Polygonatum cyrtonema planting environment monitoring and protecting device
By designing a movable Polygonatum cyrtonema planting environment monitoring device, the high cost and stability problems of Polygonatum cyrtonema planting monitoring in mountain forest environments were solved, and real-time, stable monitoring and energy-saving effects of Polygonatum cyrtonema planting environments were achieved.
Patent Information
- Application Number
- CN202422864383.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-22
- Publication Date
- 2025-09-16
- Estimated Expiration
- 2034-11-22
AI Technical Summary
When monitoring the planting environment of Polygonatum cyrtonema in mountain forests, the existing technology uses fixed-position monitoring equipment that cannot meet the needs of Polygonatum cyrtonema, and the high cost of installing multiple devices is difficult to be accepted by growers.
A multi-flowered Polygonatum planting environment monitoring and protection device was designed, which includes components such as a support rod, a plug, a positioning pin, a positioning rope, and a temperature and humidity monitor. The support rod can be inserted into the soil and fixed by the positioning pin and the positioning rope to achieve mobile monitoring. Combined with solar panels for power supply, it has temperature, humidity, light and wind speed detection functions.
It realizes the mobile monitoring of the planting environment of Polygonatum sibiricum, ensuring that growers can respond to environmental changes in different locations in a timely manner, saving energy, reducing installation costs, and improving the stability and real-time performance of monitoring.
Smart Images

Figure CN223346208U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of Polygonatum cyrtonema, in particular to a Polygonatum cyrtonema planting environment monitoring and protection device. Background Art
[0002] Polygonatum sibiricum is a perennial herb of the genus Polygonatum in the Asparagaceae family. It tastes sweet and is neutral in nature. It enters the lung, spleen, and kidney meridians. It is beneficial for nourishing yin and moistening the lungs, relieving fullness and replenishing qi, nourishing the kidneys and replenishing essence. It has a sweet nature and is refreshing to eat. It has both medicinal and edible value.
[0003] At present, in order to make the artificially cultivated Polygonatum sibiricum closer to the nutritional level of wild Polygonatum sibiricum, the planting environment of Polygonatum sibiricum is transferred to the mountains and forests, so that it can be closer to the nutritional level of wild Polygonatum sibiricum. However, the climate in the mountains and forests changes unpredictably, so it is necessary to regularly monitor the planting environment of Polygonatum sibiricum and take corresponding measures. The current planting environment monitoring is usually carried out by installing monitoring equipment in a fixed position. The defect of this method is that the mountain environment is different from the plain, and the altitude of each position in the mountain environment is different. The light, temperature, humidity, wind speed, etc. are all different. Different countermeasures are required for the planting of Polygonatum sibiricum. Therefore, in the mountain and forest planting environment, only monitoring the environment at a fixed position cannot meet the planting environment monitoring needs of Polygonatum sibiricum. If monitoring equipment is fixed at multiple locations, the cost will be very high, and it is difficult for growers to accept high-cost planting. Therefore, a movable monitoring equipment is needed to meet the monitoring needs of the planting environment of Polygonatum sibiricum. Utility Model Content
[0004] The present invention aims to solve the problems existing in the above-mentioned prior art and provides a monitoring and protection device for the planting environment of Polygonatum sibiricum, which can realize a movable monitoring effect in the planting environment of Polygonatum sibiricum in the mountains and forests, and can monitor the planting environment of Polygonatum sibiricum at multiple locations, ensuring that the planters can make different response measures to the environments at different locations in a timely manner, thereby realizing the effect of movable monitoring.
[0005] The utility model adopts a technical solution to solve its technical problems: this multi-flowered Polygonatum planting environment monitoring and protection device includes a support rod, a plug for inserting into the soil is provided at the bottom of the support rod, the cross-section of the plug is set in a conical state, a group of positioning pins are provided on the outer side of the support rod, a positioning rope is connected to the positioning pin, a spring is provided in the support rod, one end of the positioning rope is connected to the positioning pin, and the other end of the positioning rope passes through the support rod and is connected to the spring, a positioning plate is provided on the outer side of the support rod, a through hole is opened on the positioning plate, the positioning pin is located below the positioning plate, the width of the head of the positioning pin is larger than the aperture of the through hole, the positioning rope passes through the through hole and is connected to the head of the positioning pin, a temperature and humidity monitor is provided above the positioning plate, the temperature and humidity monitor is installed on the support rod, a light detector is provided above the temperature and humidity monitor, the light detector is installed on the support rod, a solar panel is provided above the light detector, the solar panel is provided on the support rod, and an anemometer is provided on the top of the support rod.
[0006] Furthermore, the support rod is provided with a groove surrounding the outer surface of the support rod, an annular sleeve rotatable in the groove is provided in the groove, the annular sleeve is limited in the groove, and the light detector is installed on the annular sleeve.
[0007] Furthermore, an outer cover is provided outside the plug, and the outer cover is installed on the support rod.
[0008] Furthermore, a bracket one is provided on the support rod, and the temperature and humidity monitor is installed on the bracket one.
[0009] Furthermore, a second bracket is provided on the support rod, and the solar panel is provided on the second bracket.
[0010] The beneficial effects of the present invention are as follows: the polygonatum sibiricum planting environment monitoring and protection device of the present invention can realize a movable monitoring effect in the polygonatum sibiricum forest planting environment, can monitor the polygonatum sibiricum planting environment at multiple locations, ensure that the planters can make different response measures to the environments at different locations in a timely manner, and can maintain stability during monitoring to ensure the normal progress of the monitoring work, and does not require electric energy for installation when positioning and installing after moving the position, thus saving energy and achieving energy-saving and environmental protection effects, having good use effects, and being conducive to promotion. BRIEF DESCRIPTION OF THE DRAWINGS
[0011] Figure 1 It is a structural schematic diagram of an embodiment of the present utility model.
[0012] Explanation of the reference numerals: support rod 1, plug 2, positioning pin 3, positioning rope 4, spring 5, positioning plate 6, through hole 7, temperature and humidity monitor 8, light detector 9, solar panel 10, anemometer 11, groove 12, annular sleeve 13, outer cover 14, bracket one 15, bracket two 16. DETAILED DESCRIPTION
[0013] The present invention will be further described below with reference to the accompanying drawings:
[0014] Referring to the accompanying drawings: the multi-flowered polygonatum planting environment monitoring and protection device in this embodiment includes a support rod 1, which is used to be positioned in the mountain forest environment where the multi-flowered polygonatum is planted to perform environmental monitoring. A plug 2 for inserting into the soil is provided at the bottom of the support rod 1, and the plug 2 is used to insert into the mountain soil so that the support rod 1 can be positioned. The support rod 1 can also be conveniently pulled out of the soil through the plug 2 and moved to a desired position for monitoring, thereby achieving a movable monitoring effect. The support rod 1 can be conveniently moved to a desired position for monitoring the multi-flowered polygonatum planting environment, and a movable monitoring effect is achieved in the multi-flowered polygonatum forest planting environment. The multi-flowered polygonatum planting environment can be monitored at multiple locations, ensuring that the planters can timely target different locations. The cross section of the plug 2 is set in a conical state, which can facilitate the plug 2 to be inserted into the soil or pulled out of the soil. A group of positioning nails 3 are set on the outside of the support rod 1. The positioning nails 3 are used to further fix the support rod 1 in different directions. In the mountain environment, you can take stones to nail the positioning ingots 3 into the soil. The operation is very convenient. The positioning nails 3 can further fix the support rod 1 in different directions, ensuring the stable monitoring effect of the support rod 1 and preventing the support rod 1 from being blown by the wind. The support rod 1 can maintain stable operation during mobile positioning monitoring, ensuring the normal progress of the monitoring work, with good stability. The number of positioning nails 3 can be three or four, which can be positioned in the triangular direction or in the four-corner direction. In this embodiment The embodiment adopts four positioning nails 3. The positioning nails 3 on both sides are shown for explanation in the attached figure, and the front and rear positioning nails 3 are not shown. A positioning rope 4 is connected to the positioning nail 3. A spring 5 is set in the support rod 1. One end of the positioning rope 4 is connected to the positioning nail 3, and the other end of the positioning rope 4 passes through the support rod 1 and is connected to the spring 5. The positioning rope 4 can be a steel wire rope. After the positioning nail 3 is pulled out for positioning, the positioning rope 4 moves accordingly, and the spring 5 is pulled up. When it is necessary to move the position, the positioning nail 3 is taken out from the soil, the spring 5 contracts, and the positioning rope 4 is pulled back, and the positioning nail 3 is automatically retracted. The support rod 1 can be further fixed in different directions through the positioning nail 3 and the positioning rope 4, ensuring the stable monitoring effect of the support rod 1 and preventing the support rod 1 from being blown by the wind. 1 During mobile positioning monitoring, it can maintain stable operation and ensure the normal progress of monitoring work with good stability. A positioning plate 6 is provided on the outside of the support rod 1. A through hole 7 is provided on the positioning plate 6 to pass through the positioning plate 6. The positioning pin 3 is located below the positioning plate 6. The width of the head of the positioning pin 3 is greater than the aperture of the through hole 7. In this way, when the positioning pin 3 is retracted or not working, the tension of the spring 5 stabilizes it below the positioning plate 6. Since the width of the head of the positioning pin 3 is greater than the aperture of the through hole 7, the positioning pin 3 is stable below the positioning plate 6. The positioning rope 4 passes through the through hole 7 and is connected to the head of the positioning pin 3. A temperature and humidity monitor 8 is provided above the positioning plate 6. The temperature and humidity monitor 8 is used to monitor the temperature and humidity of the planting environment of Polygonatum multiflorum. The temperature and humidity monitor 8 is installed on the support rod 1.A light detector 9 is provided above the temperature and humidity monitor 8. The light detector 9 is used to monitor the light intensity of the polygonatum sibiricum planting environment. The light detector 9 is mounted on the support rod 1. A solar panel 10 is provided above the light detector 9. The solar panel 10 is used to supply energy to the monitoring components. The connection with each component is a conventional connection method, which will not be described in detail. The solar panel 10 is provided on the support rod 1. An anemometer 11 is provided on the top of the support rod 1. The anemometer 11 is used to monitor the wind speed of the polygonatum sibiricum planting environment. The monitoring data can be transmitted in real time or stored for later inspection. A conventional structure can be used.
[0015] The support rod 1 is provided with a groove 12 surrounding the outer surface of the support rod 1. An annular sleeve 13 is provided in the groove 12 and can rotate in the groove 12. The annular sleeve 13 is limited in the groove 12, and the light detector 9 is mounted on the annular sleeve 13. This arrangement allows the annular sleeve 13 to rotate on the groove 12 and remain stably located in the groove 12, which enables the light detector 9 to be moved in position, and the light intensity can be monitored at the desired position, further improving the monitoring effect.
[0016] An outer cover 14 is provided outside the plug 2, and the outer cover 14 is mounted on the support rod 1. In this way, when the support rod 1 is moved, the plug 2 can be covered to avoid accidental injury and ensure safety.
[0017] A bracket 15 is provided on the support rod 1 , and the temperature and humidity monitor 8 is installed on the bracket 15 .
[0018] A second bracket 16 is provided on the support rod 1 , and the solar panel 10 is provided on the second bracket 16 .
[0019] When in use, move the support rod 1 to the required position for monitoring, pull out the outer cover 14, and then insert the plug 2 into the soil. At this time, the support rod 1 is positioned at the required position, and then pull out the positioning nail 3, insert the positioning nail 3 into the soil in the required direction, and stably position the support rod 1 in multiple directions. At this time, the support rod 1 remains stable, and the temperature and humidity monitor 8, light detector 9, solar panel 10, and anemometer 11 on the support rod 1 perform normal monitoring work. When it needs to be moved to other positions for monitoring, pull out the positioning nail 3, then pull out the plug 3, move the support rod 1 to the required position and then perform positioning monitoring. It is extremely convenient to move.
[0020] The characteristics of the embodiments of the present invention are as follows: the multi-flowered polygonatum planting environment monitoring and protection device of the present invention can achieve a movable monitoring effect in the multi-flowered polygonatum forest planting environment, can monitor the multi-flowered polygonatum planting environment in multiple locations, ensure that the planters can make different response measures to the environment of different locations in a timely manner, and can maintain stability during monitoring to ensure the normal progress of the monitoring work, and does not require electric energy for installation when positioning and installing after moving the position, saving energy and achieving energy-saving and environmental protection effects, with good use effect and conducive to promotion.
[0021] While the present invention has been shown and described with reference to preferred embodiments, it will be understood by those skilled in the art that various changes in form and details may be made therein within the scope of the claims.
Claims
1. A device for monitoring and protecting the planting environment of Polygonatum cyrtonema, characterized by: The invention comprises a support rod (1), wherein a plug (2) for inserting into the soil is provided at the bottom of the support rod (1), wherein the cross section of the plug (2) is provided in a conical state, wherein a group of positioning nails (3) are provided on the outside of the support rod (1), wherein a positioning rope (4) is connected to the positioning nail (3), wherein a spring (5) is provided inside the support rod (1), wherein one end of the positioning rope (4) is connected to the positioning nail (3), and the other end of the positioning rope (4) passes through the support rod (1) and is connected to the spring (5), wherein a positioning plate (6) is provided on the outside of the support rod (1), wherein a through hole (7) penetrating the positioning plate (6) is provided on the positioning plate (6), wherein the positioning nail (3) is located at the bottom of the support rod (1). Below the positioning plate (6), the width of the head of the positioning nail (3) is greater than the aperture of the through hole (7), the positioning rope (4) passes through the through hole (7) and is connected to the head of the positioning nail (3), a temperature and humidity monitor (8) is provided above the positioning plate (6), the temperature and humidity monitor (8) is installed on the support rod (1), a light detector (9) is provided above the temperature and humidity monitor (8), the light detector (9) is installed on the support rod (1), a solar panel (10) is provided above the light detector (9), the solar panel (10) is provided on the support rod (1), and an anemometer (11) is provided on the top of the support rod (1).
2. The device for monitoring and protecting the planting environment of Polygonatum cyrtonema according to claim 1, characterized in that: The support rod (1) is provided with a groove (12) surrounding the outer surface of the support rod (1); an annular sleeve (13) rotatable in the groove (12) is provided in the groove (12); the annular sleeve (13) is limited in the groove (12); and the light detector (9) is mounted on the annular sleeve (13).
3. The device for monitoring and protecting the planting environment of Polygonatum cyrtonema according to claim 1, characterized in that: An outer cover (14) is provided outside the plug (2), and the outer cover (14) is mounted on the support rod (1).
4. The device for monitoring and protecting the planting environment of Polygonatum cyrtonema according to claim 1, characterized in that: The support rod (1) is provided with a bracket (15), and the temperature and humidity monitor (8) is installed on the bracket (15).
5. The device for monitoring and protecting the planting environment of Polygonatum cyrtonema according to claim 1, characterized in that: A second bracket (16) is provided on the support rod (1), and the solar panel (10) is provided on the second bracket (16).