Marine underwater environment detection device

By using splitters of line poles and spacer teeth in marine underwater environment detection devices, the problem of wire harness winding is solved, and the reliability and storage convenience of the device are improved.

CN222964658UActive Publication Date: 2025-06-10尹国彬
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Patent Information

Application Number
CN202422155586.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-03
Publication Date
2025-06-10
Estimated Expiration
2034-09-03

AI Technical Summary

Technical Problem

The wiring harnesses of existing marine underwater environment detection devices are prone to wrap around, resulting in difficulty in operation and inconvenient storage.

Method used

A splitter including a splitter pole and a parallel spacer tooth is adopted. Through the coordination of the splitter pole and spacer tooth, the wire harnesses are effectively prevented from entangling each other.

Benefits of technology

Maintaining the orderly arrangement of the wiring harnesses improves the reliability and convenience of storage of the detection device, and solves the problems of operation difficulties and inconvenience of storage caused by wire harness entanglement.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of ocean underwater detection, and particularly provides an ocean underwater environment detection device, which comprises a telescopic rod, a detection module, a power supply module and a power supply module, and is characterized in that the telescopic rod comprises a branching end and a holding end which are oppositely arranged; the wire separating part is detachably arranged in the wire separating end, the wire separating part comprises a wire separating rod and a plurality of wire separating teeth, and the wire separating teeth are fixedly arranged on the wire separating rod in parallel. Therefore, the wire harnesses of the ocean underwater environment detection device are effectively prevented from being mutually wound in the use process, the problems of difficult operation and inconvenient storage caused by the winding of the wire harnesses of the existing ocean underwater environment detection device are solved, and the wire harnesses are kept in ordered arrangement; the ocean underwater environment detection device can keep the wire harness stable in dynamic environments such as ocean wave impact, and the reliability and the storage convenience of the detection device are improved.
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Description

Technical Field

[0001] This application relates to the technical field of underwater ocean exploration, and particularly relates to an underwater ocean environment detection device. Background Art

[0002] The global ocean exploration and application development technologies are continuously moving towards broader, deeper, and more refined fields, and the supporting and leading roles of marine scientific research and technological innovation in basic disciplines are becoming increasingly prominent. However, due to the strong corrosion characteristics of seawater and the high-pressure environment in deep-sea areas, the traditional method that relies on radio signals as the sensing medium to continuously and real-time monitor the environmental data at various depths of the ocean is unable to cope.

[0003] Currently, underwater ocean environment detection devices generally rely on wire harnesses for data transmission and power supply. During use, the impact of ocean waves easily causes the wire harnesses to become entangled and knotted, making it difficult to store the wire harnesses of underwater ocean environment detection devices.

[0004] Therefore, there are defects and deficiencies in the prior art, which need to be further improved and developed. Utility Model Content

[0005] In view of the above deficiencies of the prior art, the purpose of this application is to provide an underwater ocean environment detection device, aiming to solve the problem that the wire harnesses of underwater ocean environment detection devices in the prior art are easily entangled and difficult to store.

[0006] One technical solution adopted by this application to solve the technical problem is as follows: An underwater ocean environment detection device for ocean exploration, which includes:

[0007] A telescopic rod, the telescopic rod includes a wire splitting end and a holding end arranged oppositely;

[0008] A wire splitting member, the wire splitting member is detachably arranged in the wire splitting end, the wire splitting member includes a wire splitting rod and a plurality of wire separating teeth, and a plurality of the wire separating teeth are all fixedly arranged on the wire splitting rod in parallel.

[0009] Optionally, a bending section is arranged at the end of a plurality of wire separating teeth, and the bending section is used to prevent the wire harness from disengaging from the wire splitting member.

[0010] Optionally, the underwater ocean environment detection device further includes:

[0011] A fixing component, the fixing component is detachably arranged below the telescopic rod, and the fixing component is used to temporarily fix the telescopic rod.

[0012] Optionally, the fixing component includes:

[0013] An L-shaped member, the L-shaped member has a long arm section and a short arm section integrally formed.

[0014] A telescopic rod support wheel, which is arranged on the long arm section near the short arm section, and the telescopic rod support wheel is in contact with the telescopic rod;

[0015] A T-shaped screw, which is sleeved on the long arm section, and the T-shaped screw is used to shorten the distance from the short arm section;

[0016] A left-right balance frame, which is sleeved on the long arm section, and the left-right balance frame is located between the telescopic rod support wheel and the T-shaped screw.

[0017] Optionally, the fixing component further includes: a plurality of telescopic rod hanging brackets, and a plurality of the telescopic rod hanging brackets are all sleeved on the same side of the long arm section, and a plurality of the telescopic rod hanging brackets are all used for hanging the telescopic rod.

[0018] Optionally, a plurality of the telescopic rod hanging brackets all include a hanging bracket body and a circular clamp, and the circular clamp is arranged at one end of the hanging bracket body far from the long arm section, and the circular clamp is used for hanging the telescopic rod.

[0019] Optionally, the fixing component further includes:

[0020] A telescopic rod barb, which is arranged on the long arm section, and the telescopic rod barb is used to cooperate with the telescopic rod support wheel to fix the telescopic rod;

[0021] A safety belt, and one end of the safety belt is fixedly arranged at the end of the long arm section.

[0022] Optionally, the marine underwater environment detection device further includes:

[0023] A detection component, and the detection component is detachably arranged with the telescopic rod;

[0024] A safety rope, and one end of the safety rope is fixedly arranged at the end of the long arm section.

[0025] Optionally, the detection component includes:

[0026] A temperature measurement component, which is provided with a temperature measurement probe, a signal line, a counterweight and a temperature measurement control display, the signal line is used for connecting the temperature measurement probe and the temperature measurement control display, and the counterweight is arranged at the temperature measurement probe;

[0027] A marine underwater environment viewer, which includes an underwater camera, a camera bracket, a data line, a counterweight block and a camera control display, the data line is used for connecting the underwater camera and the camera control display, and the camera bracket is used for supporting the underwater camera;

[0028] Among them, the signal wire, the data wire, and the safety rope are respectively abutted against the wire dividing rod and separated by a plurality of the wire separating teeth.

[0029] Optionally, the marine underwater environment detection device further includes: an instrument box for storing and carrying the marine underwater environment detection device.

[0030] Compared with the prior art, the present application provides a marine underwater environment detection device. Through the cooperation of the wire dividing rod and a plurality of wire separating teeth in the wire dividing member, the wire harness of the marine underwater environment detection device is effectively prevented from being wound around each other during use, solving the problem of the wire harness of the existing marine underwater environment detection device being wound, resulting in difficult operation and inconvenient storage. Furthermore, by keeping the wire harness arranged in an orderly manner, the marine underwater environment detection device can maintain the stability of the wire harness in a dynamic environment such as wave impact, improving the reliability of the marine underwater environment detection device and the convenience of storage. Description of the Drawings

[0031] Figure 1 is a three-dimensional structural schematic diagram of the fixed state of the marine underwater environment detection device provided in the present application;

[0032] Figure 2 is a three-dimensional structural schematic diagram of the marine underwater environment detection device provided in the present application;

[0033] Figure 3 is another three-dimensional structural schematic diagram of the marine underwater environment detection device provided in the present application;

[0034] Figure 4 is another three-dimensional structural schematic diagram of the marine underwater environment detection device provided in the present application.

[0035] Description of the Reference Numerals:

[0036] 10. Marine underwater environment detection device; 11. Telescopic rod; 111. Wire splitting end; 112. Holding end; 12. Wire splitting component; 121. Wire splitting rod; 122. Wire separating teeth; 1221. Bent section; 13. Fixing component; 131. L-shaped part; 1311. Long arm section; 1312. Short arm section; 132. Telescopic rod support wheel; 133. T-shaped screw; 134. Left-right balance frame; 135. Telescopic rod hanger; 1351. Hanger body; 1352. Circular clamp; 136. Telescopic rod barb; 137. Safety belt; 14. Detection component; 141. Temperature measurement component; 1411. Temperature measurement probe; 1412. Signal wire; 1413. Counterweight; 1414. Temperature measurement control display; 142. Marine underwater environment viewer; 1421. Underwater camera; 1422. Camera support; 1423. Data wire; 1424. Camera control display; 1425. Counterweight block; 15. Safety rope; 16. Instrument box. Detailed implementation manners

[0037] The embodiments of the present application will be described in detail below. The examples of the embodiments are shown in the drawings, where the same or similar reference numerals indicate the same or similar elements or elements with the same or similar functions from beginning to end. The embodiments described below with reference to the drawings are exemplary and are only used to explain the present application, and should not be construed as a limitation to the present application.

[0038] In the description of the present application, it should be understood that the terms "center", "longitudinal", "transverse", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc. indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings. They are only for the convenience of describing the present application and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and thus should not be construed as a limitation to the present application. In addition, the terms "first" and "second" are only used for descriptive purposes and should not be construed as indicating or implying relative importance or implicitly indicating the number of the indicated technical features. Thus, the features defined with "first" and "second" may explicitly or implicitly include one or more of such features. In the description of the present application, unless otherwise specified, the meaning of "plurality" is two or more.

[0039] In the description of the present application, it should be noted that, unless otherwise clearly specified and defined, the terms "installed", "connected", and "coupled" shall be understood in a broad sense. For example, it may be a fixed connection, a detachable connection, or an integral connection; it may be a mechanical connection or an electrical connection; it may be directly connected or indirectly connected through an intermediate medium, and it may be the communication inside two components. For those of ordinary skill in the art, the specific meanings of the above terms in the present application can be understood according to specific circumstances.

[0040] Please refer to Figures 1 to 3, the first embodiment of the present application provides an underwater marine environment detection device 10 for marine exploration. The underwater marine environment detection device 10 includes a wiring component 12, a fixing component 13, a detection component 14, a safety rope 15, and an instrument box 16. First, firmly install the fixing component 13 of the underwater marine environment detection device 10 onto a stable fixture. The fixture can be a wall structure on the shorebank, the side of a ship, a fence, etc. The fixing component 13 includes an L-shaped member 131, a telescopic rod support wheel 132, a T-shaped screw 133, and a left-right balance frame 134. The long arm section 1311 of the L-shaped member 131 provides a solid support for the telescopic rod 11. The telescopic rod support wheel 132 is used to support the side wall position of the telescopic rod 11, facilitating the horizontal movement of the telescopic rod 11. The T-shaped screw 133 is used to shorten the distance from the short arm section 1312. That is, when the fixture abuts between the short arm section 1312 and the T-shaped screw 133, the abutting force against the fixture can be increased by rotating the T-shaped screw 133. The left-right balance frame 134 ensures the overall balance of the underwater marine environment detection device 10, preventing the L-shaped member 131 from tipping left and right. During the detection operation, take out the underwater marine environment detector 142, the temperature measurement component 141, and the safety rope 15 from the instrument box 16. Place the data cable 1423 of the underwater marine environment detector 142, the signal cable 1412 of the temperature measurement component 141, and the safety rope 15 on the wiring component 12. Place the telescopic rod 11 on the telescopic rod support wheel 132. After hooking the telescopic rod 11 with the telescopic rod barb 136, then gradually unfold and push forward the telescopic rod 11, the data cable 1423, the signal cable 1412, and the safety rope 15, so that the front ends of the telescopic rod 11, the data cable 1423, the signal cable 1412, and the safety rope 15 reach the required offshore detection distance. Specifically, the offshore detection distance should be less than the maximum distance that the telescopic rod 11 can reach by 2 meters to 3 meters to leave a safety distance on the shore. The maximum offshore detection distance that the telescopic rod 11 can reach needs to be determined comprehensively considering the maximum length of the telescopic rod 11, the firmness of the fixing component 13 on the fixture, the firmness of the fixture, and the detection requirements. This fixing method avoids the loosening of the telescopic rod 11 during use and effectively prevents the wire harness from getting entangled. The wiring component 12 includes a wiring rod 121 and a plurality of parallel partition teeth 122. The ends of the partition teeth 122 are provided with bent sections 1221, which can effectively prevent the wire harness from falling off the wiring component 12. Through the partition teeth 122, the wire harnesses are separated, ensuring that no entanglement or knotting occurs during the detection process, simplifying the handling and storage of the wire harness. When the temperature measurement component 141 and the underwater marine environment detector 142 reach the designated water area, the operator monitors and analyzes through the temperature measurement control display 1414 and the camera control display 1424, and records and saves the relevant water area information.

[0041] After the detection is completed, the operator first lifts the data line 1423, the signal line 1412 and the safety rope 15, so that the temperature measurement component 141, the underwater environment detector 142 and the safety rope 15 return to the wire splitter 12, and then gradually retracts the telescopic rod 11, the data line 1423, the signal line 1412 and the safety rope 15. All the data lines 1423, the signal lines 1412 and the safety ropes 15 remain separated during the storage process, avoiding the entanglement problem. Finally, after drying the temperature measurement component 141, the underwater environment detector 142 and the safety rope 15, winding them up and putting them into the instrument box 16, and resetting the telescopic rod 11 and hanging it on the telescopic rod hanger 135, which not only effectively prevents the wire harness of the underwater environment detection device 10 from being entangled with each other during use, solves the problems of difficult operation and inconvenient storage caused by the wire harness entanglement in the traditional underwater environment detection device, but also facilitates the transportation and storage of the underwater environment detection device 10.

[0042] Please refer to Figure 1 and Figure 2 , in some embodiments, the underwater environment detection device 10 includes a telescopic rod 11 and a wire splitter 12. The telescopic rod 11 can be telescoped in length. The telescopic rod 11 includes a wire splitting end 111 and a holding end 112 which are oppositely arranged; the wire splitter 12 is detachably arranged in the wire splitting end 111. The wire splitter 12 includes a wire splitting rod 121 and a plurality of wire separating teeth 122. A plurality of the wire separating teeth 122 are fixedly arranged on the wire splitting rod 121 in parallel. The wire separating teeth 122 are used to separate the wire harness of the underwater environment detection device 10, thereby effectively preventing the wire harness of the underwater environment detection device 10 from being entangled with each other during use, solving the problems of difficult operation and inconvenient storage caused by the wire harness entanglement of the existing underwater environment detection device 10, and further improving the reliability of the detection device and the convenience of storage by keeping the wire harness arranged in an orderly manner.

[0043] Please refer to Figure 2 , in some embodiments, a bent section 1221 is arranged at the end of a plurality of wire separating teeth 122. The bent section 1221 is used to prevent the wire harness of the underwater environment detection device 10 from slipping out of the wire splitter 12, thereby ensuring that the wire harness is not easily slipped during operation. It not only enhances the stability of the wire harness, but also improves the reliability of the underwater environment detection device 10 and the convenience of storage.

[0044] Please refer to Figure 1, in some embodiments, the marine underwater environment detection device 10 further includes a fixing component 13, the fixing component 13 is detachably arranged below the telescopic rod 11, and the fixing component 13 is used to temporarily fix the telescopic rod 11; thus, it is convenient for the operator to quickly adjust the position of the marine underwater environment detection device 10 in actual operation to adapt to different detection environments, thereby improving the operation flexibility and reliability of the device and avoiding the decrease in detection accuracy caused by the unstable fixation of the marine underwater environment detection device 10.

[0045] Please refer to Figure 3 , in some embodiments, the fixing component 13 includes an L-shaped member 131, a telescopic rod support wheel 132, a T-shaped screw 133, and a left-right balance frame 134; the L-shaped member 131 has a long arm section 1311 and a short arm section 1312 integrally formed; the long arm section 1311 is used to support the telescopic rod 11, and the short arm section 1312 is used to abut against a fixed object; the telescopic rod support wheel 132 is used to support the side wall position of the telescopic rod 11 to facilitate the horizontal movement of the telescopic rod 11. The telescopic rod support wheel 132 is arranged at the long arm section 1311 near the short arm section 1312, and the telescopic rod support wheel 132 is in contact with the telescopic rod 11; the T-shaped screw 133 is sleeved on the long arm section 1311, and the T-shaped screw 133 is used to shorten the distance from the short arm section 1312. Thus, it is convenient for the user to change the fixed position of the telescopic rod 11 by adjusting the T-shaped screw 133 to adapt to different detection requirements; the left-right balance frame 134 is used to stabilize the attitude of the L-shaped member 131. The left-right balance frame 134 is sleeved on the long arm section 1311, and the left-right balance frame 134 is located between the telescopic rod support wheel 132 and the T-shaped screw 133, thereby effectively preventing misoperation of the marine underwater environment detection device 10 caused by unstable support during operation and improving the stability and data accuracy of the detection process.

[0046] Please refer to Figure 3 , in some embodiments, the fixing component 13 further includes a plurality of telescopic rod hanging brackets 135, and a plurality of the telescopic rod hanging brackets 135 are all sleeved on the same side of the long arm section 1311. A plurality of the telescopic rod hanging brackets 135 are all used to hang the telescopic rod 11. Thus, it is convenient for the operator to more efficiently store the telescopic rod 11 during the storage process and improve the overall storage efficiency.

[0047] Please refer to Figure 3 and Figure 4, in some embodiments, a plurality of the telescopic rod hangers 135 each include a hanger body 1351 and a circular clamp 1352. The circular clamp 1352 is disposed at one end of the hanger body 1351 away from the long arm section 1311. The circular clamp 1352 is used to hang the telescopic rod 11 so that the telescopic rod 11 can be reliably hung on the hanger, ensuring the stability of the storage of the telescopic rod 11.

[0048] Please refer to Figure 3 and Figure 4 , in some embodiments, the fixing assembly 13 further includes a telescopic rod barb 136 and a safety belt 137. The telescopic rod barb 136 is disposed on the long arm section 1311. The telescopic rod barb 136 is used to cooperate with the telescopic rod support wheel 132 to fix the telescopic rod 11; thereby enhancing the fixing stability of the telescopic rod 11 while preventing accidental displacement during operation, and also facilitating the storage and extension of the telescopic rod 11; the safety belt 137 is fixedly disposed at the end of the long arm section 1311, and the other end of the safety belt 137 is fixed to a fixed object, thereby providing an additional fixing method for the marine underwater environment detection device 10, preventing the telescopic rod 11 from accidentally displacing and falling into the water during operation, and enhancing the overall stability and operation safety of the marine underwater environment detection device 10.

[0049] Please refer to Figure 3 and Figure 4 , in some embodiments, the marine underwater environment detection device 10 further includes a detection assembly 14 and a safety rope 15; the detection assembly 14 is detachably disposed from the telescopic rod 11, thereby facilitating the replacement and maintenance of the detection assembly 14 and enhancing the flexibility and practicality of the marine underwater environment detection device 10. One end of the safety rope 15 is fixedly disposed at the end of the long arm section 1311, and the other end of the safety rope 15 is used to connect to the detection assembly 14; thereby providing additional protection for the detection assembly 14, preventing the detection assembly 14 from accidentally falling or being damaged during use, and further enhancing the overall safety and reliability of the marine underwater environment detection device 10.

[0050] Please refer to Figure 3 and Figure 4, in some embodiments, the detection component 14 includes a temperature measurement component 141 and an underwater ocean environment detector 142; the temperature measurement component 141 is provided with a temperature measurement probe 1411, a signal line 1412, a counterweight 1413 and a temperature measurement control display 1414, the signal line 1412 is used to connect the temperature measurement probe 1411 and the temperature measurement control display 1414, and the counterweight 1413 is arranged at the temperature measurement probe 1411; the signal line 1412 is provided with a scale for measuring the water depth; the underwater ocean environment detector 142 includes an underwater camera 1421, a camera support 1422, a data line 1423, a counterweight block 1425 and a camera control display 1424, the data line 1423 is used to connect the underwater camera 1421 and the camera control display 1424, and the camera support 1422 is used to support the underwater camera 1421; the data line 1423 is provided with a scale for measuring the water depth; wherein, the signal line 1412, the data line 1423 and the safety rope 15 respectively abut against the wire dividing rod 121 and are separated by a plurality of wire separating teeth 122, thereby ensuring the stable transmission of the information data of the signal line 1412 and the data line 1423, improving the accuracy of data collection and the reliability of the detection depth. At the same time, the problem of wire harness entanglement is effectively reduced, and the efficiency of wire harness storage is improved.

[0051] In some embodiments, the detection component 14 includes, but is not limited to, other detectors such as a seawater salinity meter, an air temperature and humidity meter, an oxygen meter, a carbon dioxide detector, a phosphine detector, etc. The underwater ocean environment detection device 10 can also be applied to scenarios such as granaries, mines and wells to detect the oxygen concentration and poisonous gas content, thereby greatly increasing the practicability of the underwater ocean environment detection device 10.

[0052] Please refer to Figure 4 , in some embodiments, the underwater ocean environment detection device 10 further includes an instrument box 16, and the instrument box 16 is used for the storage and carrying of the underwater ocean environment detection device 10, thereby effectively protecting the underwater ocean environment detection device 10 from damage by the external environment, facilitating the transportation and storage of the underwater ocean environment detection device 10, and improving the overall convenience and long-term use reliability of the underwater ocean environment detection device 10.

[0053] In some embodiments, the telescopic rod support wheel 132, the telescopic rod hanger 135, the safety belt 137 and the telescopic rod barb 136 are all fixed by a U-shaped safety clip, thereby facilitating the assembly and disassembly of the telescopic rod support wheel 132, the telescopic rod hanger 135, the safety belt 137 and the telescopic rod barb 136, and greatly increasing the overall convenience and practicability of the underwater ocean environment detection device 10.

[0054] In summary, the present application provides an underwater marine environment detection device. The underwater marine environment detection device includes: a telescopic rod, the telescopic rod includes a wire splitting end and a holding end arranged oppositely; a wire splitting member, the wire splitting member is detachably arranged in the wire splitting end, the wire splitting member includes a wire splitting rod and a plurality of wire separating teeth, and the plurality of wire separating teeth are all fixedly arranged on the wire splitting rod in parallel. Thereby effectively preventing the wire harness of the underwater marine environment detection device from being entangled with each other during use, solving the problems of difficult operation and inconvenient storage caused by the wire harness entanglement of the existing underwater marine environment detection device. Furthermore, by keeping the wire harness arranged in an orderly manner, the underwater marine environment detection device can keep the wire harness stable in a dynamic environment such as wave impact, improving the reliability of the detection device and the convenience of storage.

[0055] It should be understood that the application of the present application is not limited to the above examples. For those of ordinary skill in the art, improvements or transformations can be made according to the above description, and all such improvements and transformations should fall within the protection scope of the appended claims of the present application.

Claims

1. A marine underwater environment detection device for marine detection, characterized in that: The ocean underwater environment detection device comprises: A telescopic rod, the telescopic rod comprising a branching end and a gripping end that are arranged opposite to each other; The wire dividing piece is detachably arranged in the wire dividing end, and the wire dividing piece comprises a wire dividing rod and a plurality of wire dividing teeth, and the plurality of wire dividing teeth are fixedly arranged on the wire dividing rod in parallel.

2. The marine underwater environment detection device according to claim 1, characterized in that: The ends of the plurality of wire-isolating teeth are provided with bending sections, and the bending sections are used to prevent the wire harness from escaping from the wire-dividing member.

3. The marine underwater environment detection device according to claim 1, characterized in that: The ocean underwater environment detection device also includes: A fixing component is detachably arranged below the telescopic rod and is used to temporarily fix the telescopic rod.

4. The marine underwater environment detection device according to claim 3, characterized in that: The fixing assembly comprises: An L-shaped member, wherein the L-shaped member has a long arm section and a short arm section integrally formed; A telescopic rod support wheel, wherein the telescopic rod support wheel is arranged at the position of the long arm section close to the short arm section, and the telescopic rod support wheel is arranged in contact with the telescopic rod; A T-shaped screw, wherein the T-shaped screw is sleeved on the long arm section and is used to shorten the distance with the short arm section; The left and right balancing frames are sleeved on the long arm section and are located between the telescopic rod support wheel and the T-shaped screw.

5. The marine underwater environment detection device according to claim 4, characterized in that: The fixing assembly further comprises: a plurality of telescopic rod hangers, wherein the plurality of telescopic rod hangers are all sleeved on the same side of the long arm section, and the plurality of telescopic rod hangers are all used for hanging the telescopic rod.

6. The marine underwater environment detection device according to claim 5, characterized in that: Several of the telescopic rod hangers include a hanger body and a circular clamp. The circular clamp is arranged on one end of the hanger body away from the long arm section, and the circular clamp is used to hang the telescopic rod.

7. The marine underwater environment detection device according to claim 4, characterized in that: The fixing assembly also includes: A telescopic rod hook, wherein the telescopic rod hook is arranged on the long arm section, and the telescopic rod hook is used to cooperate with the telescopic rod support wheel to fix the telescopic rod; A safety belt, one end of which is fixedly arranged at the end of the long arm section.

8. The marine underwater environment detection device according to claim 7, characterized in that: The ocean underwater environment detection device also includes: A detection component, wherein the detection component and the telescopic rod are detachably arranged; A safety rope, one end of which is fixedly arranged at the end of the long arm section.

9. The marine underwater environment detection device according to claim 8, characterized in that: The detection component comprises: A temperature measuring component, wherein the temperature measuring component is provided with a temperature measuring probe, a signal line, a counterweight and a temperature measuring control display, the signal line is used to connect the temperature measuring probe and the temperature measuring control display, and the counterweight is provided at the temperature measuring probe; An underwater environment finder for the ocean, comprising an underwater camera, a camera bracket, a data cable, a counterweight, and a camera control display, wherein the data cable is used to connect the underwater camera and the camera control display, and the camera bracket is used to support the underwater camera; Wherein, the signal line, data line and safety rope are respectively against the line dividing rod and separated by a plurality of the line dividing teeth.

10. The marine underwater environment detection device according to claim 2, characterized in that: The ocean underwater environment detection device also includes: an instrument box, which is used for storing and carrying the ocean underwater environment detection device.