CN204443726U - Utilize solar energy in conjunction with the fishpond constant temperature complex control system of controller and sensor - Google Patents
Utilize solar energy in conjunction with the fishpond constant temperature complex control system of controller and sensor Download PDFInfo
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- CN204443726U CN204443726U CN201520140100.4U CN201520140100U CN204443726U CN 204443726 U CN204443726 U CN 204443726U CN 201520140100 U CN201520140100 U CN 201520140100U CN 204443726 U CN204443726 U CN 204443726U
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- fishpond
- water
- solar energy
- controller
- temperature
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Abstract
The utility model discloses the fishpond constant temperature complex control system utilizing solar energy in conjunction with controller and sensor, comprise water source (1), apparatus for heating water by solar energy (2), fishpond (3), water pump (4), controller (5), control cabinet (6) and monitoring host computer (7), the water inlet pipe in fishpond (3) connects the hot water outlet of water source (1) and apparatus for heating water by solar energy (2) respectively by pipeline, water pump (4) connects fishpond (3) is connected apparatus for heating water by solar energy (2) cold water inlet with outlet pipe, temperature sensor (9) is provided with in fishpond (3), controller (5) connects temperature sensor (9) respectively by circuit, water pump (4) and control cabinet (6).The beneficial effects of the utility model are: reach during fishpond water temperature keeps the object using solar energy heating, achieve the Automated condtrol of fishpond water temperature, save artificial.
Description
Technical field
The utility model relates to industrial aquaculture technical field, particularly, relates to the fishpond constant temperature complex control system utilizing solar energy in conjunction with controller and sensor.
Background technology
In industrial circulating water cultivating system, the constant-temperature heating system in fishpond is a crucial technology, and what domestic contrast was conventional is immersion heater, and the engineering also had is by adjusting toward heating water in culturing pool.If use immersion heater to keep temperature by the adjustment heat time exactly; If heating water, the object of adjustment temperature will be reached by the length of the solenoid valve switching time controlling heating water.But still there is certain problem:
1. utilize electric power to heat water source in fishpond, in maximization and factorial praluction, the effect energy is excessive.
2. temperature controls the control system not having automation, and temperature fluctuation does not have control end.
3. the sensitivity of temperature monitoring is lower.
Utility model content
Technical problem to be solved in the utility model be to provide a kind of reduce energy consumption, Automated condtrol, saving artificial, utilize solar energy in conjunction with the fishpond constant temperature complex control system of controller and sensor.
The technical scheme in the invention for solving the above technical problem is:
Utilize solar energy in conjunction with the fishpond constant temperature complex control system of controller and sensor, comprise water source, apparatus for heating water by solar energy, fishpond, water pump, controller and control cabinet, the water inlet pipe in fishpond connects the hot water outlet of water source and apparatus for heating water by solar energy respectively by pipeline, the water inlet pipe of water pump stretches in fishpond, the outlet pipe of water pump connects the cold water inlet of apparatus for heating water by solar energy, the pipeline in connection water source and fishpond is provided with control valve A, by water source for fishpond provides with water, water source can be storage fishpond or water tank, the temperature sensor for detecting water temperature in fishpond is provided with in fishpond, controller connects temperature sensor respectively by circuit, water pump and control cabinet, control cabinet is provided with display floater and guidance panel, operating personnel observe fishpond water temperature or setting fishpond temperature by control cabinet.
The fishpond temperature parameter of the water temperature parameters that controller records according to temperature sensor and control cabinet setting compares, when fishpond water temperature is lower than design temperature, controller controls pump working, water at low temperature in fishpond is delivered to apparatus for heating water by solar energy, the hot water of apparatus for heating water by solar energy is then flow in fishpond by displacement to improve fishpond water temperature, after fishpond water temperature is increased to design temperature, controller controls water pump and quits work, thus the thermostatic control realized water temperature in fishpond, and the heat of warm water comes from solar energy, take full advantage of green energy resources, reduce energy consumption.Temperature controlled general control system uses controller, and the sensor of combined high precision is monitored, and controls the temperature of fish pool inner water, thus reaches during fishpond water temperature keeps the object using solar energy heating, achieves the Automated condtrol of fishpond water temperature, saves artificial.
Preferably, this control system also comprises monitoring host computer, and control cabinet is by connection monitoring host computer, thus operating personnel can monitor fishpond water temperature or setting fishpond temperature on monitoring host computer.
Preferably, this control system also comprises personal computer, and PC connects monitoring host computer by wired or wireless communication network, thus can realize the monitoring to fishpond water temperature by PC.
To sum up, the beneficial effects of the utility model are:
1, solve water source heating power consumption in industrial aquaculture system large, precision is low, and temperature controls insensitive, the problem that Automated condtrol is not high.
2, heating energy source of the present utility model comes from solar energy, temperature controlled general control system uses controller, the sensor of combined high precision is monitored, control the temperature of fish pool inner water, thus reach during fishpond water temperature keeps the object using solar energy heating, achieve the Automated condtrol of fishpond water temperature, save artificial.
3, the utility model manipulation is convenient, both can be monitored by control cabinet at the scene by operating personnel, also monitoring Centralized Monitoring in room, can also pass through wire and wireless network remote monitoring.
Accompanying drawing explanation
Fig. 1 is structural representation of the present utility model;
Fig. 2 is control principle block diagram of the present utility model.
Mark and corresponding parts title in accompanying drawing:
1-water source, 2-apparatus for heating water by solar energy, 3-fishpond, 4-water pump, 5-controller, 6-control cabinet, 7-monitoring host computer, 8-control valve A, 9-temperature sensor, 10-PC.
Embodiment
Below in conjunction with embodiment and accompanying drawing, to the detailed description further of the utility model do, but embodiment of the present utility model is not limited thereto.
Embodiment:
As shown in Figure 1, utilize solar energy in conjunction with the fishpond constant temperature complex control system of controller and sensor, comprise water source 1, apparatus for heating water by solar energy 2, fishpond 3, water pump 4, controller 5, control cabinet 6 and monitoring host computer 7, the water inlet pipe in fishpond 3 connects the hot water outlet of water source 1 and apparatus for heating water by solar energy 2 respectively by pipeline, the water inlet pipe of water pump 4 stretches in fishpond 3, the outlet pipe of water pump 4 connects the cold water inlet of apparatus for heating water by solar energy 2, the pipeline in connection water source 1 and fishpond 3 is provided with control valve A8, by water source 1 for fishpond 3 provides with water, water source 1 can be storage fishpond 3 or water tank, the temperature sensor 9 for detecting water temperature in fishpond 3 is provided with in fishpond 3, controller 5 connects temperature sensor 9 respectively by circuit, water pump 4 and control cabinet 6, control cabinet 6 is provided with display floater and guidance panel, operating personnel observe fishpond 3 water temperature or setting fishpond 3 temperature by control cabinet 6, control cabinet 6 is by connection monitoring host computer 7, thus operating personnel can monitor fishpond 3 water temperature or setting fishpond 3 temperature on monitoring host computer 7.As shown in Figure 2, the water temperature parameters that controller 5 records according to temperature sensor 9 and fishpond 3 temperature parameter that control cabinet 6 sets compare, when fishpond 3 water temperature is lower than design temperature, controller 5 controls water pump 4 and works, water at low temperature in fishpond 3 is delivered to apparatus for heating water by solar energy 2, the hot water of apparatus for heating water by solar energy 2 is then flow in fishpond 3 by displacement to improve fishpond 3 water temperature, after fishpond 3 water temperature is increased to design temperature, controller 5 controls water pump 4 and quits work, thus the thermostatic control realized water temperature in fishpond 3, and the heat of warm water comes from solar energy, take full advantage of green energy resources, reduce energy consumption.
Preferably, as shown in Figure 1 and Figure 2, this control system also comprises personal computer 10, and PC 10 connects monitoring host computer 7 by wired or wireless communication network, thus can realize the monitoring to fishpond 3 water temperature by PC 10.
The pipeline that water source 1 connects fishpond 3 can arrange delivery pump according to actual needs, the pipeline that the water inlet pipe in fishpond 3 connects apparatus for heating water by solar energy 2 can arrange control valve according to actual needs.
As mentioned above, the utility model can be realized preferably.
Claims (3)
1. utilize solar energy in conjunction with the fishpond constant temperature complex control system of controller and sensor, it is characterized in that, comprise water source (1), apparatus for heating water by solar energy (2), fishpond (3), water pump (4), controller (5) and control cabinet (6), the water inlet pipe in fishpond (3) connects the hot water outlet of water source (1) and apparatus for heating water by solar energy (2) respectively by pipeline, the water inlet pipe of water pump (4) stretches in fishpond (3), the outlet pipe of water pump (4) connects the cold water inlet of apparatus for heating water by solar energy (2), the pipeline of connection water source (1) and fishpond (3) is provided with control valve A(8), the temperature sensor (9) for detecting fishpond (3) interior water temperature is provided with in fishpond (3), controller (5) connects temperature sensor (9) respectively by circuit, water pump (4) and control cabinet (6), (6) are provided with display floater and guidance panel with control cabinet.
2. the solar energy that utilizes according to claim 1 is in conjunction with the fishpond constant temperature complex control system of controller and sensor, and it is characterized in that, also comprise monitoring host computer (7), control cabinet (6) is by connection monitoring host computer (7).
3. the solar energy that utilizes according to claim 2 is in conjunction with the fishpond constant temperature complex control system of controller and sensor, it is characterized in that, also comprise personal computer (10), PC (10) connects monitoring host computer (7) by wired or wireless communication network.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201520140100.4U CN204443726U (en) | 2015-03-12 | 2015-03-12 | Utilize solar energy in conjunction with the fishpond constant temperature complex control system of controller and sensor |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN201520140100.4U CN204443726U (en) | 2015-03-12 | 2015-03-12 | Utilize solar energy in conjunction with the fishpond constant temperature complex control system of controller and sensor |
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CN204443726U true CN204443726U (en) | 2015-07-08 |
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CN201520140100.4U Expired - Fee Related CN204443726U (en) | 2015-03-12 | 2015-03-12 | Utilize solar energy in conjunction with the fishpond constant temperature complex control system of controller and sensor |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN105145467A (en) * | 2015-08-27 | 2015-12-16 | 太仓飞顺温控设备有限公司 | Oxygenation and temperature control device for fish jar |
-
2015
- 2015-03-12 CN CN201520140100.4U patent/CN204443726U/en not_active Expired - Fee Related
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN105145467A (en) * | 2015-08-27 | 2015-12-16 | 太仓飞顺温控设备有限公司 | Oxygenation and temperature control device for fish jar |
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Legal Events
Date | Code | Title | Description |
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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: 20150708 Termination date: 20200312 |
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CF01 | Termination of patent right due to non-payment of annual fee |