Gardening cultivation device formed by intelligently transforming waste oak barrels

By transforming intelligent horticultural cultivation devices on abandoned oak barrels, the problems of mobile adjustment difficulties, water decay and high cost management have been solved, and the efficient reuse of oak barrels and the improvement of plant growth quality have been achieved.

CN223231674UActive Publication Date: 2025-08-19NINGXIA TURANDOT WINE CO LTD
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Patent Information

Application Number
CN202422494958.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-16
Publication Date
2025-08-19
Estimated Expiration
2034-10-16

AI Technical Summary

Technical Problem

In the prior art, the recycling rate of waste oak barrels is low. Traditional transformations have problems such as difficulty in mobile adjustment, risk of water accumulation, high cost of intelligent cultivation devices, and high management difficulty, which affect the quality and efficiency of plant growth.

Method used

By transforming the intelligent horticultural cultivation device on the abandoned oak barrels, setting up LED growth light strip plates, environmental monitoring modules, intelligent control modules and watering system, combining anti-corrosion layers and hydrophobic holes, intelligent control and mobility are achieved, and the adaptability and life of the device are improved.

Benefits of technology

It extends the service life of oak barrels, improves reuse rate, reduces production costs, simplifies management processes, and improves the automation level and growth quality of plant cultivation.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model provides a waste oak barrel intellectualized transformation gardening cultivation device which is mainly formed by intellectualized transformation of a waste oak barrel, intellectualized irrigation and intellectualized illumination of plants are achieved, an open groove is formed in a barrel body, and a drain hole and a supporting seat are additionally arranged at the bottom of the barrel body and used for adjusting the height and movement of the oak barrel, so that the height of the oak barrel can be adjusted, and the height of the oak barrel can be adjusted. An illumination supporting rod and an LED growth lamp strip plate are arranged at the top of the barrel body and used for simulating natural illumination and promoting plant growth, an intelligent control module is arranged on the side face of a barrel side support, an irrigation system, an environment monitoring module and the like are arranged in the barrel, and the irrigation system is composed of a water pump and an irrigation pipeline assembly and achieves accurate water conveying; the environment monitoring module is used for monitoring cultivation environment parameters; the intelligent control module is electrically connected with the irrigation system and the environment monitoring module, the irrigation amount and environment conditions are automatically adjusted according to monitored soil humidity, temperature, illumination intensity and other environment parameters, and efficient and intelligent horticultural cultivation of the waste oak barrels is achieved.
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Description

Technical Field

[0001] The utility model relates to the technical field of waste oak barrel resource utilization, in particular to a gardening cultivation device for intelligently transforming waste oak barrels. Background Art

[0002] Oak barrels are widely used in the winemaking industry, but their optimal lifespan is typically limited to three to five years. Beyond this age, the barrel's impact on the wine's flavor gradually diminishes, ultimately leading to its disposal. While the barrel's lifespan can be extended through maintenance and refurbishment, these measures are only temporary, and the large number of discarded barrels remains a pressing long-term issue.

[0003] Reusing discarded oak barrels has significant environmental value. Oak wood's inherent air permeability and thermal insulation properties give it considerable potential for horticultural applications. However, traditional oak barrels have several drawbacks in their use in gardens. First, they lack adjustability. Due to the inherent weight of the wood, they are difficult to move or reposition, making them difficult to adapt in gardens where plant layouts require frequent changes. Second, traditional oak barrels, when used directly in gardens, may lack dedicated drainage holes, which can lead to moisture accumulation and affect plant health. Finally, long-term contact with moisture and soil makes traditional oak barrels prone to rot and have a short service life.

[0004] Traditional horticultural cultivation systems often face challenges with inefficient resource utilization and poor plant growth quality. However, transforming discarded oak barrels into intelligent cultivation devices can provide better conditions for plant growth, helping to improve production efficiency and quality. However, common intelligent cultivation devices currently on the market suffer from the following drawbacks: 1. High cost: Traditional intelligent cultivation devices often use expensive materials and complex mechanical components, increasing production costs; 2. Difficulty in management: Traditional devices require frequent operation and parameter adjustments, which creates management inconvenience and affects the effectiveness of cultivation.

[0005] To sum up, the main technical problems are as follows: 1. The current existing technology has a low reuse rate for discarded oak barrels, and discarded oak barrels often cannot bring economic benefits, so discarded oak barrels are often abandoned by people; 2. At present, people use discarded oak barrels in the cultivation process through simple modifications, which has many limitations, such as difficulty in movement and adjustment, risk of water accumulation and rot, and low survival rate of cultivated plants; 3. Existing intelligent cultivation devices have problems such as high cost and difficulty in management. Plant cultivation often does not have an automated control system and does not have intelligent control. Utility Model Content

[0006] The technical problem addressed by this utility model is to provide a device for intelligently transforming discarded oak barrels into horticultural cultivation. This device addresses the issues of perishability and poor drainage associated with traditional oak barrels in horticultural cultivation, while also improving the quality and efficiency of plant growth. Through intelligent transformation, the device provides a suitable cultivation environment, extends the barrel's service life, and increases the reuse rate of discarded oak barrels, achieving resource recycling.

[0007] In order to solve the above technical problems, the utility model provides a gardening cultivation device for intelligent transformation of discarded oak barrels, which is made by transforming discarded oak barrels, including: a barrel body, a barrel side support, and a light support rod, the upper part of the barrel body is provided with an open groove for planting plants, the light support rod is provided above the open groove, and the two ends are fixedly connected to the barrel side support; the bottom of the light support rod is provided with an LED growth light strip plate; the side of the barrel side support is provided with an intelligent control module, and the outer side of the barrel side support is provided with a water inlet mounting hole and a circuit mounting hole; a detection support plate is provided inside the barrel body for installing an environmental monitoring module; the environmental monitoring module is connected to the intelligent control module through the circuit mounting hole; a support seat, the support seat is fixedly provided at the bottom of the barrel body, and avoids the position of the drain hole to ensure that there is no interference between the two; an irrigation system, the irrigation system includes a water pump and an irrigation pipeline assembly, the water pump is provided on the outside of the barrel side support; the irrigation pipeline assembly is fixedly connected to the inner wall of the barrel body, and the irrigation pipeline assembly is connected to the water pump through the water inlet mounting hole;

[0008] Furthermore, in order to improve the service life and anti-corrosion ability of the oak barrel, the inner and outer walls of the barrel body and the barrel side supports are coated with an anti-corrosion layer, and multiple groups of hydrophobic holes are provided at the bottom of the barrel body to discharge moisture accumulated in the barrel.

[0009] Furthermore, in order to improve the stability and mobility of the entire device, the support base includes a support frame, a lifting assembly, and rollers. The support frame is supported by two lifting assemblies, and the rollers are connected to the bottom of the lifting assembly by bolts. The lifting assembly of the support base can be freely adjusted in height, and can be adjusted in height according to the placement requirements of different plants or potted plants. At the same time, the setting of the bottom rollers makes the entire device easy to move, making it convenient for users to adjust the position according to natural light conditions.

[0010] Furthermore, in order to ensure that water can be provided to the plants evenly and effectively, the irrigation system includes a water pump and an irrigation pipe assembly, the water pump having a water inlet and a water outlet, wherein the water inlet is connected to the water outlet of the external water supply device through a water pipe, and the water outlet is connected to the water inlet pipe of the irrigation pipe assembly through a pipe; the water inlet pipe of the irrigation pipe assembly extends through the water inlet mounting hole on the outer side of the barrel side support; the water pump is electrically connected to the intelligent control module for intelligent control of the irrigation system.

[0011] Furthermore, to prevent impurities from entering the pipeline and affecting the stability of the irrigation pipeline assembly, the irrigation pipeline assembly includes a filter, a main pipeline, a branch pipeline, a regulating valve, a watering head, and a clamp. The filter is connected to the starting end of the main pipeline and can effectively filter the water quality to prevent impurities from adversely affecting plant growth. The main pipeline is a closed-loop pipeline structure and is fixed to the inner wall of the barrel by a clamp. The multiple branch pipelines are connected from the main pipeline and are used to distribute water to each watering head. The regulating valve is set on the branch pipeline and is used to adjust the water flow according to the growth needs of the plants to ensure that the plants receive an appropriate amount of water. The watering head is located at the end of the branch pipeline and is used to water the plants.

[0012] Furthermore, in order to achieve comprehensive real-time monitoring of the plant growth environment, the environmental monitoring module includes a soil moisture sensor, a temperature sensor, and a light sensor. The soil moisture sensor is arranged on the soil layer inside the oak barrel to monitor the moisture level of the cultivation soil; the temperature sensor and the light sensor are arranged on the inner wall of the barrel body to detect the ambient temperature and light intensity inside the oak barrel; the soil moisture sensor, temperature sensor, and light sensor are all electrically connected to the intelligent control module for intelligent control of the LED growth light strip board.

[0013] Furthermore, in order to realize an intelligent lighting control system for plants, the LED growth light strip board is electrically connected to the intelligent control module to form a lighting control system. The intelligent control module can automatically control the brightness, spectrum and irradiation time of the LED growth light strip board according to the environmental monitoring module to simulate the light intensity and spectrum required by plants in different growth stages, provide the most optimized growth environment, and promote plant photosynthesis and healthy growth.

[0014] Furthermore, in order to realize intelligent watering control of plants, the intelligent control module can control the water pump speed according to the actual water demand of the plants sensed by the environmental monitoring module, and automatically adjust the watering frequency and amount to avoid the adverse effects of too much or too little water on plant growth.

[0015] The technical effects of this application are:

[0016] 1. By applying an anti-corrosion coating to the inner and outer walls of the barrel and side supports of discarded oak barrels, and installing multiple sets of drainage holes at the bottom of the barrel, the problems of rotting and poor drainage in traditional oak barrels are effectively solved. This improvement extends the service life of the oak barrels and makes them better suited to the environmental requirements of horticultural cultivation.

[0017] 2. By providing a support base, including a support frame, lifting components, and rollers, the device can be adjusted in height according to the size of different plants or pots, making it easier to move and operate. This improvement increases the device's adjustability, allowing it to adapt to the needs of plant cultivation in different locations, thereby increasing the reuse rate of discarded oak barrels, transforming them into cost-effective intelligent horticultural cultivation devices and achieving resource recycling.

[0018] 3. An irrigation system, consisting of a water pump and irrigation piping components, is installed within the barrel. Connected to an intelligent control module, this system achieves intelligent control. Based on data sensed by the environmental monitoring module, the intelligent control module automatically adjusts the pump speed, enabling automated irrigation. This improvement enhances the automation level of plant cultivation and reduces the complexity of manual operations.

[0019] 4. The environmental monitoring module includes soil moisture sensors, temperature sensors, and light sensors, and is electrically connected to the intelligent control module. These sensors monitor the ambient temperature and light intensity within the barrel and transmit this data to the intelligent control module. Based on this data, the intelligent control module controls the LED grow light strips, simulating natural light rhythms to promote plant photosynthesis and healthy growth. This reduces the production cost of the intelligent cultivation device, simplifies management and operation processes, enables automated control, and improves plant cultivation efficiency and quality. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] Figure 1 This is a schematic diagram of a horticultural cultivation device for intelligently transforming discarded oak barrels provided in an embodiment of the present application;

[0021] Figure 2 This is an axonometric view of a horticultural cultivation device for intelligently transforming discarded oak barrels provided in an embodiment of the present application;

[0022] Figure 3 This is a front view of a horticultural cultivation device for intelligently transforming discarded oak barrels provided in an embodiment of the present application;

[0023] Figure 4 This is a top view of a horticultural cultivation device for intelligently transforming discarded oak barrels provided in an embodiment of the present application;

[0024] Description of reference numerals:

[0025] 1. Oak barrel; 11. Barrel body; 111. Opening slot; 112. Drain hole; 12. Barrel side support; 121. Water inlet mounting hole; 122. Circuit mounting hole; 13. Light support rod; 14. Detection support plate;

[0026] 2. Support seat; 21. Support frame; 22. Lifting assembly; 23. Roller;

[0027] 3. Irrigation system; 31. Water pump; 32. Irrigation pipeline assembly; 321. Filter; 322. Main pipeline; 323. Branch pipeline; 324. Regulating valve; 325. Irrigation head; 326. Clamp;

[0028] 4. LED grow light with board;

[0029] 5. Intelligent control module;

[0030] 6. Environmental monitoring module; 61. Soil moisture sensor; 62. Temperature sensor; 63. Light sensor; DETAILED DESCRIPTION

[0031] The following will be combined with the Figures 1 to 4 The following embodiments of the technical solution of the present application are described in detail. The following embodiments are only used to more clearly illustrate the technical solution of the present application and are therefore only used as examples and are not intended to limit the scope of protection of the present application.

[0032] Example 1

[0033] like Figures 1 to 4 The figure shows the overall structure of a horticultural cultivation device for intelligently transforming an abandoned oak barrel. The oak barrel 1 of the device is made by transforming an abandoned oak barrel, and includes a barrel body 11, a barrel side support 12, and a light support rod 13. The upper part of the barrel body 11 is provided with an open groove 111 for planting plants. The light support rod 13 is provided above the open groove 111, and the two ends are fixedly connected to the barrel side support 12; the bottom of the light support rod 13 is provided with an LED growth light strip 4; the side of the barrel side support 12 is provided with an intelligent control module 5, and the outer side of the barrel side support 12 is provided with a water inlet installation hole 121 and a circuit installation hole 1 22; a detection support plate 14 is provided inside the barrel body 11 for mounting an environmental monitoring module 6; the environmental monitoring module 6 is connected to the intelligent control module 5 via the circuit mounting hole 122; a support base 2 is fixedly provided at the bottom of the barrel body 11 and avoids the position of the drain hole 112 to ensure that there is no interference between the two; an irrigation system 3, the irrigation system 3 includes a water pump 31 and an irrigation pipeline assembly 32, the water pump 31 is provided outside the barrel side support 12; the irrigation pipeline assembly 32 is fixedly connected to the inner wall of the barrel body 11, and the irrigation pipeline assembly 32 is connected to the water pump 31 via the water inlet mounting hole 121;

[0034] In order to improve the service life and anti-corrosion ability of the oak barrel 1, the inner and outer walls of the barrel body 11 and the barrel side support 12 are coated with an anti-corrosion layer, and multiple groups of hydrophobic holes 112 are provided at the bottom of the barrel body 11 to discharge moisture accumulated in the barrel.

[0035] Abandoned oak barrels undergo special treatment and a spray-coated anti-corrosion coating. Before renovation, the barrels are disinfected and cleaned to remove any residue that could harm plant health. A multi-layer spray-coated, environmentally friendly anti-corrosion coating, applied through a specialized process, enhances the barrels' corrosion resistance while maintaining the material's environmentally friendly properties and minimizing their environmental impact. The thickness and drying time of each layer are precisely calculated to ensure the effectiveness and durability of the anti-corrosion coating. This series of specialized treatments not only extends the barrels' lifespan but also makes them a sustainable horticultural resource.

[0036] In order to improve the stability and mobility of the entire device, the support base 2 includes a support frame 21, a lifting component 22, and a roller 23. The support frame 21 is supported by two lifting components 22. The roller 23 is connected to the bottom of the support base 2 by bolts. The lifting component 22 can be freely adjusted in height, and can be adjusted in height according to the placement requirements of different plants or potted plants. At the same time, the arrangement of the bottom roller 23 makes the entire device easy to move, which is convenient for users to adjust the position according to natural light conditions.

[0037] In order to ensure that water can be provided to the plants evenly and effectively, the irrigation system 3 includes a water pump 31 and an irrigation pipe assembly 32. The water pump 31 has a water inlet and a water outlet, wherein the water inlet is connected to the water outlet of the external water supply device through a water pipe, and the water outlet is connected to the water inlet pipe of the irrigation pipe assembly 32 through a pipe; the water inlet pipe of the irrigation pipe assembly 32 extends through the water inlet mounting hole 121 on the outer side of the barrel side support 12; the water pump 31 is electrically connected to the intelligent control module 5 for intelligent control of the irrigation system 3.

[0038] Example 2

[0039] like Figures 1 to 4 The figure illustrates the overall structure of a gardening cultivation device for intelligently transforming discarded oak barrels. The irrigation pipe assembly 32 of the device includes a filter, a main pipe 322, a branch pipe 323, a regulating valve 324, a watering head 325, and a clamp 326. The filter is connected to the starting end of the main pipe 322. The filter can effectively filter the water quality to prevent impurities from adversely affecting plant growth. The main pipe 322 is a closed-loop pipe structure and is fixed to the inner wall of the barrel body 11 by a clamp 326. Multiple branch pipes 323 are connected from the main pipe 322 to distribute water to each watering head 325. The regulating valve 324 is set on the branch pipe 323 to adjust the water flow according to the growth needs of the plants to ensure that the plants get an appropriate amount of water. The watering head 325 is located at the end of the branch pipe 323 to irrigate the plants. The irrigation pipe assembly 32 is a detachable structure for easy maintenance and cleaning. In addition, the watering mode of the watering head 325 can be spraying or drip irrigation: the watering mode of spraying or drip irrigation can be selected according to the needs of different plants (length of root stems).

[0040] In order to achieve comprehensive real-time monitoring of the plant growth environment, the environmental monitoring module includes a soil moisture sensor 61, a temperature sensor 62, and a light sensor 63. The soil moisture sensor is set on the soil layer inside the oak barrel 1 to monitor the moisture level of the cultivation soil; the temperature sensor 62 and the light sensor 63 are set on the inner wall of the barrel body 11 to detect the ambient temperature and light intensity inside the oak barrel 1; the soil moisture sensor 61, the temperature sensor 62, and the light sensor 63 are all electrically connected to the intelligent control module 5 for intelligent control of the LED growth light strip 4;

[0041] The intelligent control module 5 is integrated with a remote user interface, and users can intuitively operate and set watering parameters, such as watering amount, frequency, etc. The module is also equipped with a data storage function to record the growth status of plants and historical watering data for scientific management. In actual application, this system can automatically adjust the watering strategy based on weather forecasts and data from soil moisture sensors, effectively avoiding excessive or insufficient watering, ensuring the water supply of plants, and saving water resources. In addition, the intelligent control module 5 is also equipped with a humidity and temperature threshold setting function. Users can customize environmental parameters according to the growth needs of different plants. The intelligent control module 5 will automatically adjust the light intensity of the LED growth light strip 4 and the watering mode of the watering system 3 according to these set values to ensure that the plants are in the most suitable growth environment.

[0042] To achieve an intelligent plant lighting control system, the LED grow light strip 4 is electrically connected to the intelligent control module 5 to form a lighting control system. The intelligent control module 5 automatically controls the brightness, spectrum, and illumination time of the LED grow light strip 4 based on the environmental monitoring module to simulate the light intensity and spectrum required by plants at different growth stages, providing an optimized growth environment and promoting plant photosynthesis and healthy growth. Furthermore, the LED grow light strip 4 can provide different colors of light to suit the photosynthesis needs of different plants.

[0043] In order to realize intelligent watering control of plants, the intelligent control module 5 can control the operating speed of the water pump 31 according to the actual water demand of the plants sensed by the environmental monitoring module, and automatically adjust the watering frequency and watering amount to avoid the adverse effects of too much or too little water on plant growth.

[0044] Working process and principle:

[0045] Step 1: When the device is in normal working condition, the intelligent control module 5 monitors the soil moisture, temperature and light intensity in real time through the environmental monitoring module. If the soil moisture is lower than the preset threshold, the intelligent control module 5 will start the water pump 31 for automatic watering. The water pump 31 draws water from the external water supply device through the water inlet and transports the water to the irrigation pipe assembly 32 through the water outlet. The filter 321 ensures that the water entering the main pipe 322 is free of impurities. The main pipe 322 distributes the water to each branch pipe 323 and adjusts the water flow of each branch pipe through the regulating valve 324. Finally, the water is evenly sprinkled to the roots of the plants through the irrigation head 325.

[0046] Step 2: When the environmental monitoring module 6 detects insufficient light intensity, the intelligent control module 5 activates the LED grow light strip 4. The LED grow light strip 4 adjusts the spectrum and brightness required by the plant's growth stage and simulates the natural light rhythm through the light control system. This helps promote plant photosynthesis and healthy growth.

[0047] Step 3: In addition, when the device needs to be moved, the user can easily move the entire device via the rollers 23 and adjust the height of the device via the lifting assembly 22 to suit the needs of different plants or pots. The drainage holes 112 ensure that the accumulated water in the barrel can be drained in time to prevent water accumulation at the roots and plant rot.

[0048] Finally, it should be noted that unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by those skilled in the art to which this application belongs; the terms used herein are only for the purpose of describing specific embodiments and are not intended to limit this application; the terms "including" and "having" in the specification and claims of this application and the above-mentioned figure descriptions and any variations thereof are intended to cover non-exclusive inclusions.

[0049] In the description of the embodiments of this application, the technical terms "first" and "second" are used only to distinguish different objects and should not be understood to indicate or imply relative importance or implicitly specify the quantity, specific order, or primary and secondary relationship of the indicated technical features. In the description of the embodiments of this application, the meaning of "plurality" is more than two, unless otherwise clearly and specifically defined.

[0050] References to "embodiments" herein mean that a particular feature, structure, or characteristic described in connection with the embodiments may be included in at least one embodiment of the present application. The appearance of the phrase in various places in the specification does not necessarily refer to the same embodiment, nor does it constitute an independent or alternative embodiment that is mutually exclusive of other embodiments. It is understood, both explicitly and implicitly, by those skilled in the art that the embodiments described herein may be combined with other embodiments.

[0051] In the description of the embodiments of the present application, the term "multiple" refers to more than two (including two). Similarly, "multiple groups" refers to more than two groups (including two groups), and "multiple pieces" refers to more than two pieces (including two pieces).

[0052] In the description of the embodiments of the present application, the technical terms "up", "down", "front", "back", "left", "right", "clockwise", "counterclockwise", "circumferential", etc. indicate directions or positional relationships based on the directions or positional relationships shown in the accompanying drawings. They are only for the convenience of describing the embodiments of the present application and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific direction, be constructed and operated in a specific direction. Therefore, they should not be understood as limitations on the embodiments of the present application.

[0053] In the description of the embodiments of the present application, unless otherwise clearly specified or limited, technical terms such as "set," "provided with," "installed," "connected," "connected," and "fixed" should be understood in a broad sense. For example, they can refer to fixed connections, detachable connections, integration, or mechanical connections; they can refer to direct connections or indirect connections through an intermediate medium; they can refer to internal connections between two elements or interactions between two elements. For those of ordinary skill in the art, the specific meanings of the above terms in the embodiments of the present application can be understood according to specific circumstances.

[0054] The above embodiments are only used to illustrate the technical solutions of the present application, rather than to limit them. Although the present application has been described in detail with reference to the aforementioned embodiments, those skilled in the art should understand that they can still modify the technical solutions described in the aforementioned embodiments, or replace some or all of the technical features therein with equivalents. However, these modifications or replacements do not cause the essence of the corresponding technical solutions to deviate from the scope of the technical solutions of the embodiments of the present application.

Claims

1. A device for intelligently transforming discarded oak barrels into gardening cultivation equipment, characterized in that: include: An oak barrel (1) is obtained by modifying a discarded oak barrel and comprises: a barrel body (11) and a barrel side support (12); an opening slot (111) is provided on the upper portion of the barrel body (11) for planting plants; a lighting support rod (13) is provided above the opening slot (111) and fixedly connected to the barrel side support (12) at both ends; an LED growth light strip (4) is provided at the bottom of the lighting support rod (13); an intelligent control module (5) is provided on the side of the barrel side support (12); a water inlet mounting hole (121) and a circuit mounting hole (122) are provided on the outer side of the barrel side support (12); a detection support plate (14) is provided inside the barrel body (11) for mounting an environmental monitoring module (6); the environmental monitoring module (6) is connected to the intelligent control module (5) through the circuit mounting hole (122); A support seat (2), wherein the support seat (2) is fixedly arranged at the bottom of the barrel body (11) and avoids the position of the hydrophobic hole (112) to ensure that there is no interference between the two; The irrigation system (3) comprises a water pump (31) and an irrigation pipeline assembly (32), wherein the water pump (31) is arranged outside the barrel side support (12); the irrigation pipeline assembly (32) is fixedly connected to the inner wall of the barrel body (11), and the irrigation pipeline assembly (32) is connected to the water pump (31) through the water inlet installation hole (121).

2. The device for intelligently transforming discarded oak barrels into gardening cultivation equipment according to claim 1, characterized in that: The inner and outer walls of the barrel body (11) and the barrel side support (12) are coated with an anti-corrosion layer, and a plurality of groups of hydrophobic holes (112) are provided at the bottom of the barrel body (11).

3. The device for intelligently transforming discarded oak barrels into gardening cultivation equipment according to claim 1, characterized in that: The support seat (2) comprises a support frame (21), a lifting assembly (22), and a roller (23); the support frame (21) is supported by two lifting assemblies (22); and the roller (23) is connected to the bottom support seat of the lifting assembly (22) by bolts.

4. The device for intelligently transforming discarded oak barrels into gardening cultivation equipment according to claim 1, characterized in that: The irrigation system (3) comprises a water pump (31) and an irrigation pipeline assembly (32), wherein the water pump (31) has a water inlet and a water outlet, wherein the water inlet is connected to an external water supply device through a water pipe, and the water outlet is connected to a water inlet pipe of the irrigation pipeline assembly (32) through a pipeline; the water inlet pipe of the irrigation pipeline assembly (32) extends through a water inlet mounting hole (121) on the outer side of the barrel side support (12); and the water pump (31) is electrically connected to the intelligent control module (5).

5. The device for intelligently transforming discarded oak barrels into gardening cultivation equipment according to claim 1, characterized in that: The irrigation pipeline assembly (32) comprises a filter (321), a main pipeline (322), a branch pipeline (323), a regulating valve (324), an irrigation head (325), and a clamp (326); the filter (321) is connected to the starting end of the main pipeline (322); the main pipeline (322) is a closed-loop pipeline structure and is fixed to the inner wall of the barrel body (11) through a clamp (326); a plurality of branch pipelines (323) are connected from the main pipeline (322) and are used to distribute water to each irrigation head (325); the regulating valve (324) is provided on the branch pipeline (323) and is used to regulate the water flow; the irrigation head (325) is located at the end of the branch pipeline (323).

6. The device for intelligently transforming discarded oak barrels into gardening cultivation equipment according to claim 1, characterized in that: The environmental monitoring module (6) comprises a soil moisture sensor (61), a temperature sensor (62), and a light sensor (63); the soil moisture sensor (61) is arranged on a detection support plate (14), and a bottom probe thereof is inserted into a soil layer; the temperature sensor (62) and the light sensor (63) are arranged on the detection support plate (14) and are used to detect the ambient temperature and light intensity in the oak barrel (1); the soil moisture sensor (61), the temperature sensor (62), and the light sensor (63) are all electrically connected to the intelligent control module (5) and are used for intelligent control of the LED growth light strip (4).

7. The device for intelligently transforming discarded oak barrels into gardening cultivation equipment according to claim 1, characterized in that: The LED growth light strip (4) is electrically connected to the intelligent control module (5) to form a lighting control system. The intelligent control module (5) can automatically control the working state of the LED growth light strip (4) according to the environmental monitoring module (6).

8. The device for intelligently transforming discarded oak barrels into gardening cultivation equipment according to claim 1, characterized in that: The intelligent control module (5) can automatically control the operating speed of the water pump (31) based on the data sensed by the environment monitoring module (6).