Water conservancy project fence device with water quality detection function
Patent Information
- Application Number
- CN202410089376.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-01-23
- Publication Date
- 2026-09-15
- Estimated Expiration
- 2044-01-23
AI Technical Summary
[0002]水利工程围挡又称为水利工程围挡装置,是一种针对水域环境的特殊防护设施,通过建造实体栏杆或软性材料阻挡水体和陆地的交界处,形成一条明显的分界线,水利工程围挡可以起到隔离水域和陆地的作用,有效防止人员和车辆误入水域,降低溺水和意外事故发生的概率,还可以有效保护水域生态环境,防止盗捕、滥捕、乱钓等破坏行为的发生,保护水域内的鱼类、植物等生物资源得到恰当的保护,而为了对不同位置水质进行检测,有些围挡装置通常配备水质检测仪,而市面上常见的具有水质检测功能的水利工程围挡装置,围挡装置通常是通过混凝土浇筑固定,当围挡装置损坏或过度老化之后,更换围挡装置需要破坏混凝土,会加大使用成本,且通过水质检测仪检测的时候,水质检测仪的灵活性较低,不使用的时候需要费力才能取下
检测仪与拼接板进行连接,连接板可以与不同位置的围挡装置进行连接,与不同位置的支撑组件连接,提高检测仪的灵活性,使检测仪可以安装在需要位置安装使用,使单个检测仪可以持续对任意位置进行检测,减少使用成本的同时,提高使用寿命,且不使用,也可以便捷拉动上升脱离。
Smart Images

Figure CN117905337B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of water conservancy enclosure technology, and in particular to a water conservancy project enclosure device with water quality detection function. Background Technology
[0002] Water conservancy project enclosures, also known as water conservancy project enclosure devices, are special protective facilities for aquatic environments. They are constructed using solid railings or flexible materials to block the boundary between water and land, forming a clear dividing line. Water conservancy project enclosures effectively isolate water areas from land, preventing people and vehicles from accidentally entering the water, reducing the probability of drowning and accidents. They also effectively protect the aquatic ecosystem, preventing destructive activities such as poaching, overfishing, and illegal fishing, and ensuring the proper protection of aquatic resources such as fish and plants. To monitor water quality at different locations, some enclosure devices are equipped with water quality testing instruments. However, commonly available water conservancy project enclosure devices with water quality testing functions are usually fixed with concrete. When the enclosure device is damaged or excessively aged, replacing it requires breaking the concrete, increasing operating costs. Furthermore, water quality testing instruments are not very flexible and require considerable effort to remove when not in use. Summary of the Invention
[0003] This disclosure relates to a water conservancy project enclosure device with water quality detection function. The detector is connected to the splicing plate, which can be connected to enclosure devices at different locations and to support components at different locations. This improves the flexibility of the detector, allowing it to be installed and used at the required locations. A single detector can continuously detect any location, reducing usage costs and increasing service life. When not in use, it can be easily pulled up and detached.
[0004] The first aspect of this disclosure provides a water conservancy project enclosure device with water quality testing function, specifically including: an enclosure device; an L-shaped support component welded and fixed at the middle of the rear top of the enclosure device, two round rods inserted inside the support component, the top ends of the round rods welded and fixed to a splicing plate, the splicing plate moving the round rods up and down together, a guide groove on each side of the splicing plate, a detector fixed at the top of the splicing plate, the detector being connected to a detection head via a circuit; a fixing structure; the fixing structure is spliced to the bottom of the enclosure device, a splicing structure fixed on each side of the top of the fixing structure, an auxiliary groove of elongated structure on each side of the splicing structure, a round rod for use as a key can be inserted into the auxiliary groove, and an L-shaped fitting groove on the outer side of the outer end of the splicing structure.
[0005] In at least some embodiments, a U-shaped support head is welded to each of the bottom ends of the enclosure device. The bottom of the support head is welded and fixed to the connector. An arc-shaped rod for positioning is provided on each side of the connector. An inclined clamping plate assembly is fixed to the inner side of the connector. The clamping plate assembly is made of elastic metal and is inserted into the fitting groove for locking and fixing. A protective assembly covers the top of the detector. The U-shaped protective assembly slides above the splicing plate. A U-shaped slider is fixed to each side of the protective assembly. The slider is inserted into the long groove and slides freely inside the long groove. A support frame is fixed to the rear end of the splicing plate. The bottom end of the support frame is a telescopic structure. The bottom end of the support frame is connected to the detection head and drives the detection head to move.
[0006] In at least some embodiments, a base plate with an inclined arrangement is fixed to each of the two symmetrically arranged base plates, and a uniformly arranged fixing rod is fixed through the two base plates. The fixing structure, base plates, and fixing rods are cast and fixed inside the concrete. The outer side of the base plate is provided with a uniformly arranged through groove. Three plug-in structures are welded and fixed to the top of the fixing structure. A retaining device is inserted into the plug-in structure. The two splicing structures are symmetrically arranged. An arc-shaped positioning groove is provided on each of the two sides of the fitting groove. A plug-in is inserted into the fitting groove, and an arc-shaped rod is inserted into the positioning groove.
[0007] Its working principle includes the following steps: 1) First, control the fixed structure to be evenly arranged and poured into the inside of the concrete, so that the fixed structure, the base plate and the fixed rod 202 are poured into the inside of the concrete; 2) Then control the enclosure device to splice with the fixed structure, so that the bottom of the enclosure device is inserted into the inside of the plug-in structure, the plug-in is inserted into the inside of the fitting groove, the arc rod is inserted into the inside of the positioning groove, and the clamping plate assembly is clamped and fixed with the inside of the fitting groove by means of elasticity. Then control the connection between the detection head and the support frame, adjust the position of the detection head through the support frame, control the splicing plate and the support assembly to splice, drive the detection instrument to be installed conveniently, so that the detection instrument can be installed and used conveniently. 3) When testing water quality, push the protective component to move and operate the detector to easily test the water quality. When the enclosure device is damaged, insert the control rod into the auxiliary groove, move the control rod upward, push the card plate component to tilt, disengage from the fixing of the plug-in part, and then pull the enclosure device up to make the enclosure device easy to remove, improve the replacement efficiency, and do not need to damage the concrete.
[0008] This invention provides a water conservancy project enclosure device with water quality detection function, which has the following beneficial effects: The detector is connected to the splicing plate, which can be connected to the fencing device at different locations and the support components at different locations, improving the flexibility of the detector. This allows the detector to be installed and used in the required locations, enabling a single detector to continuously detect any location, reducing operating costs, increasing service life, and allowing it to be easily pulled up and detached when not in use.
[0009] Before installing the fencing device, first control the fixed structure, base plate, and fixing rods to be poured inside the concrete. Then, control the splicing of the fencing device with the fixed structure, and the clamping plate assembly to be locked into the internal groove, making the fencing device easy to install and use. When the fencing device is damaged and needs to be replaced, the round rod can be directly inserted into the auxiliary groove and controlled to move upward. The round rod pushes the clamping plate assembly to tilt, causing the clamping plate assembly to disengage. Then, pull the fencing device to easily remove and replace it, improving the convenience of replacement without damaging the concrete and improving maintenance efficiency. Attached Figure Description
[0010] To more clearly illustrate the technical solutions of the embodiments of the present invention, the accompanying drawings of the embodiments will be briefly described below.
[0011] The accompanying drawings described below are only related to some embodiments of the invention and are not intended to limit the invention.
[0012] In the attached diagram: Figure 1 A three-dimensional structural schematic diagram of this application is shown; Figure 2 A bottom view of the structure of this application is shown; Figure 3 An exploded three-dimensional structural diagram of this application is shown; Figure 4 An exploded perspective view of the enclosure device of this application is shown; Figure 5 A schematic diagram of a partial cross-section of the fixed structure of this application is shown; Figure 6 This application shows that it was made by Figure 5 A partial enlarged structural diagram of part A is shown. List of reference numerals 1. Fence device; 101. Support head; 102. Connector; 103. Pallet assembly; 104. Support assembly; 105. Splicing plate; 106. Detector; 107. Protective assembly; 108. Support frame; 2. Fixed structure; 201. Base plate; 202. Fixed rod; 203. Through groove; 204. Insertion structure; 205. Splicing structure; 206. Fitting groove; 207. Positioning groove; 208. Auxiliary groove. Detailed Implementation
[0013] To make the objectives, technical solutions, and advantages of the embodiments of the present invention clearer, the technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some, not all, of the embodiments of the present invention. Based on the described embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0014] Example 1: Please refer to Figures 1 to 6 : This invention proposes a water conservancy project enclosure device with water quality detection function, comprising: an enclosure device 1; an L-shaped support component 104 welded and fixed at the middle of the rear of the top of the enclosure device 1, with two round rods inserted inside the support component 104, the top of the round rods welded and fixed to a splicing plate 105, allowing the splicing plate 105 to be freely inserted and spliced, improving the flexibility of use; the splicing plate 105 moves up and down together with the round rods; a guide groove is provided on each side of the splicing plate 105; and a detector 106, model 81MWMP5, is fixed to the top of the splicing plate 105, facilitating easy installation of the detector 106. The detector 106 is connected to the detection head via a wire, allowing the detection head to be inserted into the water for convenient water quality testing; the fixed structure 2 is spliced to the bottom of the enclosure device 1. The top two sides of the fixed structure 2 are respectively fixed with a splicing structure 205. Each side of the splicing structure 205 is provided with an auxiliary groove 208 of a long strip structure. A round rod used as a key can be inserted into the inside of the auxiliary groove 208. After the round rod rises, it pushes the card plate assembly 103 to tilt, disengage, and facilitate the removal of the enclosure device 1 for replacement. The outer side of the splicing structure 205 is provided with an L-shaped fitting groove 206, which allows the card plate assembly 103 to be inserted and fixed.
[0015] In this embodiment of the disclosure, such as Figure 3 and Figure 4As shown, a U-shaped support head 101 is welded to each of the bottom ends of the enclosure device 1, causing the connector 102 to move together. The bottom of the support head 101 is welded and fixed to the connector 102, allowing the connector 102 to position and assemble the enclosure device 1. Each side of the connector 102 has a positioning arc-shaped rod that inserts into the positioning groove 207 for auxiliary positioning. An inclined clamping plate assembly 103 is fixed to the inner side of the connector 102. The clamping plate assembly 103 is made of elastic metal and is inserted into the fitting groove 206 for clamping and fixing, thus securely connecting the enclosure device 1. (Inspection instrument 1) A protective component 107 covers the top of the 06, which protects the detector 106 during continuous detection. The U-shaped protective component 107 slides above the splicing plate 105. A U-shaped slider is fixed on each side of the protective component 107. The slider is inserted into the long groove and slides freely inside the long groove, which drives the protective component 107 to be pulled out freely. A support frame 108 is fixed at the rear end of the splicing plate 105. The bottom end of the support frame 108 is a telescopic structure. The bottom end of the support frame 108 is connected to the detection head and drives the detection head to move, so that the detection head is inserted into the water for water quality detection.
[0016] In this embodiment of the disclosure, such as Figure 5 and Figure 6 As shown, a base plate 201 with an inclined arrangement is fixed on each of the two bottom sides of the fixed structure 2 to enhance the fixing effect in the concrete. The two symmetrically arranged base plates 201 are fixed with uniformly arranged fixing rods 202 through them. The fixed structure 2, base plates 201 and fixing rods 202 are cast and fixed in the concrete to improve the fixing strength of the fixed structure 2. The outer side of the base plate 201 is provided with uniformly arranged through grooves 203 to allow the concrete to enter and solidify. Three plug-in structures 204 are welded and fixed to the top of the fixed structure 2. The plug-in structure 204 is inserted into the interior of the plug-in structure 204 for positioning and splicing with the enclosure device 1. Two splicing structures 205 are symmetrically arranged. The inner sides of the fitting groove 206 are respectively provided with an arc-shaped positioning groove 207. The fitting groove 206 is inserted with a plug-in piece 102, and the positioning groove 207 is inserted with an arc-shaped rod for positioning and connection.
[0017] The working principle of this embodiment is as follows: First, the fixing structure 2 is evenly arranged and poured into the concrete, ensuring that the fixing structure 2, base plate 201, and fixing rod 202 are embedded within the concrete, thus improving the fixing effect. Then, the enclosure device 1 is connected to the fixing structure 2, with the bottom of the enclosure device 1 inserted into the insertion structure 204. The insertion piece 102 is inserted into the fitting groove 206, and the arc-shaped rod is inserted into the positioning groove 207. The clamping plate assembly 103 is secured to the fitting groove 206 using its elasticity. Then, the detection head is connected to the support frame 108, and the detection head is adjusted via the support frame 108. The position is controlled by splicing the splicing plate 105 with the support component 104, which facilitates the installation of the detector 106, making it easy to install and use and improving the flexibility of the detector 106. When testing water quality, the protective component 107 is pushed to move, and the detector 106 is operated to facilitate water quality testing. When the enclosure device 1 is damaged, the control rod is inserted into the auxiliary groove 208, and the control rod moves upward, pushing the clamping plate component 103 to tilt and disengage from the fixing of the plug-in component 102. Then, the enclosure device 1 is pulled up, making it easy to remove the enclosure device 1, improving replacement efficiency, and eliminating the need to damage the concrete.
[0018] The following points should be noted in this article: 1. The accompanying drawings of the embodiments disclosed herein only relate to the structures involved in the embodiments disclosed herein; other structures can be referred to in general design.
[0019] 2. Where there is no conflict, the embodiments of this disclosure and the features in the embodiments can be combined with each other to obtain new embodiments.
[0020] The above are merely specific embodiments of this disclosure, but the scope of protection of this disclosure is not limited thereto. Any variations or substitutions that can be easily conceived by those skilled in the art within the scope of the technology disclosed in this disclosure should be included within the scope of protection of this disclosure. Therefore, the scope of protection of this disclosure should be determined by the scope of the claims.
Claims
1. A water conservancy project fence device with water quality detection function, characterized in that, include: Enclosure device (1); An L-shaped support component (104) is welded and fixed at the middle of the rear of the top of the enclosure device (1). Two round rods are inserted inside the support component (104). The top of the round rods is welded and fixed to the splicing plate (105). The splicing plate (105) moves the round rods up and down together. A guide groove is provided on each side of the splicing plate (105). A detector (106) is fixed on the top of the splicing plate (105). The detector (106) is connected to the detection head through a line. Fixing structure (2); The fixing structure (2) is spliced at the bottom of the enclosure device (1). A splicing structure (205) is fixed on each side of the top of the fixing structure (2). The connecting structure (205) has an auxiliary groove (208) on each side, and a round rod for use as a key can be inserted into the auxiliary groove (208). The outer side of the splicing structure (205) has an L-shaped fitting groove (206). The bottom ends of the enclosure device (1) are welded with a U-shaped support head (101). The bottom of the support head (101) is welded to the plug-in (102). The plug-in (102) has an arc-shaped positioning rod on each side. The plug-in (102) has an inclined card plate assembly (103) fixed on the inner side. The card plate assembly (103) is made of elastic metal. The card plate assembly (103) is inserted into the fitting groove. The internal snap-fit of the groove (206) is fixed. The detector (106) is covered with a protective component (107). The U-shaped protective component (107) slides above the splicing plate (105). A U-shaped slider is fixed on each side of the protective component (107). The slider is inserted into the long groove and slides freely inside the long groove. A support frame (108) is fixed at the rear end of the splicing plate (105). The bottom end of the support frame (108) is a telescopic structure. The bottom end of the support frame (108) is connected to the detection head and drives the detection head to move. A bottom plate (201) is fixed on each side of the bottom of the fixed structure (2). The two symmetrically arranged bottom plates are fixed. (201) The interior is fixed with uniformly arranged fixing rods (202). The fixing structure (2), the base plate (201) and the fixing rods (202) are cast and fixed inside the concrete. The outer side of the base plate (201) is provided with uniformly arranged through grooves (203). The top of the fixing structure (2) is welded and fixed with three plug-in structures (204). The plug-in structure (204) is inserted with a barrier device (1). The two splicing structures (205) are symmetrically arranged. The inner sides of the fitting groove (206) are respectively provided with an arc-shaped positioning groove (207). The fitting groove (206) is inserted with a plug-in piece (102). The positioning groove (207) is inserted with an arc-shaped rod.
2. The water conservancy enclosure device with water quality detection function according to claim 1, characterized in that, Its working principle includes the following steps: 1) First, control the fixed structure (2) to be evenly arranged and poured into the inside of the concrete, so that the fixed structure (2), the base plate (201) and the fixed rod (202) are poured into the inside of the concrete; 2) Then control the enclosure device (1) to splice with the fixed structure (2), so that the bottom of the enclosure device (1) is inserted into the inside of the plug-in structure (204), the plug-in part (102) is inserted into the inside of the fitting groove (206), the arc rod is inserted into the inside of the positioning groove (207), and the card plate assembly (103) is fixed with the inside of the fitting groove (206) by means of elasticity. Then control the detection head to connect with the support frame (108), adjust the position of the detection head through the support frame (108), control the splicing plate (105) to splice with the support assembly (104), drive the detector (106) to be installed conveniently, so that the detector (106) can be installed and used conveniently. 3) When testing water quality, push the protective component (107) to move and operate the detector (106) to easily test water quality. When the enclosure device (1) is damaged, insert the control rod into the auxiliary groove (208), move the control rod upward, push the card plate component (103) to tilt, disengage from the fixing of the plug-in part (102), and then pull the enclosure device (1) up so that the enclosure device (1) can be easily removed, improving the replacement efficiency without damaging the concrete.
Citation Information
Patent Citations
Aluminum material design of ballastless expansion joint device
CN110552257A
Traffic sign board and mounting method thereof
CN110761210A
Suspended water quality detection device with display function
CN115508532A
USB port safety lock and key corresponding to USB port safety lock
CN217028435U