Soft rainwater collecting cistern with digital skylight
By adopting a digital skylight structure on the soft rainwater collection cellar and using polymer composite materials and metal pressure ring welding, water level and water temperature monitoring is achieved, solving the problems of high material cost and poor concealment in existing technologies, and improving the stability and safety of the device.
Patent Information
- Application Number
- CN202422456879.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-10
- Publication Date
- 2025-12-26
- Estimated Expiration
- 2034-10-10
AI Technical Summary
Existing soft rainwater harvesting cellar water level monitoring devices require support frames and water level monitoring instruments, which are costly in terms of materials and have poor concealment, making them easy to be stolen or damaged, and they are also prone to falling off in windy conditions.
The system adopts a digital skylight structure, using a window made of polymer composite material and a patch to seal and clamp the monitoring motherboard and solar panel on the lower surface of the window. It is then welded with a metal pressure ring and combined with water level and temperature sensors and solar panels to collect and wirelessly transmit water level and temperature data.
It improves the concealment of the device, reduces the risk of theft or damage, and makes the installation more stable, avoiding the problem of falling off due to strong winds.
Smart Images

Figure CN223723878U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to soft body rainwater collection cellar technical field, concretely is a kind of soft body rainwater collection cellar with digital skylight. BACKGROUND
[0002] The existing water level monitor device for measuring soft body rainwater collection cellar includes water level monitor, support frame solar panel, solar panel is installed on support frame, water level monitor is arranged in installation box, water level probe is sunk into the water of cellar body through the rain-receiving surface of water cellar, and this water level monitor needs to use support frame and water level monitor, therefore, material cost is needed to consume;In addition, it is poor in concealment, which may lead to theft or malicious damage to some extent, and at the same time, the water level monitor may be thrown or detached due to the fluctuation of water cellar surface caused by strong wind. SUMMARY
[0003] The utility model aims at providing a kind of soft body rainwater collection cellar with digital skylight to solve the problems raised in the above background.
[0004] To achieve the above object, the utility model provides the following technical scheme: a kind of soft body rainwater collection cellar with digital skylight, the soft body rainwater collection cellar includes water storage bag and rain-receiving surface, the water storage bag is equipped with opening, the rain-receiving surface is connected with the water storage bag and covers the opening of the water storage bag, the rain-receiving surface and water storage bag jointly form water storage cavity, skylight on the rain-receiving surface, the rain-receiving surface is equipped with movable lid digital skylight in skylight, the window body lower surface of digital skylight is sealed and is equipped with monitoring mainboard, the monitoring mainboard is electrically connected with water level temperature sensor, the window body is equipped with through-hole, the through-hole is equipped with solar panel, and the solar panel is electrically connected with monitoring mainboard.
[0005] Preferably, the window body is also provided with a cloth, the cloth is connected with the lower surface of the window body, and the monitoring mainboard and the solar panel are sealed between the cloth and the lower surface of the window body.
[0006] Preferably, the cloth is provided with a mounting hole, a waterproof joint is arranged at the mounting hole, and the water level temperature sensor is electrically connected with the monitoring mainboard through the waterproof joint.
[0007] Preferably, the cloth and the window body are made of the same material, which is a high-molecular composite material, and the cloth and the lower surface of the window body are welded by high-frequency hot pressing.
[0008] Preferably, the cloth and the lower surface of the window body are welded by a metal compression ring, the metal compression ring includes a ring body and a pressing block connected with the ring body, the ring body is used for sealing installation of the monitoring mainboard, and the pressing block is used for sealing installation of the position between the solar panel and the monitoring mainboard.
[0009] Preferably, the periphery of the patch is provided with a plurality of drainage holes.
[0010] Preferably, the data monitoring terminal includes a housing and a PCB board disposed within the housing. The PCB board is provided with a charging circuit, a networking circuit, a main control circuit, and a data acquisition circuit. The data acquisition circuit, the main control circuit, the charging circuit, and the networking circuit are electrically connected to the main control circuit. The data acquisition circuit is used to acquire water level sensor data, and the networking circuit is used for wireless data transmission.
[0011] Compared with the prior art, the beneficial effects of this utility model are:
[0012] Compared with existing water level and temperature monitoring devices installed in water cellars, this utility model has better concealment, which reduces the possibility of theft or malicious damage to a certain extent. At the same time, the installation method is more stable, and the monitoring device will not be blown away or fall off due to the undulation of the water cellar surface caused by strong winds. Attached Figure Description
[0013] Figure 1 A top-view structural diagram of the digital skylight provided by this utility model;
[0014] Figure 2 A structural schematic diagram of the digital sunroof provided by this utility model from the upward viewing direction;
[0015] Figure 3 A schematic diagram of a software-based rainwater harvesting cellar with a digital skylight;
[0016] Figure 4 A schematic diagram of the metal pressure ring structure provided by this utility model;
[0017] Figure 5 This is a schematic diagram showing the metal pressure ring in use.
[0018] In the diagram: Digital skylight 1, window 11, drain hole 111, water level and temperature sensor 121, solar panel 122, patch 13, waterproof connector 131, soft rainwater collection cellar 2, rain-receiving surface 21, water storage bag 22, metal pressure ring 3, ring body 31, pressure block 32. Detailed Implementation
[0019] The technical solution of one embodiment of the present invention will be clearly and completely described below with reference to the accompanying drawings.
[0020] Please see Figures 1-5 :
[0021] The application discloses a soft rainwater collecting cellar with a digital skylight, and the soft rainwater collecting cellar 2 comprises a water storage bag 22 and a rainwater receiving surface 21, the water storage bag 22 is provided with an opening, the rainwater receiving surface 21 is connected with the water storage bag 22 and covers the opening of the water storage bag 22, the rainwater receiving surface 21 and the water storage bag 22 jointly form a water storage cavity, the rainwater receiving surface 21 is provided with a skylight opening (not shown), the rainwater receiving surface 21 is provided with a digital skylight 1 with a movable cover arranged at the skylight opening, wherein the digital skylight 1 is movably connected with the rainwater receiving surface 21 through a connecting rope, a lower surface of a window body 11 of the digital skylight 1 is sealingly provided with a monitoring mainboard (not shown), the monitoring mainboard is electrically connected with a water level and temperature sensor 121, a through hole is formed in the window body 11, and a solar panel 122 is arranged at the through hole and electrically connected with the monitoring mainboard.
[0022] Since the window body of the soft rainwater collecting cellar is made of a polymer composite material, the monitoring mainboard and the solar panel are sealingly clamped between the cloth and the lower surface of the window body by connecting the cloth 13 with the lower surface of the window body.
[0023] In order to ensure the sealing connection of the monitoring mainboard and the water level and temperature sensor, the cloth 13 is provided with a mounting hole, a waterproof connector 131 is arranged at the mounting hole, and the water level and temperature sensor 121 is electrically connected with the monitoring mainboard through the waterproof connector 131.
[0024] In order to facilitate the sealing connection of the monitoring mainboard and the solar panel with the window body, the cloth 13 and the window body 11 are made of the same material, i.e., a polymer composite material, and the cloth 13 and the lower surface of the window body 11 are welded by high-frequency heat pressing.
[0025] In order to timely drain the rainwater falling on the cloth position and avoid the rainwater remaining on the window body at the cloth position from affecting the monitoring mainboard and the solar panel, a plurality of drainage holes 111 are arranged at the periphery of the cloth.
[0026] In order to facilitate the welding connection of the cloth and the window body, the cloth 13 and the lower surface of the window body 11 are welded by a metal pressing ring 3, the metal pressing ring 3 comprises a ring body 31 and a pressing block 32 connected with the ring body 31, the ring body 31 is used for sealingly mounting the monitoring mainboard, and the pressing block 32 is used for sealingly mounting the solar panel 122 and the connection position between the solar panel 122 and the monitoring mainboard. During welding, the metal pressing ring 3 is placed under the cloth, the position of the monitoring mainboard is located in the cavity region of the metal pressing ring, the position of the solar panel is located on the pressing block, and then welding is performed.
[0027] The monitoring mainboard adopts the prior art and is provided with a charging circuit, a networking circuit, a main control circuit and a data acquisition circuit, the data acquisition circuit, the main control circuit, the charging circuit and the networking circuit are electrically connected with the main control circuit, so that the water level and temperature of the soft rainwater collecting cellar can be collected and wirelessly transmitted.
[0028] The above are only embodiments of the present application, and do not limit the patent scope of the present application, and any equivalent structure or equivalent process transformation using the content of the present application specification and drawings, or direct or indirect application in other related technical fields, are also included in the patent protection scope of the present application.
Claims
1. A flexible rainwater harvesting cellar with a digital skylight, the flexible rainwater harvesting cellar comprising a water storage bag and a rain-receiving surface, the water storage bag having an opening, the rain-receiving surface being connected to the water storage bag and covering the opening of the water storage bag, the rain-receiving surface and the water storage bag together forming a water storage cavity, the skylight on the rain-receiving surface being characterized in that: The rain-receiving surface is equipped with a digital skylight that can be movably covered by the skylight opening. A monitoring main board is sealed on the lower surface of the digital skylight. The monitoring main board is electrically connected to a water level and water temperature sensor. A through hole is provided on the skylight, and a solar panel is provided at the through hole. The solar panel is electrically connected to the monitoring main board.
2. A flexible rainwater harvesting cellar with a digital skylight according to claim 1, characterized in that: The window is also provided with a patch, which is connected to the lower surface of the window. The monitoring motherboard and the solar panel are sealed between the patch and the lower surface of the window.
3. A flexible rainwater harvesting cellar with a digital skylight according to claim 2, characterized in that: The patch is provided with mounting holes, and a waterproof connector is provided at the mounting holes. The water level and temperature sensor is electrically connected to the monitoring motherboard through the waterproof connector.
4. A flexible rainwater harvesting cellar with a digital skylight according to claim 3, characterized in that: The patch and the window are made of the same material, both being high-polymer composite materials. The patch and the lower surface of the window are welded together by high-frequency hot pressing.
5. A flexible rainwater harvesting cellar with a digital skylight according to claim 2, characterized in that: The patch is welded to the lower surface of the window using a metal pressure ring. The metal pressure ring includes a ring body and a pressure block connected to the ring body. The ring body is used for the sealed installation of the monitoring motherboard, and the pressure block is used for the sealed installation of the solar panel and the position between the solar panel and the monitoring motherboard.
6. A flexible rainwater harvesting cellar with a digital skylight according to claim 2, characterized in that: The patch has several drainage holes around its perimeter.
7. A flexible rainwater harvesting cellar with a digital skylight according to claim 1, characterized in that: The monitoring motherboard is equipped with a charging circuit, a networking circuit, a main control circuit, and a data acquisition circuit. The data acquisition circuit, the main control circuit, the charging circuit, and the networking circuit are all electrically connected to the main control circuit.