CN202599448U - Dam detecting and forecasting instrument with solar photovoltaic power generation system for supplying power - Google Patents
Dam detecting and forecasting instrument with solar photovoltaic power generation system for supplying power Download PDFInfo
- Publication number
- CN202599448U CN202599448U CN2012202835100U CN201220283510U CN202599448U CN 202599448 U CN202599448 U CN 202599448U CN 2012202835100 U CN2012202835100 U CN 2012202835100U CN 201220283510 U CN201220283510 U CN 201220283510U CN 202599448 U CN202599448 U CN 202599448U
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- conductor wire
- information
- photovoltaic
- dam
- solar cell
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- Expired - Fee Related
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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
- Y02E10/00—Energy generation through renewable energy sources
- Y02E10/50—Photovoltaic [PV] energy
Abstract
The utility model relates to a dam detecting and forecasting instrument with a solar photovoltaic power generation system for supplying power, and belongs to the technical field of new energy application. Solar batteries generate current under the irradiation of sunlight, the current is input into a photovoltaic controller to carry out adjusting through a conductive wire, the current output from the photovoltaic controller supplies power for an information collector and an information processor through the conductive wire, and charges an energy storage battery simultaneously, and the energy storage battery supplies power for the whole device when the solar batteries do not generate the current; the information collector transmits collected information to the information processor through a data transmission line, the information processor processes the received information, and when transmitted acoustic wave data and displacement data are out of the range of a set safety factor, an alarm lamp emits light, so that patrol personnel can find timely; and meanwhile, the information processor sends the data out through a sending antenna, and an information processing center receives the data through a receiving antenna, so that a disaster prevention center can timely send personnel to dangerous sections to control the disaster conditions.
Description
Technical field
The utility model relates to a kind of dam monitoring equipment with the solar photovoltaic generation system power supply, belongs to technical field of new energy application.
Background technology
China is influenced by geographical environment, suffers flood easily, and a lot of areas are interim annual flood season, all will strengthen nurse to reservoir dam and river dam, guarantees the safety of dam in flood season, the safety of protection people's lives and properties; The dam safety monitoring equipment is installed on dam can help people that dam is better nursed.
But; Present dam monitoring equipment mainly relies on power supply network power supply, in case power supply network stop power supply, when disaster takes place; The dam monitoring equipment just can't be worked; The center of taking precautions against natural calamities just can't know that safe dangerous situation has taken place the dam in that location, just can not in time send personnel, can't be reduced to minimum degree to casualty loss.
The utility model content
The purpose of the utility model is to overcome above-mentioned weak point; A kind of dam monitoring equipment with the solar photovoltaic generation system power supply is provided; The electric power that produces through solar cell is on the spot for the dam monitoring equipment provides electric power, makes the dam monitoring equipment not receive the influence of externally fed net also can operate as normal.Through regulation and control to the day device; Make solar cell can turn to the irradiation of fully accepting sunlight day by day, produce more electric current, electric current is through the adjustment of conductor wire input photovoltaic controller; Is information collector and message handler power supply from the electric current of photovoltaic controller output through conductor wire; Being the energy-storage battery charging simultaneously, when energy-storage battery does not produce electric current at solar cell, can be information collector and message handler power supply through photovoltaic controller also; Sonic sensor and displacement transducer pass through conductor wire input information gatherer to the information of collecting; Information collector is transferred to message handler to the information of collecting through data line; Message handler according to sonic data storehouse and location database to the information that the transmits processing of comparing; When the sonic data that transmits or displacement data exceeded the safety coefficient of setting, warning light sent light, and the patrolman can in time be found; Message handler is gone out data transmission through emitting antenna simultaneously, and information processing centre gets off Data Receiving through receiving antenna, makes the center of taking precautions against natural calamities can send personnel timely to the location that dangerous situation is arranged, the control the condition of a disaster.
The main technical schemes of the utility model is achieved in that
By solar cell 1, photovoltaic pillar 2, to day device 3, mounting box 4, erecting frame 5, protection box 6, conductor wire 7, photovoltaic controller 8, information collector 9, message handler 10, energy-storage battery 11, sonic sensor 12, displacement transducer 13, data line 14, warning light 15, emitting antenna 16, the center 17 of taking precautions against natural calamities, information processing centre 18, receiving antenna 19, dam 20, dam facing 21 form;
Solar cell 1 is connected with photovoltaic controller 8 through conductor wire 7; Photovoltaic controller 8 is connected with information collector 9 through conductor wire 7; Photovoltaic controller 8 is connected with message handler 10 through conductor wire 7; Photovoltaic controller 8 is connected with energy-storage battery 11 through conductor wire 7, and information collector 9 is connected with sonic sensor 12 through conductor wire 7, and information collector 9 is connected with displacement transducer 13 through conductor wire 7; Information collector 9 is connected with message handler 10 through data line 14; Message handler 10 is connected with warning light 15 through conductor wire 7, and message handler 10 is connected with antenna first 16 through conductor wire 7, and information processing centre 18 is connected with antenna second 19 through conductor wire 7;
On the dam facing 21 of dam 20, photovoltaic pillar 2 is installed; Be equipped with at the top of photovoltaic pillar 2 to day device 3; To day device 3 top solar cell 1 is installed; Mounting box 4 is installed in the middle part of photovoltaic pillar 2 through erecting frame 5, and the inside of mounting box 4 is equipped with photovoltaic controller 8, message handler 10 and energy-storage battery 11, and warning light 15 is installed in the top of the outside surface of mounting box 4; Emitting antenna 16 is installed in the top of the outside surface of mounting box 4; The protection box 6 be installed in the bottom of photovoltaic pillar 2 and be embedded in dam facing 21 below, the protection box 6 inside information collector 9, sonic sensor 12 and displacement transducer 13 are installed, the top of information processing centre 18 is equipped with receiving antenna 19.
Solar cell 1 is monocrystaline silicon solar cell or polysilicon solar cell or amorphous silicon thin-film solar cell.
Description of drawings
Fig. 1 is the structural representation of the utility model.
Embodiment
Solar cell produces electric current under the irradiation of sunlight; Electric current is through the adjustment of conductor wire input photovoltaic controller; Is information collector and message handler power supply from the electric current of photovoltaic controller output through conductor wire; Being the energy-storage battery charging simultaneously, when energy-storage battery does not produce electric current at solar cell, can be information collector and message handler power supply through photovoltaic controller also; Sonic sensor and displacement transducer pass through conductor wire input information gatherer to the information of collecting; Information collector is transferred to message handler to the information of collecting through data line; Message handler according to sonic data storehouse and location database to the information that the transmits processing of comparing; When the sonic data that transmits or displacement data exceeded the safety coefficient of setting, warning light sent light, and the patrolman can in time be found; Message handler is gone out data transmission through emitting antenna simultaneously, and information processing centre gets off Data Receiving through receiving antenna, makes the center of taking precautions against natural calamities can send personnel timely to the location that dangerous situation is arranged, the control the condition of a disaster.
Following the utility model will combine the embodiment in the accompanying drawing to further describe:
Protection box 6 is installed in the bottom of photovoltaic pillar 2, and the degree of depth that is embedded in dam facing 21 is to set according to the job requirement of sonic sensor 12 and displacement transducer 13; Dam monitoring equipment to installing in the zone has been set particular number, each dam monitoring equipment is sent have the information of numbering separately, after information is received at the center of taking precautions against natural calamities, can know that dangerous situation has taken place the dam in which location according to the information that has numbering.
To enumerate embodiment following at present:
Embodiment one:
Monocrystaline silicon solar cell produces electric current under the irradiation of sunlight; Electric current is through the adjustment of conductor wire input photovoltaic controller; Is information collector and message handler power supply from the electric current of photovoltaic controller output through conductor wire; Being the energy-storage battery charging simultaneously, when energy-storage battery does not produce electric current at solar cell, can be information collector and message handler power supply through photovoltaic controller also; Sonic sensor and displacement transducer pass through conductor wire input information gatherer to the information of collecting; Information collector is transferred to message handler to the information of collecting through data line; Message handler according to sonic data storehouse and location database to the information that the transmits processing of comparing; When the sonic data that transmits or displacement data exceeded the safety coefficient of setting, warning light sent light, and the patrolman can in time be found; Message handler is gone out data transmission through emitting antenna simultaneously, and information processing centre gets off Data Receiving through receiving antenna, makes the center of taking precautions against natural calamities can send personnel timely to the location that dangerous situation is arranged, the control the condition of a disaster.
Embodiment two:
Polysilicon solar cell produces electric current under the irradiation of sunlight; Electric current is through the adjustment of conductor wire input photovoltaic controller; Is information collector and message handler power supply from the electric current of photovoltaic controller output through conductor wire; Being the energy-storage battery charging simultaneously, when energy-storage battery does not produce electric current at solar cell, can be information collector and message handler power supply through photovoltaic controller also; Sonic sensor and displacement transducer pass through conductor wire input information gatherer to the information of collecting; Information collector is transferred to message handler to the information of collecting through data line; Message handler according to sonic data storehouse and location database to the information that the transmits processing of comparing; When the sonic data that transmits or displacement data exceeded the safety coefficient of setting, warning light sent light, and the patrolman can in time be found; Message handler is gone out data transmission through emitting antenna simultaneously, and information processing centre gets off Data Receiving through receiving antenna, makes the center of taking precautions against natural calamities can send personnel timely to the location that dangerous situation is arranged, the control the condition of a disaster.
Claims (2)
1. dam monitoring equipment with solar photovoltaic generation system power supply; It is characterized in that, by solar cell (1), photovoltaic pillar (2), form to day device (3), mounting box (4), erecting frame (5), protection box (6), conductor wire (7), photovoltaic controller (8), information collector (9), message handler (10), energy-storage battery (11), sonic sensor (12), displacement transducer (13), data line (14), warning light (15), emitting antenna (16), the center of taking precautions against natural calamities (17), information processing centre (18), receiving antenna (19), dam (20), dam facing (21);
Solar cell (1) is connected with photovoltaic controller (8) through conductor wire (7); Photovoltaic controller (8) is connected with information collector (9) through conductor wire (7); Photovoltaic controller (8) is connected with message handler (10) through conductor wire (7); Photovoltaic controller (8) is connected with energy-storage battery (11) through conductor wire (7); Information collector (9) is connected with sonic sensor (12) through conductor wire (7); Information collector (9) is connected with displacement transducer (13) through conductor wire (7), and information collector (9) is connected with message handler (10) through data line (14), and message handler (10) is connected with warning light (15) through conductor wire (7); Message handler (10) is connected with antenna first (16) through conductor wire (7), and information processing centre (18) is connected with antenna second (19) through conductor wire (7);
On the dam facing (21) of dam (20), photovoltaic pillar (2) is installed; Be equipped with to day device (3) at the top of photovoltaic pillar (2); At top solar cell (1) is installed to day device (3); Mounting box (4) is installed in the middle part of photovoltaic pillar (2) through erecting frame (5); The inside of mounting box (4) is equipped with photovoltaic controller (8), message handler (10) and energy-storage battery (11); Warning light (15) is installed in the top of the outside surface of mounting box (4), and emitting antenna (16) is installed in the top of the outside surface of mounting box (4), the protection box (6) be installed in the bottom of photovoltaic pillar (2) and be embedded in dam facing (21) below; The inside of protection box (6) is equipped with information collector (9), sonic sensor (12) and displacement transducer (13), and the top of information processing centre (18) is equipped with receiving antenna (19).
2. a kind of dam monitoring equipment with the solar photovoltaic generation system power supply according to claim 1 is characterized in that described solar cell (1) is monocrystaline silicon solar cell or polysilicon solar cell or amorphous silicon thin-film solar cell.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN2012202835100U CN202599448U (en) | 2012-06-16 | 2012-06-16 | Dam detecting and forecasting instrument with solar photovoltaic power generation system for supplying power |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN2012202835100U CN202599448U (en) | 2012-06-16 | 2012-06-16 | Dam detecting and forecasting instrument with solar photovoltaic power generation system for supplying power |
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Publication Number | Publication Date |
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CN202599448U true CN202599448U (en) | 2012-12-12 |
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CN2012202835100U Expired - Fee Related CN202599448U (en) | 2012-06-16 | 2012-06-16 | Dam detecting and forecasting instrument with solar photovoltaic power generation system for supplying power |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN102721439A (en) * | 2012-06-16 | 2012-10-10 | 无锡同春新能源科技有限公司 | Dam measuring and transmitting instrument with photovoltaic power system for supplying power |
-
2012
- 2012-06-16 CN CN2012202835100U patent/CN202599448U/en not_active Expired - Fee Related
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN102721439A (en) * | 2012-06-16 | 2012-10-10 | 无锡同春新能源科技有限公司 | Dam measuring and transmitting instrument with photovoltaic power system for supplying power |
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Legal Events
Date | Code | Title | Description |
---|---|---|---|
C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20121212 Termination date: 20150616 |
|
EXPY | Termination of patent right or utility model |