Multifunctional hydrological data and water culture display device
Patent Information
- Application Number
- CN202522508678.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-11-26
- Publication Date
- 2026-09-22
- Estimated Expiration
- 2035-11-26
AI Technical Summary
[0002]传统的水文数据展示装置主要为水位计,大部分功能单一,造型简单,不具备观赏价值,缺乏与水文化结合的交互功能,无法满足文旅、科普场景需求;另外传统水位计多为水下或水上安装,多依赖市电或内置电池,市电供电受限于布线,内置电池电量有限,维护成本高
[0015]1)本实用新型功能多元化,融合多维度展示:
Smart Images

Figure CN224788002U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of hydrological data and water culture display, and more specifically, it is a multifunctional hydrological data and water culture display device. Background Technology
[0002] Traditional hydrological data display devices are mainly water level gauges, most of which have limited functions, simple designs, lack aesthetic value, and lack interactive functions that integrate with water culture, thus failing to meet the needs of cultural tourism and science popularization scenarios. In addition, traditional water level gauges are mostly installed underwater or above water, relying on mains power or built-in batteries. Mains power supply is limited by wiring, and built-in batteries have limited power and high maintenance costs.
[0003] Therefore, it is necessary to develop a multifunctional hydrological data and water culture display device. Summary of the Invention
[0004] The purpose of this utility model is to overcome the shortcomings of the above-mentioned background technology and to provide a multifunctional hydrological data and water culture display device.
[0005] To achieve the above objectives, the technical solution of this utility model is as follows: a multifunctional hydrological data and water culture display device, including a base and a column set on the top of the base, characterized in that: a display control system and a solar energy control system are set inside the bottom of the column, and a top shape is set on the top. The display control system is connected to the hydrological station to receive real-time water level elevation and water area data. The display control system controls the LED ring display and the LED strip display. The LED ring display is circumferentially embedded in the outer wall of the column. The LED strip display is located below the LED ring display and is vertically embedded in the front outer wall of the column. The top design includes a supporting column and multiple decorative blades; one end of the supporting column extends into the column and the other end extends out of the column; the multiple decorative blades are fixed to the supporting column in a ring-shaped radial arrangement from top to bottom. The solar energy control system is connected to the solar photovoltaic panel; the solar photovoltaic panel is installed on the top of the shaped blade.
[0006] In the above technical solution, the column has a water level elevation scale vertically set on the left side of the LED strip display and a water area scale vertically set on the right side of the LED strip display; the LED ring display displays local water culture theme patterns, and when the hydrological data reaches the historical key value, the key value data is played in a loop; the LED strip display has two lines, one corresponding to the water level elevation scale and the other corresponding to the water area scale.
[0007] In the above technical solution, the solar energy control system includes a storage battery and a transformer, and the storage battery is connected to the solar photovoltaic panel through the transformer.
[0008] In the above technical solution, a leakage current detection device is also provided at the bottom of the base; the leakage current detection device is connected to the display control system and the solar energy control system.
[0009] In the above technical solution, a voice interaction control system is also provided at the bottom of the base; the voice interaction control system is connected to an infrared human body sensor and a loudspeaker; the infrared human body sensor and the loudspeaker are located on the outer wall of the bottom front of the column.
[0010] In the above technical solution, the outer wall of the base is provided with a base decorative surface; the front outer wall of the column is provided with a LOGO decorative surface above the LED ring display, and the back outer wall of the column is provided with a patterned decorative surface.
[0011] In the above technical solution, a lightning rod is installed at the top of the supporting column.
[0012] In the above technical solution, the base is embedded in the ground and is constructed of cement mortar; the column is a galvanized steel pipe column with a diameter of 2000mm and a thickness of 25mm; the supporting column is a galvanized steel pipe column with a diameter of 600mm and a thickness of 10mm; the bottom of the supporting column is connected to the inner wall of the column through a 25mm thick galvanized first sealing steel plate; the top of the column is connected to the outer wall of the supporting column through a 5mm thick galvanized second sealing steel plate; and pre-embedded conduits are installed inside the column and the supporting column.
[0013] In the above technical solution, the shaped blades are feather-shaped; an inspection window is provided at the bottom of the back of the column.
[0014] Compared with the prior art, this utility model has the following advantages.
[0015] 1) This utility model has multiple functions and integrates multi-dimensional display: More comprehensive hydrological data display: This utility model breaks through the single function of traditional water level gauges that can only display water level. It simultaneously displays real-time water level elevation and water area data through an LED strip display. Moreover, when the hydrological data reaches historical key values, the key value data can be automatically looped through an LED ring display to meet users' needs for obtaining multiple types of hydrological information.
[0016] It combines water culture display and interactive functions: the outer wall of the back of the column of this utility model is decorated with water culture patterns, and the top shape of the leaf is inspired by the concept of water bird feathers to highlight water culture elements; the voice interaction control system includes local water culture entries and supports commands such as "querying historical water levels" and "explaining water culture stories", realizing the integration of hydrological data and water culture, and can meet the needs of cultural tourism and science popularization scenarios.
[0017] 2) This utility model has a superior design, combining both aesthetic and practical value: Traditional water level gauges have simple designs and lack aesthetic value; the top design of this utility model includes ring-shaped radial blades, which are feather-like and combined with the water-themed patterns on the column. The overall design is beautiful and has high aesthetic value, which can better blend into the surrounding environment and is suitable for cultural tourism and other scenarios.
[0018] 3) This utility model has a more reasonable power supply method, reducing maintenance costs: Traditional water level gauges mostly rely on mains power or built-in batteries. Mains power supply is limited by wiring, and built-in batteries have limited capacity and high maintenance costs. This utility model uses solar power, which collects energy through solar photovoltaic panels in the top design. After being stored and converted by the solar control system, it powers the equipment without relying on mains wiring. In addition, the battery can store energy, reducing the dependence on built-in batteries, lowering maintenance costs, and making it more energy-efficient and environmentally friendly.
[0019] 4) This utility model offers a better interactive experience and improves user convenience: This utility model device is equipped with an infrared human body sensor and a loudspeaker. When tourists or managers approach, it can trigger the automatic broadcast of the current water level and water area, making it convenient for users to quickly obtain information. The voice interaction control system supports offline voice recognition, and users can query relevant information through voice commands, which improves the convenience of interaction and user experience.
[0020] 5) This utility model offers enhanced security: This utility model has a built-in leakage detection device for detecting whether the solar control system and display control system are leaking current. It can detect potential leakage hazards in time and ensure the safety of the equipment during use.
[0021] 6) The structural design of this utility model facilitates maintenance: The utility model has an inspection window at the bottom of the back of the column. The inside of the column is equipped with a display control system, a solar control system, a voice interaction control system, and a leakage current detection device, which facilitates the inspection and maintenance of the equipment by the staff and reduces the difficulty of maintenance. Attached Figure Description
[0022] Figure 1 This is a top plan view of the present invention.
[0023] Figure 2 This is a front elevation view of the present utility model.
[0024] Figure 3 This is a rear elevation view of the present invention.
[0025] Figure 4 This is a cross-sectional view of the present invention.
[0026] Figure 5 This is a plan view of the base.
[0027] Figure 6 This is a plan view of the blades and solar photovoltaic panels.
[0028] Figure 7 Example image of a decorative surface for a logo.
[0029] Figure 8 This is an example image of a decorative pattern.
[0030] Figure 9 This is a sample image of the decorative surface of the base.
[0031] Figure 10 This is a schematic diagram of the present invention.
[0032] Among them, 110-base, 111-base decorative surface, 120-column, 121-water level elevation scale, 122-water area scale, 123-LOGO decorative surface, 124-patterned decorative surface, 125-first sealing steel plate, 126-second sealing steel plate, 127-inspection window, 200-display control system, 210-LED ring display, 220-LED strip display, 300-solar control system, 310-solar photovoltaic panel, 400-top design, 410-supporting column, 411-lightning rod, 420-shaped blade, 500-leakage detection device, 600-voice interaction control system, 610-infrared human body sensor and loudspeaker, 700-pre-embedded conduit. Detailed Implementation
[0033] The following detailed description, in conjunction with the accompanying drawings, illustrates the implementation of this utility model. However, these descriptions do not constitute a limitation of the present utility model and are merely illustrative. Furthermore, the advantages of this utility model will become clearer and easier to understand through this description.
[0034] Referring to the attached drawings, a multifunctional hydrological data and water culture display device includes a base 110 and a column 120 set on the top of the base 110. The feature is that a display control system 200 and a solar energy control system 300 are set in the bottom of the column 120, and a top shape 400 is set in the top. The display control system 200 is connected to the hydrological station to receive real-time water level elevation and water area data. The display control system 200 controls the LED ring display 210 and the LED strip display 220. The LED ring display 210 is circumferentially embedded in the outer wall of the column 120. The LED strip display 220 is located below the LED ring display 210 and is vertically embedded in the front outer wall of the column 120. The top shape 400 includes a support column 410 and multiple shape blades 420; one end of the support column 410 extends into the column 120 and the other end extends out of the column 120; the multiple shape blades 420 are fixed to the support column 410 in a ring-radial pattern from top to bottom. The solar control system 300 is connected to the solar photovoltaic panel 310; the solar photovoltaic panel 310 is mounted on the top of the shaped blade 420.
[0035] The column 120 has a vertical water level elevation scale 121 on the left side of the LED strip display 220 and a water area scale 122 on the right side of the LED strip display 220; the LED ring display 210 displays local water culture theme patterns, and when the hydrological data reaches the historical key value, the key value data is played in a loop; the LED strip display 220 has two lines, one corresponding to the water level elevation scale 121 and the other corresponding to the water area scale 122.
[0036] The solar control system 300 includes a battery and a transformer, with the battery connected to the solar photovoltaic panel 310 via the transformer.
[0037] A leakage current detection device 500 is also provided inside the bottom of the base 110; the leakage current detection device 500 is connected to the display control system 200 and the solar energy control system 300.
[0038] The base 110 is also equipped with a voice interaction control system 600 at its bottom; the voice interaction control system 600 is connected to an infrared human body sensor and a loudspeaker 610; the infrared human body sensor and loudspeaker 610 are located on the outer wall of the bottom front of the column 120.
[0039] The outer wall of the base 110 is provided with a base decorative surface 111; the front outer wall of the column 120 is provided with a LOGO decorative surface 123 above the LED ring display 210, and the back outer wall of the column 120 is provided with a patterned decorative surface 124.
[0040] A lightning rod 411 is installed at the top of the supporting column 410.
[0041] The base 110 is embedded in the ground and is constructed of cement mortar. The column 120 is a galvanized steel pipe column with a diameter of 2000 mm and a thickness of 25 mm. The supporting column 410 is a galvanized steel pipe column with a diameter of 600 mm and a thickness of 10 mm. The bottom of the supporting column 410 is connected to the inner wall of the column 120 through a 25 mm thick galvanized first sealing steel plate 125. The top of the column 120 is connected to the outer wall of the supporting column 410 through a 5 mm thick galvanized second sealing steel plate 126. A pre-embedded conduit 700 is installed inside the column 120 and the supporting column 410.
[0042] The blades 420 are feather-shaped; an inspection window 127 is provided at the bottom of the back of the column 120.
[0043] In actual use, the exposed parts of the column 120, the second sealing steel plate 126, the supporting column 410, and the shaped blade 420 are sprayed with white fluorocarbon paint; the lightning rod 411 is a finished product purchased.
[0044] This utility model integrates a power supply module, a remote signal receiving module, an interactive experience module, a data display module, and a cultural display module.
[0045] The power module includes a solar control system 300 and a leakage current detection device 500; the leakage current detection device 500 is used to detect whether the solar control system 300 and the display control system 200 are leaking current.
[0046] The remote signal receiving module involves a display control system 200, which connects to a nearby hydrological station to receive real-time water level and elevation data as well as water area data, and controls the changes in hydrological data on the LED ring display 210 and the LED strip display 220.
[0047] The interactive experience module involves a voice interaction control system 600, which includes an offline voice recognition module. The voice library of the offline voice recognition module contains local water culture terms, covering local water conservancy history, water poems, water management stories, etc., and supports commands such as "querying historical water levels" and "explaining water culture stories". When tourists or managers approach the infrared human body sensor and loudspeaker 610, it can trigger an automatic broadcast: "Current water level XX meters, water area XX square kilometers".
[0048] The data display module includes an LED ring display 210 and an LED strip display 220. The LED ring display 210 is ring-shaped and consists of one unit. The LED strip display 220 is strip-shaped and consists of two units. The background of the LED ring display 210 displays a local water culture theme pattern by default. When the hydrological data reaches the historical key value, the key value data is played in a loop. In the LED strip display 220, one strip corresponds to the water level elevation scale 121 and the other corresponds to the water area scale 122.
[0049] The cultural display module includes shaped blades 420, logo decorative surface 123, pattern decorative surface 124, and base decorative surface 111. The shaped blades 420 draw inspiration from the concept of waterbird feathers, highlighting water culture elements. The top layer of the shaped blades 420 is fixed with solar photovoltaic panels 310. The annular radial shape of multiple solar photovoltaic panels facilitates the solar photovoltaic panels 310 to receive sunlight at different heights, improving energy conversion efficiency, while reducing the weight of the top shape and minimizing wind resistance interference to the device.
[0050] The forms of the LOGO decorative surface 123 and the pattern decorative surface 124 are not fixed and can be refined according to the water culture history of the place where the device is used. It is recommended to use various forms such as spray painting, painting, and relief to display them; the form of the base decorative surface 111 is not fixed.
[0051] All other unspecified parts belong to the prior art.
Claims
1. A multifunctional hydrological data and water culture display device, comprising a base (110) and a column (120) mounted on top of the base (110), characterized in that: The column (120) is equipped with a display control system (200) and a solar control system (300) at its bottom and a top design (400) at its top; The display control system (200) is connected to the hydrological station to receive real-time water level elevation and water area data. The display control system (200) controls the LED ring display (210) and the LED strip display (220). The LED ring display (210) is circumferentially embedded in the outer wall of the column (120). The LED strip display (220) is located below the LED ring display (210) and is vertically embedded in the front outer wall of the column (120). The top shape (400) includes a support column (410) and multiple shape blades (420); one end of the support column (410) extends into the column (120) and the other end extends out of the column (120); the multiple shape blades (420) are fixed on the support column (410) in a ring-radial pattern from top to bottom; The solar control system (300) is connected to the solar photovoltaic panel (310); the solar photovoltaic panel (310) is set on the top of the shaped blade (420).
2. The multifunctional hydrological data and water culture display device according to claim 1, characterized in that: The column (120) has a vertical water level elevation scale (121) on the left side of the LED strip display (220) and a water area scale (122) on the right side of the LED strip display (220); the LED ring display (210) displays local water culture theme patterns, and when the hydrological data reaches the historical key value, the key value data is played in a loop; the LED strip display (220) has two lines, one corresponding to the water level elevation scale (121) and the other corresponding to the water area scale (122).
3. The multifunctional hydrological data and water culture display device according to claim 2, characterized in that: The solar control system (300) includes a battery and a transformer, with the battery connected to the solar photovoltaic panel (310) via the transformer.
4. The multifunctional hydrological data and water culture display device according to claim 3, characterized in that: The base (110) is also equipped with a leakage current detection device (500) at its bottom; the leakage current detection device (500) is connected to the display control system (200) and the solar energy control system (300).
5. The multifunctional hydrological data and water culture display device according to claim 4, characterized in that: The base (110) is also equipped with a voice interaction control system (600); the voice interaction control system (600) is connected to an infrared human body sensor and a loudspeaker (610); the infrared human body sensor and the loudspeaker (610) are located on the outer wall of the bottom front of the column (120).
6. The multifunctional hydrological data and water culture display device according to claim 1, characterized in that: The base (110) has a base decorative surface (111) on its outer wall; the column (120) has a LOGO decorative surface (123) on its front outer wall above the LED ring display (210), and a patterned decorative surface (124) on its back outer wall.
7. The multifunctional hydrological data and water culture display device according to claim 1, characterized in that: A lightning rod (411) is installed at the top of the supporting column (410).
8. The multifunctional hydrological data and water culture display device according to claim 1, characterized in that: The base (110) is embedded in the ground and is constructed of cement mortar; the column (120) is a galvanized steel pipe column with a diameter of 2000 mm and a thickness of 25 mm; the supporting column (410) is a galvanized steel pipe column with a diameter of 600 mm and a thickness of 10 mm; the bottom of the supporting column (410) is connected to the inner wall of the column (120) through a 25 mm thick galvanized first sealing steel plate (125); the top of the column (120) is connected to the outer wall of the supporting column (410) through a 5 mm thick galvanized second sealing steel plate (126); and a pre-embedded conduit (700) is installed inside the column (120) and the supporting column (410).
9. The multifunctional hydrological data and water culture display device according to claim 1, characterized in that: The blades (420) are feather-shaped; an inspection window (127) is provided at the bottom of the back of the column (120).