A water quality inspection device

CN224788725UActive Publication Date: 2026-09-22SHENZHEN LUYE ECOLOGICAL GARDEN TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202522267523.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-10-27
Publication Date
2026-09-22
Estimated Expiration
2035-10-27

AI Technical Summary

Technical Problem

[0004]上述的一种便于操作的水体环境水质检验装置,其支撑座的上端插接有多个拼接板,拼接板上镶嵌安装有齿条,齿条又与支撑座上端中的齿轮啮合,齿轮上还安装有转把,旋转转把使齿轮旋转,进而通过齿条促使拼接板在支撑座上水平移动,以此实现调整检测位置的效果,但是由于拼接板自身长度的限制,在进行水质检测时,其只能在拼接板所处范围内进行水质检测,而拼接板以外的范围则无法进行水质检测工作,且取样方向单一;以及,其拼接板的端部下侧壁安装有水质检测机构,该水质检测机构有且仅有一个,因而在进行多点位的水质检测时,都只有该一个水质检测机构进行检测,因此容易造成检测样本相互掺杂的问题

Benefits of technology

1、本实用新型通过设置船体、水下电机、驱动桨叶、光伏板和无线信号收发器,船体的尾部下方设置有水下电机,水下电机的输出轴通过减速器和转向器与驱动桨叶连接,而船体的中部上方还设置有光伏板,光伏板的旁侧还安装有无线收发器,船体的内部还安装有蓄电池,通过水下电机可为驱动桨叶提供旋转的动力,并通过减速器和转向器可调整驱动桨叶的转速以及朝向,进而改变船体的行进速度以及行进方向,通过光伏板可在其被太阳光照射时为船体内的蓄电池进行电能补充,而无线信号收发器可接受远程遥控器的控制命令,实现远程操控船体以及检测组件工作的效果,进而实现了在水面的任何船体可到达的位置均可进行水质检验的效果。

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Abstract

The utility model discloses a water quality inspection device relates to water quality inspection technical field. The utility model discloses a hull, the lower side wall of the tail of hull is installed with underwater motor, still installs drive paddle on the output shaft of underwater motor, installs the deck on the deck of hull, installs controller, wireless signal transceiver, photovoltaic board and shooting subassembly on the top board, and shooting subassembly includes the camera of installing on the top board, and the waterproof cover of covering in the camera outside, still be provided with detection subassembly on the hull, and detection subassembly includes the fixing frame of installing on the hull, and the electric push rod of installing in the fixing frame, and still be provided with detection end head to the telescopic end part of electric push rod. The utility model discloses through underwater motor and drive paddle can promote the hull and move on the inspection water surface, through electric push rod can promote the detection end head of water quality detector and move up and down, to realize to the water quality of the inspection water surface and carry out detection, and the hull once submerges and carries out the water quality inspection work of three place points.
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Description

Technical Field

[0001] This utility model belongs to the field of water quality testing technology, and in particular relates to a water quality inspection device. Background Technology

[0002] Water quality inspection is one of the most common methods of water quality testing. It features random testing time and location, which allows for more comprehensive water quality testing and more effective results. It also greatly avoids interference from human factors. The most common water quality inspection equipment is the handheld water quality analyzer, which is small and easy to carry.

[0003] Chinese patent application CN223090359U discloses an easy-to-operate water quality testing device for aquatic environments. The device includes a fixed base, a support fixed to the upper surface of the fixed base, and a water quality testing mechanism disposed on one side of the support for water quality testing. The support has multiple sets of splicing plates, each with a splicing mechanism that allows adjacent sets of splicing plates to be joined together. A rack is fixed to the upper surface of each splicing plate, and a gear is meshed with the upper surface of the rack. A handle that drives the gear is mounted on the support. This easy-to-operate water quality testing device allows the splicing plates to extend further into the river during the splicing process. Compared to installing the entire device after splicing, this method is more labor-saving, reduces the workload of workers, and is convenient, practical, and improves the effectiveness of the device.

[0004] The aforementioned easy-to-operate water quality testing device has multiple splicing plates inserted into the upper end of its support base. Racks are embedded in the splicing plates, and these racks mesh with gears in the upper part of the support base. A handle is mounted on the gear; rotating the handle causes the gear to rotate, which in turn causes the splicing plates to move horizontally on the support base via the racks, thus adjusting the detection position. However, due to the limited length of the splicing plates, water quality testing can only be performed within the area where the splicing plates are located; areas outside the splicing plates cannot be tested, and the sampling direction is singular. Furthermore, a water quality detection mechanism is installed on the lower side wall of the splicing plate's end. There is only one such mechanism, meaning that when conducting multi-point water quality testing, only this single mechanism performs the testing, easily leading to sample contamination. Therefore, we provide a water quality inspection device to solve the problems mentioned above. Utility Model Content

[0005] The purpose of this utility model is to provide a water quality inspection device. The device can move the hull on the inspection water surface by means of an underwater motor and drive propeller. The detection end of the water quality detector can be moved up and down by means of an electric push rod, so as to realize the detection of water quality on the inspection water surface. Moreover, the hull can carry out water quality inspection at three points in one launch, which solves the problems of the above-mentioned easy-to-operate water environment water quality inspection device.

[0006] To solve the above-mentioned technical problems, this utility model is achieved through the following technical solution: This utility model relates to a water quality inspection device, comprising a hull; an underwater motor is installed on the lower side wall of the stern of the hull, and a drive propeller is also installed on the output shaft of the underwater motor; a top plate is installed on the deck of the hull, and a controller, a wireless signal transceiver, a photovoltaic panel, and a camera assembly are installed on the top plate; the camera assembly includes a camera installed on the top plate and a waterproof cover covering the outside of the camera; a detection assembly is also provided on the hull, the detection assembly includes a fixed frame installed on the upper side wall of the hull and an electric push rod installed in the fixed frame, and a detection end is provided at the telescopic end of the electric push rod.

[0007] The present invention is further configured such that a storage battery and a water quality detector are installed inside the hull, the water quality detector is connected to the detection head via a flexible data cable, and the storage battery provides power support for various electronic control components on the hull.

[0008] The present invention is further configured such that the detection components are provided in three sets, and the three sets of detection components are respectively arranged on the bow and both sides of the hull.

[0009] The present invention is further configured such that the telescopic end of the electric push rod in the detection assembly is vertically downward and extends through the side wall of the hull, and the telescopic end of the electric push rod is also equipped with a fixing sleeve, and the electric push rod is connected to the detection end through the fixing sleeve.

[0010] The present invention is further configured such that the top plate is provided with mounting groove one, mounting groove two and mounting groove three, a mounting frame is fixedly installed in mounting groove one, and the controller and wireless signal transceiver are installed in the mounting frame.

[0011] The present invention is further configured such that the photovoltaic panel is fixedly installed on the photovoltaic frame, and the photovoltaic frame is fixedly installed in the second mounting slot, the camera is fixedly installed in the third mounting slot, the first mounting slot and the third mounting slot are located on both sides of the second mounting slot, and the third mounting slot is located on the bow side near the hull.

[0012] The present invention is further configured such that a reducer and a steering gear are provided on the output end of the underwater motor, the underwater motor is connected to the drive blade through the reducer and the steering gear, and the underwater motor, the reducer and the steering gear are all connected to the controller through wires.

[0013] The present invention is further configured such that the photovoltaic panel is connected to the battery inside the ship via wires and a transducer, and the controller is also connected to a wireless transceiver, a camera, and a detection terminal.

[0014] This utility model has the following beneficial effects: 1. This utility model comprises a hull, an underwater motor, drive propellers, a photovoltaic panel, and a wireless transceiver. The underwater motor is located below the stern of the hull, and its output shaft is connected to the drive propellers via a reducer and a steering mechanism. A photovoltaic panel is located above the middle of the hull, and a wireless transceiver is installed beside it. A battery is installed inside the hull. The underwater motor provides rotational power to the drive propellers, and the reducer and steering mechanism can adjust the speed and direction of the drive propellers, thereby changing the hull's speed and direction of travel. The photovoltaic panel replenishes the battery inside the hull when exposed to sunlight, and the wireless transceiver can receive control commands from a remote controller, enabling remote control of the hull and the operation of the detection components. This allows for water quality testing at any location accessible to the hull on the water's surface.

[0015] 2. This utility model incorporates three detection components, located on both sides of the midsection of the hull and at the bow. Each component includes a mounting frame fixed to the upper sidewall of the hull, within which a vertical electric push rod is installed. The end of the electric push rod is connected to a detection head via a fixing sleeve. The detection head is connected to a water quality analyzer inside the hull via a flexible data cable. The three electric push rods can move three different detection heads of the water quality analyzer up and down. When the detection head is not required to perform water quality testing, the corresponding electric push rod is in its minimum extended state. The detection tip is pulled upwards into the hull for protection. When it reaches the predetermined detection position at the water surface, the electric push rod operates, causing the detection tip at the end to move downwards and penetrate below the water surface to perform water quality testing at that location. The detected data is fed back to the water quality analyzer on the hull via a flexible data cable. After the test is completed, the electric push rod of the detection tip retracts, causing the detection tip to move upwards and retract into the hull. When another water quality testing point is reached, the electric push rod on the other detection tip repeats the testing process, thus enabling the hull to perform water quality inspections at three points in a single descent. Attached Figure Description

[0016] To more clearly illustrate the technical solutions of the embodiments of this utility model, the accompanying drawings used in the description of the embodiments will be briefly introduced below.

[0017] Figure 1 This is a schematic diagram of a water quality inspection device.

[0018] Figure 2 This is a structural bottom view of a water quality inspection device.

[0019] Figure 3 This is a structural disassembly diagram of the top plate and its accessories.

[0020] Figure 4 This is a structural disassembly diagram of the detection component.

[0021] The attached diagram lists the components represented by each number as follows: 1-Hull, 2-Underwater motor, 3-Drive propeller blade, 4-Top plate, 401-Mounting slot one, 401a-Mounting bracket, 402-Mounting slot two, 403-Mounting slot three, 5-Controller, 6-Wireless transceiver, 7-Photovoltaic panel, 701-Photovoltaic frame, 8-Shooting component, 801-Camera, 802-Waterproof cover, 9-Detection component, 901-Electric push rod, 901a-Fixing sleeve, 902-Fixing bracket, 903-Detection end. Detailed Implementation

[0022] The technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present invention.

[0023] Example 1 Please see Figure 1-3 This utility model is a water quality inspection device, including a hull 1, an underwater motor 2, a wireless signal transceiver 6, and a photovoltaic panel 7. The underwater motor 2 and the drive blades 3 work together to move the hull 1 on the water surface. The photovoltaic panel 7 can charge the battery inside the hull 1 under sunlight.

[0024] Specifically, an underwater motor 2 is installed on the bottom side wall of the stern of the hull 1, and the output shaft of the underwater motor 2 is connected to the drive propeller 3 through a reducer and a steering gear. The reducer and steering gear can adjust the speed and orientation of the drive propeller 3, thereby changing the speed and direction of the hull 1. A battery is also installed inside the hull 1 to provide power to various electronic control components on the hull 1. The device is also equipped with a remote controller.

[0025] Furthermore, a top plate 4 is installed on the upper side deck of the hull 1. The top plate 4 has three mounting slots: a first mounting slot 401, a second mounting slot 402, and a third mounting slot 403. A camera assembly 8 is installed within the third mounting slot 403. The camera 801 is covered by a waterproof cover 802, which provides water protection. The camera 801 can capture and photograph images of the hull 1's direction of travel and its surroundings, transmitting the images to a controller 5. The controller 5 then transmits the images to a remote control via a wireless transceiver 6. The remote control allows the operator to view the environment of the ship 1. A photovoltaic panel 7 is installed in the second mounting slot 402 and is fixedly installed in the photovoltaic frame 701. The photovoltaic panel 7 is connected to the battery in the ship 1 to charge the battery under good lighting conditions. A mounting frame 401a is installed in the first mounting slot 401, and a controller 5 and a wireless transceiver 6 are installed in the mounting frame 401a. The wireless transceiver 6 is connected to the controller 5 through a wire. The wireless transceiver 6 is used to receive control commands from the remote control and transmit them to the controller 5.

[0026] The operation process of this embodiment is as follows: When in use, the boat 1 is carried to the water area to be inspected and placed on the water surface. Then, the operator issues a control command through the control button on the remote control. The control command is received by the wireless signal transceiver 6 and transmitted to the controller 5, so that the boat 1 can be controlled. The underwater motor 2 works, which drives the drive blade 3 to rotate underwater through the output shaft, thereby achieving the effect of moving the boat 1 on the water surface. At this time, since the output shaft of the underwater motor 2 is also equipped with a reducer and a steering gear, the speed and direction of the drive blade 3 can be adjusted through the reducer and steering gear, thereby changing the speed and direction of the boat 1. The photovoltaic panel 7 can replenish the battery in the boat 1 when it is exposed to sunlight. The camera 801 captures and takes pictures of the direction of the boat 1's movement and its surroundings, and transmits the images to the remote control through the wireless signal transceiver 6 and the controller 5.

[0027] Example 2 Please see Figure 4 Based on Embodiment 1, a detection component 9 is also provided. The detection component 9 can detect the water body under the water surface when the hull 1 moves to the designated water surface area to be inspected.

[0028] Specifically, there are three detection components 9, which are installed at the bow of the hull 1 and on both sides of the middle of the hull 1. The three sets of detection components 9 enable the hull 1 to carry out water quality inspection at three points in one launch.

[0029] Furthermore, the detection component 9 includes a mounting bracket 902 fixed to the upper side wall of the hull 1. An electric push rod 901 is installed inside the mounting bracket 902. The telescopic end of the electric push rod 901 is provided with a fixing sleeve 901a, and the electric push rod 901 is connected to the detection end 903 through the fixing sleeve 901a. The fixing sleeve 901a facilitates the installation and removal of the detection end 903. The detection end 903 is connected to the water quality detector in the hull 1 through a flexible data cable. The electric push rod 901 is also connected to the controller 5 of the hull 1.

[0030] The operation process of this embodiment is as follows: After the hull 1 moves to the designated inspection area, the remote controller sends a control command through the controller 5 to make the electric push rod 901 work, which drives the detection end 903 on the end to move down and into the water below the surface to perform water quality testing at that location. The detected data is fed back to the water quality detector on the hull 1 through the elastic data line. After the test is completed, the electric push rod 901 of the detection end 903 retracts, driving the detection end 903 to move up and retract into the hull 1. After reaching another water quality testing point, the electric push rod 901 on the other detection end 903 repeats the testing work. During the movement of the hull 1, that is, when the detection end 903 does not need to perform water quality testing, the corresponding electric push rod 901 is in the minimum extended state, that is, the detection end 903 is pulled upward and into the hull 1 to protect the detection end 903.

[0031] In the description of this specification, references to terms such as "an embodiment," "example," "specific example," etc., indicate that a specific feature, structure, material, or characteristic described in connection with that embodiment or example is included in at least one embodiment or example of the present invention. In this specification, the illustrative expressions of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples.

Claims

1. A water quality inspection device, comprising a hull (1); characterized in that: An underwater motor (2) is installed on the lower side wall of the stern of the hull (1), and a drive blade (3) is also installed on the output shaft of the underwater motor (2). A top plate (4) is installed on the deck of the hull (1), and a controller (5), a wireless transceiver (6), a photovoltaic panel (7) and a shooting assembly (8) are installed on the top plate (4). The shooting assembly (8) includes a camera (801) installed on the top plate (4) and a waterproof cover (802) covering the outside of the camera (801). A detection assembly (9) is also provided on the hull (1). The detection assembly (9) includes a fixed frame (902) installed on the upper side wall of the hull (1) and an electric push rod (901) installed in the fixed frame (902). A detection end (903) is also provided at the telescopic end of the electric push rod (901).

2. The water quality inspection device according to claim 1, characterized in that, The hull (1) is equipped with a storage battery and a water quality detector. The water quality detector is connected to the detection terminal (903) via a flexible data cable. The storage battery provides power support for various electronic control components on the hull (1).

3. The water quality inspection device according to claim 1, characterized in that, The detection component (9) consists of three sets, which are respectively located at the bow and on both sides of the hull.

4. A water quality inspection device according to claim 3, characterized in that, The telescopic end of the electric push rod (901) in the detection assembly (9) is set vertically downward, and the telescopic end of the electric push rod (901) extends through the side wall of the hull (1). The telescopic end of the electric push rod (901) is also equipped with a fixing sleeve (901a), and the electric push rod (901) is connected to the detection end (903) through the fixing sleeve (901a).

5. A water quality inspection device according to claim 1, characterized in that, The top plate (4) is provided with mounting slot 1 (401), mounting slot 2 (402) and mounting slot 3 (403). A mounting bracket (401a) is fixedly installed in the mounting slot 1 (401), and the controller (5) and the wireless signal transceiver (6) are installed in the mounting bracket (401a).

6. A water quality inspection device according to claim 5, characterized in that, The photovoltaic panel (7) is fixedly installed on the photovoltaic frame (701), and the photovoltaic frame (701) is fixedly installed in the second mounting slot (402). The camera (801) is fixedly installed in the third mounting slot (403). The first mounting slot (401) and the third mounting slot (403) are respectively located on both sides of the second mounting slot (402), and the third mounting slot (403) is located on the bow side near the hull (1).

7. A water quality inspection device according to claim 1, characterized in that, The underwater motor (2) is also equipped with a reducer and a steering gear at its output end. The underwater motor (2) is connected to the drive blade (3) through the reducer and steering gear. The underwater motor (2), the reducer and the steering gear are all connected to the controller (5) through wires.

8. A water quality inspection device according to claim 1, characterized in that, The photovoltaic panel (7) is connected to the battery inside the hull (1) via wires and a transducer. The controller (5) is also connected to the wireless transceiver (6), the camera (801), and the detection terminal (903).

Citation Information

Patent Citations

  • Water body environment water quality inspection device convenient to operate

    CN223090359U