CN204775854U - Novel measure buoy - Google Patents
Novel measure buoy Download PDFInfo
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- CN204775854U CN204775854U CN201520368227.1U CN201520368227U CN204775854U CN 204775854 U CN204775854 U CN 204775854U CN 201520368227 U CN201520368227 U CN 201520368227U CN 204775854 U CN204775854 U CN 204775854U
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- buoy
- pulling force
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- water quality
- novel measurement
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Abstract
The utility model discloses a novel measure buoy, including buoy body (1), buoy body (1) in be equipped with buoyancy compartment (2) and instrument room (3), the upper portion of buoy body (1) be equipped with upper bracket (4), upper bracket (4) on be equipped with fixed platform (5), buoy body (1) lower part be equipped with lower carriage (6), lower carriage (6) on be equipped with balanced pouring weight (7), buoy body (1) on still be equipped with can the first reel of pivoted (8), first reel (8) on be equipped with the pulling force that can rise or descend cable (9) when it rotates, the lower extreme of pulling force cable (9) be equipped with gravity piece (10), pulling force cable (9) on be connected with can be along with its quality of water sensor (11) of rising or descending. The utility model discloses simple structure can measure the measurement buoy that quality of water was located to the different depth of waters.
Description
[technical field]
The utility model relates to a kind of buoy, is more particularly a kind of novel measurement buoy.
[background technology]
At present, global warming has become a much-talked-about topic, and its disaster brought is obvious to all especially.Ocean as global climate one of important factor in order pay attention to by various countries; The Marine Environmental Pollution of countries in the world is also everyday increase the weight of simultaneously, and Gulf of Mexico leakage of oil, nuclear power station in Japan are revealed, Chinese Bohai Sea Gulf leakage of oil event, and these all bring immeasurable consequence to marine environment.
Therefore, the water quality measurement of seawater becomes ever more important, and the water quality measurement of current seawater is all generally install water quality sensor on buoy, water quality sensor is put into the measurement carrying out water quality in seawater.But the water quality sensor of traditional water quality measurement mode all throws in some depths fixing in the seawater, the water quality data at different depth place can not be measured, so the measurement of seawater quality has some limitations, the data gathered are complete not, to the bulk analysis existing defects of seawater quality, the particularity of the overall water quality measurement of seawater is lower.
Therefore, the utility model produces based on above deficiency just.
[utility model content]
The utility model object overcomes the deficiencies in the prior art, and provide a kind of structure simple novel measurement buoy, this measurement buoy can provide take off data more completely, makes seawater quality analysis more accurate.
The utility model is achieved through the following technical solutions:
A kind of novel measurement buoy, it is characterized in that: comprise buoy float 1, buoyancy compartment 2 and instrument compartment 3 is provided with in described buoy float 1, the top of described buoy float 1 is provided with upper bracket 4, described upper bracket 4 is provided with fixed platform 5, described buoy float 1 bottom is provided with lower bracket 6, described lower bracket 6 is provided with counterweight block 7, described buoy float 1 is also provided with first reel 8 that can rotate, the first described reel 8 is provided with the pulling force rope 9 that can rise when it rotates or decline, the lower end of described pulling force rope 9 is provided with gravity block 10, described pulling force rope 9 is connected with the water quality sensor 11 that can rise with it or decline.
Novel measurement buoy as above, it is characterized in that: described buoy float 1 is provided with second reel 12 that can rotate, described water quality sensor 11 is provided with and can be enclosed within pulling force rope 9 and the ring set 13 that relative tension rope about 9 slides together with water quality sensor 11, and the signal hawser 14 of described water quality sensor 11 is wrapped on the second reel 12.
Novel measurement buoy as above, is characterized in that: described ring set 13 is two.
Novel measurement buoy as above, is characterized in that: the first described reel 8 and the second reel 12 are located at the metacentric position of buoy float 1.
Novel measurement buoy as above, is characterized in that: described pulling force rope 9 is corrosion-resistant steel stay cord.
Novel measurement buoy as above, is characterized in that: the diameter of described pulling force rope 9 is 8mm to 10mm.
Novel measurement buoy as above, is characterized in that: described fixed platform 5 is provided with meteorological sensor 15, GPRS antenna 16.
Novel measurement buoy as above, is characterized in that: described fixed platform 5 is provided with anchor lantern 17.
Novel measurement buoy as above, is characterized in that: be provided with the many tension bars 18 for keeping upper bracket 4 stable between described buoy float 1 and upper bracket 4.
Novel measurement buoy as above, is characterized in that: described tension bar 18 circumference uniform distribution is on buoy float 1.
Compared with prior art, the utility model has the following advantages:
1, the first reel of the present utility model can make pulling force rope rise or decline in the process of rotating, the water quality sensor be connected on pulling force rope just can be followed and be risen or decline, water quality sensor just can measure the water quality data at different water depth place, thus the data making seawater quality measure more comprehensively, make the bulk analysis of user to seawater quality more accurate.
2, buoy float of the present utility model is provided with second reel that can rotate, and water quality sensor is provided with and can be enclosed within pulling force rope and the ring set that relative tension rope slides up and down together with water quality sensor, and the signal cable takeup of water quality sensor is on the second reel.When the second spool turns, signal hawser rises or declines, water quality sensor is followed and is risen or decline, thus measure the water quality data at different water depth place, ring set is enclosed within pulling force rope and plays directional tagging, water quality sensor is elevated more steady, when also making water quality sensor rest on a certain depth of water place, does not have large rocking.
3, the first reel of the present utility model and the second reel are located at the metacentric position of buoy float, so waving of pulling force rope and signal hawser is minimum, reduce the damage that pulling force rope and signal hawser bring because buoy float rocks.
4, being provided with the many tension bars for keeping upper bracket stable between buoy float of the present utility model and upper bracket, ensure that the firm of upper bracket.
5, the utility model structure is simple, easily manufactured, with low cost, gathers water quality data comprehensive, is applicable to promoting.
[accompanying drawing explanation]
Fig. 1 is the utility model schematic diagram;
[detailed description of the invention]
Below in conjunction with accompanying drawing, the utility model is further described:
A kind of novel measurement buoy, comprise buoy float 1, buoyancy compartment 2 and instrument compartment 3 is provided with in described buoy float 1, the top of described buoy float 1 is provided with upper bracket 4, described upper bracket 4 is provided with fixed platform 5, described buoy float 1 bottom is provided with lower bracket 6, described lower bracket 6 is provided with counterweight block 7, described buoy float 1 is also provided with first reel 8 that can rotate, the first described reel 8 is provided with the pulling force rope 9 that can rise when it rotates or decline, the lower end of described pulling force rope 9 is provided with gravity block 10, described pulling force rope 9 is connected with the water quality sensor 11 that can rise with it or decline.First reel 8 can make pulling force rope 9 rise or decline in the process of rotating, the water quality sensor 11 be connected on pulling force rope 9 just can be followed and be risen or decline, water quality sensor 11 just can measure the water quality data at different water depth place, thus the data making seawater quality measure more comprehensively, make the bulk analysis of user to seawater quality more accurate.And buoy float 1 bottom is provided with lower bracket 6, described lower bracket 6 is provided with counterweight block 7, and make the center of gravity of buoy very low, stability is high, not easily turns over and sinks, highly beneficial to water quality measurement.
Described buoy float 1 is provided with second reel 12 that can rotate, described water quality sensor 11 is provided with and can be enclosed within pulling force rope 9 and the ring set 13 that relative tension rope about 9 slides together with water quality sensor 11, and the signal hawser 14 of described water quality sensor 11 is wrapped on the second reel 12.When the second reel 12 rotates, signal hawser 14 rises or declines, water quality sensor 11 is followed and is risen or decline, thus measure the water quality data at different water depth place, ring set 13 is enclosed within pulling force rope 9 and plays directional tagging, water quality sensor 11 is elevated more steady, when also making water quality sensor 11 rest on a certain depth of water place, does not have large rocking.
Described ring set 13 is two.Two ring sets 13 can make water quality sensor 11 be elevated more steadily along pulling force rope 9, safe and reliable, can stand boisterous impact, also not have large rocking when water quality sensor 11 rests on certain certain degree of depth.
The first described reel 8 and the second reel 12 are located at the metacentric position of buoy float 1, so waving of pulling force rope 9 and signal hawser 14 is minimum, reduces pulling force rope 9 and signal hawser 14 because of buoy float 1 and rock the damage brought.
Described pulling force rope 9 is corrosion-resistant steel stay cord.Corrosion-resistant steel stay cord can be resisted various corrosive elements in seawater and, to its corrosion, increase the service life.
The diameter of described pulling force rope 9 is 8mm to 10mm, and described gravity block 10 is 90 kilograms to 100 kilograms.Gravity block 10 is arranged on 90 kilograms to 100 kilograms can make pulling force rope 9 there will not be large rocking, and the diameter of pulling force rope 9 arranges 8mm to 10mm, both ensured that it can not be broken by gravity block 9, and avoided again while guaranteeing intensity using thicker corrosion-resistant steel stay cord and the higher problem of the cost brought.
Described fixed platform 5 is provided with meteorological sensor 15, GPRS antenna 16.
Described fixed platform 5 is provided with anchor lantern 17.
Be provided with many between described buoy float 1 and upper bracket 4 for the tension bar 18 keeping upper bracket 4 stable, ensure that the firm of upper bracket 4.
Described tension bar 18 circumference uniform distribution, on buoy float 1, while making upper bracket 4 firm, also makes whole buoy balance high.
Claims (10)
1. a novel measurement buoy, it is characterized in that: comprise buoy float (1), buoyancy compartment (2) and instrument compartment (3) is provided with in described buoy float (1), the top of described buoy float (1) is provided with upper bracket (4), described upper bracket (4) is provided with fixed platform (5), described buoy float (1) bottom is provided with lower bracket (6), described lower bracket (6) is provided with counterweight block (7), described buoy float (1) is also provided with first reel (8) that can rotate, described the first reel (8) is provided with the pulling force rope (9) that can rise when it rotates or decline, the lower end of described pulling force rope (9) is provided with gravity block (10), described pulling force rope (9) is connected with the water quality sensor (11) that can rise with it or decline.
2. novel measurement buoy according to claim 1, it is characterized in that: described buoy float (1) is provided with second reel (12) that can rotate, described water quality sensor (11) is provided with and can be enclosed within pulling force rope (9) and the ring set (13) that relative tension rope (9) slides up and down together with water quality sensor (11), and the signal hawser (14) of described water quality sensor (11) is wrapped on the second reel (12).
3. novel measurement buoy according to claim 2, is characterized in that: described ring set (13) is two.
4. novel measurement buoy according to claim 2, is characterized in that: described the first reel (8) and the second reel (12) are located at the metacentric position of buoy float (1).
5. novel measurement buoy according to claim 1, is characterized in that: described pulling force rope (9) is corrosion-resistant steel stay cord.
6. novel measurement buoy according to claim 5, is characterized in that: the diameter of described pulling force rope (9) is 8mm to 10mm.
7. novel measurement buoy according to claim 1, is characterized in that: described fixed platform (5) is provided with meteorological sensor (15), GPRS antenna (16).
8. novel measurement buoy according to claim 1, is characterized in that: described fixed platform (5) is provided with anchor lantern (17).
9. novel measurement buoy according to claim 1, is characterized in that: be provided with the many tension bars (18) for keeping upper bracket (4) stable between described buoy float (1) and upper bracket (4).
10. novel measurement buoy according to claim 9, is characterized in that: described tension bar (18) circumference uniform distribution is on buoy float (1).
Priority Applications (1)
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CN201520368227.1U CN204775854U (en) | 2015-06-01 | 2015-06-01 | Novel measure buoy |
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CN201520368227.1U CN204775854U (en) | 2015-06-01 | 2015-06-01 | Novel measure buoy |
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Cited By (5)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN104925225A (en) * | 2015-06-01 | 2015-09-23 | 中山市探海仪器有限公司 | Measurement buoy capable of measuring quality of water at different depths |
CN105799867A (en) * | 2016-03-15 | 2016-07-27 | 浙江海洋学院 | Cake-shaped buoy body tower |
CN108583788A (en) * | 2018-04-27 | 2018-09-28 | 中国科学院海洋研究所 | Three anchor formula buoys and method for Marine Sciences experiment and real-time profiling observation |
CN109374357A (en) * | 2018-11-16 | 2019-02-22 | 浙江海洋大学 | A kind of sample collecting device for marine pollutant |
CN114013572A (en) * | 2021-11-01 | 2022-02-08 | 江苏海洋大学 | Multi-sensor intelligent sea air interface parameter observation continuous operation workstation |
-
2015
- 2015-06-01 CN CN201520368227.1U patent/CN204775854U/en active Active
Cited By (6)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN104925225A (en) * | 2015-06-01 | 2015-09-23 | 中山市探海仪器有限公司 | Measurement buoy capable of measuring quality of water at different depths |
CN105799867A (en) * | 2016-03-15 | 2016-07-27 | 浙江海洋学院 | Cake-shaped buoy body tower |
CN108583788A (en) * | 2018-04-27 | 2018-09-28 | 中国科学院海洋研究所 | Three anchor formula buoys and method for Marine Sciences experiment and real-time profiling observation |
CN109374357A (en) * | 2018-11-16 | 2019-02-22 | 浙江海洋大学 | A kind of sample collecting device for marine pollutant |
CN109374357B (en) * | 2018-11-16 | 2021-04-20 | 浙江海洋大学 | Sample collecting device for marine pollutants |
CN114013572A (en) * | 2021-11-01 | 2022-02-08 | 江苏海洋大学 | Multi-sensor intelligent sea air interface parameter observation continuous operation workstation |
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