Water drainer for aquatic plant planting barrel
By designing a drainer for aquatic plant growing containers, the problem of inconvenient drainage for aquatic plant growing containers is solved, realizing convenient water level management and preventing plant loss. It is suitable for different types of aquatic plant growing containers.
Patent Information
- Application Number
- CN202520573003.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-29
- Publication Date
- 2026-02-17
- Estimated Expiration
- 2035-03-29
AI Technical Summary
Existing aquatic plant growing containers are inconvenient for drainage and can easily cause plant damage.
Design a drainage device for aquatic plant growing bucket, including a tubular water inlet cover, a rigid pipe section, a flexible pipe section, a squeezing air bladder and a valve. The drainage pipe is fixed by a water pipe fixing clamp to control the position of the water inlet. A mesh bag is used to filter the plant body and adjust the water flow to prevent accidental aspiration of bottom mud and cross-planting.
It achieves convenient water level management, prevents plant loss, adapts to different water level requirements, is easy to operate, low in cost, and suitable for planting buckets of various types of aquatic plants.
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Figure CN223913137U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to aquatic plant cultivation equipment technical field, concretely relates to an aquatic plant planting barrel drainage device. BACKGROUND
[0002] Aquatic plants are important components in freshwater ecosystems, they can not only beautify the environment, enrich food chains and food webs, but also most aquatic plants can purify water quality and play an important ecological function. In order to facilitate seedling raising, distinguish different aquatic plant germplasm, prevent different germplasms from intermingling, aquatic plants are often cultivated in planting barrels in production practice.
[0003] Different types of aquatic plants such as floating plants, floating leaf rooted plants, submerged plants and emergent plants have different water level requirements, the volume of aquatic plant planting barrels is generally at least 150L, except for emergent plants, other life forms of aquatic plants generally need to be kept full of water during planting, so when draining during cultivation, management and seedling raising in the planting barrel, the drainage amount is large.
[0004] Therefore, a convenient, fast, labor-saving and cost-effective drainage device is necessary for daily water level management. In addition, during the drainage process, plant bodies, especially floating plants themselves, broken branches floating in water or weakly connected winter buds and other vegetative propagules, seeds and fruits are extremely easy to be drained with water flow, and improper drainage may cause certain losses. SUMMARY
[0005] The utility model aims at providing an aquatic plant planting barrel drainage device to solve the technical problems of inconvenient drainage of the existing aquatic plant planting barrel and easy plant body loss during the drainage process.
[0006] To solve the above technical problems, the utility model adopts the following technical scheme:
[0007] An aquatic plant planting barrel drainage device is designed, which comprises a tubular water inlet cover, a hard pipe section is communicated at the rear end of the water inlet cover, the front end of the water inlet cover is a water inlet, the area of the water inlet is larger than that of the front end port of the hard pipe section, a mesh bag is sleeved on the water inlet cover, a first soft pipe section is communicated at the rear end of the hard pipe section, an extrusion air bag is communicated at the rear end of the first soft pipe section, a second soft pipe section is communicated at the rear end of the extrusion air bag, a valve is arranged on the second soft pipe section, and the valve is a one-way valve; a water pipe fixing clamp is further arranged, a clamp seat for clamping the barrel edge of the planting barrel is arranged on the water pipe fixing clamp, and a pipe clamp is arranged on the clamp seat.
[0008] Further, the rear end of the water inlet cover is provided with a first connecting head for connecting the front end of the hard pipe section, the front end of the hard pipe section is inserted into the first connecting head, and the rear end of the hard pipe section is detachably inserted into the front end of the first soft pipe section; the front end of the extruded air bag is provided with a second connecting head, the rear end is provided with a third connecting head, the second connecting head is detachably inserted into the rear end of the first soft pipe section, and the third connecting head is inserted into the front end of the second soft pipe section; the valve is provided with a fourth connecting head, and the fourth connecting head is inserted into the rear end of the second soft pipe section.
[0009] Further, the bag opening of the screen bag is provided with a detachable binding rope.
[0010] Further, the water inlet cover is a large-diameter cylindrical water inlet head with an inner diameter of 4 cm and a length of 15 cm; the inner diameter of the hard pipe section is 14 mm, and the length is 20 cm; the inner diameter of the first soft pipe section and the second soft pipe section is 14 mm, and the outer diameter is 18 mm.
[0011] Further, a filter cover is arranged in the water inlet cover.
[0012] Further, the clamping seat of the water pipe fixing clamp comprises a clamping groove for clamping the edge of the planting barrel, and a locking screw is arranged on the upper side of the clamping groove.
[0013] Further, the pipe clamp comprises an arc-shaped groove matched with the thickness of the first soft pipe section, and a anti-falling card is arranged on the inner side of the top of the two side plates of the arc-shaped groove.
[0014] Compared with the prior art, the beneficial effects of the utility model are as follows:
[0015] The water plant planting barrel drainer solves the water level management problem in the water plant maintenance process, is especially suitable for draining of floating plants, submerged plants and floating leaf root plant planting barrels, the first hose section in the drain pipe is fixed by the water pipe fixing clamp, the position of the water inlet at the front end of the water inlet cover can be controlled, thereby the drain water level is controlled, and the bottom mud is prevented from being sucked by mistake and the water pipe is blocked by controlling the position. The valve can adjust the water flow size and control the drain time. After the drain is completed, the mesh bag can be replaced to perform the drain operation on the next planting barrel, the mesh bag can prevent the water plants and their propagules from being sucked out of the barrel, and can also prevent the plants in different barrels from being "polluted" by each other due to use of the same drainer, and can avoid mixed planting. For the water moses and other filamentous green algae often growing in the planting barrel, part of the water moses can be adsorbed on the mesh bag when the drain is performed by the drainer, and the mesh bag can be directly cleaned or replaced, so that part of the water moses in the planting barrel can be cleaned, and the entanglement, shielding and competition of the water moses on the target plants are reduced. For planting barrels of different sizes and different water levels, the first hose of a corresponding length can be used to adapt to the drain requirements of the planting barrels with different water levels. The drainer is a manual drain, has the advantages of simple operation, light weight, easy installation, disassembly and cleaning, durability, and only the mesh bag needs to be replaced as required, and the price is very low, so that the cost of the complete device is low, and the device is very suitable for control and drain operation of the water level in the planting barrels of different life forms of water plants. BRIEF DESCRIPTION OF DRAWINGS
[0016] The accompanying drawings are included to provide a further understanding of the present application, and constitute a part of the specification, illustrate the present application together with the embodiments thereof, and explain the present application, and do not constitute a limitation of the present application. In the drawings:
[0017] Figure 1 It is a structure schematic view of an embodiment of the water plant planting barrel drainer of the present application.
[0018] Figure 2 It is a structure schematic view of the water inlet cover in the embodiment of the water plant planting barrel drainer of the present application.
[0019] Figure 3 It is a structure schematic view of the mesh bag in the embodiment of the water plant planting barrel drainer of the present application.
[0020] Figure 4 It is a use schematic view of the embodiment of the water plant planting barrel drainer of the present application.
[0021] Figure 5 It is a structure schematic view of the squeeze air bag in the embodiment of the water plant planting barrel drainer of the present application.
[0022] Figure 6 It is a structure schematic view of the valve in the embodiment of the water plant planting barrel drainer of the present application.
[0023] Figure 7 It is the structural schematic view of water pipe fixing clamp in the embodiment of the water plant planting barrel drainage device.
[0024] In the drawing: water inlet cover 1, water inlet 11, first connecting head 12, filter cover 13, hard pipe section 2, net yarn bag 3, binding rope 31, first soft pipe section 4, extrusion air bag 5, second connecting head 51, third connecting head 52, second soft pipe section 6, valve 7, fourth connecting head 71, water pipe fixing clamp 8, clamp seat 81, clamping groove 811, tightening screw 812, pipe clamp 82, anti-off card 821, planting barrel 9, barrel edge 91. DETAILED DESCRIPTION
[0025] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of the present application.
[0026] In the following embodiments, the unit modules, parts, structures, mechanisms or sensors and other devices are all conventional commercially available products unless otherwise specified. In the description of the present application, it should be understood that the terms "upper", "lower", "front", "rear", "left", "right", "top", "bottom", "inner", "outer" and the like indicate the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the present application and simplifying the description, and do not indicate or imply that the devices or elements referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation on the present application. The "first", "second" and the like in the present application are used to distinguish similar objects, and do not necessarily describe a specific order or sequence.
[0027] In one embodiment, a water plant planting barrel drainage device is provided, as shown in the drawing, which comprises a tubular water inlet cover 1. Figure 1 The purpose of arranging the water inlet cover 1 is to ensure smooth water inlet. A hard pipe section 2 is connected to the rear end of the water inlet cover 1. The water inlet cover 1 can be sent underwater through the arranged hard pipe section 2, as shown in the drawing. Figure 2 The water inlet cover 1 is a transparent plastic cover. The front end of the water inlet cover 1 is a water inlet 11. A filter cover 13 is arranged at the rear position in the water inlet cover 1 to prevent the rear end from being blocked.
[0028] The rear end of the water inlet cover 1 is tapered to connect the hard pipe section 2, the area of the water inlet 11 is larger than the front end of the hard pipe section 2, a mesh bag 3 is sleeved on the water inlet cover 1, the mesh bag 3 has dense mesh, and is used to filter out water moss, aquatic plants, seeds of aquatic plants, fruits and the like in water, as shown in Figure 3 The bag opening of the mesh bag 3 is provided with a detachable binding rope 31, the mesh bag 3 is larger than the water inlet cover 1, and after the mesh bag 3 is sleeved on the water inlet cover 1, the binding rope 31 is tightened.
[0029] As shown in Figure 1 The rear end of the hard pipe section 2 is communicated with a first soft pipe section 4, the length of the first soft pipe section 4 is set according to the height of the aquatic plant planting barrel, so that the water in the aquatic plant planting barrel can be introduced to a lower position through the first soft pipe section 4, the rear end of the first soft pipe section 4 is communicated with a squeeze air bag 5, the squeeze air bag 5 is used to exhaust air and draw out the water in the aquatic plant planting barrel through negative pressure, the rear end of the squeeze air bag 5 is communicated with a second soft pipe section 6, the second soft pipe section 6 is provided with a valve 7, the valve 7 is a one-way valve capable of discharging water outward, and the water drawn out can be further discharged to a set position by arranging the second soft pipe section 6, and the water pipe fixing clamp 8 further comprises a clamping seat 81 used for clamping the barrel edge of the planting barrel and a pipe clamp 82 arranged on the clamping seat 81, the clamping seat 81 is clamped on the barrel edge of the planting barrel, and the first soft pipe section 4 is arranged in the pipe clamp 82, so that the first soft pipe section 4 can cross over the barrel edge of the planting barrel without bending, and the water in the aquatic plant planting barrel can flow out smoothly.
[0030] The use mode of the aquatic plant planting barrel water discharger is as follows: in combination with Figure 1 and Figure 4 The mesh bag 3 is sleeved in the water inlet cover 1, the binding rope 31 is tightened, the valve 7 is opened, the water inlet cover 1 is sent into the underwater aquatic plant planting barrel 9 by holding the hard pipe section 2, the clamping seat 81 of the water pipe fixing clamp 8 is clamped on the barrel edge 91 of the planting barrel 9, the section of the first soft pipe section 4 beside the barrel edge 91 is arranged in the pipe clamp 82, so that the first soft pipe section 4 bends to cross over the barrel edge 91 of the planting barrel, the end of the second soft pipe section 6 is located on the ground or in a water receiving container, the squeeze air bag 5 is pressed manually or by stepping, the air in the water inlet cover 1, the hard pipe section 2, the first soft pipe section 4, the squeeze air bag 5 and the second soft pipe section 6 is exhausted, and the water enters and is discharged from the valve 7. The valve 7 can also be placed below the water inlet cover 1, after the water inlet cover 1, the hard pipe section 2, the first soft pipe section 4, the squeeze air bag 5 and the second soft pipe section 6 are filled with water, the water is discharged through the siphon effect. After the water in the planting barrel 9 is discharged to the required water level, the valve 7 at the water outlet is closed, or the water inlet 11 of the water inlet cover 1 is directly lifted away from the water surface, the mesh bag 3 is cleaned or replaced, and the aquatic plant planting barrel water discharger can be used for the next planting barrel.
[0031] The aquatic plant planting barrel drainage device solves the water level management problem in the maintenance process of aquatic plants, and is especially suitable for the drainage of floating plants, submerged plants and floating leaf rooted plant planting barrels. By fixing the first hose section 4 in the drainage pipe with the water pipe fixing clamp 8, the position of the water inlet 11 at the front end of the water inlet cover 1 can be controlled, so that the drainage water level can be controlled, and the water pipe can be prevented from being blocked by mistake. The valve 7 can adjust the water flow and control the drainage time. By setting the gauze bag 3, after the drainage is completed, the gauze bag can be replaced for the next planting barrel drainage operation. The setting of the gauze bag 3 can prevent the aquatic plants and their propagules from being sucked out of the barrel, and can also prevent the mutual "pollution" of plants in different barrels caused by the use of the same drainage device, thereby avoiding mixed planting. For the common filamentous green algae such as water moss in the planting barrel, part of the water moss can be adsorbed on the gauze bag 3 by the drainage of the drainage device, and the gauze bag can be directly cleaned or replaced, so that part of the water moss in the planting barrel can be cleaned, thereby reducing the entanglement, shielding and competition of the target plants. For planting barrels of different sizes and different water levels, by using a first hose of corresponding length, the drainage requirements of planting barrels with different water levels can be met. The drainage device is a manual drainage device, which has the advantages of simple operation, light weight, easy installation, disassembly and cleaning, durability, and the like. Only the gauze bag needs to be replaced as needed, and the price is very low. Therefore, the whole device has low cost, and is very suitable for controlling the water level and drainage operation in different life form aquatic plant planting barrels.
[0032] Further, in another embodiment, as shown in Figures 1-2 the rear end of the water inlet cover 1 of the aquatic plant planting barrel drainage device is provided with a first connecting head 12 for communicating with the front end of the hard pipe section 2, the front end of the hard pipe section 2 is inserted into the first connecting head 12, and the rear end of the hard pipe section 2 is detachably inserted into the front end of the first hose section 4. As shown in Figure 5 the front end of the extrusion air bag 5 is provided with a second connecting head 51, and the rear end is provided with a third connecting head 52, the second connecting head 51 is detachably inserted into the rear end of the first hose section 4, and the third connecting head 52 is inserted into the front end of the second hose section 6. As shown in Figure 6 the front end of the valve 7 is provided with a fourth connecting head 71, and the fourth connecting head 71 is inserted into the rear end of the second hose section 6. By providing the first connecting head 12 at the rear end of the water inlet cover 1, the water inlet cover 1 and the hard pipe section 2 can be detachable. By detachably inserting the rear end of the hard pipe section 2 into the front end of the first hose section 4, and detachably inserting the rear end of the first hose section 4 into the second connecting head 51, the second hose section 6 can be detachable. By inserting the third connecting head 52 of the extrusion air bag 5 into the front end of the second hose section 6, the extrusion air bag 5 can be detachable. By inserting the fourth connecting head 71 of the valve 7 into the rear end of the second hose section 6, the second hose section 6 and the valve 7 can be detachable. Each component can be disassembled for cleaning to prevent mixed planting.
[0033] Further, in another embodiment, as shown in Figure 1 Further, in another embodiment, as shown in
[0034] Further, in another embodiment, as shown in Figures 1-2 Further, in another embodiment, as shown in
[0035] Based on the above embodiments, the aquatic plant planting barrel drainer comprises a large-diameter cylindrical water inlet cover 1, a hard transparent hard pipe section 2, a disposable mesh bag 3, a longer first hose section 4, a pressurized air bag 5, a shorter second hose section 6, a valve 7 for water flow adjustment, and a water pipe fixing clamp 8. The first hose section 4 is fixed to the rim of the planting barrel through the water pipe fixing clamp 8. By operating the pressurized air bag 5 to generate an air pressure difference, water is sucked into the pressurized air bag 5, and the overlying water in the aquatic plant planting barrel is easily drained, thereby achieving water level control and drainage.
[0036] It should be noted that in this document, such terms as "comprising", "including", or any other variant thereof are intended to cover a non-exclusive inclusion, so that a process, method, article, or apparatus that includes a list of elements not only includes those elements, but also includes other elements not expressly listed or inherent to such process, method, article, or apparatus.
[0037] Although the embodiments of the present application have been shown and described, those skilled in the art can understand that various specific parameters in the above embodiments can be changed without departing from the spirit of the present application, forming a plurality of specific embodiments, all of which are within the common variation range of the present application, and will not be described one by one here.
Claims
1. An aquatic plant growing bucket drain, characterized by: The utility model provides a water inlet cover and a water pipe fixing clamp, the water inlet cover comprises a tubular water inlet cover, a hard pipe section is communicated at the rear end of the water inlet cover, the front end of the water inlet cover is a water inlet, the area of the water inlet is larger than that of the front end port of the hard pipe section, a mesh bag is sleeved on the water inlet cover, a first soft pipe section is communicated at the rear end of the hard pipe section, an extrusion air bag is communicated at the rear end of the first soft pipe section, a second soft pipe section is communicated at the rear end of the extrusion air bag, a valve is arranged on the second soft pipe section, and the valve is a one-way valve.
2. The aquatic plant bucket drain of claim 1, wherein: The rear end of the water inlet cover is provided with a first connecting head for communicating with the front end of the hard pipe section, the front end of the hard pipe section is inserted into the first connecting head, and the rear end of the hard pipe section is detachably inserted into the front end of the first soft pipe section; a second connecting head is arranged at the front end of the extrusion air bag, and a third connecting head is arranged at the rear end of the extrusion air bag; the second connecting head is detachably inserted into the rear end of the first soft pipe section, and the third connecting head is inserted into the front end of the second soft pipe section; a fourth connecting head is arranged on the valve, and the fourth connecting head is inserted into the rear end of the second soft pipe section.
3. The aquatic plant bucket drain of claim 1, wherein: The bag opening of the mesh bag is provided with a detachable binding rope.
4. The aquatic plant bucket drain of claim 1, wherein: The water inlet cover is a large-diameter cylindrical water inlet head with an inner diameter of 4 cm and a length of 15 cm; the hard pipe section has an inner diameter of 14 mm and a length of 20 cm; and the first soft pipe section and the second soft pipe section have an inner diameter of 14 mm and an outer diameter of 18 mm.
5. The aquatic plant bucket drain of claim 1, wherein: A filter cover is arranged in the water inlet cover.
6. The aquatic plant bucket drain of claim 1, wherein: The clamping seat of the water pipe fixing clamp comprises a clamping groove for being clamped on the barrel of the planting barrel, and a locking screw is arranged on the upper side of the clamping groove.
7. The aquatic plant bucket drain of claim 6, wherein: The pipe clamp comprises an arc-shaped groove matched with the thickness of the first soft pipe section, and a anti-disengagement card is arranged on the inner side of the top of the two side plates of the arc-shaped groove.