CN109540218A - Beach aquaculture pond Water quality detection device - Google Patents
Beach aquaculture pond Water quality detection device Download PDFInfo
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- CN109540218A CN109540218A CN201811595777.1A CN201811595777A CN109540218A CN 109540218 A CN109540218 A CN 109540218A CN 201811595777 A CN201811595777 A CN 201811595777A CN 109540218 A CN109540218 A CN 109540218A
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- G—PHYSICS
- G01—MEASURING; TESTING
- G01D—MEASURING NOT SPECIALLY ADAPTED FOR A SPECIFIC VARIABLE; ARRANGEMENTS FOR MEASURING TWO OR MORE VARIABLES NOT COVERED IN A SINGLE OTHER SUBCLASS; TARIFF METERING APPARATUS; MEASURING OR TESTING NOT OTHERWISE PROVIDED FOR
- G01D21/00—Measuring or testing not otherwise provided for
- G01D21/02—Measuring two or more variables by means not covered by a single other subclass
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F03—MACHINES OR ENGINES FOR LIQUIDS; WIND, SPRING, OR WEIGHT MOTORS; PRODUCING MECHANICAL POWER OR A REACTIVE PROPULSIVE THRUST, NOT OTHERWISE PROVIDED FOR
- F03D—WIND MOTORS
- F03D9/00—Adaptations of wind motors for special use; Combinations of wind motors with apparatus driven thereby; Wind motors specially adapted for installation in particular locations
- F03D9/10—Combinations of wind motors with apparatus storing energy
- F03D9/11—Combinations of wind motors with apparatus storing energy storing electrical energy
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F03—MACHINES OR ENGINES FOR LIQUIDS; WIND, SPRING, OR WEIGHT MOTORS; PRODUCING MECHANICAL POWER OR A REACTIVE PROPULSIVE THRUST, NOT OTHERWISE PROVIDED FOR
- F03D—WIND MOTORS
- F03D9/00—Adaptations of wind motors for special use; Combinations of wind motors with apparatus driven thereby; Wind motors specially adapted for installation in particular locations
- F03D9/30—Wind motors specially adapted for installation in particular locations
- F03D9/34—Wind motors specially adapted for installation in particular locations on stationary objects or on stationary man-made structures
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- G01—MEASURING; TESTING
- G01N—INVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
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- G01N33/18—Water
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- Y02E—REDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
- Y02E10/00—Energy generation through renewable energy sources
- Y02E10/70—Wind energy
- Y02E10/72—Wind turbines with rotation axis in wind direction
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- Y02E—REDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
- Y02E10/00—Energy generation through renewable energy sources
- Y02E10/70—Wind energy
- Y02E10/728—Onshore wind turbines
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- Y—GENERAL 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
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02E—REDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
- Y02E70/00—Other energy conversion or management systems reducing GHG emissions
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Abstract
The present invention provides a kind of beach aquaculture pond Water quality detection device, air temperature sensor in device, humidity sensor, baroceptor constitutes meteorologic parameter collecting mechanism, water temperature sensor group, salinity sensor group, acidity-basicity sensor group, dissolved oxygen quantity sensor group, turbidity sensor group, ammonia nitrogen concentration sensor group constitutes water quality parameter collecting mechanism, signal-processing board configuration information processing mechanism, umbrella shape solar panel, microgenerator, armature coil component and battery constitute power supply mechanism, external rotor electric machine, pulsometer, rotate transverse tube, air nozzle constitutes power mechanism, the energy of device comes from solar energy and wind energy, pollution will not be generated to aquaculture pond water body, and there is powered stable, service time of battery is longer, Data Detection is timely, high degree of automation, without manual intervention, to the model of water body detection Comparison is enclosed extensively with versatile feature, can be applied to the fields such as beach aquaculture, beach environment protection and tidal flat resources exploitation.
Description
Technical field
The present invention relates to aquaculture monitoring technology more particularly to beach aquaculture pond Water quality detection devices, belong to
In technical field of aquaculture.
Background technique
Beach aquaculture is divided into freshwater aquiculture and sea-farming according to the aquatic products kind of cultivation, for freshwater aquiculture,
Focus on being located in part salinity penalty issue caused by beach permeates aquaculture pond water body with the soil of salt and alkali component, it is right
In sea-farming, to focus on rainwater to the dilution problem of aquaculture pond seawater salinity, either freshwater aquiculture or sea-farming, no
It is all not quite similar with water temperature, salinity, the pH value etc. in area, Various Seasonal and different periods its aquaculture ponds, aquaculture pond
The dissolved oxygen amount and ammonia nitrogen concentration of middle water body also can with culturing time, cultivation density, cultural method variation and change, even
In same aquaculture pond, the water body index of different location or different depth can also have some differences, these water bodys refer in aquaculture pond
Target changes the culture efficiency for being directly related to aquatic products, is all by the cultivation experience of many years and manually next to site inspection in the past
It determines, the method drawback that artificial scene determines is more, first is that monitoring is simple, parameter is not complete;Second is that monitoring is not prompt enough, model is monitored
Enclose not big enough, the easy quality for influencing pond aquaculture.
Summary of the invention
Model is detected the purpose of the present invention is to provide a kind of timely, the versatile, high degree of automation of monitoring and to water body
Enclose the wide mudflat aquaculture water constitution amount detecting device of comparison.
The technical problem to be solved by the present invention is to what is be achieved through the following technical solutions: described device is by rotation transverse tube
(1), air nozzle (2), water temperature sensor group (3), salinity sensor group (4), acidity-basicity sensor group (5), dissolved oxygen amount pass
Sensor group (6), turbidity sensor group (7), ammonia nitrogen concentration sensor group (8), lateral casing (9), pin shaft (10), hose
(11), bottom escape pipe (12), signal-processing board (13), hydrops portion (14), hydrops pond (15), liquid droping port (16), draining pump
(17), exhaust pump (18), aqueduct (19), water guide mouth (20), gasket (21), top cover (22), valve deck (23), flow-guiding mouth
(24), hinge (25), drainpipe (26), exhaust pipe (27), hollow pipe (28), fan blade connecting rod (29), fan blade (30), pneumatic air inlet
Mouth (31), umbrella shape solar panel (32), microgenerator (33), illuminance sensor (34), rainwater strainer (35), ordinary inlet
(36), bucket external admission pipe (37), sealing ring (38), air inlet pipe (39), floating drum (40), top weather board (41), Air Temperature in bucket
Spend sensor (42), humidity sensor (43), baroceptor (44), isolation board (45), bottom weather board (46), battery
(47), bottom bucket (48), external rotor electric machine (49), pulsometer (50), vertical pipes (51), sonar transmitter (52), multi-directional ball
(53), hole (54), tempered glass (55), female rail (56), vertebra cave (57), armature coil component (58), magnet (59), pedestal
(60), globular universal wheel (61), vertical links (62), top connecting rod (63), lower link (64), air inlet (65) and floating ball
(66) it forms.
Air temperature sensor (42), humidity sensor (43), baroceptor (44) constitute meteorologic parameter collecting mechanism,
Water temperature sensor group (3), salinity sensor group (4), acidity-basicity sensor group (5), dissolved oxygen quantity sensor group (6), muddiness
Spend sensor group (7), ammonia nitrogen concentration sensor group (8) constitutes water quality parameter collecting mechanism, signal-processing board (13) configuration information
Processing mechanism, umbrella shape solar panel (32), fan blade connecting rod (29), fan blade (30), microgenerator (33), armature coil component
(58), magnet (59) and battery (47) constitute power supply mechanism, external rotor electric machine (49), pulsometer (50), rotation transverse tube (1),
Air nozzle (2) constitutes power mechanism.
The center of the cultivation bottom of pond portion is equipped with pedestal (60) and vertebra cave (57), and vertebra cave (57) bottom is equipped with magnet
(59), the pedestal (60) above vertebra cave (57) is equipped with tempered glass (55), and tempered glass (55) center is equipped with hole (54), steel
The surface for changing glass (55) horizontal plane is equipped with round female rail (56), and the cross section of female rail (56) is semicircle, and hole (54) is embedded
Have multi-directional ball (53), the axis center of multi-directional ball (53) is equipped with the vertical hollow pipe (28) of a root long and hollow pipe (28) can be with ten thousand
Be that fulcrum is waved to ball (53), hollow pipe (28) drives its bottom to shake in the hole (54), hollow pipe (28) bottom end and
Armature coil component (58) are equipped with above magnet (59), the suction between armature coil component (58) and magnet (59) can make askew
Hollow pipe (28) restores plumbness and plays reset response, and the rolling kinetic energy of hollow pipe (28) bottom makes armature coil component
(58) magnetic field in changes, and so that armature coil component (58) is generated electromotive force and plays the role of shaking power generation.
Umbrella shape solar panel (32) are equipped at the top of hollow pipe (28), hollow pipe (28) top is equipped with pneumatic air inlet (31) and micro-
It is connected to inside generator (33), pneumatic air inlet (31) and hollow pipe (28), microgenerator (33) is passed through by fan blade (30)
Fan blade connecting rod (29) driving, umbrella shape solar panel (32), microgenerator (33) and armature coil component (58) electricity are institute
It states device and energy is provided.
Floating drum (40) are equipped in the middle part of hollow pipe (28), floating drum (40) bottom is equipped with bottom bucket (48), is equipped in bottom bucket (48) outer
Rotor electric machine (49) and pulsometer (50), umbrella shape solar panel (32), microgenerator (33) and armature coil component (58) are sent out
Electricity respectively by semiconductor diode to battery (47) unidirectionally charge, battery (47) be signal-processing board (13), draining
(17), exhaust pump (18), external rotor electric machine (49) offer power supply are pumped, bottom bucket (48) bottom is equipped with bottom escape pipe (12).
Hollow pipe (28) between bottom bucket (48) and tempered glass (55) is equipped with sonar transmitter (52) and two vertical
Casing (51), vertical pipes (51) side are equipped with vertical links (62), top connecting rod (63) and lower link (64), top connecting rod
(63) pass through pin shaft (10) with lower link (64) one end and connect with vertical pipes (51), vertical links (62) both ends pass through pin
Axis (10) is connect with the other end of top connecting rod (63) and lower link (64) respectively, vertical links (62), top connecting rod (63),
Lower link (64) and part hollow pipe (28) pass through pin shaft (10) and the mobilizable parallelogram of vertical pipes (51) composition
Structure, vertical links (62) bottom end lower section are equipped with globular universal wheel (61), and globular universal wheel (61) can roll in female rail (56),
Top connecting rod (63) is set above there are two lateral casing (9), and lateral casing (9) is embedded with a long rotation transverse tube (1), is rotated
Transverse tube (1) one end is equipped with floating ball (66) and air nozzle (2), and the rotation transverse tube (1) close to air nozzle (2) is passed equipped with water temperature
Sensor group (3), salinity sensor group (4), acidity-basicity sensor group (5), dissolved oxygen quantity sensor group (6), turbidity sensor group
(7), ammonia nitrogen concentration sensor group (8), rotation transverse tube (1) other end are connected by hose (11) and bottom escape pipe (12) bottom end
It connects, rotates transverse tube (1), air nozzle (2), water temperature sensor group (3), salinity sensor group (4), acidity-basicity sensor group
(5), dissolved oxygen quantity sensor group (6), turbidity sensor group (7), ammonia nitrogen concentration sensor group (8), floating ball (66), bottom bucket (48)
It is immersed in the water of aquaculture pond with the lower half portion of floating drum (40).
External rotor electric machine (49) rotate when, pulsometer (50) by external rotor electric machine (49) driving make bottom bucket (48) lower half and
Draught head is generated between the upper half, the air pressure of bottom bucket (48) upper half is lower, the air in atmosphere by pneumatic air inlet (31),
Hollow pipe (28) and air inlet (65) enter in bottom bucket (48), and the air pressure of bottom bucket (48) lower half is higher, the sky in bottom bucket (48)
Gas is sprayed in water by bottom escape pipe (12), hose (11), rotation transverse tube (1) and air nozzle (2), air nozzle (2) jet
When the reaction force that generates push rotation transverse tube (1) to rotate around hollow pipe (28), drive water temperature sensor group (3), salt
Spend sensor group (4), acidity-basicity sensor group (5), dissolved oxygen quantity sensor group (6), turbidity sensor group (7), ammonia nitrogen concentration
Sensor group (8) and floating drum (40) move together, water temperature sensor group (3), the salinity sensor group (4), soda acid of movement
Degree sensor group (5), dissolved oxygen quantity sensor group (6), turbidity sensor group (7) and ammonia nitrogen concentration sensor group (8) exist respectively
Six circular trace groups are formed in water body and six groups of circles are concentric circles, and the center of circle of concentric circles is the axis center of hollow pipe (28), together
The radius of heart circle is respectively equal to the spacing of the sensor to hollow pipe (28), and the sensor in each water body distinguishes sequence detection
Track is the water quality parameter of the different location on circumference.
All the sensors pass through shielding line respectively and connect with the input terminal of signal-processing board (13), signal-processing board (13)
Output end is connect by shielding line with sonar transmitter (52), and the signal that sonar transmitter (52) issues is by being arranged in aquaculture pond pond
The sonar receiver on side receives and is transported to by shielding line the monitoring room of pool side, by monitor the computer of room to transmit Lai letter
Breath is for further processing or display, the revolving speed of rotation transverse tube (1) are that 24-48 turns/day, and the jet direction of air nozzle (2) is oblique
And towards the direction far from rotation transverse tube (1), cause to do to six sensor groups in rotation transverse tube (1) to avoid the air of ejection
It disturbs, the effect of floating ball (66) is to pull one end of rotation transverse tube (1) upward, to offset rotation transverse tube (1) and six sensors
Gravity makes rotation transverse tube (1) keep horizontal in water, and the quadrilateral structure can make floating drum (40) and hollow pipe (28) in wind
When the lower shaking of power effect or shake, rotation transverse tube (1) keeps parallel with pedestal (60).
Due to the adoption of the above technical scheme, advantage for present invention and good effect are: the energy of device is from too
It is positive can and wind energy, pollution will not be generated to aquaculture pond water body, and have that powered stable, service time of battery be longer, Data Detection
In time, high degree of automation, without manual intervention, to the wider and versatile feature of range of water body detection, can apply
In fields such as beach aquaculture, beach environment protection and tidal flat resources exploitations.
Detailed description of the invention
Present invention will be further explained below with reference to the attached drawings and examples, and the present invention has following 3 width attached drawing:
Fig. 1 is the overall structure figure of the present apparatus,
Fig. 2 is the partial enlarged view of the present apparatus,
Fig. 3 is schematic diagram of the present apparatus when shaking.
Each number marked in the accompanying drawings respectively indicates as follows:
1. transverse tube is rotated, 2. air nozzles, 3. water temperature sensor groups, 4. salinity sensor groups, 5. acidity-basicity sensor groups, 6.
Dissolved oxygen quantity sensor group, 7. turbidity sensor groups, 8. ammonia nitrogen concentration sensor groups, 9. lateral casings, 10. pin shafts, 11. is soft
Pipe, 12. bottom escape pipes, 13. signal-processing boards, 14. hydrops portions, 15. hydrops ponds, 16. liquid droping ports, 17. draining pumps, 18. rows
Air pump, 19. aqueducts, 20. water guide mouths, 21. gaskets, 22. top covers, 23. valve decks, 24. flow-guiding mouths, 25. hinges, 26. drainings
Pipe, 27. exhaust pipes, 28. hollow pipes, 29. fan blade connecting rods, 30. fan blades, 31. pneumatic air inlets, 32. umbrella shape solar panels, 33. is micro-
Generator, 34. illuminance sensors, 35. rainwater strainers, 36. ordinary inlets, 37. barrels of external admission pipes, 38. sealing rings,
39. air inlet pipe in barrel, 40. floating drums, 41. top weather boards, 42. air temperature sensor, 43. humidity sensors, 44. air pressure transmissions
Sensor, 45. isolation boards, 46. bottom weather boards, 47. batteries, 48. bottom buckets, 49. external rotor electric machines, 50. pulsometers, 51. hang down
Straight connector, 52. sonar transmitters, 53. multi-directional balls, 54. holes, 55. tempered glass, 56. female rails, 57. vertebra caves, 58. armature lines
Coil assembly, 59. magnet, 60. pedestals, 61. globular universal wheels, 62. vertical links, 63. top connecting rods, 64. lower links, 65.
Air inlet, 66. floating balls, 67. waters surface.
Specific embodiment
1. described device is by rotation transverse tube (1), air nozzle (2), water temperature sensor group (3), salt according to Fig. 1 to Fig. 3
Spend sensor group (4), acidity-basicity sensor group (5), dissolved oxygen quantity sensor group (6), turbidity sensor group (7), ammonia nitrogen concentration
Sensor group (8), lateral casing (9), pin shaft (10), hose (11), bottom escape pipe (12), signal-processing board (13), hydrops
Portion (14), hydrops pond (15), liquid droping port (16), draining pump (17), exhaust pump (18), aqueduct (19), water guide mouth (20), sealing
Pad (21), top cover (22), valve deck (23), flow-guiding mouth (24), hinge (25), drainpipe (26), exhaust pipe (27), hollow pipe
(28), fan blade connecting rod (29), fan blade (30), pneumatic air inlet (31), umbrella shape solar panel (32), microgenerator (33), illumination
Spend sensor (34), rainwater strainer (35), ordinary inlet (36), bucket external admission pipe (37), sealing ring (38), air inlet pipe in bucket
(39), floating drum (40), top weather board (41), air temperature sensor (42), humidity sensor (43), baroceptor
(44), isolation board (45), bottom weather board (46), battery (47), bottom bucket (48), external rotor electric machine (49), pulsometer (50),
Vertical pipes (51), sonar transmitter (52), multi-directional ball (53), hole (54), tempered glass (55), female rail (56), vertebra cave
(57), armature coil component (58), magnet (59), pedestal (60), globular universal wheel (61), vertical links (62), top connecting rod
(63), lower link (64), air inlet (65) and floating ball (66) composition.
2. air temperature sensor (42), humidity sensor (43), baroceptor (44) constitute meteorologic parameter harvester
Structure is water temperature sensor group (3), salinity sensor group (4), acidity-basicity sensor group (5), dissolved oxygen quantity sensor group (6), muddy
Turbidity transducer group (7), ammonia nitrogen concentration sensor group (8) constitute water quality parameter collecting mechanism, and signal-processing board (13) constitutes letter
Cease processing mechanism, umbrella shape solar panel (32), fan blade connecting rod (29), fan blade (30), microgenerator (33), armature coil component
(58), magnet (59) and battery (47) constitute power supply mechanism, external rotor electric machine (49), pulsometer (50), rotation transverse tube (1),
Air nozzle (2) constitutes power mechanism.
3. the center of the cultivation bottom of pond portion is equipped with pedestal (60) and vertebra cave (57), vertebra cave (57) bottom is equipped with magnet
(59), the pedestal (60) above vertebra cave (57) is equipped with tempered glass (55), and tempered glass (55) center is equipped with hole (54), steel
The surface for changing glass (55) horizontal plane is equipped with round female rail (56), and the cross section of female rail (56) is semicircle, and hole (54) is embedded
Have multi-directional ball (53), the axis center of multi-directional ball (53) is equipped with the vertical hollow pipe (28) of a root long and hollow pipe (28) can be with ten thousand
Be that fulcrum is waved to ball (53), hollow pipe (28) drives its bottom to shake in the hole (54), hollow pipe (28) bottom end and
Armature coil component (58) are equipped with above magnet (59), the suction between armature coil component (58) and magnet (59) can make askew
Hollow pipe (28) restores plumbness and plays reset response, and the rolling kinetic energy of hollow pipe (28) bottom makes armature coil component
(58) magnetic field in changes, and so that armature coil component (58) is generated electromotive force and plays the role of shaking power generation.
4. be equipped with umbrella shape solar panel (32) at the top of hollow pipe (28), hollow pipe (28) top be equipped with pneumatic air inlet (31),
It is connected to inside microgenerator (33) and illuminance sensor (34), pneumatic air inlet (31) and hollow pipe (28), micro generation
Machine (33) is driven by fan blade (30) by fan blade connecting rod (29), umbrella shape solar panel (32), microgenerator (33) and armature coil
Component (58) electricity provides energy for described device.
5. be equipped with floating drum (40) in the middle part of hollow pipe (28), be equipped at the top of floating drum (40) top cover (22), bucket external admission pipe (37),
Air inlet pipe (39) and slanting top weather board (41) in bucket, bucket external admission pipe (37) pass perpendicularly through top cover (22), air inlet in bucket
Pipe (39) passes perpendicularly through top weather board (41), and air inlet pipe (39) top is set as oblique in bucket external admission pipe (37) bottom end and bucket
Mouthful, and two angles are staggered, and the vertex (vertices) of bucket external admission pipe (37) is contacted with the upper surface of top weather board (41), bucket outside into
It is equipped with the ordinary inlet (36) being open to horizontal direction at the top of tracheae (37), is equipped with rainwater strainer in ordinary inlet (36)
(35)。
6. floating drum (40) is equipped with drainpipe (26) and exhaust pipe (27), drainpipe (26) and exhaust pipe (27) both pass through top
It is internal into floating drum (40) to cover (22) and top weather board (41), draining pump is equipped in the middle part of drainpipe (26) and in floating drum (40)
(17), exhaust pump (18) are equipped in the middle part of exhaust pipe (27) and in floating drum (40), drainpipe (26) and exhaust pipe (27) top and
It is set as L shape elbow outside in floating drum (40), the opening at bend horizontal end is equipped with valve deck (23) and flow-guiding mouth (24), floating drum (40)
Internal middle part is equipped with isolation board (45) and slanting bottom weather board (46), between isolation board (45) and bottom weather board (46)
It is formed hydrops pond (15), floating drum (40) inner wall side is equipped with vertical aqueduct (19), the water guide mouth at the top of aqueduct (19)
(20) it is located at the lowest part of top weather board (41) and is connected to the upper surface of top weather board (41), aqueduct (19) bottom
Liquid droping port (16) is connected to hydrops pond (15), and the hollow pipe (28) in floating drum (40) is equipped with air temperature sensor (42), wet
Sensor (43) and baroceptor (44) are spent, floating drum (40) bottom is equipped with signal-processing board (13), battery (47) and bottom bucket
(48), be equipped with external rotor electric machine (49) and pulsometer (50) in bottom bucket (48), umbrella shape solar panel (32), microgenerator (33) and
Armature coil component (58) electricity passes through semiconductor diode respectively and unidirectionally charges to battery (47), and battery (47) is
Signal-processing board (13), draining pump (17), exhaust pump (18), external rotor electric machine (49) provide power supply, and bottom bucket (48) bottom is equipped with
Bottom escape pipe (12).
7. the hollow pipe (28) between bottom bucket (48) and tempered glass (55) is equipped with sonar transmitter (52) and two hang down
Straight connector (51), vertical pipes (51) side are equipped with vertical links (62), top connecting rod (63) and lower link (64), and top connects
Bar (63) and lower link (64) one end pass through pin shaft (10) and connect with vertical pipes (51), and vertical links (62) both ends pass through
Pin shaft (10) is connect with the other end of top connecting rod (63) and lower link (64) respectively, vertical links (62), top connecting rod
(63), lower link (64) passes through pin shaft (10) and vertical pipes (51) composition mobilizable parallel four with part hollow pipe (28)
Side shape structure, vertical links (62) bottom end lower section are equipped with globular universal wheel (61), and globular universal wheel (61) can be in female rail (56)
It rolls, top connecting rod (63) is set above there are two lateral casing (9), and lateral casing (9) is embedded with a long rotation transverse tube
(1), rotation transverse tube (1) one end is equipped with floating ball (66) and air nozzle (2), and the rotation transverse tube (1) close to air nozzle (2) is equipped with water
Temperature sensor group (3), salinity sensor group (4), acidity-basicity sensor group (5), dissolved oxygen quantity sensor group (6), turbidity
Sensor group (7), ammonia nitrogen concentration sensor group (8), rotation transverse tube (1) other end pass through hose (11) and bottom escape pipe (12)
Bottom end connection, rotation transverse tube (1), air nozzle (2), water temperature sensor group (3), salinity sensor group (4), pH value sensing
Device group (5), dissolved oxygen quantity sensor group (6), turbidity sensor group (7), ammonia nitrogen concentration sensor group (8), floating ball (66), bottom bucket
(48) it is immersed in the water of aquaculture pond with the lower half portion of floating drum (40).
8. external rotor electric machine (49) rotates, pulsometer (50) makes bottom bucket (48) lower half by external rotor electric machine (49) driving
Draught head is generated between the upper half, the air pressure of bottom bucket (48) upper half is lower, and the air in atmosphere passes through pneumatic air inlet
(31), hollow pipe (28) and air inlet (65) enter in bottom bucket (48), and the air pressure of bottom bucket (48) lower half is higher, in bottom bucket (48)
Air by bottom escape pipe (12), hose (11), rotation transverse tube (1) and air nozzle (2) spray in water, air nozzle (2)
The reaction force generated when jet pushes rotation transverse tube (1) to rotate around hollow pipe (28), drives water temperature sensor group
(3), salinity sensor group (4), acidity-basicity sensor group (5), dissolved oxygen quantity sensor group (6), turbidity sensor group (7), ammonia
Nitrogen concentration sensor group (8) and floating drum (40) move together, water temperature sensor group (3), the salinity sensor group of movement
(4), acidity-basicity sensor group (5), dissolved oxygen quantity sensor group (6), turbidity sensor group (7) and ammonia nitrogen concentration sensor group
(8) six circular trace groups are formed in water body respectively and six groups of circles are concentric circles, the center of circle of concentric circles is hollow pipe (28)
Axis center, the radius of concentric circles are respectively equal to the spacing of the sensor to hollow pipe (28), the sensor in each water body point
Other sequence detection track is the water quality parameter of the different location on circumference, and when floating drum (40) and hollow pipe (28) shake, rotation is horizontal
It manages (1) and keeps parallel with pedestal (60).
Connect 9. all the sensors pass through shielding line respectively with the input terminal of signal-processing board (13), the signal of sensor by
Signal-processing board (13) carries out signal processing, and signal processing includes at least the preposition amplification of multichannel, linear compensation, branch sampling, mould
Number conversion, coding synthesize and the functions such as signal modulation, includes at least operational amplification circuit, analog-to-digital conversion on signal-processing board (13)
Circuit, single-chip microcontroller and memory at least store various softwares needed for the program and information processing of artificial intelligence in memory
The output end of module, signal-processing board (13) is connect by shielding line with sonar transmitter (52), and sonar transmitter (52) issues
Signal received by the sonar receiver that aquaculture pond pool side is arranged in and be transported to by shielding line the monitoring room of pool side, by monitoring
The computer of room is for further processing to the information that transmission comes or display, is to improve signal using the purpose that sonar sends and receives
The reliability of transmission, since the present apparatus is rotation, and the room of monitoring be it is static, it is quiet it is dynamic between need using Radio Transmission Technology.
10. described device works, the air on the aquaculture pond water surface passes through ordinary inlet (36), bucket external admission pipe (37)
Enter in floating drum (40) with air inlet pipe in bucket (39), air temperature sensor (42), humidity sensor (43), baroceptor
(44) meteorologic parameter measurement is carried out to the air entered in bucket, used air passes through exhaust pump (18), exhaust in floating drum (40)
Pipe (27) and flow-guiding mouth (24) are discharged to outside floating drum (40), complete air circulation, for rainwater, are carried out by rainwater strainer (35)
Primary protection carries out second level protection by the cross structure that air inlet pipe (39) top is formed in bucket external admission pipe (37) bottom end and bucket,
Rainwater is set not enter floating drum (40) internal, in case droplet passes through rainwater for micro to humidity sensor (43) generation interference
Strainer (35) enters the droplet of ordinary inlet (36), is made by bucket external admission pipe (37) vertex (vertices) with the contact of top weather board (41)
Droplet is rolled down in water guide mouth (20) along the inclined-plane of top weather board (41) and is rolled by aqueduct (19) and liquid droping port (16)
It falls in hydrops pond (15) and forms hydrops portion (14), the water in hydrops portion (14) is by draining pump (17), drainpipe (26) and leads
Stem bar (24) is discharged to outside floating drum (40), and flow-guiding mouth (24), valve deck (23), draining pump (17) and exhaust pump (18) can prevent rain
It is internal that water is redirected back into floating drum (40).
11. umbrella shape solar panel (32) can some solar panel plate always when floating drum (40) rotates under the premise of having sunlight
Face is by sunlight, and umbrella shape solar panel (32), microgenerator (33) and armature coil component (58) electricity lead to respectively
It is to prevent it from battery when some power generation part is under-voltage that semiconductor diode, which is crossed, to the purpose that battery (47) unidirectionally charges
(47) electric energy is consumed on, its energy of shaking power generation mechanism that armature coil component (58) and magnet (59) form comes from wind-force, wind
On the one hand power gives floating drum (40) to directly contribute shaking, on the other hand made indirectly by the water surface wave of aquaculture pond to floating drum (40)
At shaking, draining pump (17), exhaust pump (18) and external rotor electric machine (49) are the electricity foot of micropower i.e. battery (47)
Enough draining pump (17), exhaust pump (18) and external rotor electric machine (49) consumption, the revolving speed of rotation transverse tube (1) are that 24-48 turns/day, spray
The jet direction of gas nozzle (2) is oblique and towards the direction far from rotation transverse tube (1), gives rotation transverse tube to avoid the air of ejection
(1) six sensor groups on interfere, and the effect of floating ball (66) is to pull one end of rotation transverse tube (1) upward, to offset
The gravity for rotating transverse tube (1) and six sensors makes to rotate transverse tube (1) holding level in water, and turbidity sensor group (7) is used
Sand content in measurement aquaculture pond or amount containing algae.
12. the line described in device between shielding line and power generation mechanism and battery when necessary can be in part hollow
Cabling in (28) is managed, since part hollow pipe (28) needs are flat, then between trace portions and the hollow pipe (28) of flat part
It needs to separate, and is shut with glass cement, prevent hollow pipe (28) gas leakage, floating drum (40), drainpipe (26), exhaust pipe (27) and sky
The material of heart pipe (28) is stainless steel.
13. since the present apparatus uses umbrella shape solar panel (32) solar power generation, microgenerator (33) wind-power electricity generation and rank
Iron wire coil assembly (58) shakes three kinds of modes of power generation (energy comes from wind-force) and generates electricity, and carries out electric power storage and pressure stabilizing, institute by battery
With device powered stable, service time of battery is longer, and since device uses the signal-processing board (13) of intelligence, so device
The degree of automation is higher, since six groups of sensors in water body are movement, the water of energy sequence detection different location different depth
Matter parameter, so the present apparatus is wider to the detection range of water body, the length of rotation transverse tube (1) is not limited to the ratio in attached drawing
Example, length can be determined according to the size of aquaculture pond, and the quadrilateral structure can make floating drum (40) and hollow pipe (28)
When shaking or shake under the action of the wind, rotation transverse tube (1) keeps parallel with pedestal (60).
Claims (2)
1. a kind of beach aquaculture pond Water quality detection device is sensed by rotation transverse tube (1), air nozzle (2), water temperature
Device group (3), salinity sensor group (4), acidity-basicity sensor group (5), dissolved oxygen quantity sensor group (6), turbidity sensor group
(7), ammonia nitrogen concentration sensor group (8), lateral casing (9), pin shaft (10), hose (11), bottom escape pipe (12), signal processing
Plate (13), hydrops portion (14), hydrops pond (15), liquid droping port (16), draining pump (17), exhaust pump (18), aqueduct (19), water guide
Mouth (20), gasket (21), top cover (22), valve deck (23), flow-guiding mouth (24), hinge (25), drainpipe (26), exhaust pipe
(27), hollow pipe (28), fan blade connecting rod (29), fan blade (30), pneumatic air inlet (31), umbrella shape solar panel (32), micro generation
Machine (33), illuminance sensor (34), rainwater strainer (35), ordinary inlet (36), bucket external admission pipe (37), sealing ring
(38), air inlet pipe (39), floating drum (40), top weather board (41), air temperature sensor (42), humidity sensor in bucket
(43), baroceptor (44), isolation board (45), bottom weather board (46), battery (47), bottom bucket (48), external rotor electric machine
(49), pulsometer (50), vertical pipes (51), sonar transmitter (52), multi-directional ball (53), hole (54), tempered glass (55),
Female rail (56), vertebra cave (57), armature coil component (58), magnet (59), pedestal (60), globular universal wheel (61), vertical links
(62), top connecting rod (63), lower link (64), air inlet (65) and floating ball (66) composition;
Air temperature sensor (42), humidity sensor (43), baroceptor (44) constitute meteorologic parameter collecting mechanism, water body
Temperature sensor group (3), salinity sensor group (4), acidity-basicity sensor group (5), dissolved oxygen quantity sensor group (6), turbidity pass
Sensor group (7), ammonia nitrogen concentration sensor group (8) constitute water quality parameter collecting mechanism, the processing of signal-processing board (13) configuration information
Mechanism, umbrella shape solar panel (32), fan blade connecting rod (29), fan blade (30), microgenerator (33), armature coil component (58), magnetic
Iron (59) and battery (47) constitute power supply mechanism, external rotor electric machine (49), pulsometer (50), rotation transverse tube (1), air nozzle
(2) power mechanism is constituted;
It is characterized by: the center of the cultivation bottom of pond portion is equipped with pedestal (60) and vertebra cave (57), vertebra cave (57) bottom is set
Have magnet (59), the pedestal (60) above vertebra cave (57) is equipped with tempered glass (55), and tempered glass (55) center is equipped with hole
(54), the surface of tempered glass (55) horizontal plane is equipped with round female rail (56), and the cross section of female rail (56) is semicircle, hole
(54) it is embedded with multi-directional ball (53), the axis center of multi-directional ball (53) is equipped with the vertical hollow pipe (28) and hollow pipe of a root long
It (28) can be that fulcrum is waved with multi-directional ball (53), hollow pipe (28) drives its bottom to shake in hole (54), hollow pipe
(28) bottom end and armature coil component (58) are equipped with above the magnet (59), between armature coil component (58) and magnet (59)
Suction can make the hollow pipe (28) to skew recovery plumbness play reset response, and the rolling kinetic energy of hollow pipe (28) bottom makes to hold in the mouth
Magnetic field in iron wire coil assembly (58) changes, and so that armature coil component (58) is generated electromotive force and plays shaking power generation work
With;
Umbrella shape solar panel (32) are equipped at the top of hollow pipe (28), hollow pipe (28) top is equipped with pneumatic air inlet (31) and miniature hair
It is connected to inside motor (33), pneumatic air inlet (31) and hollow pipe (28), microgenerator (33) passes through fan blade by fan blade (30)
Connecting rod (29) driving, umbrella shape solar panel (32), microgenerator (33) and armature coil component (58) electricity are the dress
Offer energy is provided;
Floating drum (40) are equipped in the middle part of hollow pipe (28), floating drum (40) bottom is equipped with bottom bucket (48), and outer rotor is equipped in bottom bucket (48)
Motor (49) and pulsometer (50), umbrella shape solar panel (32), microgenerator (33) and armature coil component (58) electricity
It is unidirectionally charged by semiconductor diode to battery (47) respectively, battery (47) is signal-processing board (13), draining pump
(17), exhaust pump (18), external rotor electric machine (49) provide power supply, and bottom bucket (48) bottom is equipped with bottom escape pipe (12);
Hollow pipe (28) between bottom bucket (48) and tempered glass (55) is equipped with sonar transmitter (52) and two vertical pipes
(51), vertical pipes (51) side is equipped with vertical links (62), top connecting rod (63) and lower link (64), top connecting rod (63)
Pass through pin shaft (10) with lower link (64) one end to connect with vertical pipes (51), vertical links (62) both ends pass through pin shaft
(10) connect respectively with the other end of top connecting rod (63) and lower link (64), vertical links (62), top connecting rod (63), under
Square connecting rod (64) and part hollow pipe (28) pass through pin shaft (10) and the mobilizable parallelogram knot of vertical pipes (51) composition
Structure, vertical links (62) bottom end lower section are equipped with globular universal wheel (61), and globular universal wheel (61) can roll in female rail (56), on
Square connecting rod (63) is set above there are two lateral casing (9), and lateral casing (9) is embedded with a long rotation transverse tube (1), and rotation is horizontal
It manages (1) one end and is equipped with floating ball (66) and air nozzle (2), the rotation transverse tube (1) close to air nozzle (2) is sensed equipped with water temperature
Device group (3), salinity sensor group (4), acidity-basicity sensor group (5), dissolved oxygen quantity sensor group (6), turbidity sensor group
(7), ammonia nitrogen concentration sensor group (8), rotation transverse tube (1) other end are connected by hose (11) and bottom escape pipe (12) bottom end
It connects, rotates transverse tube (1), air nozzle (2), water temperature sensor group (3), salinity sensor group (4), acidity-basicity sensor group
(5), dissolved oxygen quantity sensor group (6), turbidity sensor group (7), ammonia nitrogen concentration sensor group (8), floating ball (66), bottom bucket (48)
It is immersed in the water of aquaculture pond with the lower half portion of floating drum (40);
When external rotor electric machine (49) rotates, pulsometer (50) makes bottom bucket (48) lower half and upper half by external rotor electric machine (49) driving
Draught head is generated between portion, the air pressure of bottom bucket (48) upper half is lower, and the air in atmosphere passes through pneumatic air inlet (31), hollow
It manages (28) and air inlet (65) enters in bottom bucket (48), the air pressure of bottom bucket (48) lower half is higher, and the air in bottom bucket (48) is logical
It crosses bottom escape pipe (12), hose (11), rotation transverse tube (1) and air nozzle (2) to spray in water, when air nozzle (2) jet produces
Raw reaction force pushes rotation transverse tube (1) to rotate around hollow pipe (28), and water temperature sensor group (3), salinity is driven to pass
Sensor group (4), acidity-basicity sensor group (5), dissolved oxygen quantity sensor group (6), turbidity sensor group (7), ammonia nitrogen concentration sensing
Device group (8) and floating drum (40) move together, and water temperature sensor group (3), salinity sensor group (4), the pH value of movement pass
Sensor group (5), dissolved oxygen quantity sensor group (6), turbidity sensor group (7) and ammonia nitrogen concentration sensor group (8) are respectively in water body
Six circular trace groups of middle formation and six groups of circles are concentric circles, and the center of circle of concentric circles is the axis center of hollow pipe (28), concentric circles
Radius be respectively equal to the spacing of the sensor to hollow pipe (28), the sensor in each water body distinguishes sequence detection track
For the water quality parameter of the different location on circumference.
2. a kind of beach aquaculture pond Water quality detection device according to claim 1, it is characterised in that: Suo Youchuan
Sensor passes through shielding line respectively and connect with the input terminal of signal-processing board (13), and the output end of signal-processing board (13) passes through shielding
Line is connect with sonar transmitter (52), and the signal that sonar transmitter (52) issues is by being arranged in the sonar receiver of aquaculture pond pool side
Receive and be transported to by shielding line the monitoring room of pool side, by monitor the computer of room to transmit Lai information be for further processing
Or display, the revolving speed of rotation transverse tube (1) turn/day for 24-48, the jet direction of air nozzle (2) is oblique and towards far from rotation cross
The direction of (1) is managed, is interfered to avoid the air of ejection to six sensor groups in rotation transverse tube (1), floating ball (66)
Effect is to pull one end of rotation transverse tube (1) upward, to offset the gravity of rotation transverse tube (1) and six sensors, keeps rotation horizontal
It manages (1) and keeps horizontal in water, the quadrilateral structure can be such that floating drum (40) and hollow pipe (28) shakes under the action of the wind
Or when shaking, rotation transverse tube (1) keeps parallel with pedestal (60).
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Cited By (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN110542457A (en) * | 2019-09-26 | 2019-12-06 | 盐城师范学院 | Mud flat ecological environment factor monitoring devices |
CN110803770A (en) * | 2019-11-08 | 2020-02-18 | 大连理工大学 | Integrated system suitable for ecological restoration and cultivation of intertidal zone wind power and monitoring combined system of wind power plant environment |
CN112526093A (en) * | 2020-11-19 | 2021-03-19 | 盐城师范学院 | Detection device for water quality indexes of mudflat river crab culture pond |
CN114280257A (en) * | 2021-12-12 | 2022-04-05 | 盐城师范学院 | Mudflat saline-alkaline water field pond culture water body detector |
Citations (6)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN2457602Y (en) * | 2000-12-07 | 2001-10-31 | 得昱企业有限公司 | Fixed point floating type water quality monitor in water |
JP2002153884A (en) * | 2000-11-20 | 2002-05-28 | Fuji Electric Co Ltd | Water quality maintenance equipment |
CN204346506U (en) * | 2015-01-27 | 2015-05-20 | 山东神华山大能源环境有限公司 | A kind of Multifunctional environment monitoring device |
CN205826522U (en) * | 2016-06-14 | 2016-12-21 | 广东五矿新技术矿产科技有限公司 | A kind of online water analysis instrument |
CN106746445A (en) * | 2016-11-16 | 2017-05-31 | 姜海 | Floatation thickening integration apparatus integrating device |
CN107192806A (en) * | 2017-06-29 | 2017-09-22 | 北京普立泰科仪器有限公司 | A kind of water quality and air monitor |
-
2018
- 2018-12-25 CN CN201811595777.1A patent/CN109540218B/en active Active
Patent Citations (6)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
JP2002153884A (en) * | 2000-11-20 | 2002-05-28 | Fuji Electric Co Ltd | Water quality maintenance equipment |
CN2457602Y (en) * | 2000-12-07 | 2001-10-31 | 得昱企业有限公司 | Fixed point floating type water quality monitor in water |
CN204346506U (en) * | 2015-01-27 | 2015-05-20 | 山东神华山大能源环境有限公司 | A kind of Multifunctional environment monitoring device |
CN205826522U (en) * | 2016-06-14 | 2016-12-21 | 广东五矿新技术矿产科技有限公司 | A kind of online water analysis instrument |
CN106746445A (en) * | 2016-11-16 | 2017-05-31 | 姜海 | Floatation thickening integration apparatus integrating device |
CN107192806A (en) * | 2017-06-29 | 2017-09-22 | 北京普立泰科仪器有限公司 | A kind of water quality and air monitor |
Non-Patent Citations (1)
Title |
---|
李晴: "多参数海洋浮标监测系统研究", 《中国优秀硕士学位论文全文数据库 基础科学辑》 * |
Cited By (6)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN110542457A (en) * | 2019-09-26 | 2019-12-06 | 盐城师范学院 | Mud flat ecological environment factor monitoring devices |
CN110542457B (en) * | 2019-09-26 | 2024-05-07 | 盐城师范学院 | Tidal flat ecological environment factor monitoring device |
CN110803770A (en) * | 2019-11-08 | 2020-02-18 | 大连理工大学 | Integrated system suitable for ecological restoration and cultivation of intertidal zone wind power and monitoring combined system of wind power plant environment |
CN112526093A (en) * | 2020-11-19 | 2021-03-19 | 盐城师范学院 | Detection device for water quality indexes of mudflat river crab culture pond |
CN114280257A (en) * | 2021-12-12 | 2022-04-05 | 盐城师范学院 | Mudflat saline-alkaline water field pond culture water body detector |
CN114280257B (en) * | 2021-12-12 | 2023-08-01 | 盐城师范学院 | Mud flat saline-alkali water farmland pond culture water body detector |
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