Water environment system with shielding device

By introducing shielding devices and related facilities into the water environment system, the problem of water bodies being susceptible to external influences has been solved, achieving stable and efficient management of the water environment and improving water quality control capabilities.

CN223675515UActive Publication Date: 2025-12-16SHENZHEN ZHONGDE MEMBRANE STRUCTURE CO LTD
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Patent Information

Application Number
CN202423153781.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-18
Publication Date
2025-12-16
Estimated Expiration
2034-12-18

AI Technical Summary

Technical Problem

In existing water environment systems, water bodies are easily affected and polluted by external factors, and there is no effective shielding device to protect parameters, leading to a decline in water quality and environmental impact.

Method used

A water environment system with shielding devices is adopted, including shielding devices, water supply and drainage pipes, purification system, thermal insulation covering structure, monitoring device and lighting structure. The water environment facilities are shielded by shielding devices, and the water supply and drainage are managed by pipes and purification system to achieve stable control.

Benefits of technology

It has achieved the protection of water environment facilities, prevented external pollution, maintained water body stability, realized the orderly control and recycling of water parameters, and improved the efficiency of water quality management.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a water environment system with a shielding device. The water environment system comprises at least one shielding device and at least one water environment facility with a space used for containing water. A shielding device is arranged above part or all of the water environment facilities, so that the space for accommodating water in at least part of the water environment facilities is shielded through the shielding device. The shielding device and the water environment facility are arranged, and the shielding device shields at least part of the space for containing water in the water environment facility, so that the water environment facility can be protected, the water environment facility is stabilized, and water in the water environment facility is prevented from being polluted by the outside.
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Description

TECHNICAL FIELD

[0001] The present application relates to the field of shielding devices, in particular to a water environment system with a shielding device. BACKGROUND

[0002] The water environment system includes different types of water bodies suitable for various purposes. In the existing utilization mode, the water bodies are often directly exposed to the outdoors or covered by simple greenhouses, which makes the water bodies in the water environment easy to evaporate, and the temperature, oxygen concentration, organic matter content, and bacterial diversity of the water bodies are easily affected by the external environment. External pollution can easily enter the water bodies, reducing the quality of the water bodies. The existing utilization mode often cannot achieve orderly control of various parameters of the water bodies. Instability of the water bodies can further affect the surrounding environment. SUMMARY

[0003] The present application addresses the above-mentioned deficiencies in the prior art and provides a water environment system with a shielding device to solve at least one of the above technical problems, as described below.

[0004] A water environment system with a shielding device includes at least one shielding device and at least one water environment facility with a space for containing water.

[0005] The shielding device is arranged above part or all of the water environment facilities to shield the space for containing water in at least part of the water environment facilities by the shielding device.

[0006] In some embodiments, at least one water supply main pipe is further included, and at least one water supply branch pipe is arranged on each water supply main pipe. Each water environment facility is connected to at least one water supply branch pipe.

[0007] And / or

[0008] At least one drainage main pipe is further included, and at least one drainage branch pipe is arranged on each drainage main pipe. Each water environment facility is connected to at least one drainage branch pipe.

[0009] In some embodiments, at least one purification system is further included, and the purification system is connected to the drainage main pipe and the water supply main pipe respectively, for purifying the water transported in the drainage main pipe and outputting the purified water through the water supply main pipe to circulate the water in the water environment facility.

[0010] And / or

[0011] A valve body is arranged on the water supply branch pipe and / or the drainage branch pipe, and the valve body is used to control the opening or closing of the water supply branch pipe and / or the drainage branch pipe.

[0012] By setting the water supply main pipe and the water supply branch pipe connected to the water supply main pipe, the water drainage main pipe and the water drainage branch pipe connected to the water drainage main pipe, the water supply and drainage of each water environment facility can be effectively managed. In practical application, there can be multiple water supply main pipes, each of which is connected to one water environment facility through one water supply branch pipe, or one water supply main pipe is connected to multiple water environment facilities through multiple water supply branch pipes. In one specific embodiment, the position of the water outlet of the water supply branch pipe is higher than the highest point of the space in the water environment facility that contains water, which makes it difficult for the water in the water supply branch pipe to come into contact with the water supply branch pipe after entering the water environment facility, and the water in the water environment facility will not flow back into the water supply branch pipe and / or the water supply main pipe.

[0013] In practical application, by setting the purification system, the water in the water environment facility can be filtered, disinfected, purified and the like, further realizing the recycling of the water in the water environment facility and achieving the water balance between the water supply main pipe, the water drainage main pipe and the purification system.

[0014] In practical application, by setting the switchable valve body on the water supply branch pipe and / or the water drainage branch pipe, the user can adjust the operation of each water supply branch pipe and water drainage branch pipe according to actual needs.

[0015] In some specific embodiments, a water environment monitoring device and a kinetic device are further included; the water environment monitoring device is connected to the space in the water environment facility for containing water and is communicatively connected to the kinetic device, and the kinetic device is connected to the water supply main pipe and / or the water drainage main pipe; the water environment monitoring device is used to obtain water body data of the water in the water environment facility; and the kinetic device is used to adjust the working mode of the water supply passage and / or the water drainage passage through the water body data. The water body data includes one or more of water level data, water pressure data, water temperature data and water body composition data.

[0016] In some specific embodiments, the shielding device further comprises a heat preservation covering structure. In one specific embodiment, the heat preservation covering structure comprises a heat preservation diaphragm, which can further insulate the water environment facility in the shielding device to achieve more stable temperature control.

[0017] In some specific embodiments, a mounting structure for mounting the heat preservation covering structure on the shielding device is further included.

[0018] In some specific embodiments, the mounting structure comprises a first connecting piece, a guide rail, a sliding structure and a second connecting piece; the first connecting piece is arranged on the side surface of the shielding device facing the water environment facility, and the first connecting piece is connected to the guide rail at the end away from the shielding device; the guide rail is provided with the sliding structure, and one end of the sliding structure is connected to the second connecting piece; and the other end of the second connecting piece is connected to the heat preservation covering structure to mount the heat preservation covering structure on the shielding device.

[0019] In an actual application, the first connecting member includes a first connecting band and a first lifting ring, the second connecting member includes a second connecting band and a second lifting ring, and the sliding structure includes a pulley; one end of the first connecting band is fixedly connected to a side surface of the shielding device facing the water environment facility, the other end of the first connecting band is connected with the first lifting ring, the first lifting ring is movably connected to the guide rail, the pulley is slidably arranged in the guide rail, the lifting ring in the second connecting member is movably connected to the pulley, one end of the second connecting band is connected with the second lifting ring, and the other end of the second connecting band is fixedly connected to the heat preservation covering structure. Through the arrangement of the lifting ring, the guide rail and the pulley and the like, when the heat preservation covering structure is deformed due to disturbance, the lifting ring and the like can eliminate the force generated by the heat preservation covering structure.

[0020] In an actual application, the heat preservation covering structure is hoisted in the shielding device through the mounting structure, and through the guide rail in the mounting structure and the sliding structure in the guide rail, the user can fold or unfold the heat preservation covering structure through the guide rail according to actual needs.

[0021] In an embodiment, a drainage surface is formed on the surface of the heat preservation covering structure. In some use cases, such as in winter, the water temperature in the water environment facility is higher than the temperature outside, and the water in the water environment facility evaporates to the surface of the heat preservation covering structure to form condensed water. In an actual application, the drainage surface has a height difference, so that the condensed water gathered on the surface of the drainage surface can be smoothly drained along the drainage surface. The height of the drainage surface can decrease from the area far away from the edge of the shielding device to the area close to the edge of the shielding device. A device for collecting condensed water can also be arranged on the area close to the edge of the shielding device on the drainage surface.

[0022] In some embodiments, a third connecting member on the surface of the shielding device and a fixing member arranged in the outside world are further included; the third connecting member connects the fixing member to stabilize the shielding device, so that the shielding device shields part or all of the water environment facility.

[0023] In some embodiments, the shielding device includes an integrally formed or separately arranged air film structure; the air film structure includes a single-layer film structure and / or a multi-layer film structure. In an actual application, the air film structure can also form a shielding space that can be in communication or sealed with respect to the outside world between the air film structure and part or all of the water environment facility. When the actual area to be covered is small, an integrally formed air film structure can be used; when the area to be covered is large, the user can use a separately arranged air film structure to connect multiple air film structures to each other to form a larger covering area, or to make each air film structure independently form a covering space. The user can select a single-layer film structure and / or a multi-layer film structure to set the shielding device according to actual needs.

[0024] In some specific embodiments, the shielding device includes at least one air-ribbed membrane structure, within which an inflatable space is formed that is sealed relative to the outside; the air-ribbed membrane structure forms a shielding space that can be connected to or sealed relative to the outside with part or all of the water environment facility.

[0025] In one specific embodiment, the third connector is disposed on the rib of the air-ribbed membrane structure, and the fixing member is disposed on the plane of the ground or water environment facility. The third connector is fixedly connected to the fixing member to fix the rib of the air-ribbed membrane structure to the plane of the ground or water environment facility.

[0026] In one specific embodiment, the air-supported membrane structure has an operable access passage that connects the sheltered space to the outside. Users can enter and exit the sheltered device through this access passage.

[0027] In some specific embodiments, at least one light-collecting structure is also included; the light-collecting structure includes:

[0028] A lighting device installed within a shielding device for providing artificial light illumination;

[0029] And / or a light-transmitting window set on the surface of the shielding device, the light-transmitting window communicating with the outside world or being isolated from the outside world through a light-transmitting membrane material.

[0030] In one specific embodiment, the lighting device can be automatic or manual. It can be connected to the inward-facing surface of the shielding device or positioned inside the shielding device near the corresponding water environment facility. The light-transmitting window is equipped with an operable blackout curtain structure, allowing the user to adjust the lighting brightness and the amount of light entering the shielding device through the window according to actual usage needs.

[0031] Beneficial effects: This application provides a water environment system with a shielding device. By setting up a shielding device and at least one water environment facility with a space for containing water, and by shielding at least a portion of the water environment facility with the space for containing water, the water environment facility can be protected and stabilized, preventing the water therein from being polluted by the outside. Attached Figure Description

[0032] To more clearly illustrate the technical solutions of the embodiments of this application, the accompanying drawings used in the embodiments will be briefly introduced below. It should be understood that the following drawings only show some embodiments of this application and should not be regarded as a limitation of the scope. For those skilled in the art, other related drawings can be obtained based on these drawings without creative effort.

[0033] Figure 1Fig. 1 is a schematic view of the top structure of the present application;

[0034] Figure 2 Fig. 2 is a schematic view of the side structure of the present application along the line C-D;

[0035] Figure 3 Fig. 3 is a schematic view of one of the sectional structures of the present application along the line C-D;

[0036] Figure 4 Fig. 4 is a schematic view of one of the sectional structures of the present application along the line A-B;

[0037] Figure 5 Fig. 5 is a schematic view of another sectional structure of the present application along the line A-B;

[0038] Figure 6 Fig. 6 is a schematic view of another sectional structure of the present application along the line A-B;

[0039] Figure 7 Fig. 7 is a schematic view of another sectional structure of the present application along the line A-B;

[0040] Figure 8 Fig. 8 is a schematic view of another sectional structure of the present application along the line A-B and the schematic view of the installation structure;

[0041] Figure 9 Fig. 9 is a schematic view of the side structure of the present application along the line A-B;

[0042] Figure 10 Fig. 10 is a schematic view of the partial structure of the air rib membrane structure of the present application;

[0043] Figure 11 Fig. 11 is a schematic view of the module connection relationship of the host computer in the present application.

[0044] The reference signs are as follows: 1 - shielding device; 11 - air rib membrane structure; 12 - access passage; 2 - water environment facility; 31 - water supply main pipe; 32 - water supply branch pipe; 33 - drainage main pipe; 34 - drainage branch pipe; 35 - purification system; 36 - valve body; 4 - heat preservation cover structure; 5 - installation structure; 51 - first connecting member; 511 - first connecting band; 512 - first lifting ring; 52 - guide rail; 53 - sliding structure; 54 - second connecting member; 541 - second connecting band; 542 - second lifting ring; 61 - third connecting member; 62 - fixing member; 71 - lighting device; 72 - light-transmitting window; 8 - photovoltaic module; 9 - host computer; 91 - space monitoring device; 92 - water environment monitoring device; 93 - kinetic energy device. DETAILED DESCRIPTION

[0045] The concept, specific structure and technical effects of the present application will be described clearly and completely in combination with the embodiments and the drawings below, so as to fully understand the purpose, features and effects of the present application.

[0046] Hereinafter, various embodiments of the present application will be described more fully. The present application can have various embodiments, and adjustments and changes can be made therein. However, it is to be understood that there is no intention to limit various embodiments of the present application to the specific embodiments disclosed herein, but the present application is to be construed as encompassing all adjustments, equivalents and / or alternatives falling within the spirit and scope of various embodiments of the present application.

[0047] Hereinafter, the term "include" or "may include" used in various embodiments of the present application indicates the presence of the disclosed function, operation or element, and does not limit the addition of one or more functions, operations or elements. In addition, as used in various embodiments of the present application, the terms "include", "have" and their cognates merely intend to indicate a specific feature, number, step, operation, element, component or combination of the foregoing, and should not be understood as excluding the presence or possibility of addition of one or more other features, numbers, steps, operations, elements, components or combinations of the foregoing in advance.

[0048] In various embodiments of the present application, the expression "or" or "at least one of A or / and B" includes any combination of the listed terms or all combinations thereof. For example, the expression "A or B" or "at least one of A or / and B" can include A, can include B, or can include both A and B.

[0049] The expressions such as "first", "second", etc. used in various embodiments of the present application can modify various constituent elements in various embodiments, but can not limit the corresponding constituent elements. For example, the above expressions do not limit the order and / or importance of the elements. The above expressions are used only for the purpose of distinguishing one element from other elements. For example, the first user device and the second user device indicate different user devices, although both are user devices. For example, a first element can be called a second element, and likewise, a second element can be called a first element without departing from the scope of various embodiments of the present application.

[0050] It should be noted that in the present application, unless explicitly specified and defined otherwise, the terms "mount", "connect", "fix", etc. should be understood broadly, for example, can be fixed connection, can be detachable connection, or integral connection; can be mechanical connection, or electrical connection; can be direct connection, or indirect connection through an intermediate medium; can be the communication inside two elements. For those skilled in the art, the specific meaning of the above terms in the present application can be understood according to the specific circumstances.

[0051] In this application, those of ordinary skill in the art need to understand that the terms indicating the orientation or positional relationship herein are based on the orientation or positional relationship shown in the drawings, which is only for the convenience of describing the application and simplifying the description, and does not indicate or imply that the device or element indicated must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation on the various embodiments of the application.

[0052] The terms used in various embodiments of the application are only for the purpose of describing specific embodiments and are not intended to limit various embodiments of the application. As used herein, the singular form is intended to include the plural form, unless the context clearly indicates otherwise. Unless otherwise defined, all terms used herein (including technical and scientific terms) have the same meaning as commonly understood by those of ordinary skill in the art to which various embodiments of the application belong. The terms (such as those defined in a commonly used dictionary) will be interpreted to have the same meaning as the contextual meaning in the relevant technical field and will not be interpreted to have an idealized meaning or an overly formal meaning, unless clearly defined in various embodiments of the application.

[0053] Embodiments

[0054] The present application provides a water environment system with a shielding device, which can effectively protect and regulate the water environment, and the specific scheme is as follows:

[0055] A water environment system with a shielding device 1, comprising at least one shielding device 1 and at least one water environment facility 2 with a space for containing water;

[0056] Part or all of the water environment facilities 2 are provided with shielding devices 1 to shield at least part of the space for containing water in the water environment facilities 2 by the shielding devices 1. In actual application, there can be multiple water environment facilities 2, as shown in Figure 1 and Figure 4 As shown, there can also be at least one water environment facility 2, as shown in Figure 3

[0057] In some specific embodiments, at least one water supply main pipe 31 is further included, and at least one water supply branch pipe 32 is arranged on each water supply main pipe 31, and each water environment facility 2 is connected to at least one water supply branch pipe 32;

[0058] and / or

[0059] At least one drainage main pipe 33 is further included, and at least one drainage branch pipe 34 is arranged on each drainage main pipe 33; each water environment facility 2 is connected to at least one drainage branch pipe 34.

[0060] ​In some specific embodiments, at least one purification system 35 is also included. The purification system 35 is connected to the drainage pipe 33 and the water supply pipe 31 respectively. It is used to purify the water transported in the drainage pipe 33 and output the purified water through the water supply pipe 31 to circulate the water in the water environment facility 2.

[0061] and / or

[0062] A valve body 36 is provided on the water supply branch pipe 32 and / or the drainage branch pipe 34. The valve body 36 is used to control the opening or closing of the water supply branch pipe 32 and / or the drainage branch pipe 34.

[0063] By setting up a main water supply pipe 31 and branch pipes 32 connected to it, a main drainage pipe 33 and branch pipes 34 connected to it, the water supply and drainage of each water environment facility 2 can be effectively managed. In practical applications, there can be multiple main water supply pipes 31, each connected to a water environment facility 2 via a branch pipe 32, such as... Figure 6 As shown; alternatively, a main water supply pipe 31 can be connected to multiple water environment facilities 2 via multiple branch water supply pipes 32, such as Figure 5 As shown. There can be multiple main drainage pipes 33, each connected to a water environment facility 2, or there can be one main drainage pipe 33 connected to multiple water environment facilities 2 via multiple branch drainage pipes 34, such as... Figure 7 As shown.

[0064] In one specific embodiment, such as Figure 5 and Figure 6 As shown, the main water supply pipe 31, the main drainage pipe 33, and the branch drainage pipe 34 can be installed below the water environment facility 2, such as underground, to reduce the occupation of the ground area and to make better use of gravity for drainage during the drainage process.

[0065] In practical applications, by setting up the purification system 35, the water in the water environment facility 2 can undergo filtration, disinfection, purification, and oxygenation, further realizing the recycling of water in the water environment facility 2 and achieving water balance among the water supply main pipe 31, drainage main pipe 33, and purification system 35. It should be noted that this application does not specifically limit the specific installation location of the purification system 35; it can be installed inside the shielding device 1 or in the external environment outside the shielding device 1, such as... Figure 1 This is a schematic diagram of the purification system 35 installed within the shielding area of ​​the shielding device 1.

[0066] In one specific embodiment, the water environment facility 2 includes facilities such as a pool that can hold water.

[0067] In practical application, by setting the switchable valve body 36 on the water supply branch pipe 32 and / or the drainage branch pipe 34, the user can adjust the operation of each water supply branch pipe 32 and drainage branch pipe 34 according to actual needs.

[0068] In some embodiments, the water environment monitoring device 92 is connected to the space for containing water in the water environment facility 2 and is communicatively connected to the kinetic energy device 93, the kinetic energy device 93 is connected to the valve body 36 on the water supply main pipe 31, and / or the valve body 36 on the drainage main pipe 33, and / or the valve body 36 on the water supply branch pipe 32, and / or the valve body 36 on the drainage branch pipe 34; the water environment monitoring device 92 is used to obtain water body data of the water in the water environment facility 2; the kinetic energy device 93 is used to adjust the working mode of the water supply passage and / or the drainage passage through the water body data. The water body data includes one or more of water level data, water pressure data, water temperature data, and water composition data.

[0069] In one embodiment, as shown in Figure 11 the host computer 9 is further included, the water environment monitoring device 92 and the kinetic energy device 93 are communicatively connected to the host computer 9, the user can understand the water body data reflected by the water environment monitoring device 92 and the parameters of the water environment facility 2 in the host computer 9, and send signals to the kinetic energy device 93 through the host computer 9, and the kinetic energy device 93 further adjusts the opening and closing of the valve body 36 on the water supply main pipe 31, and / or the valve body 36 on the drainage main pipe 33, and / or the valve body 36 on the water supply branch pipe 32, and / or the valve body 36 on the drainage branch pipe 34, the size of the water supply and / or the drainage. Therefore, the user can more independently control the water contained in each water environment facility 2.

[0070] In some embodiments, the shielding device 1 further comprises a heat preservation cover structure 4, as shown in Figures 4-6 and Figure 8 In one embodiment, the heat preservation cover structure 4 comprises a heat preservation diaphragm, by setting the heat preservation diaphragm, the water environment facility 2 in the shielding device 1 can be further heat preserved to realize more stable temperature control.

[0071] In some embodiments, the installation structure 5 for installing the heat preservation cover structure 4 in the shielding device 1 is further included.

[0072] In some specific embodiments, the mounting structure 5 comprises a first connecting member 51, a guide rail 52, a sliding structure 53 and a second connecting member 54; the first connecting member 51 is arranged on the side surface of the sheltering device 1 facing the water environment facility 2, and the first connecting member 51 is connected with the guide rail 52 at the end away from the sheltering device 1; the sliding structure 53 is arranged in the guide rail 52, and the sliding structure 53 is connected with one end of the second connecting member 54; the other end of the second connecting member 54 is connected with the heat-insulating covering structure 4, so as to mount the heat-insulating covering structure 4 on the sheltering device 1.

[0073] In an actual application, the first connecting member 51 comprises a first connecting band 511 and a first lifting ring 512, the second connecting member 54 comprises a second connecting band 541 and a second lifting ring 542, and the sliding structure 53 comprises a pulley; one end of the first connecting band 511 is fixedly connected on the side surface of the sheltering device 1 facing the water environment facility 2, and the other end is connected with the first lifting ring 512; the first lifting ring 512 is movably connected with the guide rail 52; the pulley is slidably arranged in the guide rail 52; the lifting ring of the second connecting member 54 is movably connected with the pulley; one end of the second connecting band 541 is connected with the second lifting ring 542, and the other end is fixedly connected with the heat-insulating covering structure 4. By arranging the lifting ring, the guide rail 52 and the pulley, when the heat-insulating covering structure is deformed due to disturbance, the lifting ring and other structures can eliminate the force generated by the heat-insulating covering structure 4.

[0074] In an actual application, the heat-insulating covering structure 4 is hoisted in the sheltering device 1 through the mounting structure 5; and through the guide rail 52 and the sliding structure 53 in the guide rail 52 of the mounting structure 5, the user can fold or unfold the heat-insulating covering structure 4 according to actual needs through the guide rail 52.

[0075] In a specific embodiment, a drainage surface is formed on the surface of the heat-insulating covering structure 4. In some use cases, such as in winter, the water temperature in the water environment facility 2 is higher than the ambient temperature, and the water in the water environment facility 2 will evaporate to the surface of the heat-insulating covering structure 4 to form condensed water. In an actual application, the drainage surface has a height difference, so that the condensed water gathered on the surface of the drainage surface can be smoothly drained along the drainage surface; the height of the drainage surface can decrease from the area of the drainage surface away from the sheltering device 1 to the area near the edge of the sheltering device 1. A device for collecting condensed water can also be arranged on the area near the edge of the sheltering device 1 on the drainage surface.

[0076] In some specific embodiments, a third connecting member 61 is arranged on the surface of the sheltering device 1, and a fixing member 62 is arranged in the ambient environment; the third connecting member 61 is connected with the fixing member 62, so as to stabilize the sheltering device 1 and make the sheltering device 1 shelter part or all of the water environment facility 2.

[0077] In some embodiments, the sheltering device 1 comprises an integrally formed or separately arranged air film structure; the air film structure comprises a single-layer film structure and / or a multi-layer film structure. In actual applications, the air film structure can form a sheltering space relative to the outside world, which is in communication with or sealed from the outside world, with part or all of the water environment facilities 2. When the area to be covered is small, an integrally formed air film structure can be used; when the area to be covered is large, the user can use a separately arranged air film structure to connect multiple air film structures to form a larger covering area, or to form a covering space for each air film structure to cover different water environment facilities 2 or different areas of the same water environment facility 2. The user can select a single-layer film structure and / or a multi-layer film structure to set up the sheltering device 1 according to actual needs.

[0078] In some embodiments, the sheltering device 1 comprises at least one air rib film structure 11, which forms an air-filled space sealed from the outside world; the air rib film structure 11 forms a sheltering space relative to the outside world, which is in communication with or sealed from the outside world, with part or all of the water environment facilities 2.

[0079] In one embodiment, the third connecting member 61 is arranged on the rib foot of the air rib film structure 11, the fixing member 62 is arranged on the ground or the plane where the water environment facility 2 is located, and the third connecting member 61 is fixedly connected with the fixing member 62 to fix the rib foot of the air rib film structure 11 on the ground or the plane where the water environment facility 2 is located.

[0080] In actual applications, as shown in Figure 10 , the third connecting member 61 can be an elastic connecting band, and the fixing member 62 can be a bolt connecting structure fixed on the ground or the device outside the world, one end of the elastic connecting band is connected with the rib foot of the air rib film structure 11, and the other end is connected with the bolt to realize the reinforced connection of the rib foot.

[0081] In actual applications, the sheltering device 1 is arranged on the plane where the water environment facility 2 is located, and forms a sheltering space relative to the outside world, which is in communication with or sealed from the outside world, with the water environment facility 2 to be sheltered. At this time, the water environment facility 2 located in the sheltering space can be protected from the outside world to the greatest extent. In some specific applications, the sheltering space in the sheltering device 1 also has the need for ventilation, and at least one ventilation device is further connected to the sheltering device 1, one end of the ventilation device is connected with the outside world, and the other end is connected with the sheltering space, so as to realize the ventilation and air exchange of the sheltering space. The air exchange device comprises a fan.

[0082] In one embodiment, as shown in Figure 9As shown, the air rib type membrane structure 11 or the air membrane structure is provided with an openable access passage 12 which communicates the sheltered space with the outside. The user can access the sheltering device 1 through the access passage 12.

[0083] In some specific embodiments, further comprising at least one lighting structure; the lighting structure comprises:

[0084] The lighting device 71 provided in the sheltering device 1 for providing artificial light illumination;

[0085] And / or the light-transmitting window 72 provided on the surface of the sheltering device 1, the light-transmitting window 72 communicates with the outside or is isolated from the outside by the light-transmitting film material.

[0086] In one specific embodiment, the lighting device 71 can be automatic or manual, and the lighting device 71 can be connected to the inward side surface of the sheltering device 1 or be arranged inside the sheltering device 1 corresponding to the position close to the water environment facility 2. The light-transmitting window 72 is provided with an openable light-shielding curtain structure, and the user can adjust the illumination brightness of the lighting device 71 and the amount of light entering the sheltering device 1 through the light-transmitting window 72 according to the actual use demand.

[0087] In one specific embodiment, as shown, Figure 2 Further comprising a power generation device, the power generation device comprises a photovoltaic assembly 8. The photovoltaic assembly 8 can be arranged on the side surface of the sheltering device 1 facing the outside to convert solar light into electric energy. In actual application, the power generation device can be further connected to the kinetic energy device 93 to directly provide the converted electric energy to the kinetic energy device 93, further reducing the waste of energy.

[0088] In one specific embodiment, as shown, Figure 11 Further comprising a plurality of space monitoring devices 91, the space monitoring devices 91 are arranged in the sheltered space of the sheltering device 1, wherein the space monitoring devices 91 comprise one or more of temperature monitoring members, humidity monitoring members and light monitoring members. In actual application, the space monitoring devices 91 can be connected to the upper computer, and the user can obtain the various data detected by the space monitoring devices 91 through the upper computer 9.

[0089] The embodiment provides a water environment system with a sheltering device, by arranging the sheltering device and at least one water environment facility with a space for containing water, and shielding at least part of the space for containing water in the water environment facility through the sheltering device, the protection and stability of the water in the water environment facility can be realized, and the water is prevented from being polluted by the outside. Further, the orderly management of water supply and drainage of the water environment facility can be realized through the pipeline arrangement of the water supply main pipe, the water supply branch pipe, the drainage main pipe and the drainage branch pipe.

[0090] The foregoing is considered as illustrative only of the principles of the application. Further, various modifications can be made by those skilled in the art without departing from the scope of the application. The examples are illustrative only and not restrictive of the scope of the application.

Claims

1. A water environment system having a screening device, characterized by, The water environment facility comprises at least one shielding device and at least one water environment facility having a space for containing water. The shielding device is arranged above part or all of the water environment facility to shield the space for containing water in at least part of the water environment facility.

2. A water environment system having a screening device according to claim 1, characterized in that, At least one water supply main pipe is further included, and at least one water supply branch pipe is arranged on each water supply main pipe. At least one water drainage main pipe is further included, and at least one water drainage branch pipe is arranged on each water drainage main pipe. Each water environment facility is connected to at least one water drainage branch pipe.

3. A water environment system with a screening device according to claim 2, characterized in that At least one purification system is further included, which is connected to the water drainage main pipe and the water supply main pipe respectively, for purifying the water conveyed in the water drainage main pipe and outputting the purified water through the water supply main pipe to circulate the water in the water environment facility. Valves are arranged on the water supply branch pipe and / or the water drainage branch pipe to control the opening or closing of the water supply branch pipe and / or the water drainage branch pipe. A heat preservation cover structure is further arranged in the shielding device.

4. The aquatic environment system with a shelter according to claim 1, characterized in that A mounting structure is further included for mounting the heat preservation cover structure on the shielding device.

5. A water environment system having a screening device according to claim 4, characterized in that The mounting structure comprises a first connecting member, a guide rail, a sliding structure and a second connecting member.

6. A water environment system having a screening device according to claim 5, characterized in that The first connecting member is arranged on the side surface of the shielding device facing the water environment facility, and the guide rail is connected to the end of the first connecting member away from the shielding device. The sliding structure is arranged in the guide rail and connected to one end of the second connecting member.

7. A water environment system having a sheltering device according to claim 1, characterized in that, The other end of the second connecting member is connected to the heat preservation cover structure to mount the heat preservation cover structure on the shielding device. A third connecting member is further arranged on the surface of the shielding device and a fixing member is arranged outside.

8. A water environment system having a sheltering device according to claim 1, characterized in that, The third connecting member is connected to the fixing member to stabilize the shielding device and shield part or all of the water environment facility. The shielding device comprises an integrally formed or separately arranged air film structure.

9. A water environment system having a sheltering device according to claim 1, characterized in that, The air film structure comprises a single-layer film structure and / or a multi-layer film structure.

10. A water environment system having a sheltering device according to claim 1, characterized in that, The shielding device comprises at least one air rib film structure having an airtight space formed therein relative to the outside. The air rib film structure forms a shielding space relative to the outside, which is connected to part or all of the water environment facility. At least one lighting structure is further included. An illuminating device is arranged in the shielding device to provide artificial light. A light-transmitting window is further arranged on the surface of the shielding device, which is connected to the outside or isolated from the outside by a light-transmitting film.