existing marine mobile ship platform.
Technical scheme: for reaching above-mentioned purpose, this utility model can adopt the following technical scheme that
A kind of laser radar wind measuring system based on mobile ship platform, including mobile ship platform, is arranged on shifting Protective housing in dynamic ship platform, it is positioned at the anemometry laser radar of protective housing, real-time attitude measurement module, logical News module, control module, accumulator battery, two vertical rods extended from protective housing, it is arranged in a vertical rod Meteorologic survey module, the radar antenna that is arranged in another vertical rod;Wherein, described anemometry laser radar is used The data including horizontal and vertical wind direction and wind velocity, turbulivity and wind shear are collected with measurement;Described real-time attitude is surveyed Amount module is in order to the motion of surveying record whole system six-freedom degree and Orientation differences;Meteorologic survey module is used To measure the meteorologic parameter including horizontal wind speed wind direction, air pressure, temperature and humidity on mobile ship platform deck.
Relative to prior art, laser radar wind measuring system device based on mobile ship platform of the present utility model Have the advantages that
1, the system and device that this utility model is proposed have that size is little, lightweight, install lay convenient and relatively Strong portability feature, requires simple to means of transportation and carrying platform.
2, on the one hand this utility model can make full use of the removable ship platform in corresponding marine site, eliminates short Phase surveys the cost of wind carrying platform, and the most removable ship platform is once gone to sea and can be completed the multi-task, Comprehensive reduction operation on the sea cost.
3, this utility model can efficiently solve special marine site wind field wind regime short-term measurement work first, relatively The short-term measured for a long time in corresponding marine site wind regime numerical simulation and sea measures checking work, wind field construction period Wind regime data acquisition, marine wind field debugging and other special needs such as work of measuring of operation stage are carried out in real time The problem that short-term measures operation.
On the basis of technique scheme, this utility model can also do other and improve, including:
Further, also include the photovoltaic panel being positioned in mobile ship platform, the charging inlet being positioned on protective housing, Described charging inlet is connected with accumulator battery by wire, and described photovoltaic panel is connected with charging inlet by wire.
Further, protective housing top board has circular hole and launch the passage of laser beam as anemometry laser radar.
Further, anemometry laser radar is CW lider.
Further, described communication module and control module are the bottom that mounted on top is fixed in protective housing.
Further, described protective housing is additionally provided with a spike, and a spike is by welding or is bolted to mobile In ship platform.
Further, told protective housing uses high density polyethylene (HDPE) material.
Accompanying drawing explanation
Fig. 1 is this utility model overall structure schematic diagram
Including, protective housing 1, a spike 2, anemometry laser radar 3, real-time attitude measurement module 4, communication mould Block 5, control module 6, accumulator battery 7, vertical rod 8, type meteorologic survey module 9, radar antenna 10, charging Interface 11, charging wire 12, photovoltaic panel 13, mobile ship platform 14.
Detailed description of the invention
As it is shown in figure 1, laser radar wind measuring system based on mobile ship platform of the present utility model includes: anti- Protecting box 1, a spike 2, anemometry laser radar 3, real-time attitude measurement module 4, communication module 5, control mould Block 6, accumulator battery 7, vertical rod 8, small-sized meteorologic survey module 9, radar antenna 10, charging inlet 11, Charging wire 12, photovoltaic panel 13 and mobile ship platform 14.
Wherein, the spike 2 on protective housing 1 four jiaos is fixed on the deck of mobile ship platform 14, protection Circular hole is had, to launch the passage of laser beam as anemometry laser radar 3 on case 1 top board.Protective housing 1 side plate On be disposed with charging inlet 11, be connected with photovoltaic panel 13 by charging wire 12;Anemometry laser radar 3, in real time Attitude measurement module 4, communication module 5, control module 6 and accumulator battery 7 are respectively mounted and are fixed on protective housing 1 Interior corresponding position, is connected by corresponding data wire and wire each other, and charging inlet 11 is by leading Line is connected with accumulator battery 7;Photovoltaic panel 13 mounting arrangements is on the deck of mobile ship platform 14;Two are stood Bar 8 is fixed in two side opposite the angles of protective housing 1, and a small-sized meteorologic survey is installed on vertical rod 8 top Module 9, another root installs radar antenna 10.
As preferably, described spike 2 is rigidly fixed in mobile boats and ships by Simple welding or bolt fastening and puts down The deck of platform 14, it is ensured that whole system device does not has any motion relative to mobile ship platform 14.
As preferably, described protective housing 1 uses high density polyethylene (HDPE) material, to alleviate construction weight, increases simultaneously Its resistance to corrosion strong.
As preferably, described anemometry laser radar 3 is CW lider, it is possible to measures and collects corresponding height Horizontal and vertical wind direction and wind velocity, turbulivity and wind shears etc. on layer, meet high severe sea condition and salt fog and sea water Corrosion requirement, entirety need not special mechanical compensating mechanism, has the function of self cleaning camera lens.
Described real-time attitude measurement module 4 be used for the motion of real-time surveying record whole system six-freedom degree with And Orientation differences, based on this wind regime data of follow-up measurement are carried out error correction.
Described communication module 5 and control module 6 are fixed on the bottom in protective housing 1 in mounted on top, rise respectively To ensureing the communication of whole system device, data transmission and the overall effect controlled.
As preferably, described accumulator battery 7 disclosure satisfy that and the most fully charged at least meets whole system device three days Work need for electricity.
Described small-sized meteorologic survey module 9 plays horizontal wind speed wind on mobile ship platform 14 deck of measurement observation To, the effect of the conventional meteorology parameters such as air pressure, temperature and humidity.
Described photovoltaic panel 13 mounting arrangements is on mobile ship platform 14 deck, to solve not have charger The charging problems of mobile ship platform 14, if selected mobile ship platform 14 has charger, can be direct Charged for accumulator battery 7 by charging wire 12.
Described mobile ship platform 14, as the carrying platform of whole system device, plays the effect of supporting body, Can select the marine job platform of wind field, offshore wind farm maintenance ship, the special working ship etc. other all can profit Ship platform.
And the method that lays that above-mentioned laser radar wind measuring system based on mobile ship platform is installed, including following step Rapid:
Step one: preparation, determines the relevant marine site carrying out short-term measurement, and selected available mobile ship Two vertical rods 8 and carrying equipment thereof are installed simultaneously and are put in place by oceangoing ship platform 14, the assembling work of completion system device Make;
Step 2: be transported to by whole system device in the mobile ship platform 14 of utilization, prepares to install and fixes;
Step 3: handle the deck surface of mobile ship platform 14 well, is fastened by Simple welding or bolt Deng alternate manner, the protective housing 1 of system and device is fixed on the deck handled well, arranges photovoltaic panel simultaneously 13 or prepare the charger in mobile ship platform 14;
Step 4: initialize anemometry laser radar 3 and set the wind regime parameter needing to measure and measure height accordingly Degree layer, connects charger, debugs whole system device, especially notes each sensor, communication module 5 Debugging efforts with control module 6;
Step 5: complete debugging efforts to reach corresponding job requirements, carries out short-term afterwards and surveys wind operation.
The above is only preferred implementation of the present utility model, it should be pointed out that: general for the art For logical technical staff, on the premise of without departing from this utility model principle, it is also possible to make some improvement and profit Decorations, these improvements and modifications also should be regarded as protection domain of the present utility model.

Claims (7)

1. a laser radar wind measuring system based on mobile ship platform, it is characterised in that: include mobile ship Oceangoing ship platform (14), the protective housing being arranged in mobile ship platform, the anemometry laser radar that is positioned at protective housing (3), real-time attitude measurement module (4), communication module (5), control module (6), accumulator battery (7), Two vertical rods (8) extended from protective housing, the meteorologic survey module (9) being arranged on a vertical rod (8), The radar antenna (10) being arranged in another vertical rod (8);
Wherein, described anemometry laser radar (3) includes horizontal and vertical wind direction and wind velocity, rapids in order to measure collection Mobility and the data of wind shear;
Described real-time attitude measurement module (4) in order to surveying record whole system six-freedom degree motion and Orientation differences;
Meteorologic survey module (9) includes horizontal wind speed wind direction, gas in order to measure in mobile ship platform (14) Pressure, the meteorologic parameter of temperature and humidity.
Laser radar wind measuring system based on mobile ship platform the most according to claim 1, its feature It is: also include the photovoltaic panel (13) being positioned in mobile ship platform (14), the charging being positioned on protective housing Interface (11), described charging inlet are connected with accumulator battery (7) by wire, and described photovoltaic panel passes through wire It is connected with charging inlet.
Laser radar wind measuring system based on mobile ship platform the most according to claim 1, its feature It is: have circular hole on protective housing (1) top board and launch the passage of laser beam as anemometry laser radar (3).
Laser radar wind measuring system based on mobile ship platform the most according to claim 1, its feature It is: anemometry laser radar (3) is CW lider.
Laser radar wind measuring system based on mobile ship platform the most according to claim 1, its feature It is: described communication module (5) and control module (6) are fixed in mounted on top in protective housing (1) Bottom.
Laser radar wind measuring system based on mobile ship platform the most according to claim 1, its feature Being: described protective housing is additionally provided with a spike (2), a spike is by welding or is bolted to mobile boats and ships On platform (14).
Laser radar wind measuring system based on mobile ship platform the most according to claim 1, its feature It is: told protective housing (1) uses high density polyethylene (HDPE) material.
CN201620387349.XU 2016-04-29 2016-04-29 Laser radar wind measurement system based on remove boats and ships platform Expired - Fee Related CN205643712U (en)

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Application Number Priority Date Filing Date Title
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Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105785396A (en) * 2016-04-29 2016-07-20 江苏科技大学 Laser radar wind measurement system based on mobile ship platform
CN107942094A (en) * 2017-12-04 2018-04-20 重庆交通大学 Survey wind comprehensive control station based on vehicle-carried mobile platform
CN111186676A (en) * 2019-08-23 2020-05-22 中国人民解放军32181部队 Safety transportation process for sea defense radar
CN111766609A (en) * 2020-07-08 2020-10-13 哈尔滨工业大学(深圳) Mobile split type laser radar

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105785396A (en) * 2016-04-29 2016-07-20 江苏科技大学 Laser radar wind measurement system based on mobile ship platform
CN107942094A (en) * 2017-12-04 2018-04-20 重庆交通大学 Survey wind comprehensive control station based on vehicle-carried mobile platform
CN107942094B (en) * 2017-12-04 2019-09-27 重庆交通大学 Survey wind comprehensive control station based on vehicle-carried mobile platform
CN111186676A (en) * 2019-08-23 2020-05-22 中国人民解放军32181部队 Safety transportation process for sea defense radar
CN111186676B (en) * 2019-08-23 2023-06-20 中国人民解放军32181部队 Sea defense radar installation and transportation technology
CN111766609A (en) * 2020-07-08 2020-10-13 哈尔滨工业大学(深圳) Mobile split type laser radar

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CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20161012

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