Automatic sprinkling irrigation device in landscape architecture
By controlling the deployment of the water-collecting cloth through the detection components and electric push rod mechanism of the automatic sprinkler system, the rainwater collection area is expanded and stored, solving the problem of insufficient rainwater collection in large-scale landscaping and achieving efficient rainwater utilization and irrigation.
Patent Information
- Application Number
- CN202423132121.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-18
- Publication Date
- 2025-11-21
- Estimated Expiration
- 2034-12-18
AI Technical Summary
Existing rainwater harvesting devices have limited collection area and capacity in large-scale landscaping, making it difficult to meet irrigation needs. This results in low collection efficiency during the rainy season and fails to effectively solve long-term irrigation problems.
An automatic sprinkler system is used to monitor rainfall in real time using detection components. The system controls the unfolding of the water-collecting cloth through drive components and electric push rod mechanisms to expand the rainwater collection area. Rainwater is stored using storage components, including an electric push rod mechanism and a gear transmission system, to achieve large-area rainwater collection and storage.
It significantly increases the area and capacity of rainwater harvesting, improves irrigation efficiency and practicality, provides a continuous and sufficient water source, and solves the problem of insufficient capacity of traditional devices.
Smart Images

Figure CN223568303U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of garden irrigation, specifically to an automatic sprinkling irrigation device in garden landscape. BACKGROUND
[0002] With the increasingly nervous water resources, the field of garden greening gradually begins to try to use rainwater for irrigation to realize the sustainable utilization of water resources.
[0003] However, the existing rainwater collecting device mostly has the problems of small collecting area and limited collecting capacity. Especially in large-area garden greening, the conventional rainwater collecting equipment is often difficult to meet the actual irrigation demand, resulting in low collecting efficiency of the equipment in the rainy season and the inability to effectively solve the long-term irrigation problem of garden greening. Therefore, how to increase the collecting area of rainwater and improve the capacity of the rainwater collecting device so that it can meet the irrigation demand of garden greening has become a technical problem to be solved urgently. SUMMARY
[0004] The utility model provides an automatic sprinkling irrigation device in garden landscape to solve the problems of small collecting area and limited collecting capacity of the existing rainwater collecting device. Especially in large-area garden greening, the conventional rainwater collecting equipment is often difficult to meet the actual irrigation demand, resulting in low collecting efficiency of the equipment in the rainy season and the inability to effectively solve the long-term irrigation problem of garden greening.
[0005] The technical scheme for solving the above technical problem is as follows: an automatic sprinkling irrigation device in garden landscape, comprising:
[0006] A collecting structure for collecting rainwater, the collecting structure comprising a water receiving cloth, a driving member, and two parallel first and second keels, wherein the first keel comprises a first and a second electric push rod machine, the second keel comprises a third and a fourth electric push rod machine, four corners of the water receiving cloth are respectively arranged on one end of the first, second, third, and fourth electric push rod machines, and the driving member is arranged between the first and second keels and used to drive the first and second electric push rod machines to rotate in opposite directions or in the same direction and drive the third and fourth electric push rod machines to rotate in opposite directions or in the same direction;
[0007] A storage assembly for storing rainwater, the storage assembly being arranged below the water receiving cloth;
[0008] An irrigation assembly arranged on the storage assembly and used to guide the rainwater in the storage assembly out for irrigation;
[0009] The detection assembly for detecting rain is arranged on the ground near the collecting structure, and the detection assembly is electrically connected with the driving member, the first keel and the second keel respectively.
[0010] The utility model discloses beneficial effects are:
[0011] 1), the device introduces detection assembly, driving member and electric push rod mechanism in rainwater collection, according to the real-time monitoring surrounding rain condition of detection assembly, and according to the automatic control of rain signal unrolling water-receiving cloth, when detection assembly senses rainfall, will immediately send signal to driving member, and driving member drives first electric push rod machine and second electric push rod machine rotate in opposite directions, simultaneously drive third electric push rod machine and fourth electric push rod machine synchronous reverse rotation, then along with the automatic elongation of four electric push rods, make water-receiving cloth rapidly unroll, increase rainwater coverage area, thereby realize the collection of large-area rainwater, effectively expand the area and capacity of rainwater collection, secondly, utilize storage assembly to store collected rainwater, not only improve the utilization rate of rainwater, also provide more sustainable, sufficient water source for landscaping, solve the problem of insufficient capacity of traditional rainwater collection device, significantly improve irrigation efficiency and practicality.
[0012] On the basis of the above technical scheme, the utility model still can make following improvement.
[0013] Further, the storage assembly includes a collection pipe and a storage tank, the storage tank is arranged below the water-receiving cloth, one end of the collection pipe penetrates through the central area of the bottom of the water-receiving cloth, and the other end of the collection pipe is communicated with the storage tank.
[0014] Further, the irrigation assembly includes a water pump and a discharge pipe, the water inlet of the water pump is arranged on the storage tank, and one end of the discharge pipe is arranged on the water outlet of the water pump.
[0015] Further, the collecting structure further includes a first bearing frame and a second bearing frame, the first bearing frame is arranged below the first keel, and the second keel is arranged below the second keel.
[0016] Further, the driving member includes a first gear, a second gear, a third gear, a fourth gear, a main shaft and a motor, one side of the first gear is fixed to one end of the first electric push rod machine, the other side of the first gear is rotatably connected to the first bearing frame through a rotating shaft, one side of the second gear is fixed to one end of the second electric push rod machine, the other side of the second gear is rotatably connected to the first bearing frame through a rotating shaft, and the first gear and the second gear are engaged.
[0017] Further, one side of the third gear is fixed at one end of the third electric push rod machine, and the other side of the third gear is rotatably connected to the second bearing frame through a rotating shaft, one side of the fourth gear is fixed at one end of the fourth electric push rod machine, and the other side of the fourth gear is rotatably connected to the second bearing frame through a rotating shaft, wherein the third gear is engaged with the fourth gear.
[0018] Further, the motor is fixed on the first bearing frame, one end of the main shaft is coaxially fixed on the driving end of the motor, and the other end of the main shaft is coaxially penetrated through the first gear and the second gear in sequence.
[0019] The beneficial effects of the above further scheme are that the motor drives the main shaft to rotate, and then drives the first gear and the third gear to rotate, due to the mutual engagement between the first gear and the second gear and between the third gear and the fourth gear, the first gear and the second gear can rotate in opposite directions, and the third gear and the fourth gear also rotate in opposite directions, in this process, the first electric push rod machine is fixed on the first gear, the second electric push rod machine is fixed on the second gear, the third electric push rod machine is fixed on the third gear, and the fourth electric push rod machine is fixed on the fourth gear, therefore, the first electric push rod machine and the second electric push rod machine can move in opposite directions, the third electric push rod and the fourth electric push rod also move in opposite directions, at the same time, as the included angle between the first electric push rod machine and the second electric push rod machine and the included angle between the second electric push rod machine and the second electric push rod machine gradually increase, and combined with the elongation of the electric push rod machine, the water collecting cloth can be stretched out, and because the horizontal height of the two sides of the water collecting cloth is high, rainwater is gathered to the center, and the collecting pipe penetrates the center area of the bottom of the water collecting cloth, at this time, the collected rainwater flows into the storage tank.
[0020] Further, the detection assembly comprises a humidity sensor, and the humidity sensor is electrically connected with the first electric push rod machine, the second electric push rod machine, the third electric push rod machine, the fourth electric push rod machine, and the motor respectively. BRIEF DESCRIPTION OF DRAWINGS
[0021] Figure 1 It is a whole structure schematic view of the utility model;
[0022] Figure 2 It is a whole structure schematic view of another view of the utility model.
[0023] In the drawings, the components represented by each reference numeral are listed as follows:
[0024] 100, collection structure, 110, first keel, 111, first electric push rod machine, 112, second electric push rod machine, 120, second keel, 121, third electric push rod machine, 122, fourth electric push rod machine, 130, first bearing frame, 140, second bearing frame, 150, driving piece, 151, motor, 152, first gear, 153, second gear, 154, third gear, 155, fourth gear, 156, main shaft, 160, water receiving cloth, 200, detection assembly, 300, storage assembly, 310, collection pipe, 320, storage tank, 400, irrigation assembly, 410, leading-out pipe, 420, water pump. DETAILED DESCRIPTION
[0025] The principles and characteristics of the utility model are described below in combination with the drawings, and the examples are only used to explain the utility model and are not used to limit the scope of the utility model.
[0026] With the increasing shortage of water resources, the field of landscaping has gradually begun to try to use rainwater for irrigation to realize sustainable use of water resources.
[0027] However, the existing rainwater collection devices mostly have the problems of small collection area and limited collection capacity. Especially in large-area landscaping, the conventional rainwater collection equipment is often difficult to meet the actual irrigation demand, resulting in low collection efficiency of the equipment in the rainy season and being unable to effectively solve the long-term irrigation problem of landscaping. Therefore, how to increase the collection area of rainwater, improve the capacity of the rainwater collection device and make it meet the irrigation demand of landscaping has become a technical problem to be solved urgently, and the utility model person proposes an automatic sprinkler device in landscaping to solve the above problems.
[0028] The utility model provides the following preferred embodiments
[0029] As Figure 1 With Figure 2 As shown in the figure, an automatic sprinkler device in landscaping comprises:
[0030] The collecting structure 100 for collecting rainwater comprises a water collecting cloth 160, a driving member 150, and two parallel first and second keels 110 and 120, wherein the first keel 110 comprises first and second electric push rod machines 111 and 112, the second keel 120 comprises third and fourth electric push rod machines 121 and 122, four corners of the water collecting cloth 160 are respectively arranged at one end of the first, second, third and fourth electric push rod machines 111, 112, 121 and 122, and the driving member 150 is arranged between the first and second keels 110 and 120 and used for driving the first and second electric push rod machines 111 and 112 to rotate in the same direction or in the opposite direction and driving the third and fourth electric push rod machines 121 and 122 to rotate in the same direction or in the opposite direction;
[0031] The storage assembly 300 for storing rainwater is arranged below the water collecting cloth 160;
[0032] The irrigation assembly 400 is arranged on the storage assembly 300 and used for guiding rainwater in the storage assembly 300 out for irrigation;
[0033] The detection assembly 200 for detecting rain is arranged on the ground near the collecting structure 100 and is electrically connected with the driving member 150, the first keel 110 and the second keel 120 respectively;
[0034] The device introduces the detection assembly 200, the driving member 150 and the electric push rod mechanism in rainwater collection, detects the surrounding rain in real time according to the detection assembly 200, and automatically controls the unfolding of the water collecting cloth 160 according to the rain signal. When the detection assembly 200 senses rain, a signal is immediately sent to the driving member 150, the driving member 150 drives the first and second electric push rod machines 111 and 112 to rotate in the opposite direction, and simultaneously drives the third and fourth electric push rod machines 121 and 122 to synchronously rotate in the opposite direction. Then, the water collecting cloth 160 is rapidly unfolded by the automatic elongation of the four electric push rods, the rainwater coverage area is increased, the collection of large-area rainwater is realized, the rainwater collection area and capacity are effectively expanded, the rainwater utilization rate is improved, more sustainable and sufficient water sources are provided for landscaping, the problem of insufficient capacity of the traditional rainwater collecting device is solved, and the irrigation efficiency and practicality are significantly improved.
[0035] In the embodiment, as Figure 1 With Figure 2As shown, the collection structure 100 also includes a first support frame 130 and a second support frame 140. The first support frame 130 is located below the first keel 110, and the second keel 140 is located below the second keel 140.
[0036] In this embodiment, as Figure 1 and Figure 2 As shown, the driving component 150 includes a first gear 152, a second gear 153, a third gear 154, a fourth gear 155, a main shaft 156, and a motor 151. One side of the first gear 152 is fixed to one end of the first electric actuator 111, and the other side of the first gear 152 is rotatably connected to the first support frame 130 via a rotating shaft. One side of the second gear 153 is fixed to one end of the second electric actuator 112, and the other side of the second gear 153 is rotatably connected to the first support frame 130 via a rotating shaft. The first gear 152 and the second gear 153 mesh. One side of the third gear 154 is fixed to one end of the third electric actuator 121, and the other side of the third gear 154 is connected to the first support frame 151 via a rotating shaft. A rotating shaft is rotatably connected to the second support frame 140. One side of the fourth gear 155 is fixed to one end of the fourth electric actuator 122, and the other side of the fourth gear 155 is rotatably connected to the second support frame 140 via a rotating shaft. The third gear 154 meshes with the fourth gear 155. One side of the third gear 154 is fixed to one end of the third electric actuator 121, and the other side of the third gear 154 is rotatably connected to the second support frame 140 via a rotating shaft. One side of the fourth gear 155 is fixed to one end of the fourth electric actuator 122, and the other side of the fourth gear 155 is rotatably connected to the second support frame 140 via a rotating shaft. The third gear 154 meshes with the fourth gear 155.
[0037] The motor 151 drives the main shaft 156 to rotate, and then drives the first gear 152 and the third gear 154 to rotate. Due to the meshing action between the first gear 152 and the second gear 153 and between the third gear 154 and the fourth gear 155, the first gear 152 and the second gear 153 can rotate in opposite directions, and the third gear 154 and the fourth gear 155 also rotate in opposite directions. In this process, the first electric push rod machine 111 is fixed on the first gear 152, the second electric push rod machine 112 is fixed on the second gear 153, the third electric push rod machine 121 is fixed on the third gear 154, and the fourth electric push rod machine 122 is fixed on the fourth gear 155. Therefore, the first electric push rod machine 111 and the second electric push rod machine 112 can move in opposite directions, and the third electric push rod and the fourth electric push rod also move in opposite directions. At the same time, as the included angle between the first electric push rod machine 111 and the second electric push rod machine 112 and the included angle between the second electric push rod machine 112 and the second electric push rod machine 112 gradually increases, and in combination with the elongation of the electric push rod machine, the water receiving cloth 160 can be stretched out.
[0038] In this embodiment, as shown in Figure 1 and Figure 2 , the storage assembly 300 includes a collection pipe 310 and a storage tank 320. The storage tank 320 is arranged below the water receiving cloth 160. One end of the collection pipe 310 penetrates the central area of the bottom of the water receiving cloth 160, and the other end of the collection pipe 310 is communicated with the storage tank 320.
[0039] Due to the formation of the included angle between the first electric push rod machine 111 and the second electric push rod machine 112 and between the third electric push rod machine 121 and the fourth electric push rod machine 122, after the water receiving cloth 160 is stretched out, the horizontal height of both sides of the water receiving cloth 160 is higher, causing rainwater to gather in the center. Since the collection pipe 310 penetrates the central area of the bottom of the water receiving cloth 160, the collected rainwater flows into the storage tank 320 through the collection pipe 310.
[0040] In this embodiment, as shown in Figure 1 and Figure 2 , the irrigation assembly 400 includes a water pump 420 and a discharge pipe 410. The water inlet of the water pump 420 is arranged on the storage tank 320. One end of the discharge pipe 410 is arranged on the water outlet of the water pump 420. The water pump 420 pumps water into the storage tank 320, and the water is sent through the discharge pipe 410, so that the stored rainwater is irrigated on the green plants.
[0041] In this embodiment, as shown in Figure 1 and Figure 2As shown, the detection assembly 200 includes a humidity sensor, and the humidity sensor is electrically connected with the first electric push rod machine 111, the second electric push rod machine 112, the third electric push rod machine 121, the fourth electric push rod machine 122 and the motor 151 respectively.
[0042] The specific working process of the utility model is as follows:
[0043] (1) Collecting rainwater
[0044] Firstly, the humidity sensor of MS-Z3 type is used to detect the surrounding rain condition in real time, when the humidity sensor senses the rainfall, the rain signal is immediately sent to the motor 151, at this moment, the motor 151 drives the main shaft 156 to rotate, and then drives the first gear 152 and the third gear 154 to rotate, because of the mutual meshing effect between the first gear 152 and the second gear 153 and between the third gear 154 and the fourth gear 155, the first gear 152 and the second gear 153 can rotate in opposite directions, and the third gear 154 and the fourth gear 155 also rotate in opposite directions, in this process, the first electric push rod machine 111 is fixed on the first gear 152, the second electric push rod machine 112 is fixed on the second gear 153, the third electric push rod machine 121 is fixed on the third gear 154, and the fourth electric push rod machine 122 is fixed on the fourth gear 155, therefore, the first electric push rod machine 111 and the second electric push rod machine 112 can move in opposite directions, and the third electric push rod and the fourth electric push rod also move in opposite directions, at the same time, the included angle between the first electric push rod machine 111 and the second electric push rod machine 112 and the included angle between the second electric push rod machine 112 and the second electric push rod machine 112 gradually increase, and combined with the elongation of the electric push rod machine, the water collecting cloth 160 can be stretched out, and because the horizontal height of the two sides of the water collecting cloth 160 is high, the rainwater is gathered to the center, and the collecting pipe 310 penetrates the center area of the bottom of the water collecting cloth 160, at this time, the collected rainwater flows into the storage tank 320 through the collecting pipe 310.
[0045] (2) Irrigation
[0046] The water pump 420 is used to pump water in the storage tank 320, and the water is sent through the outlet pipe 410, so that the stored rainwater is irrigated on the green plants.
[0047] The above only describes the preferred embodiment of the utility model, and does not limit the utility model, any modification, equivalent replacement, improvement, etc. within the spirit and principle of the utility model should be included in the protection scope of the utility model.
Claims
1. An automatic sprinkling device in a garden landscape, characterized in that, The application relates to a rainwater collecting structure, a rainwater storage assembly and a rainwater irrigation assembly. The rainwater collecting structure comprises a water collecting cloth, a driving element and two parallel first and second keels, wherein the first keel comprises first and second electric push rods, the second keel comprises third and fourth electric push rods, four corners of the water collecting cloth are respectively arranged at one end of the first, second, third and fourth electric push rods, and the driving element is arranged between the first and second keels and used for driving the first and second electric push rods to rotate in the same direction or in opposite directions and driving the third and fourth electric push rods to rotate in the same direction or in opposite directions. The rainwater storage assembly is arranged below the water collecting cloth. The rainwater irrigation assembly is arranged on the rainwater storage assembly and used for leading out rainwater in the rainwater storage assembly to irrigate. The rainwater detecting assembly is arranged on the ground near the rainwater collecting structure and is electrically connected with the driving element, the first keel and the second keel.
2. The automatic sprinkling device in a garden landscape according to claim 1, characterized in that, The rainwater storage assembly comprises a collecting pipe and a storage tank, the storage tank is arranged below the water collecting cloth, one end of the collecting pipe penetrates through a central area of the bottom of the water collecting cloth, and the other end of the collecting pipe is communicated with the storage tank.
3. The automatic sprinkling device in a garden landscape according to claim 2, wherein, The rainwater irrigation assembly comprises a water pump and a leading-out pipe, the water inlet of the water pump is arranged on the storage tank, and one end of the leading-out pipe is arranged at the water outlet of the water pump.
4. The automatic sprinkling device in a garden landscape according to claim 3, wherein, The rainwater collecting structure further comprises first and second bearing frames, the first bearing frame is arranged below the first keel, and the second bearing frame is arranged below the second keel.
5. The automatic sprinkling device in a landscape according to claim 4, wherein, The driving element comprises first, second, third and fourth gears, a main shaft and a motor, one side of the first gear is fixed at one end of the first electric push rod, the other side of the first gear is rotatably connected to the first bearing frame through a rotating shaft, one side of the second gear is fixed at one end of the second electric push rod, the other side of the second gear is rotatably connected to the first bearing frame through a rotating shaft, and the first and second gears are engaged.
6. The automatic sprinkling device in a garden landscape according to claim 5, wherein, One side of the third gear is fixed at one end of the third electric push rod, the other side of the third gear is rotatably connected to the second bearing frame through a rotating shaft, one side of the fourth gear is fixed at one end of the fourth electric push rod, the other side of the fourth gear is rotatably connected to the second bearing frame through a rotating shaft, and the third and fourth gears are engaged.
7. The automatic sprinkling device in a garden landscape according to claim 6, wherein, The motor is fixed on the first bearing frame, one end of the main shaft is coaxially fixed on the driving end of the motor, and the other end of the main shaft is coaxially arranged in the first and second gears in sequence.
8. The automatic sprinkling device in a landscape according to claim 7, wherein, The detecting assembly comprises a humidity sensor, and the humidity sensor is electrically connected with the first, second, third, fourth electric push rods and the motor.