Bee breeding box with intelligent environment regulation and control function

By setting up water-cooling components and temperature-controlled water storage tanks in the bee breeding box, and using solenoid valves and insulation pipes for temperature regulation, the problem of poor temperature control and temperature balance in traditional breeding boxes is solved, achieving a more balanced temperature control effect.

CN120130397AInactive Publication Date: 2025-06-13RES INST OF SILKWORM & HONEYBEE YUNNAN ACAD OF AGRI SCI
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Patent Information

Application Number
CN202510347031.2
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-24
Publication Date
2025-06-13
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

Traditional bee breeding boxes have poor temperature equilibrium in temperature control. The air-cooling system leads to obvious temperature differences between different areas in the box, making it impossible to achieve ideal temperature equilibrium.

Method used

Water-cooling components and temperature-controlled water storage tanks are used to set up on the side wall of the box through the water-cooling components, and water is sequentially passed into the water-cooling components by using solenoid valves and insulation pipes to adjust the temperature inside the box to achieve a more balanced temperature control.

Benefits of technology

Through the distribution of water-cooled components and the design of the temperature control system, the temperature balance in the box is significantly improved, ensuring that bees can be in the optimal growth environment throughout the year.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The bee breeding box with the intelligent environment regulation and control function comprises a box body and a cover body, the cover body is arranged at the upper end of the box body in an openable mode, a water cooling assembly is arranged on the side wall in the box body and comprises a bottom ring, a connecting pipe and a top ring, the bottom ring is arranged at the bottom in the box body, and the connecting pipe communicates with the upper end of the bottom ring; the top ring is connected to the upper end of the connecting pipe, a first electromagnetic valve is arranged on one side outside the box body and communicated with the bottom ring, a second electromagnetic valve is arranged on the other side outside the box body and communicated with the top ring, and the first electromagnetic valve and the second electromagnetic valve between every two adjacent box bodies are communicated through a first heat preservation pipe. And the first electromagnetic valve at the first position and the second electromagnetic valve at the tail part are communicated with a temperature control water storage tank through a second thermal insulation pipe. The water cooling assemblies are distributed in the box body, water is sequentially introduced into each water cooling assembly through the first heat preservation pipe, the second heat preservation pipe, the first electromagnetic valve and the second electromagnetic valve, the temperature in the box body is adjusted, and the temperature in the box body is balanced.
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Description

Technical Field

[0001] The present invention relates to the technical field of bee breeding, and particularly relates to a bee breeding box with an environmental intelligent regulation function. Background Art

[0002] Traditional bee breeding mainly relies on natural conditions. This method is greatly affected by factors such as seasons and climates, and it is difficult to ensure that bees can be in the best growth environment throughout the year. To solve this problem, some breeding boxes with temperature control functions have gradually emerged on the market. However, most of these breeding boxes use air-cooling systems when implementing temperature control, that is, they use devices such as fans to circulate air to adjust the temperature. Although this method can improve the internal environment of the box to a certain extent, there is a problem of poor temperature uniformity. The air-cooling system achieves the effect of cooling or heating by forcing air flow. However, due to the low heat conduction efficiency of air itself, there are obvious temperature differences between different regions inside the breeding box, and ideal temperature balance cannot be achieved. Summary of the Invention

[0003] The purpose of the present invention is to provide a bee breeding box with an environmental intelligent regulation function, and by arranging a water-cooling component inside the box body, more balanced temperature control is carried out inside the breeding box.

[0004] The above technical purpose of the present invention is achieved through the following technical solutions:

[0005] A bee breeding box with an environmental intelligent regulation function includes a box body and a cover body. The cover body is movably arranged at the upper end of the box body. A water-cooling component is arranged on the side wall inside the box body. The water-cooling component includes a bottom ring, connecting pipes, and a top ring. The bottom ring is arranged at the bottom inside the box body. There are multiple connecting pipes, which are evenly connected to the upper end of the bottom ring. The top ring is connected to the upper end of the connecting pipes. A first solenoid valve is arranged on one side outside the box body, and the first solenoid valve is connected to the bottom ring. A second solenoid valve is arranged on the other side outside the box body, and the second solenoid valve is connected to the top ring. There are multiple box bodies, which are evenly arranged. The first solenoid valve and the second solenoid valve between adjacent two box bodies are connected through a first heat-insulating pipe. The first solenoid valve at the head and the second solenoid valve at the tail are both connected to a temperature control water storage tank through a second heat-insulating pipe;

[0006] A control panel is arranged on the box body. A first temperature sensor and a first humidity sensor inside the box body are arranged on the control panel. The first temperature sensor, the first humidity sensor, the first solenoid valve, and the second solenoid valve are all electrically connected to the control panel;

[0007] A second temperature sensor and a second humidity sensor are provided outside the temperature-controlled water storage tank. Both the second temperature sensor and the second humidity sensor are electrically connected to the temperature-controlled water storage tank, and the control panel is electrically connected to the temperature-controlled water storage tank.

[0008] By adopting the above technical solution, the temperature-controlled water storage tank passes water into the water-cooling component in sequence through the first heat-insulating pipe, the second heat-insulating pipe, the first solenoid valve and the second solenoid valve to adjust the temperature inside the box body. The water-cooling component is arranged on the side wall of the box body, which can control the temperature more evenly.

[0009] A further setting of the present invention is that both the first solenoid valve and the second solenoid valve are two-way three-way valves. A water pipe is connected between the first solenoid valve and the second solenoid valve, and the water pipe is embedded at the lower end of the box body.

[0010] By adopting the above technical solution, with the help of the water pipe and the two-way three-way valve, in the early adjustment process, water with a relatively large temperature difference can be passed into the water-cooling component in sequence, so that the water can directly act on the water-cooling component in each box body. Moreover, during the use process, the temperature in individual box bodies may be uneven, and the water can directly act on the box body to further evenly control the temperature in each box body.

[0011] A further setting of the present invention is that the temperature-controlled water storage tank includes an operation panel, an upper box body, a first water pump, a chiller, a water outlet pipe, a third solenoid valve, a fourth solenoid valve, a lower box body, a third temperature sensor and a heating element. The chiller and the water outlet pipe are both arranged between the upper box body and the lower box body. The upper ends of the chiller and the water outlet pipe are connected to the upper box body through the third solenoid valve, and the lower ends of the chiller and the water outlet pipe are connected to the lower box body through the fourth solenoid valve. Both the third solenoid valve and the fourth solenoid valve are two-way three-way valves. The first water pump is arranged in the lower box body. The first water pump is connected to the first solenoid valve through the second heat-insulating pipe. The heating element is arranged in the lower box body. A third temperature sensor is arranged in the lower box body. The upper box body is connected to the second solenoid valve through the second heat-insulating pipe. The operation panel is arranged on the upper box body. The first water pump, the chiller, the third solenoid valve, the fourth solenoid valve, the third temperature sensor and the heating element are all electrically connected to the operation panel.

[0012] By adopting the above technical solution, the temperature-controlled water storage tank mainly pumps the water in the lower box body out through the first water pump, then passes through each box body in sequence, and finally flows back to the upper box body. The water in the upper box body can be cooled by the chiller and then flows back to the lower box body for circulation, or it can directly flow back to the lower box body through the water outlet pipe and be heated to the specified temperature by the heating element before circulation.

[0013] A further setting of the present invention is that a second water pump is provided inside the upper box body, and the second water pump is communicated with the second heat preservation pipe.

[0014] By adopting the above technical solution, the second water pump can further strengthen the flow of water in each box body. Of course, the second water pump can be used to completely pump out the water in the cold water component, which is convenient for carrying the box body and is suitable for beekeepers who migrate with the flowering period.

[0015] A further setting of the present invention is that an installation groove is opened at the bottom of the front side of the box body, and a water feeding component is provided in the installation groove. The water feeding component includes a mounting plate, a handle and a sponge. The mounting plate is inserted into the installation groove, the handle is installed on the outside of the mounting plate, a water storage groove and a measuring groove are opened at the upper end of the mounting plate, the lower ends of the water storage groove and the measuring groove are communicated with each other, a notch is opened on the outside of the measuring groove, the water storage groove is opened inside the box body, the sponge is placed in the water storage groove, and the measuring groove is opened below the control panel.

[0016] By adopting the above technical solution, the water feeding component mainly feeds water to the bees by letting the sponge soak wet by introducing water into the water storage groove, so as to avoid drowning the bees. And the measuring groove is convenient for observing the water level.

[0017] A further setting of the present invention is that a water storage cavity is provided inside the temperature control water storage tank, the height of the water storage cavity is higher than the height of the installation groove, a water level sensor is provided inside the water storage cavity, the water level sensor is electrically connected to the operation panel, a communication pipe is connected to the lower end of the water storage cavity, and the end of the communication pipe away from the water storage cavity passes through each box body in turn. The communication pipe is clamped at the lower end of the box body, a thin pipe is communicated with the communication pipe, a sliding pipe is provided above the measuring groove of the box body, the sliding pipe is vertically installed inside the box body, the sliding pipe is slidably connected to the box body, a handle connected to the sliding pipe is provided outside the box body, the upper end of the sliding pipe is connected to the thin pipe, the lower end of the sliding pipe can be inserted into the measuring groove, and a water outlet cover is detachably connected to the lower end of the sliding pipe. A plastic film is provided on the water outlet cover, and a cross cut is opened in the middle of the plastic film.

[0018] By adopting the above technical solution, the water storage cavity can store a large amount of clean water, pass through the water feeding components in each box body through the communication pipe, communicate each sliding pipe through the thin pipe, adjust the height of the sliding pipe, insert the water outlet cover into the measuring groove. Since the water level in the water storage cavity is relatively high, when the water level in the measuring groove drops, the plastic film leaks out of the water surface, and the internal water pressure will flush open the cross cut to add water to the measuring groove until the water level covers the plastic film again.

[0019] A further setting of the present invention is that a base is provided at the lower end of the box body. The base includes a support seat, a support block, and a weighing sensor. The support seat is provided below the box body. Liquid storage grooves are provided at the four corners of the upper end of the support seat. The support block is provided at the center of the bottom of the liquid storage groove. The weighing sensor is provided at the upper end of the support block. The upper end of the weighing sensor is connected to the bottom of the box body. The weighing sensor is electrically connected to the control panel.

[0020] By adopting the above technical solution, placing liquids such as water or engine oil in the liquid storage groove can prevent the invasion of other pests such as ants on bees. The weighing sensor can also detect the weight of the box body. One is to detect the change in the mass inside the box body to use it as a judgment basis for the honey production of bees. The other is to detect the change in the box body within a short period of time to detect whether the water cooling component is working properly.

[0021] To sum up, the present invention has the following beneficial effects:

[0022] First, the water cooling components in the present invention are distributed inside the box body. Then, water is sequentially introduced into each water cooling component through the first heat preservation pipe, the second heat preservation pipe, the first solenoid valve, and the second solenoid valve to adjust the temperature inside the box body and balance the temperature inside the box body.

[0023] Second, the water passing pipe and the two-way three-way valve in the present invention can directly make the water coming out of the temperature control water storage tank act on any water cooling component to cool down the box body with a more prominent individual temperature difference first, ensuring the balance of the overall temperature.

[0024] Third, the second water pump in the present invention can further strengthen the flow of water in each water cooling component. Of course, the second water pump can be used to completely pump out the water in the cold water component, which is convenient for carrying the box body and is suitable for beekeepers who move with the flowering period.

[0025] Fourth, the water feeding component in the present invention wets the sponge to feed water to the bees to avoid drowning the bees, and then the cross-cut on the water outlet cover is used to facilitate automatic water replenishment. BRIEF DESCRIPTION OF THE DRAWINGS

[0026] Figure 1 is the overall structural schematic diagram of the present invention;

[0027] Figure 2 is the sectional view of the box body in the present invention;

[0028] Figure 3 is the sectional view of the temperature control water storage tank in the present invention;

[0029] Figure 4 is the sectional view of the feeding component in the present invention;

[0030] Figure 5It is a schematic structural diagram of the water outlet cover in the present invention.

[0031] In the figure: 1. Box body; 11. First solenoid valve; 12. Second solenoid valve; 13. First heat preservation pipe; 14. Second heat preservation pipe; 15. Water pipe; 16. Installation groove; 17. Slide pipe; 18. Handle; 2. Cover body; 3. Water cooling component; 31. Bottom ring; 32. Connecting pipe; 33. Top ring; 4. Temperature control water storage tank; 41. Second temperature sensor; 42. Second humidity sensor; 43. Operation panel; 44. Upper box body; 45. First water pump; 46. Chiller; 47. Water outlet pipe; 48. Third solenoid valve; 49. Fourth solenoid valve; 410. Lower box body; 411. Third temperature sensor; 412. Heating element; 413. Second water pump; 414. Water storage cavity; 415. Water level sensor; 5. Control panel; 51. First temperature sensor; 52. First humidity sensor; 6. Water feeding component; 61. Installation plate; 62. Handle; 63. Sponge; 64. Water storage tank; 65. Measuring tank; 66. Notch; 7. Connecting pipe; 71. Thin pipe; 8. Water outlet cover; 81. Plastic film; 82. Cross cut; 9. Base; 91. Support seat; 92. Support block; 93. Weighing sensor; 94. Liquid storage tank. Detailed implementation manners

[0032] The present invention will be further described in detail below with reference to the accompanying drawings.

[0033] In the description of the present invention, it should be understood that the orientation or positional relationship indicated by the terms "upper", "lower", "left", "right", "front", "rear", "inner", "outer", etc. is based on the orientation or positional relationship shown in the drawings, and is only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and thus should not be construed as a limitation of the present invention.

[0034] In addition, terms such as "horizontal" and "vertical" do not mean that the components are required to be absolutely horizontal or hanging vertically, but can be slightly inclined. For example, "horizontal" only means that its direction is more horizontal relative to "vertical", and does not mean that the structure must be completely horizontal, but can be slightly inclined.

[0035] In the description of the present invention, it should also be noted that unless otherwise clearly defined and limited, the terms "set", "connected", and "connected" should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection, a direct connection, or an indirect connection through an intermediate medium, and it can be the communication inside two elements. For those of ordinary skill in the art, the specific meanings of the above terms in the present invention can be understood according to specific situations.

[0036] Embodiment. A beehive with an environmental intelligent control function is as follows Figures 1 to 5 shown, which includes a box body 1 and a cover body 2. Both the box body 1 and the box cover are made of wooden materials. Of course, other materials can also be selected, which belongs to the prior art. The cover body 2 is rotatably arranged at the upper end of the box body 1. A water cooling component 3 is arranged on the inner side wall of the box body 1. The water cooling component 3 includes a bottom ring 31, connecting pipes 32 and a top ring 33. The bottom ring 31 is arranged at the bottom inside the box body 1. There are multiple connecting pipes 32 and they are evenly connected to the upper end of the bottom ring 31. The top ring 33 is connected to the upper end of the connecting pipes 32. The water cooling component 3 is distributed on the periphery inside the box body 1, which can achieve a good temperature control effect. A first solenoid valve 11 is arranged on one side outside the box body 1, and the first solenoid valve 11 is communicated with the bottom ring 31. A second solenoid valve 12 is arranged on the other side outside the box body 1, and the second solenoid valve 12 is communicated with the top ring 33. Water enters from the lower end of the water cooling component 3 and then flows out from the upper end to ensure the water cooling effect. Among them, there are multiple box bodies 1 and they are evenly arranged. The first solenoid valve 11 and the second solenoid valve 12 between adjacent two box bodies 1 are connected through a first heat preservation pipe 13. The first solenoid valve 11 at the head and the second solenoid valve 12 at the tail are both connected to a temperature control water storage tank 4 through a second heat preservation pipe 14, which is convenient for realizing water cooling temperature control of multiple box bodies 1.

[0037] A control panel 5 is arranged on the box body 1. A first temperature sensor 51 and a first humidity sensor 52 located inside the box body 1 are arranged on the control panel 5. The first temperature sensor 51, the first humidity sensor 52, the first solenoid valve 11 and the second solenoid valve 12 are all electrically connected to the control panel 5. The temperature and humidity inside the box body 1 can be detected through the first temperature sensor 51 and the first humidity sensor 52, which is convenient for providing reference data for the operation of the temperature control water storage tank 4.

[0038] A second temperature sensor 41 and a second humidity sensor 42 are arranged outside the temperature control water storage tank 4. The second temperature sensor 41 and the second humidity sensor 42 are both electrically connected to the temperature control water storage tank 4. The control panel 5 is electrically connected to the temperature control water storage tank 4. The second temperature sensor 41 and the second humidity sensor 42 are respectively used to detect the external temperature and humidity, which is convenient for comparing the internal and external temperature and humidity. First, it can make the temperature control water storage tank 4 better control the temperature. Second, it can enable beekeepers to take timely countermeasures.

[0039] In order to enable the water discharged from the temperature control water storage tank 4 to act on the box body 1 with a more prominent temperature difference faster, the first solenoid valve 11 and the second solenoid valve 12 are set as two-way three-way valves. A water pipe 15 is connected between the first solenoid valve 11 and the second solenoid valve 12, and the water pipe 15 is embedded at the lower end of the box body 1. Let the water not flow through the box body 1 with balanced temperature, but directly flow into the box body 1 with a prominent temperature difference.

[0040] Among them, the temperature-controlled water storage tank 4 includes an operation panel 43, an upper box body 44, a first water pump 45, a chiller 46, a water outlet pipe 47, a third solenoid valve 48, a fourth solenoid valve 49, a lower box body 410, a third temperature sensor 411 and a heating element 412. The chiller 46 and the water outlet pipe 47 are both arranged between the upper box body 44 and the lower box body 410. The upper ends of the chiller 46 and the water outlet pipe 47 are connected to the upper box body 44 through the third solenoid valve 48, and the lower ends of the chiller 46 and the water outlet pipe 47 are connected to the lower box body 410 through the fourth solenoid valve 49. Both the third solenoid valve 48 and the fourth solenoid valve 49 are two-position three-way valves. The first water pump 45 is arranged in the lower box body 410. The first water pump 45 is connected to the first solenoid valve 11 through a second heat-insulating pipe 14. The heating element 412 is arranged in the lower box body 410. A third temperature sensor 411 is arranged in the lower box body 410. The upper box body 44 is connected to the second solenoid valve 12 through a second heat-insulating pipe 14. The operation panel 43 is arranged on the upper box body 44. The first water pump 45, the chiller 46, the third solenoid valve 48, the fourth solenoid valve 49, the third temperature sensor 411 and the heating element 412 are all electrically connected to the operation panel 43. The operation panel 43 can control the coordinated operation of each electronic component on the temperature-controlled water storage tank 4. Of course, the control panel 5 on each box body 1 can also be controlled through the operation panel 43. The temperature-controlled water storage tank 4 mainly cools the water recycled in the upper box body 44 through the chiller 46, then flows into the lower box body 410 for heat preservation, and is sent to each box body 1 by the first water pump 45. Of course, in the case of needing to raise the temperature, the water in the upper box body 44 does not pass through the chiller 46, but directly passes through the water outlet pipe 47 into the lower box body 410, and then is heated in the lower box body 410, and is sent to each box body 1 by the first water pump 45.

[0041] To ensure the water circulation, a second water pump 413 is arranged in the upper box body 44. The second water pump 413 is connected to the second heat-insulating pipe 14. Of course, the second water pump 413 can also pump out the water in the water cooling component 3, which is convenient for later transportation, especially suitable for beekeepers who migrate with the flowering period.

[0042] An installation groove 16 is opened at the bottom of the front side of the box body 1. A water feeding component 6 is arranged in the installation groove 16. The water feeding component 6 includes an installation plate 61, a handle 62 and a sponge 63. The installation plate 61 is inserted into the installation groove 16. The handle 62 is installed on the outside of the installation plate. A water storage groove 64 and a measuring groove 65 are opened at the upper end of the installation plate 61. The lower ends of the water storage groove 64 and the measuring groove 65 are communicated with each other. A notch 66 is opened on the outside of the measuring groove 65, and excess water will be discharged when the water level is too high. The water storage groove 64 is opened in the box body 1. The sponge 63 is placed in the water storage groove 64. The measuring groove 65 is opened below the control panel 5. The water feeding component 6 mainly allows bees to suck the water on the sponge 63 by placing the sponge 63 in the water storage groove 64, avoiding bees from drowning. The measuring groove 65 can observe the water level from the outside, which is convenient for adding water.

[0043] A water storage cavity 414 is provided in the temperature-controlled water storage tank 4. The height of the water storage cavity 414 is higher than that of the installation groove 16. A water level sensor 415 is provided in the water storage cavity 414. The water level sensor 415 is electrically connected to the operation panel 43. The lower end of the water storage cavity 414 is connected to a communicating pipe 7. One end of the communicating pipe 7 away from the water storage cavity 414 passes through each box body 1 in sequence. The communicating pipe 7 is clamped at the lower end of the box body 1. A thin pipe 71 is communicated with the communicating pipe 7. A sliding pipe 17 is provided above the metering groove 65 in the box body 1. The sliding pipe 17 is vertically installed in the box body 1. The sliding pipe 17 is slidably connected to the box body 1. A handle 18 connected to the sliding pipe 17 is provided outside the box body 1. The handle 18 facilitates the up and down sliding of the sliding pipe 17. Especially when the mounting plate 61 is pulled out, the sliding pipe 17 needs to be lifted. The upper end of the sliding pipe 17 is connected to the thin pipe 71. The lower end of the sliding pipe 17 can be inserted into the metering groove 65. The lower end of the sliding pipe 17 is detachably connected to a water outlet cover 8. A plastic film 81 is provided on the water outlet cover 8. A cross cut 82 is provided in the middle of the plastic film 81. When in use, when the water level in the metering groove 65 is too low, the water outlet cover 8 leaks out of the water surface, and the cross cut 82 on the plastic film 81 is opened under the water pressure of the water storage cavity 414 to add water to the metering groove 65 until the water surface covers the water outlet cover 8, realizing automatic water addition. The notch 66 can drain the excess water when the cross cut 82 fails.

[0044] A base 9 is provided at the lower end of the box body 1. The base 9 includes a support seat 91, a support block 92 and a weighing sensor 93. The support seat 91 is provided below the box body 1. Liquid storage grooves 94 are respectively provided at the four corners of the upper end of the support seat 91. The support block 92 is provided at the center of the bottom of the liquid storage groove 94. The weighing sensor 93 is provided at the upper end of the support block 92. The upper end of the weighing sensor 93 is connected to the bottom of the box body 1. The weighing sensor 93 is electrically connected to the control panel 5. Placing liquids such as water or engine oil in the liquid storage grooves 94 can prevent other pests such as ants from harming the bees. The weighing sensor 93 can also detect the weight of the box body 1. One is to detect the change in the mass inside the box body 1 to be used as a basis for judging the honey production of the bees. The other is to detect the change of the box body 1 in a short time to detect whether the water cooling component 3 is working properly.

[0045] This specific embodiment is only an explanation of the present invention, and it is not a limitation of the present invention. After reading this specification, those skilled in the art can make modifications to this embodiment without creative contributions as needed, but as long as it is within the scope of the claims of the present invention, it is protected by the patent law.

Claims

1. A bee breeding box with intelligent environmental control function, comprising a box body (1) and a cover body (2), wherein the cover body (2) is openably arranged at the upper end of the box body (1), characterized in that: A water cooling assembly (3) is provided on the side wall of the box body (1), and the water cooling assembly (3) comprises a bottom ring (31), a connecting pipe (32) and a top ring (33). The bottom ring (31) is provided at the bottom of the box body (1), a plurality of connecting pipes (32) are provided and are evenly connected to the upper end of the bottom ring (31), and the top ring (33) is connected to the upper end of the connecting pipe (32). A first solenoid valve (11) is provided on one side outside the box body (1), and the first solenoid valve (11) is connected to the The bottom ring (31) is provided with a second electromagnetic valve on the other side outside the box body (1), and the second electromagnetic valve (12) is connected to the top ring (33). The box body (1) is provided with a plurality of electromagnetic valves that are evenly arranged. The first electromagnetic valve (11) and the second electromagnetic valve (12) between two adjacent boxes (1) are connected through a first insulation pipe (13). The first electromagnetic valve (11) at the head and the second electromagnetic valve (12) at the tail are both connected to a temperature-controlled water storage tank (4) through a second insulation pipe (14); The box body (1) is provided with a control panel (5), and the control panel (5) is provided with a first temperature sensor (51) and a first humidity sensor (52) located inside the box body (1); the first temperature sensor (51), the first humidity sensor (52), the first solenoid valve (11), and the second solenoid valve (12) are all electrically connected to the control panel (5); The temperature-controlled water storage tank (4) is externally provided with a second temperature sensor (41) and a second humidity sensor (42); the second temperature sensor (41) and the second humidity sensor (42) are both electrically connected to the temperature-controlled water storage tank (4); and the control panel (5) is electrically connected to the temperature-controlled water storage tank (4).

2. The bee breeding box with intelligent environmental control function according to claim 1, characterized in that: The first solenoid valve (11) and the second solenoid valve (12) are both two-position three-way valves. A water pipe (15) is connected between the first solenoid valve (11) and the second solenoid valve (12). The water pipe (15) is embedded in the lower end of the box body (1).

3. The bee breeding box with intelligent environmental control function according to claim 2, characterized in that: The temperature-controlled water storage tank (4) comprises an operation panel (43), an upper box (44), a first water pump (45), a water chiller (46), a water outlet pipe (47), a third solenoid valve (48), a fourth solenoid valve (49), a lower box (410), a third temperature sensor (411) and a heating element (412). The water chiller (46) and the water outlet pipe (47) are both arranged between the upper box (44) and the lower box (410). The upper ends of the water chiller (46) and the water outlet pipe (47) are connected to the upper box (44) through the third solenoid valve (48). The lower ends of the water chiller (46) and the water outlet pipe (47) are connected to the lower box (410) through the fourth solenoid valve (49). The third solenoid valve (48) and the fourth solenoid valve (410) are connected to the lower box (410). 9) are two-position three-way valves, the first water pump (45) is arranged in the lower box (410), the first water pump (45) is connected to the first solenoid valve (11) through the second insulation pipe (14), the heating element (412) is arranged in the lower box (410), the lower box (410) is provided with a third temperature sensor (411), the upper box (44) is connected to the second solenoid valve (12) through the second insulation pipe (14), the operation panel (43) is arranged on the upper box (44), the first water pump (45), the chiller (46), the third solenoid valve (48), the fourth solenoid valve (49), the third temperature sensor (411) and the heating element (412) are all electrically connected to the operation panel (43).

4. The bee breeding box with intelligent environmental control function according to claim 3, characterized in that: A second water pump (413) is provided in the upper box body (44), and the second water pump (413) is connected to the second heat preservation pipe (14).

5. The bee breeding box with intelligent environmental control function according to claim 4, characterized in that: The front bottom of the box body (1) is provided with a mounting groove (16), and a water supply assembly (6) is arranged in the mounting groove (16). The water supply assembly (6) comprises a mounting plate (61), a handle (62) and a sponge (63). The mounting plate (61) is inserted into the mounting groove (16), and the handle (62) is installed on the outer side of the mounting plate. A water storage groove (64) and a metering groove (65) are arranged at the upper end of the mounting plate (61), and the lower end of the water storage groove (64) and the lower end of the metering groove (65) are connected to each other. A notch (66) is arranged on the outer side of the metering groove (65). The water storage groove (64) is arranged in the box body (1), and the sponge (63) is placed in the water storage groove (64). The metering groove (65) is arranged below the control panel (5).

6. The bee breeding box with intelligent environmental control function according to claim 5, characterized in that: The temperature-controlled water storage tank (4) is provided with a water storage chamber (414), the height of the water storage chamber (414) is higher than the height of the mounting groove (16), the water storage chamber (414) is provided with a water level sensor (415), the water level sensor (415) is electrically connected to the operation panel (43), the lower end of the water storage chamber (414) is connected with a connecting pipe (7), the end of the connecting pipe (7) away from the water storage chamber (414) passes through each box body (1) in turn, the connecting pipe (7) is clamped at the lower end of the box body (1), the connecting pipe (7) is connected with a thin tube (71), and the box body (1) is connected to the connecting pipe (7) at the bottom of the box body (1). A slide tube (17) is provided above the metering trough (65). The slide tube (17) is vertically installed in the box body (1). The slide tube (17) is slidably connected to the box body (1). A handle (18) connected to the slide tube (17) is provided outside the box body (1). The upper end of the slide tube (17) is connected to the capillary (71). The lower end of the slide tube (17) can be inserted into the metering trough (65). The lower end of the slide tube (17) is detachably connected to a water outlet cover (8). A plastic film (81) is provided on the water outlet cover (8). A cross cut (82) is provided in the middle of the plastic film (81).

7. The bee breeding box with intelligent environmental control function according to claim 6, characterized in that: A base (9) is provided at the lower end of the box body (1), and the base (9) comprises a support seat (91), a support block (92) and a weighing sensor (93). The support seat (91) is provided below the box body (1), and liquid storage tanks (94) are provided at four corners of the upper end of the support seat (91). The support block (92) is provided at the bottom center of the liquid storage tank (94). The weighing sensor (93) is provided at the upper end of the support block (92), and the upper end of the weighing sensor (93) is connected to the bottom of the box body (1). The weighing sensor (93) is electrically connected to the control panel (5).