Temperature and water level monitoring device for aquaculture pond

Through the temperature and water level monitoring device of the circuit motherboard and multi-probe separation structure, the problem of inaccurate monitoring of water level and water temperature in aquaculture ponds is solved, and automated and reliable water level and water temperature control is achieved to ensure that fish and shrimp grow in an optimized environment.

CN223179664UActive Publication Date: 2025-08-01HUILAI COUNTY GONGDAOREN AGRI DEV CO LTD
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Patent Information

Application Number
CN202421658553.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-12
Publication Date
2025-08-01
Estimated Expiration
2034-07-12

AI Technical Summary

Technical Problem

In the prior art, the water level and water temperature monitoring of aquaculture ponds relies on manual naked eye judgment and empirical estimation, resulting in inaccurate monitoring and ineffective control of water level and water temperature, affecting the growth environment of fish and shrimps.

Method used

The circuit motherboard, water temperature probe, upper level probe and lower level probe are adopted to achieve automatic monitoring through lead connection, combining the lead length adjustment mechanism and multi-probe redundant design to ensure accurate monitoring and adjustment of water level and water temperature.

Benefits of technology

Real-time and accurate monitoring of the water level and water temperature of aquaculture ponds is achieved, avoiding too low or too high water levels, ensuring that fish and shrimps grow in a suitable environment, and improving the reliability of monitoring and automatic temperature adjustment ability.

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Abstract

The utility model relates to the technical field of aquaculture, in particular to a temperature and water level monitoring device for an aquaculture pond, which comprises a waterproof shell, and a circuit mainboard, a water temperature probe, a water temperature lead, an upper liquid level probe, an upper liquid level lead, a lower liquid level probe and a lower liquid level lead which are arranged in the waterproof shell, the water temperature probe, the upper liquid level probe and the lower liquid level probe are arranged outside the waterproof shell in an exposed mode, the water temperature probe is electrically connected with the circuit mainboard through a water temperature lead, the upper liquid level probe is electrically connected with the circuit mainboard through an upper liquid level lead, and the lower liquid level probe is electrically connected with the circuit mainboard through a lower liquid level lead. According to the utility model, the water level in the culture pond can be accurately and automatically monitored in real time instead of a previous manual naked eye judgment mode, the water level in the culture pond can be prevented from being too low or too high, and the water temperature in the culture pond can be accurately and automatically monitored in real time instead of a previous experience estimation mode; the water temperature in the culture pond can be prevented from being too low or too high.
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Description

Technical Field:

[0001] The utility model relates to the technical field of aquaculture, in particular to a temperature and water level monitoring device for aquaculture ponds. Background Art:

[0002] During the aquaculture process of fish, shrimp and other aquatic products, operations such as drainage, sewage discharge, and water addition are involved. When performing operations such as drainage, sewage discharge, and water addition, the water level in the aquaculture pond will change. However, in the existing traditional technologies, most still monitor the water level in the aquaculture pond by the form of manual visual judgment to avoid the water level in the aquaculture pond being too low or too high, so as to ensure that fish, shrimp and other aquatic products can be in a suitable water level growth environment. However, monitoring the water level in the aquaculture pond by the form of manual visual judgment is not only time-consuming and laborious, but also has certain deviations and cannot accurately control the water level in the aquaculture pond; in addition, the water temperature in the aquaculture pond is crucial for the aquaculture of fish, shrimp and other aquatic products. Appropriate water temperature is not only a necessary condition for the growth, reproduction and disease resistance of fish themselves. However, in the existing traditional technologies, most still estimate the water temperature in the aquaculture pond by relying on experience judgment, that is, estimate the water temperature in the aquaculture pond by the temperature in the air and take corresponding temperature adjustment measures. However, the water temperature results obtained by the above estimation method have large deviations and cannot accurately obtain the water temperature of the aquaculture pond, so that corresponding temperature adjustment measures cannot be well carried out and the aquaculture pond cannot be in a better water temperature growth environment. Content of the Utility Model:

[0003] The purpose of the utility model is to provide a temperature and water level monitoring device for aquaculture ponds aiming at the deficiencies of the existing technologies. It can not only replace the previous manual visual judgment method to automatically and accurately monitor the water level in the aquaculture pond in real time, avoid the water level in the aquaculture pond being too low or too high, and ensure that fish, shrimp and other aquatic products are always in a suitable water level growth environment, but also replace the previous experience estimation method to automatically and accurately monitor the water temperature in the aquaculture pond in real time, better carry out corresponding temperature adjustment measures, avoid the water temperature in the aquaculture pond being too low or too high, and ensure that fish, shrimp and other aquatic products are always in a better water temperature growth environment.

[0004] To achieve the above object, the technical solution adopted by the present utility model is: a temperature and water level monitoring device for an aquaculture pond, comprising a waterproof housing, a circuit main board disposed in the waterproof housing, a water temperature probe, a water temperature lead wire, an upper liquid level probe, an upper liquid level lead wire, a lower liquid level probe, and a lower liquid level lead wire. The water temperature probe, the upper liquid level probe, and the lower liquid level probe are respectively externally exposed outside the waterproof housing. The water temperature probe is electrically connected to the circuit main board through the water temperature lead wire, the upper liquid level probe is electrically connected to the circuit main board through the upper liquid level lead wire, and the lower liquid level probe is electrically connected to the circuit main board through the lower liquid level lead wire.

[0005] A further improvement to the above solution is that mounting ears are provided on the waterproof housing.

[0006] A further improvement to the above solution is that an integrally formed structure is adopted between the waterproof housing and the mounting ears.

[0007] A further improvement to the above solution is that the present utility model further includes a lead wire length adjustment mechanism for adjusting the length of the water temperature lead wire and / or the upper liquid level lead wire and / or the lower liquid level lead wire.

[0008] A further improvement to the above solution is that the lead wire length adjustment mechanism includes a wire winding board disposed on the waterproof housing and a plurality of wire winding columns disposed on the wire winding board.

[0009] A further improvement to the above solution is that the wire winding column includes a wire winding portion and a limiting portion.

[0010] A further improvement to the above solution is that the wire winding column is a T-shaped column structure.

[0011] A further improvement to the above solution is that there are at least two water temperature probes, the number of water temperature lead wires is the same as the number of water temperature probes, and each water temperature probe is electrically connected to the circuit main board through the corresponding water temperature lead wire.

[0012] A further improvement to the above solution is that there are at least two upper liquid level probes, the number of upper liquid level lead wires is the same as the number of upper liquid level probes, and each upper liquid level probe is electrically connected to the circuit main board through the corresponding upper liquid level lead wire. The number of lower liquid level probes is the same as the number of upper liquid level probes, the number of lower liquid level lead wires is the same as the number of lower liquid level probes, and each lower liquid level probe is electrically connected to the circuit main board through the corresponding lower liquid level lead wire.

[0013] A further improvement to the above solution is that the present utility model further includes a display module and / or a communication module, and the circuit main board is electrically connected to the display module and the communication module respectively.

[0014] The beneficial effects of the present utility model are as follows: A temperature and water level monitoring device for an aquaculture pond provided by the present utility model includes a waterproof housing, a circuit main board disposed in the waterproof housing, a water temperature probe, a water temperature lead wire, an upper liquid level probe, an upper liquid level lead wire, a lower liquid level probe, and a lower liquid level lead wire. The water temperature probe, the upper liquid level probe, and the lower liquid level probe are respectively externally exposed outside the waterproof housing. The water temperature probe is electrically connected to the circuit main board through the water temperature lead wire, the upper liquid level probe is electrically connected to the circuit main board through the upper liquid level lead wire, and the lower liquid level probe is electrically connected to the circuit main board through the lower liquid level lead wire;

[0015] The present utility model can not only replace the previous manual visual judgment method to automatically and accurately monitor the water level in the aquaculture pond in real time, avoid the water level in the aquaculture pond being too low or too high, and ensure that aquatic products such as fish and shrimps are always in a suitable water level growth environment, but also replace the previous method of relying on empirical estimation to automatically and accurately monitor the water temperature in the aquaculture pond in real time, better carry out corresponding temperature adjustment measures, avoid the water temperature in the aquaculture pond being too low or too high, and ensure that aquatic products such as fish and shrimps are always in a better water temperature growth environment; compared with placing the entire device in water, the present utility model adopts a structure in which the circuit main board and the probe are separated. When in use, only the water temperature probe, the upper liquid level probe, and the lower liquid level probe need to be placed in the water of the aquaculture pond, and the circuit main board is set away from the aquaculture pond, making it more reliable to use. Description of the drawings:

[0016] Figure 1 is a schematic structural diagram of the present utility model.

[0017] Figure 2 is a control principle block diagram of the present utility model.

[0018] Description of the reference numerals: Circuit main board 1, waterproof housing 2, mounting ear 21, water temperature probe 3, water temperature lead wire 4, upper liquid level probe 5, upper liquid level lead wire 6, lower liquid level probe 7, lower liquid level lead wire 8, lead wire length adjustment mechanism 9, winding board 91, winding post 92, winding part 921, limiting part 922, display module 10, communication module 11. Detailed implementation manners:

[0019] The following further describes the present utility model in conjunction with the drawings, as Figure 1-2As shown in the figure, the utility model includes a waterproof housing 2, a circuit main board 1 arranged in the waterproof housing 2, a water temperature probe 3, a water temperature lead wire 4, an upper liquid level probe 5, an upper liquid level lead wire 6, a lower liquid level probe 7, and a lower liquid level lead wire 8. The water temperature probe 3, the upper liquid level probe 5, and the lower liquid level probe 7 are respectively externally exposed outside the waterproof housing 2. The water temperature probe 3 is electrically connected to the circuit main board 1 through the water temperature lead wire 4, the upper liquid level probe 5 is electrically connected to the circuit main board 1 through the upper liquid level lead wire 6, and the lower liquid level probe 7 is electrically connected to the circuit main board 1 through the lower liquid level lead wire 8. The utility model can not only replace the previous manual visual judgment method to automatically and accurately monitor the water level in the aquaculture pond in real time, avoid the water level in the aquaculture pond being too low or too high, ensure that aquatic products such as fish and shrimps are always in a suitable water level growth environment, but also replace the previous method of relying on empirical estimation to automatically and accurately monitor the water temperature in the aquaculture pond in real time, better carry out corresponding temperature adjustment measures, avoid the water temperature in the aquaculture pond being too low or too high, and ensure that aquatic products such as fish and shrimps are always in a better water temperature growth environment. Compared with placing the whole device in water, the utility model adopts a structure in which the circuit main board 1 and the probe are separated. When in use, only the water temperature probe 3, the upper liquid level probe 5, and the lower liquid level probe 7 need to be placed in the water of the aquaculture pond, and the circuit main board 1 is arranged away from the aquaculture pond, making it more reliable in use.

[0020] The waterproof housing 2 is provided with mounting ears 21. Through the mounting ears 21, the waterproof housing 2 can be conveniently fixed and installed. The waterproof housing 2 and the mounting ears 21 are of an integrally formed structure, which not only has fewer overall parts but also has a more stable structure.

[0021] The utility model further includes a lead wire length adjustment mechanism 9 for adjusting the length of the water temperature lead wire 4 and / or the length of the upper liquid level lead wire 6 and / or the length of the lower liquid level lead wire 8. Compared with the fixed setting of the length of the water temperature lead wire 4 and / or the length of the upper liquid level lead wire 6 and / or the length of the lower liquid level lead wire 8, there are certain limitations in use. By adjusting the length of the water temperature lead wire 4 through the lead wire length adjustment mechanism 9 of the utility model, the water temperature probe 3 can be extended to different height positions in the aquaculture pond, so that the height position of the water temperature probe 3 can be adjusted according to the specific use situation to better monitor the water temperature. By adjusting the lengths of the upper liquid level lead wire 6 and the lower liquid level lead wire 8 through the lead wire length adjustment mechanism 9 of the utility model, the upper liquid level probe 5 and the lower liquid level probe 7 can be extended to different height positions in the aquaculture pond, so that the height positions of the upper liquid level probe 5 and the lower liquid level probe 7 can be adjusted according to the specific use situation to better control the water level. For example, when a higher water level is required, the upper liquid level probe 5 is adjusted upward, and when the liquid level is lower than the position of the upper liquid level probe 5, the drainage stops.

[0022] The lead length adjustment mechanism 9 includes a winding plate 91 arranged on the waterproof housing 2 and a plurality of winding poles 92 arranged on the winding plate 91. The length of the lead can be adjusted by adjusting the number of turns wound on the winding poles 92. When the lead needs to be shorter, the lead is wound a few more times. Similarly, when the lead needs to be longer, the lead wound on the winding poles 92 is released. There are multiple winding poles 92 in this embodiment, and each lead corresponds to a winding pole 92. Of course, in other embodiments, the winding pole 92 can also be set to one or other numbers.

[0023] The winding post 92 includes a winding portion 921 and a limiting portion 922 . The winding post 92 is used to wind the lead wire. The limiting portion 922 is used to support the lead wire and prevent the lead wire from sliding out. The winding post 92 is a T-shaped column structure.

[0024] There are at least two water temperature probes 3, and the number of water temperature leads 4 is the same as the number of water temperature probes 3. Each water temperature probe 3 is electrically connected to the circuit main board 1 through the corresponding water temperature lead 4. Since the water temperature probe 3 will inevitably fail after a period of use, compared with only a single water temperature probe 3, the present invention has at least two water temperature probes 3, each of which is used to monitor the water temperature. Even if one of the water temperature probes 3 fails, the current water temperature in the breeding pond can be accurately monitored, thereby greatly improving the reliability of temperature monitoring and avoiding the situation where the water temperature is too high or too low and cannot be discovered in time.

[0025] There are at least two upper liquid level probes 5, the number of upper liquid level leads 6 is the same as the number of upper liquid level probes 5, and each upper liquid level probe 5 is electrically connected to the circuit main board 1 through the corresponding upper liquid level lead 6. The number of lower liquid level probes 7 is the same as the number of upper liquid level probes 5, and the number of lower liquid level leads 8 is the same as the number of lower liquid level probes 7. Each lower liquid level probe 7 is electrically connected to the circuit main board 1 through the corresponding lower liquid level lead 8. Since the upper liquid level probe 5 and / or the lower liquid level probe 7 will inevitably fail after being used for a period of time, compared to There is only a single set of upper liquid level probes 5 and lower liquid level probes 7. The utility model has at least two sets of upper liquid level probes 5 and lower liquid level probes 7. Each set of upper liquid level probes 5 and lower liquid level probes 7 is used to monitor the water level. Even if one set of the upper liquid level probes 5 and lower liquid level probes 7 fails, the current water level in the breeding pond can be accurately monitored and corresponding responses can be made, such as stopping drainage, stopping water addition, etc., thereby greatly improving the reliability of water level monitoring and avoiding the situation where the water level is too high or too low and cannot be discovered in time.

[0026] The present utility model further includes a display module 10. The circuit main board 1 is electrically connected to the display module 10. Through the display module 10, the water level and water temperature conditions of the current aquaculture pond can be well observed. In particular, it is more applicable to multiple aquaculture ponds, and the water level and water temperature conditions of each aquaculture pond can be visually observed.

[0027] The present utility model further includes a communication module 11. The circuit main board 1 is electrically connected to the communication module 11. The communication module 11 can be wired or wireless communication. Through the communication module 11, the water level and water temperature conditions of the aquaculture pond can be sent to the monitoring background, such as the display module 10, smart phone, control terminal, etc.

[0028] Working principle:

[0029] The water temperature probe 3, upper liquid level probe 5, and lower liquid level probe 7 are placed in the water of the aquaculture pond. Among them, the height position of the upper liquid level probe 5 is higher than that of the lower liquid level probe 7, and the height position of the water temperature probe 3 is lower than that of the upper liquid level probe 5, so as to ensure that the water temperature probe 3 is always in the water of the aquaculture pond; when draining the aquaculture pond and the water level in the aquaculture pond is lower than the height position of the upper liquid level probe 5, the electrical connection between the upper liquid level probe 5 and the lower liquid level probe 7 is disconnected and a corresponding electrical signal is triggered to control the stop of continuous drainage of the aquaculture pond and prevent the water level from being too low; when adding water to the aquaculture pond and the water level in the aquaculture pond is higher than the height position of the upper liquid level probe 5, the electrical connection between the upper liquid level probe 5 and the lower liquid level probe 7 is restored and a corresponding electrical signal is triggered to control the stop of adding water to the aquaculture pond and prevent the water level from being too high; the present utility model can not only replace the previous manual visual judgment method to automatically and accurately monitor the water level in the aquaculture pond in real time, avoid the water level in the aquaculture pond from being too low or too high, and ensure that aquatic products such as fish and shrimps are always in a suitable water level growth environment, but also replace the previous method of relying on empirical estimation to automatically and accurately monitor the water temperature in the aquaculture pond in real time, better carry out corresponding temperature adjustment measures, avoid the water temperature in the aquaculture pond from being too low or too high, and ensure that aquatic products such as fish and shrimps are always in a better water temperature growth environment.

[0030] Of course, the above description is only a preferred embodiment of the present utility model. Therefore, all equivalent changes or modifications made according to the structure, characteristics, and principles described in the scope of the patent application of the present utility model are included in the scope of the patent application of the present utility model.

Claims

1. A temperature and water level monitoring device for aquaculture ponds, characterized in that: It includes a waterproof housing (2), a circuit main board (1) disposed in the waterproof housing (2), a water temperature probe (3), a water temperature lead wire (4), an upper liquid level probe (5), an upper liquid level lead wire (6), a lower liquid level probe (7), and a lower liquid level lead wire (8). The water temperature probe (3), the upper liquid level probe (5), and the lower liquid level probe (7) are respectively externally exposed outside the waterproof housing (2). The water temperature probe (3) is electrically connected to the circuit main board (1) through the water temperature lead wire (4), the upper liquid level probe (5) is electrically connected to the circuit main board (1) through the upper liquid level lead wire (6), and the lower liquid level probe (7) is electrically connected to the circuit main board (1) through the lower liquid level lead wire (8).

2. The temperature and water level monitoring device for an aquaculture pond according to claim 1, wherein: Mounting ears (21) are provided on the waterproof housing (2).

3. The temperature and water level monitoring device for an aquaculture pond according to claim 2, characterized in that: An integrally formed structure is provided between the waterproof housing (2) and the mounting ears (21).

4. The temperature and water level monitoring device for an aquaculture pond according to claim 1, characterized in that: It further includes a lead wire length adjustment mechanism (9) for adjusting the length of the water temperature lead wire (4) and / or the length of the upper liquid level lead wire (6) and / or the length of the lower liquid level lead wire (8).

5. The temperature and water level monitoring device for an aquaculture pond according to claim 4, wherein: The lead wire length adjustment mechanism (9) includes a wire winding board (91) provided on the waterproof housing (2) and a plurality of wire winding posts (92) provided on the wire winding board (91).

6. The temperature and water level monitoring device for an aquaculture pond according to claim 5, characterized in that: The wire winding post (92) includes a wire winding portion (921) and a limiting portion (922).

7. The temperature and water level monitoring device for an aquaculture pond according to claim 6, characterized in that: The wire winding post (92) is a T-shaped columnar structure.

8. The temperature and water level monitoring device for an aquaculture pond according to claim 1, wherein: There are at least two water temperature probes (3). The number of water temperature lead wires (4) is the same as the number of water temperature probes (3). Each water temperature probe (3) is electrically connected to the circuit main board (1) through the corresponding water temperature lead wire (4).

9. The temperature and water level monitoring device for an aquaculture pond according to claim 1, characterized in that: There are at least two upper liquid level probes (5). The number of upper liquid level lead wires (6) is the same as the number of upper liquid level probes (5). Each upper liquid level probe (5) is electrically connected to the circuit main board (1) through the corresponding upper liquid level lead wire (6). The number of lower liquid level probes (7) is the same as the number of upper liquid level probes (5). The number of lower liquid level lead wires (8) is the same as the number of lower liquid level probes (7). Each lower liquid level probe (7) is electrically connected to the circuit main board (1) through the corresponding lower liquid level lead wire (8).

10. The temperature and water level monitoring device for an aquaculture pond according to claim 1, characterized in that: It further includes a display module (10) and / or a communication module (11). The circuit main board (1) is electrically connected to the display module (10) and the communication module (11) respectively.