Sprinkling irrigation unit for butterfly orchid irrigation system
By designing a sprinkler unit suitable for Phalaenopsis orchid irrigation systems, the problems of large footprint and high cost in existing technologies have been solved. The sprinkler unit has height adjustment and filtration functions, improving the efficiency and practicality of Phalaenopsis orchid cultivation.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-14
- Publication Date
- 2026-03-24
AI Technical Summary
In current Phalaenopsis orchid cultivation, each seedbed needs to be equipped with a dedicated sprinkler unit, which results in a large footprint, high cost, and the sprinkler unit's height cannot be adjusted, making it impractical.
A sprinkler unit was designed, comprising a conveyor rail, a sprinkler frame, a sprinkler adjustment component, and a sprinkler assembly in a Phalaenopsis orchid seedbed. A sprinkler liquid filtration component and an adjustment component were set up to achieve sprinkler liquid filtration, diversion, and height adjustment, adapting to the sprinkler irrigation needs of different Phalaenopsis orchid species.
It achieves space saving and cost reduction, and can adjust the sprinkler height according to needs, improving sprinkler efficiency and practicality, and meeting the irrigation needs of different types of Phalaenopsis orchids.
Smart Images

Figure CN224022471U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of Phalaenopsis orchid cultivation technology, specifically to a sprinkler irrigation unit for Phalaenopsis orchid irrigation systems. Background Technology
[0002] Phalaenopsis orchids, belonging to the genus Phalaenopsis in the family Orchidaceae, are perennial herbaceous plants native to subtropical rainforests. Often called the "Queen of Orchids," they have short stems and elliptical or oblong, slightly fleshy leaves that are green on the upper surface and purple on the lower. Their flowers are uniquely shaped and brightly colored, with rhomboid-round petals and a purplish-green inflorescence axis. The blossoms resemble fluttering butterflies, making them beautiful and captivating. With a long flowering period, they possess extremely high ornamental value. During cultivation, Phalaenopsis orchids require irrigation using a sprinkler system.
[0003] However, the current common practice in Phalaenopsis orchid cultivation is to install an independent sprinkler unit above each individual Phalaenopsis orchid seedling bed. Each seedling bed needs to be equipped with its own sprinkler unit, which not only results in a large land area but also creates a crisscrossing network of pipes, greatly increasing the cost of use and hindering the effective reduction of overall cultivation costs. Furthermore, the existing sprinkler units cannot be adjusted, and the height between the sprinkler unit and the Phalaenopsis orchid seedling bed cannot be adjusted, making them impractical. Utility Model Content
[0004] (a) Technical problems to be solved
[0005] In view of the shortcomings of the prior art, this utility model provides a sprinkler irrigation unit for a Phalaenopsis orchid irrigation system to solve the problems mentioned in the background.
[0006] (II) Technical Solution
[0007] To achieve the above objectives, this utility model provides the following technical solution: a sprinkler unit for a Phalaenopsis orchid irrigation system, comprising a conveyor rail in a Phalaenopsis orchid seedbed, a sprinkler frame located above the conveyor rail in the Phalaenopsis orchid seedbed, a sprinkler adjustment component fixedly connected above the sprinkler frame, and a sprinkler assembly located inside the sprinkler adjustment component. A sprinkler liquid filter assembly is provided on the side of the conveyor rail in the Phalaenopsis orchid seedbed, and the sprinkler liquid filter assembly is interconnected with the sprinkler assembly. A seedbed assembly is provided at the top of the conveyor rail in the Phalaenopsis orchid seedbed, and several Phalaenopsis orchid planting frames are placed on the upper part of the seedbed assembly. The Phalaenopsis orchid seedbed inlet conveyor rail and the Phalaenopsis orchid seedbed outlet conveyor rail are located on both sides of the conveyor rail in the Phalaenopsis orchid seedbed.
[0008] Preferably, the sprinkler adjustment component and the sprinkler component are located above the seedbed component and do not contact each other. The number of sprinkler adjustment components and the number of sprinkler components are the same and they correspond one-to-one.
[0009] By the technical scheme, the seedbed assembly is conveyed by the conveying track in the phalaenopsis seedbed, the sprinkling irrigation liquid is filtered by the sprinkling irrigation liquid filtering assembly, the sprinkling irrigation liquid is shunted and sprinkled by the sprinkling irrigation assembly, and the height of the sprinkling irrigation assembly is adjusted by the sprinkling irrigation adjusting assembly.
[0010] Preferably, the sprinkling irrigation adjusting assembly comprises an upper cross frame, the upper cross frame is fixedly connected with the sprinkling irrigation frame, upper vertical frames are fixedly installed on both sides of the lower part of the upper cross frame, lower vertical frames are slidably connected to the lower part of the upper cross frame through the upper vertical frames, lower cross plates are arranged on the lower part of the lower vertical frames, threaded holes are arranged on the outer sides of the upper vertical frames and the lower vertical frames, locking bolts are threadedly connected in the threaded holes, and the sprinkling irrigation adjusting assemblies are equidistantly distributed on the inner side of the sprinkling irrigation frame.
[0011] Preferably, a plurality of threaded holes are arranged, the threaded holes are equidistantly distributed, the cross section of the upper vertical frame is in a "U" shape, the upper part of the lower vertical frame is located on the inner side of the upper vertical frame, the sprinkling irrigation heads are fixedly connected with the lower cross plates, and the third auxiliary liquid pipes penetrate through the lower cross plates and extend to the lower part of the lower cross plates.
[0012] By the technical scheme, during the adjustment, the locking bolts are screwed until the locking bolts are completely separated from the upper vertical frames and the lower vertical frames, then the lower vertical frames are pulled down or the lower vertical frames are pushed up, and then the locking bolts are locked again, so that the height of the lower cross plates and the seedbed assembly can be adjusted, the height between the sprinkling irrigation heads and the seedbed assembly can be adjusted, the sprinkling irrigation for different types of phalaenopsis can be met, and the practicability is improved.
[0013] Preferably, the sprinkling irrigation assembly comprises first auxiliary liquid pipes and second auxiliary liquid pipes, a flow regulating valve is arranged between the first auxiliary liquid pipes and the second auxiliary liquid pipes, a plurality of third auxiliary liquid pipes are arranged on the outer side of the second auxiliary liquid pipe, the third auxiliary liquid pipes are mutually installed with the sprinkling irrigation heads at the ends away from the second auxiliary liquid pipes, and a connector one fixedly connected with the upper cross frame is further arranged on the outer side of the second auxiliary liquid pipe.
[0014] Preferably, the number of the sprinkling irrigation heads is the same as that of the third auxiliary liquid pipes, and the sprinkling irrigation heads and the third auxiliary liquid pipes are one-to-one corresponding, the third auxiliary liquid pipes are made of rubber pipe material, and the first auxiliary liquid pipes, the second auxiliary liquid pipes, the third auxiliary liquid pipes and the sprinkling irrigation heads are mutually connected.
[0015] By the technical scheme, the first auxiliary liquid pipes convey and shunt the sprinkling irrigation liquid through the second auxiliary liquid pipes and the third auxiliary liquid pipes, and the sprinkling irrigation liquid is sprinkled by the sprinkling irrigation heads.
[0016] Preferably, the irrigation fluid filtration assembly includes an irrigation fluid filter, a main inlet pipe and an outlet pipe are provided on the outside of the irrigation fluid filter, an interconnecting pipe is provided between the main inlet pipe and the outlet pipe, a control valve is provided on the outside of the main inlet pipe, the outlet pipe and the interconnecting pipe, a main delivery pipe is connected to the end of the outlet pipe away from the irrigation fluid filter, a second connector for fixing the main delivery pipe is provided on the outside of the irrigation frame, and a connecting lug is provided on the side of the irrigation fluid filter near the irrigation frame, the connecting lug being fixedly connected to the bracket.
[0017] Preferably, there are multiple identical connectors 2, which are distributed at equal intervals, and the cross-section of each connector 2 is in the shape of an "I".
[0018] Through the above technical solution, the main inlet pipe delivers the irrigation fluid to the inside of the irrigation fluid filter for filtration. The filtered irrigation fluid is then delivered to the inside of the main delivery pipe through the outlet pipe. When using irrigation fluid that does not require filtration, the control valve between the main inlet pipe and the irrigation fluid filter is closed, the control valve between the outlet pipe and the irrigation fluid filter is closed, and the control valve on the outside of the interconnecting pipe is opened. At this time, the irrigation fluid can directly enter the inside of the main delivery pipe through the main inlet pipe, the outlet pipe, and the interconnecting pipe, enabling mode switching. Different filtration or non-filtration modes can be selected for irrigation according to the actual situation.
[0019] Compared with the prior art, the present invention provides a sprinkler unit for an orchid irrigation system, which has the following advantages:
[0020] 1. This sprinkler unit for Phalaenopsis orchid irrigation system is equipped with a sprinkler adjustment component, a sprinkler component, and a sprinkler liquid filtration component. The sprinkler unit includes a sprinkler liquid filtration, sprinkler, and sprinkler adjustment component. The sprinkler liquid filtration component can flexibly select to filter or directly deliver the sprinkler liquid. The sprinkler component consists of a main liquid delivery pipe, a secondary liquid delivery pipe, and a sprinkler head to achieve precise sprinkler irrigation. The sprinkler adjustment component can be easily adjusted according to the needs of different plants by simple bolt operation, so as to meet the sprinkler irrigation needs of different types of Phalaenopsis orchids.
[0021] 2. This sprinkler unit for the Phalaenopsis orchid irrigation system is also equipped with a middle conveyor rail, an inlet conveyor rail, and an outlet conveyor rail. The inlet conveyor rail transports the seedbed components to the middle conveyor rail, where they are then irrigated by the sprinkler components. The middle and outlet conveyor rails work together to transport the irrigated seedbed components away, enabling sequential sprinkler irrigation, improving irrigation efficiency. It eliminates the need for a dedicated sprinkler unit on each seedbed, saving space and reducing planting costs. Attached Figure Description
[0022] Figure 1This is a three-dimensional structural diagram of the present invention;
[0023] Figure 2 This is a schematic diagram of the installation structure of the sprinkler frame of this utility model;
[0024] Figure 3 This is a schematic diagram of the installation structure of the sprinkler irrigation assembly of this utility model. Figure 1 ;
[0025] Figure 4 This is a schematic diagram of the installation structure of the sprinkler irrigation assembly of this utility model. Figure 2 ;
[0026] Figure 5 This is a schematic diagram of the installation structure of the sprinkler irrigation adjustment component of this utility model;
[0027] Figure 6 This is a three-dimensional structural diagram of the irrigation fluid filtration assembly of this utility model;
[0028] Figure 7 This is a three-dimensional structural diagram of the sprinkler irrigation adjustment component of this utility model.
[0029] The components include: 1. Conveyor rail in the Phalaenopsis seedbed; 2. Sprinkler frame; 3. Sprinkler adjustment assembly; 301. Upper horizontal frame; 302. Upper vertical frame; 303. Lower vertical frame; 304. Lower horizontal plate; 305. Threaded hole; 306. Locking bolt; 4. Sprinkler assembly; 401. First auxiliary liquid delivery pipe; 402. Flow regulating valve; 403. Second auxiliary liquid delivery pipe; 404. Connector one; 405. Third auxiliary liquid delivery pipe; 406. Sprinkler head; 5. Sprinkler liquid filter assembly; 501. Bracket; 502. Connecting ear; 503. Sprinkler liquid filter; 504. Main inlet pipe; 505. Outlet pipe; 506. Interconnecting pipe; 507. Control valve; 508. Main liquid delivery pipe; 509. Connector two; 6. Seedbed assembly; 7. Phalaenopsis planting frame; 8. Phalaenopsis seedbed inlet conveyor rail; 9. Phalaenopsis seedbed outlet conveyor rail. Detailed Implementation
[0030] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0031] Example 1:
[0032] like Figures 1-7The utility model provides a spray irrigation unit for butterfly orchid irrigation system, including butterfly orchid seedbed in conveying rail 1 and the spray irrigation frame 2 of butterfly orchid seedbed in conveying rail 1 top and the spray irrigation adjusting assembly 3 of fixed connection of spray irrigation frame 2 top and the spray irrigation assembly 4 of spray irrigation adjusting assembly 3 inboard, the side of butterfly orchid seedbed in conveying rail 1 is provided with spray irrigation liquid filter assembly 5, and spray irrigation liquid filter assembly 5 is interconnected with spray irrigation assembly 4, and the top of butterfly orchid seedbed in conveying rail 1 is provided with seedbed assembly 6, and a plurality of butterfly orchid planting frame 7 is placed in the upper portion of seedbed assembly 6, and butterfly orchid seedbed in conveying rail 8 and butterfly orchid seedbed out conveying rail 9 are located at the both sides of butterfly orchid seedbed in conveying rail 1.
[0033] Specifically, the spray irrigation adjusting assembly 3 and the spray irrigation assembly 4 are located above the seedbed assembly 6 and do not contact each other, the number of the spray irrigation adjusting assembly 3 and the spray irrigation assembly 4 is the same, and they are one-to-one corresponding. The advantage is that when in use, the butterfly orchid seedbed in conveying rail 1 conveys the seedbed assembly 6, the spray irrigation liquid filter assembly 5 filters the spray irrigation liquid, the spray irrigation assembly 4 divides the flow of the spray irrigation liquid, and the spray irrigation adjusting assembly 3 adjusts the height of the spray irrigation assembly 4.
[0034] Embodiment two:
[0035] With reference to Figures 1-7 On the basis of embodiment one, in order to meet the spray irrigation of different types of butterfly orchids, the spray irrigation adjusting assembly 3 comprises an upper horizontal frame 301, the upper horizontal frame 301 is fixedly connected with the spray irrigation frame 2, upper vertical frames 302 are fixedly installed on the two sides of the lower part of the upper horizontal frame 301, lower vertical frames 303 are slidably connected to the lower part of the upper horizontal frame 301 through the upper vertical frames 302, a lower horizontal plate 304 is arranged on the lower part of the lower vertical frame 303, thread holes 305 are formed in the outer sides of the upper vertical frames 302 and the lower vertical frames 303, locking bolts 306 are threadedly connected in the thread holes 305, the spray irrigation adjusting assembly 3 is distributed at equal intervals on the inner side of the spray irrigation frame 2, the same plurality of thread holes 305 are formed, and the plurality of thread holes 305 are distributed at equal intervals, the cross section of the upper vertical frame 302 is in the shape of a "U", the upper part of the lower vertical frame 303 is located on the inner side of the upper vertical frame 302, the spray heads 406 are fixedly connected with the lower horizontal plate 304, and the third auxiliary liquid conveying pipes 405 penetrate through the lower horizontal plate 304 and extend to the lower part of the lower horizontal plate 304. The advantage is that during the adjustment process, the locking bolts 306 are screwed until the locking bolts 306 are completely separated from the upper vertical frames 302 and the lower vertical frames 303, then the lower vertical frames 303 are pulled down or the lower vertical frames 303 are pushed up, then the locking bolts 306 are locked again, the height adjustment of the lower horizontal plate 304 and the seedbed assembly 6 can be realized, the height adjustment between the spray heads 406 and the seedbed assembly 6 can be realized, the spray irrigation of different types of butterfly orchids can be met, and the practicability is improved.
[0036] Embodiment three:
[0037] With reference toFigures 1-7 Based on Embodiments 1 and 2, in order to achieve better sprinkler irrigation, the sprinkler assembly 4 includes a first auxiliary liquid delivery pipe 401 and a second auxiliary liquid delivery pipe 403. A flow regulating valve 402 is provided between the first auxiliary liquid delivery pipe 401 and the second auxiliary liquid delivery pipe 403. Several third auxiliary liquid delivery pipes 405 are provided on the outside of the second auxiliary liquid delivery pipe 403. Sprinkler heads 406 are installed on the end of the third auxiliary liquid delivery pipes 405 away from the second auxiliary liquid delivery pipes 403. A connector 404 fixedly connected to the upper cross frame 301 is also provided on the outside of the second auxiliary liquid delivery pipes 403. The number of sprinkler heads 406 is the same as that of the third auxiliary liquid delivery pipes 405, and they correspond one-to-one. The third auxiliary liquid delivery pipes 405 are made of rubber tubing. The first auxiliary liquid delivery pipe 401, the second auxiliary liquid delivery pipe 403, the third auxiliary liquid delivery pipe 405 and the sprinkler heads 406 are interconnected. The advantage is that the first liquid delivery pipe 401 transports and distributes the irrigation liquid through the second liquid delivery pipe 403 and the third liquid delivery pipe 405, and the irrigation head 406 sprays the irrigation liquid.
[0038] Example 4:
[0039] Reference Figures 1-7 Based on Embodiments 1, 2, and 3, to accommodate various irrigation modes and irrigation fluid filtration operations, the irrigation fluid filtration assembly 5 includes an irrigation fluid filter 503. A main inlet pipe 504 and an outlet pipe 505 are located on the outer side of the irrigation fluid filter 503. An interconnecting pipe 506 is provided between the main inlet pipe 504 and the outlet pipe 505. Control valves 507 are installed on the outer sides of the main inlet pipe 504, the outlet pipe 505, and the interconnecting pipe 506. 05. A main liquid delivery pipe 508 is installed at the end away from the irrigation liquid filter 503. A connector 509 for fixing the main liquid delivery pipe 508 is provided on the outside of the irrigation frame 2. A connecting ear 502 is provided on the side of the irrigation liquid filter 503 near the irrigation frame 2. The connecting ear 502 is fixedly connected to the bracket 501. Multiple connectors 509 are provided, and the multiple connectors 509 are distributed at equal intervals. The cross-section of the connector 509 is an "I" shaped structure. The advantage is that the main inlet pipe 504 delivers the irrigation fluid to the irrigation fluid filter 503 for filtration. The filtered irrigation fluid is then delivered to the main delivery pipe 508 through the outlet pipe 505. When using irrigation fluid that does not require filtration, the control valve 507 between the main inlet pipe 504 and the irrigation fluid filter 503 is closed, the control valve 507 between the outlet pipe 505 and the irrigation fluid filter 503 is closed, and the control valve 507 on the outside of the interconnect pipe 506 is opened. At this time, the irrigation fluid can directly enter the main delivery pipe 508 through the main inlet pipe 504, the outlet pipe 505, and the interconnect pipe 506. This allows for mode switching, and different filtration or non-filtration modes can be selected for irrigation according to the actual situation.
[0040] Working principle: in use, the external liquid feeding device delivers the sprinkling irrigation liquid into the main liquid inlet pipe 504, the main liquid inlet pipe 504 delivers the sprinkling irrigation liquid into the inside of the sprinkling irrigation liquid filter 503 for filtration, the filtered sprinkling irrigation liquid is delivered into the inside of the main liquid feeding pipe 508 through the liquid outlet pipe 505, when the sprinkling irrigation liquid without filtration is used, the control valve 507 between the main liquid inlet pipe 504 and the sprinkling irrigation liquid filter 503 is closed, the control valve 507 between the liquid outlet pipe 505 and the sprinkling irrigation liquid filter 503 is closed, the control valve 507 outside the intercommunication pipe 506 is opened, at this time, the sprinkling irrigation liquid can directly enter the inside of the main liquid feeding pipe 508 through the main liquid inlet pipe 504, the liquid outlet pipe 505 and the intercommunication pipe 506, the sprinkling irrigation liquid in the inside of the main liquid feeding pipe 508 is delivered and branched through the first auxiliary liquid feeding pipe 401, the second auxiliary liquid feeding pipe 403 and the third auxiliary liquid feeding pipe 405, the sprinkling irrigation liquid is sprinkled by the sprinkling head 406, in order to meet the sprinkling of different types of butterfly orchids, the locking bolt 306 is screwed, until the locking bolt 306 is completely separated from the upper vertical frame 302 and the lower vertical frame 303, then the lower vertical frame 303 is pulled down or the lower vertical frame 303 is pushed up, then the locking bolt 306 is locked again, the height adjustment of the lower horizontal plate 304 and the seedbed assembly 6 can be realized, the height adjustment between the sprinkling head 406 and the seedbed assembly 6 can be realized, the sprinkling of different types of butterfly orchids is met, the practicality is improved, and the butterfly orchid seedbed middle conveying track 1, the butterfly orchid seedbed inlet conveying track 8 and the butterfly orchid seedbed outlet conveying track 9 are also provided, the seedbed assembly 6 is conveyed into the butterfly orchid seedbed middle conveying track 1 through the butterfly orchid seedbed inlet conveying track 8 and is sprinkled through the sprinkling assembly 4, then the seedbed assembly 6 after sprinkling is conveyed away through the cooperation of the butterfly orchid seedbed middle conveying track 1 and the butterfly orchid seedbed outlet conveying track 9, the row type sprinkling can be realized, the sprinkling efficiency is improved, a dedicated sprinkling unit does not need to be equipped on each planting seedbed, space is saved, and the planting cost is reduced.
[0041] Although the embodiments of the utility model have been shown and described, it can be understood by those skilled in the art that various changes, modifications, replacements and variations can be made to these embodiments without departing from the principles and spirits of the utility model, the scope of the utility model is defined by the appended claims and their equivalents.
Claims
1. A sprinkling irrigation unit for a phalaenopsis irrigation system, comprising a phalaenopsis seedbed inlet conveying track (8), a phalaenopsis seedbed outlet conveying track (9) and a phalaenopsis seedbed middle conveying track (1), a sprinkling irrigation frame (2) located above the phalaenopsis seedbed middle conveying track (1), a sprinkling irrigation adjusting assembly (3) fixedly connected above the sprinkling irrigation frame (2) and a sprinkling irrigation assembly (4) located inside the sprinkling irrigation adjusting assembly (3), characterized in that: The side of the conveying rail (1) in the Phalaenopsis seedbed is provided with a spraying liquid filter assembly (5), which is interconnected with the spraying assembly (4). The top of the conveying rail (1) in the Phalaenopsis seedbed is provided with a seedbed assembly (6), and several Phalaenopsis planting frames (7) are placed on the upper part of the seedbed assembly (6). The Phalaenopsis seedbed inlet conveying rail (8) and Phalaenopsis seedbed outlet conveying rail (9) are located on both sides of the conveying rail (1) in the Phalaenopsis seedbed. The sprinkler adjustment assembly (3) includes an upper horizontal frame (301), which is fixedly connected to the sprinkler frame (2). Upper vertical frames (302) are fixedly installed on both sides of the lower part of the upper horizontal frame (301). A lower vertical frame (303) is slidably connected to the lower part of the upper horizontal frame (301) through the upper vertical frame (302). A lower horizontal plate (304) is provided at the lower part of the lower vertical frame (303). Threaded holes (305) are opened on the outer sides of both the upper vertical frame (302) and the lower vertical frame (303). Locking bolts (306) are threaded inside the threaded holes (305). The sprinkler adjustment assembly (3) is evenly distributed on the inner side of the sprinkler frame (2). The sprinkler assembly (4) includes a first auxiliary liquid delivery pipe (401) and a second auxiliary liquid delivery pipe (403). A flow regulating valve (402) is provided between the first auxiliary liquid delivery pipe (401) and the second auxiliary liquid delivery pipe (403). Several third auxiliary liquid delivery pipes (405) are provided on the outside of the second auxiliary liquid delivery pipe (403). A sprinkler head (406) is installed on the end of the third auxiliary liquid delivery pipe (405) away from the second auxiliary liquid delivery pipe (403). A connector (404) is also provided on the outside of the second auxiliary liquid delivery pipe (403) and is fixedly connected to the upper cross frame (301).
2. The sprinkling unit for the Phalaenopsis irrigation system according to claim 1, wherein: The irrigation fluid filtration assembly (5) includes an irrigation fluid filter (503). A main inlet pipe (504) and an outlet pipe (505) are provided on the outside of the irrigation fluid filter (503). An interconnecting pipe (506) is provided between the main inlet pipe (504) and the outlet pipe (505). A control valve (507) is provided on the outside of the main inlet pipe (504), the outlet pipe (505) and the interconnecting pipe (506). A main delivery pipe (508) is installed at the end of the outlet pipe (505) away from the irrigation fluid filter (503). A connector (509) for fixing the main delivery pipe (508) is provided on the outside of the irrigation frame (2). A connecting lug (502) is provided on the side of the irrigation fluid filter (503) near the irrigation frame (2). The connecting lug (502) is fixedly connected to the bracket (501).
3. The sprinkling unit for the Phalaenopsis irrigation system according to claim 2, wherein: Multiple identical connectors (509) are provided, and the multiple connectors (509) are distributed at equal intervals. The cross-section of the connectors (509) is in the shape of an "I".
4. The sprinkling unit for the Phalaenopsis irrigation system according to claim 1, wherein: The sprinkler adjustment component (3) and the sprinkler component (4) are located above the seedbed component (6) and do not contact each other. The number of the sprinkler adjustment component (3) and the sprinkler component (4) are the same and they correspond one to one.
5. The sprinkling unit for the Phalaenopsis irrigation system according to claim 1, wherein: The threaded holes (305) are provided with the same number, and the threaded holes (305) are equidistantly distributed, the upper vertical frame (302) is in "U" type structure, the upper part of the lower vertical frame (303) is located on the inner side of the upper vertical frame (302), the sprinkler head (406) is fixedly connected with the lower horizontal plate (304), and the third auxiliary liquid conveying pipe (405) penetrates through the lower horizontal plate (304) and extends to the lower part of the lower horizontal plate (304).
6. The sprinkling unit for the Phalaenopsis irrigation system according to claim 1, wherein: The sprinkler head (406) is the same as the number of the third auxiliary liquid conveying pipe (405), and one-to-one correspondence, the third auxiliary liquid conveying pipe (405) is made of rubber pipe material, the first auxiliary liquid conveying pipe (401), the second auxiliary liquid conveying pipe (403), the third auxiliary liquid conveying pipe (405) and the sprinkler head (406) are interconnected.