Annular wave-making fine filter water treatment equipment
By combining a two-stage filtration system and multi-stage filter elements, the problem of poor filtration effect of traditional water treatment equipment is solved, achieving efficient water purification and simple maintenance, and ensuring the water safety of water recreation facilities.
Patent Information
- Application Number
- CN202423008629.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-06
- Publication Date
- 2026-02-13
- Estimated Expiration
- 2034-12-06
AI Technical Summary
Traditional water treatment equipment has poor filtration performance and is inconvenient to maintain in water recreation facilities, making it difficult to meet modern high standards.
A two-stage filtration system is adopted, including a primary filtration unit and a secondary filtration unit. The stirring component promotes flocculation and sedimentation, and the filter elements of quartz sand, activated carbon and anthracite coal seam are combined to achieve multi-stage filtration and disinfection treatment.
It improves water treatment efficiency and quality, ensures water safety, simplifies maintenance processes, and meets high water quality standards.
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Figure CN223906670U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to water park equipment technical field, concretely is a kind of annular wave making precision filter machine water treatment equipment. BACKGROUND
[0002] With the improvement of people's living standards, the demand for entertainment facilities is increasing, especially water entertainment projects, such as wave pool, swimming pool, etc. These facilities will produce a large amount of sewage during use, which requires effective water treatment equipment to ensure water quality clean and safe. Traditional water treatment equipment often has poor filtering effect, inconvenient maintenance and other problems, which is difficult to meet the high standard requirements of modern entertainment facilities. SUMMARY
[0003] The utility model aims at providing a kind of annular wave making precision filter machine water treatment equipment to solve the problems raised in the above background.
[0004] In order to achieve the above purpose, the present disclosure provides a kind of annular wave making precision filter machine water treatment equipment, including first filter mechanism, hose and second filter mechanism;
[0005] The first filter mechanism includes a first filter barrel and a stirring assembly, a first cavity is formed in the first filter barrel, a charging port, a first water inlet and a first water outlet are formed on the first filter barrel and communicate with the first cavity, and the first water inlet is used to communicate with the drain of the wave pool;
[0006] The stirring assembly includes a driving member and a stirring member, the driving member is located outside the first filter barrel and is installed on the first filter barrel, the stirring member is located in the first cavity, and the driving member is connected with the stirring member and used to drive the stirring member to rotate;
[0007] The second filter mechanism includes a second filter barrel, a second cavity is formed in the second filter barrel, a second water inlet and a second water outlet are formed on the second filter barrel and communicate with the second cavity, the second water inlet communicates with the first water outlet through the hose, and the second water outlet is used to communicate with the inlet of the disinfection equipment.
[0008] Optionally, the stirring member includes a shaft and a blade formed on the shaft, the blade is located in the stirring cavity, the shaft extends along the horizontal direction and connects with the driving member through the first filter barrel;
[0009] The position of the stirring member is lower than the position of the charging port, the position of the first water inlet and the position of the first water outlet.
[0010] Optionally, the stirring member is a plurality of, and a plurality of stirring members are arranged along the circumference of the first filter barrel.
[0011] The number of the driving members corresponds to the number of the stirring members.
[0012] Optionally, the first filter barrel comprises a barrel body and a cover plate, the cover plate being detachably arranged on an opening of the barrel body to jointly define the first cavity with the barrel body.
[0013] Optionally, the second filter mechanism further comprises a filter member;
[0014] The filter member is detachably arranged in the second filter barrel;
[0015] The filter member is arranged between the position of the second water inlet and the position of the second water outlet.
[0016] Optionally, a second cavity is formed in the second filter barrel, the second cavity being used for accommodating the filter member;
[0017] An annular protrusion is formed on the inner wall of the second filter barrel and extends circumferentially along the second filter barrel;
[0018] The bottom surface of the filter member is overlapped on the top surface of the annular protrusion.
[0019] Optionally, the filter member comprises a box body, a quartz sand layer, an activated carbon layer and an anthracite layer;
[0020] A third cavity is formed in the box body, the third cavity being sequentially provided with the quartz sand layer, the activated carbon layer and the anthracite layer from top to bottom;
[0021] The top surface and the bottom surface of the box body are both provided with a plurality of uniformly distributed through holes, the diameters of the through holes being smaller than the particle sizes of the quartz sand layer, the activated carbon layer and the anthracite layer.
[0022] Optionally, the annular wave-making precision filter water treatment equipment further comprises a water pump, the hose comprising a first hose and a second hose;
[0023] The first end of the first hose is used for being connected with the first water outlet, the second end of the first hose is connected with the inlet of the water pump, the first end of the second hose is connected with the outlet of the water pump, and the second end of the second hose is connected with the second water inlet.
[0024] Through the above technical scheme, in the first filter barrel, the suspended matter and flocculating agent in the water can be fully mixed through the stirring action of the stirring assembly, a larger flocculation can be formed, and the settling speed of the flocculation can be accelerated. Thus, during the process of completing the stirring and standing, the flocculation can settle to the bottom under the action of gravity, and the relatively clean water flows out through the first water outlet. The water filtered through the first stage is conveyed to the second filter barrel through the hose and continues to be filtered to remove the remaining small particles and suspended matter. The water filtered through the second stage flows out through the second water outlet and enters the disinfection device for the final disinfection treatment to ensure that the water quality meets the safety standard. That is, through the combination of the two-stage filtering treatment, the efficiency and quality of the water treatment can be effectively improved. The first-stage filtering promotes flocculation and settling through stirring to remove most of the suspended matter; and the second-stage filtering further purifies the water quality to ensure that the finally output water meets the safety standard.
[0025] Other features and advantages of the present disclosure will be described in detail in the following detailed description section. BRIEF DESCRIPTION OF DRAWINGS
[0026] The accompanying drawings are included to provide a further understanding of the present disclosure and constitute a part of the specification, and are used together with the following detailed description to explain the present disclosure, but do not constitute a limitation on the present disclosure. In the drawings:
[0027] Figure 1 is a structural schematic view of a ring wave making precision filter water treatment equipment provided by an exemplary embodiment of the present disclosure;
[0028] Figure 2 is a sectional view of a first filtering mechanism of the ring wave making precision filter water treatment equipment provided by an exemplary embodiment of the present disclosure;
[0029] Figure 3 is a sectional view of a second filtering mechanism of the ring wave making precision filter water treatment equipment provided by an exemplary embodiment of the present disclosure.
[0030] BRIEF DESCRIPTION OF DRAWINGS
[0031] 10, first filtering mechanism; 11, first filter barrel; 111, first cavity; 112, feeding port; 113, first water inlet; 114, first water outlet; 115, barrel body; 116, cover plate; 12, stirring assembly; 121, stirring piece; 1211, rotating shaft; 1212, blade; 20, hose; 21, first hose; 22, second hose; 30, second filtering mechanism; 31, second filter barrel; 311, second water inlet; 312, second water outlet; 32, filtering piece; 321, box body; 322, quartz sand layer; 323, activated carbon layer; 324, anthracite layer; 325, third cavity; 326, through hole; 33, annular protrusion; 34, second cavity; 40, water pump. DETAILED DESCRIPTION
[0032] The specific embodiments of the present disclosure are described in detail below with reference to the accompanying drawings. It should be understood that the specific embodiments described herein are merely intended for illustration and explanation of the present disclosure and are not intended to limit the present disclosure.
[0033] In the present disclosure, unless otherwise stated, the orientation words such as "up, down, left, right" are generally defined as the direction of the drawing surface, and "inner, outer" refers to the inner and outer contours of the relevant parts. In addition, the terms "first", "second" and the like are only used to distinguish the description and cannot be understood as indicating or implying relative importance.
[0034] In the description of the present disclosure, it should also be noted that, unless otherwise explicitly specified and limited, the terms "set", "connected" should be understood broadly, for example, it can be fixedly connected, or it can be detachably connected, or integrally connected; it can be directly connected, or indirectly connected through an intermediate medium, or it can be connected inside two elements. For those skilled in the art, the specific meaning of the above terms in the present disclosure can be understood according to the specific circumstances.
[0035] As shown in Figures 1 to 3 The present disclosure provides a circular wave-making precision filter water treatment equipment, which comprises a primary filter mechanism, a hose and a secondary filter mechanism. The primary filter mechanism comprises a first filter barrel and a stirring assembly. A first cavity is formed in the first filter barrel. A first water inlet and a first water outlet, which are both in communication with the first cavity, are formed on the first filter barrel. The first water inlet is used to communicate with the drain of the wave pool. The stirring assembly comprises a driving member and a stirring member. The driving member is located outside the first filter barrel and is installed on the first filter barrel. The stirring member is located in the first cavity. The driving member is connected with the stirring member and is used to drive the stirring member to rotate. The secondary filter mechanism comprises a second filter barrel. A second cavity is formed in the second filter barrel. A second water inlet and a second water outlet, which are both in communication with the second cavity, are formed on the second filter barrel. The second water inlet is in communication with the first water outlet through the hose. The second water outlet is used to communicate with the inlet of the disinfection equipment.
[0036] Among them, the first filter barrel forms a first cavity inside, which is used to contain the water discharged from the wave pool for treatment.
[0037] Among them, the feeding port is used for the addition of flocculants.
[0038] Among them, the first water outlet is connected with the hose to transport the water after preliminary treatment to the secondary filter mechanism.
[0039] Among them, the stirring member is located in the first cavity and is connected with the driving member, which is used to stir the suspended solids and flocculants in the water, promote flocculation and sedimentation.
[0040] The second filter barrel is internally formed with a second cavity for further processing of the water delivered from the first filter mechanism.
[0041] Through the above technical solution, in the first filter barrel, through the stirring action of the stirring assembly, the suspended matter and flocculating agent in the water can be fully mixed, larger flocs can be formed, and the settling speed of the flocs can be accelerated. Thus, during the standing process after the stirring is completed, the flocs can settle to the bottom under the action of gravity, and the relatively clean water flows out through the first water outlet. The water filtered by the first filter is delivered to the second filter barrel through the hose and continues to be filtered to remove the remaining small particles and suspended matter. The water filtered by the second filter flows out through the second water outlet and enters the disinfection device for the final disinfection treatment to ensure that the water quality meets the safety standard. That is, through the combination of two-stage filtration treatment, the efficiency and quality of water treatment can be effectively improved. The first-stage filtration promotes flocculation and sedimentation through stirring to remove most of the suspended matter; the second-stage filtration further purifies the water quality to ensure that the finally output water meets the safety standard.
[0042] As an implementation manner, as shown in Figure 2 The stirring piece includes a rotating shaft and blades formed on the rotating shaft, the blades are located in the stirring cavity, the rotating shaft extends in the horizontal direction and is connected with the driving piece through the first filter barrel, and the positions of the stirring piece are all lower than the positions of the feeding port, the first water inlet and the first water outlet.
[0043] The rotating shaft extends in the horizontal direction, passes through the first filter barrel and is connected with the driving piece. The horizontal arrangement of the rotating shaft can help to generate uniform stirring effect in the water body and ensure that the suspended matter and flocculating agent in the water are fully mixed.
[0044] Since the positions of the stirring piece (including the rotating shaft and the blades) are all lower than the positions of the feeding port, the first water inlet and the first water outlet, the suspended matter and flocculating agent in the water can be fully mixed at a lower water level during the stirring process, and the stirring piece can avoid interfering with the water inlet and water outlet.
[0045] As an implementation manner, as shown in Figure 2 The stirring piece is multiple, the multiple stirring pieces are arranged in the circumferential direction of the first filter barrel, and the number of the driving pieces corresponds to the number of the stirring pieces.
[0046] The multiple stirring pieces are arranged in the circumferential direction, which can ensure that the water body is uniformly stirred in all directions and avoid dead angles, which helps to form larger and more uniform flocs, improve the sedimentation efficiency and shorten the time of the whole water treatment process. In addition, each stirring piece has an independent driving piece, which can independently control the stirring speed and direction and flexibly adjust the stirring parameters. The independent driving piece can ensure that each stirring piece can fully play a role and improve the overall stirring effect.
[0047] As an implementation form, as shown in Figure 2 The first filter barrel includes a barrel body and a cover plate, the cover plate is detachably arranged on the opening of the barrel body to jointly define a first cavity with the barrel body.
[0048] Since regular cleaning of the filter barrel is an important step to ensure the filtering effect, the detachable cover plate makes the cleaning process more convenient and can completely remove the residues and deposits in the barrel body.
[0049] As an implementation form, as shown in Figure 3 The second filtering mechanism further includes a filter element, the filter element is detachably installed in the second filter barrel, and the position of the filter element is between the positions of the second water inlet and the second water outlet.
[0050] Specifically, water enters the second filter barrel from the second water inlet, further removes fine particles and suspended solids through the detachable filter element, and clean water flows out through the second water outlet. The detachable filter element makes the cleaning process more convenient and can completely remove the residues and deposits on the filter element. In addition, when the filter element reaches the service life or needs to be replaced, the new filter element can be easily detached and replaced to ensure the filtering effect.
[0051] As an implementation form, as shown in Figure 3 The second filter barrel forms a second cavity for accommodating the filter element, and the inner wall of the second filter barrel forms an annular protrusion extending circumferentially along the second filter barrel, and the bottom surface of the filter element is lapped on the top surface of the annular protrusion.
[0052] The design of the annular protrusion can enable the filter element to be stably installed in the second filter barrel and prevent the filter element from being displaced or falling off during water treatment. The bottom surface of the filter element is lapped on the top surface of the annular protrusion, which makes the filter element easy to be detached, facilitating cleaning and replacement. In addition, the cooperation of the annular protrusion and the filter element can ensure good sealing performance and prevent unfiltered water from directly flowing into the second water outlet.
[0053] As an implementation form, as shown in Figure 3 The filter element includes a box body, a quartz sand layer, an activated carbon layer, and an anthracite layer, the third cavity is formed in the box body, and the quartz sand layer, the activated carbon layer, and the anthracite layer are sequentially arranged in the third cavity from top to bottom, the top surface and the bottom surface of the box body are both formed with a plurality of uniformly distributed through holes, and the hole diameters of the through holes are all smaller than the particle diameters of the quartz sand layer, the activated carbon layer, and the anthracite layer.
[0054] The quartz sand layer is located at the uppermost layer and is used to remove larger particles and suspended solids in water.
[0055] The activated carbon layer is located in the middle layer and is used to adsorb organic matter, odors and pigments in the water.
[0056] The anthracite seam is located at the bottom and is used to further remove fine particles and suspended solids from the water, while providing additional adsorption capacity.
[0057] The through-hole design ensures that water can pass smoothly through the filter element, while preventing filter material leakage and maintaining the stability and durability of the filtration effect.
[0058] As one implementation method, such as Figure 1 As shown, the annular wave-generating fine filter water treatment equipment also includes a water pump, and the hose includes a first hose and a second hose. The first end of the first hose is used to connect to the first outlet, the second end of the first hose is connected to the inlet of the water pump, the first end of the second hose is connected to the outlet of the water pump, and the second end of the second hose is connected to the second inlet.
[0059] By configuring the water pump and hoses, the annular wave-generating fine filter water treatment equipment disclosed herein not only achieves efficient water transfer but also improves the overall efficiency and reliability of the system. The use of the water pump ensures smooth water transfer between each stage of the filtration mechanism, while the hose design reduces water loss during the transfer process.
[0060] The preferred embodiments of this disclosure have been described in detail above with reference to the accompanying drawings. However, this disclosure is not limited to the specific details of the above embodiments. Within the scope of the technical concept of this disclosure, various simple modifications can be made to the technical solutions of this disclosure, and these simple modifications all fall within the protection scope of this disclosure.
[0061] It should also be noted that the various specific technical features described in the above specific embodiments can be combined in any suitable manner without contradiction. In order to avoid unnecessary repetition, this disclosure will not describe the various possible combinations separately.
[0062] Furthermore, various different embodiments of this disclosure can be combined in any way, as long as they do not violate the spirit of this disclosure, they should also be regarded as the content disclosed in this disclosure.
Claims
1. A ring wave making fine filter water treatment apparatus characterized by comprising: The primary filtering mechanism, the hose and the secondary filtering mechanism are arranged in sequence. The primary filtering mechanism comprises a first filtering barrel and a stirring assembly, a first cavity is formed in the first filtering barrel, a feeding opening, a first water inlet and a first water outlet which are communicated with the first cavity are formed on the first filtering barrel, and the first water inlet is arranged to be communicated with a water outlet of a wave pool. The stirring assembly comprises a driving member and a stirring member, the driving member is arranged outside and mounted on the first filtering barrel, the stirring member is arranged in the first cavity, and the driving member is connected with the stirring member and used to drive the stirring member to rotate. The secondary filtering mechanism comprises a second filtering barrel, a second cavity is formed in the second filtering barrel, a second water inlet and a second water outlet which are communicated with the second cavity are formed on the second filtering barrel, the second water inlet is communicated with the first water outlet through the hose, and the second water outlet is arranged to be communicated with an inlet of a disinfection device.
2. The ring wave generator fine filter water treatment apparatus according to claim 1, wherein The stirring member comprises a rotating shaft and a blade formed on the rotating shaft, the blade is arranged in the first cavity, the rotating shaft extends along a horizontal direction and is connected with the driving member through the first filtering barrel. The positions of the stirring members are all lower than the positions of the feeding opening, the first water inlet and the first water outlet.
3. The ring wave generator fine filter water treatment apparatus according to claim 2, wherein The stirring members are multiple, and the multiple stirring members are arranged in a circumferential direction of the first filtering barrel. The number of the driving members corresponds to the number of the stirring members.
4. The ring wave generator fine filter water treatment apparatus according to claim 1, wherein The first filtering barrel comprises a barrel body and a cover plate, the cover plate is detachably arranged on an opening of the barrel body to define the first cavity together with the barrel body.
5. The ring wave generator fine filter water treatment apparatus according to claim 1, wherein The secondary filtering mechanism further comprises a filtering member. The filtering member is detachably arranged in the second filtering barrel. The position of the filtering member is between the positions of the second water inlet and the second water outlet.
6. The ring wave generator fine filter water treatment apparatus according to claim 5, wherein A second cavity is formed in the second filtering barrel, and the second cavity is used to accommodate the filtering member. An annular protrusion is formed on an inner wall of the second filtering barrel and extends along a circumferential direction of the second filtering barrel. A bottom surface of the filtering member is overlapped on a top surface of the annular protrusion.
7. The ring wave generator fine filter water treatment apparatus according to claim 6, wherein The filtering member comprises a box body, a quartz sand layer, an activated carbon layer and an anthracite layer. A third cavity is formed in the box body, and the third cavity is sequentially provided with the quartz sand layer, the activated carbon layer and the anthracite layer from top to bottom. A plurality of through holes are uniformly distributed on the top surface and the bottom surface of the box body, and the diameters of the through holes are all smaller than the particle sizes of the quartz sand layer, the activated carbon layer and the anthracite layer.
8. The ring wave generator fine filter water treatment apparatus according to claim 1, wherein The annular wave generating fine filter water treatment equipment further comprises a water pump, and the hose comprises a first hose and a second hose. A first end of the first hose is connected with the first water outlet, a second end of the first hose is connected with an inlet of the water pump, a first end of the second hose is connected with an outlet of the water pump, and a second end of the second hose is connected with the second water inlet.