Desilting inspection tool
By designing a dredging survey tool that combines manual and electronic measurement structures, the problems of parameter collection and sonar detector fixation in dredging surveys were solved, enabling convenient multi-parameter measurement and sample preservation, and supporting the formulation of subsequent processing plans.
Patent Information
- Application Number
- CN202520099158.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-16
- Publication Date
- 2025-12-26
- Estimated Expiration
- 2035-01-16
AI Technical Summary
Existing technologies are insufficient for effectively collecting various parameters during dredging investigations, especially water and silt samples, and there are also issues with the fixation and portability of electronic sonar detectors.
A dredging and surveying tool was designed, comprising a hull, a manual measuring structure, and an electronic measuring structure. It combines a long rod probe and a sonar probe for multi-parameter detection and sample collection, and provides a sample preserver for sample storage.
It enables convenient measurement of water depth and silt thickness, ensures stable use of sonar detectors, and facilitates the collection and preservation of water and silt samples, supporting the development of subsequent treatment plans.
Smart Images

Figure CN223727217U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the design field of water monitoring tools, and specifically relates to a dredging investigation tool. BACKGROUND
[0002] For the river or pond needing dredging, the height difference of silt and water surface, silt thickness, silt component content and water flow parameter are preliminarily judged in advance, which have important reference and decisive value for subsequent treatment process. For example, the height difference of silt and water surface can determine the size of working ship, especially the draft depth, the silt thickness can preliminarily judge the construction period, and the silt component content can determine the method and direction of subsequent silt treatment.
[0003] Therefore, as many parameters as possible need to be collected in the dredging investigation, and water samples and silt samples need to be collected. As for the detection of silt, long rod detection can be used, or relatively advanced electronic sonar detection instrument can be used. Special attention needs to be paid to the fixing and carrying of the electronic sonar detection instrument. UTILITY MODEL CONTENT
[0004] The utility model solves the technical problems that the dredging investigation collects many parameters, water samples and silt samples need to be collected, and the detection of silt can use long rod detection or relatively advanced electronic sonar detection instrument. Special attention needs to be paid to the fixing and carrying of the electronic sonar detection instrument.
[0005] To solve the above problems, the technical scheme adopted by the utility model is as follows: the utility model is a dredging investigation tool, which comprises a ship body and further comprises a manual measurement structure, an electronic measurement structure and a sample preserver. The manual measurement structure is arranged on the ship body, the electronic measurement structure is arranged on the ship body, the manual measurement structure and the electronic measurement structure mutually assist in detecting silt, the sample preserver is arranged on the ship body, the sample preserver is used for preserving sample water or sample silt, the manual measurement structure comprises a clamping ring and a detection rod assembly, the clamping ring is arranged on the ship body, the clamping ring is provided with a plurality of groups, and the detection rod assembly is clamped on the plurality of clamping rings.
[0006] Further, the detection rod assembly comprises a long rod and a handle, the long rod is clamped on the clamping ring, and the handle is arranged on the long rod.
[0007] Further, the long rod is provided with a file pattern.
[0008] Further, the electronic measurement structure comprises a mounting seat, a supporting seat, a supporting column and a sonar detector, the mounting seat is mounted on the side of the ship body, the supporting seat is arranged on the mounting seat, the supporting seat is symmetrically provided with two groups, the supporting column is arranged on the supporting seat, the supporting column is provided with a plurality of groups, and the sonar detector is mounted on the supporting column through bolts.
[0009] Further, the sample preserver comprises a base and a rotating disc, the base is arranged on the ship body, the rotating disc is rotatably arranged on the base, and a plurality of groups of storage slots are arranged on the rotating disc.
[0010] Further, a plurality of groups of shifting rods are arranged on the circumferential side wall of the rotating disc.
[0011] Further, a limiting ring is arranged on one side of the ship body, and the limiting ring is used to assist the long rod to keep a relative vertical angle.
[0012] Further, a positioning frame is arranged on the ship body.
[0013] Further, a plurality of handrails are arranged on the ship body.
[0014] The beneficial effects achieved by the above structure are as follows:
[0015] 1. The long rod can be used to manually detect the height of the silt from the water surface, and the contact of the silt with the silt marks left by the silt marks facilitates measurement. In the design, the sonar detector provides a convenient position for use and is fixed. The sonar detector can be used to test the thickness of the silt and more parameters.
[0016] 2. The silt and water samples are collected and sent for analysis, which facilitates understanding of the on-site situation and facilitates decision of subsequent silt treatment scheme. BRIEF DESCRIPTION OF DRAWINGS
[0017] Figure 1 The overall structure of the dredging investigation tool is shown in the schematic view of the overall structure of the dredging investigation tool.
[0018] Figure 2 The structure of the dredging investigation tool is shown in the schematic view of the structure of the dredging investigation tool from another angle.
[0019] Figure 3 The top view of the dredging investigation tool is shown in the schematic view of the dredging investigation tool.
[0020] Figure 4 The structure of the manual measurement structure in the dredging investigation tool is shown in the schematic view of the structure of the manual measurement structure in the dredging investigation tool.
[0021] Figure 5 The structure of the electronic measurement structure in the dredging investigation tool is shown in the schematic view of the structure of the electronic measurement structure in the dredging investigation tool.
[0022] Wherein, (1), the hull, (2), artificial measurement structure, (3), electronic measurement structure, (4), sample preserver, (5), the engagement ring, (6), probe rod assembly, (7), long rod, (8), handle, (9), file, (10), mounting seat, (11), support seat, (12), support column, (13), sonar detector, (14), base, (15), rotary disc, (16), storage tank, (17), lever, (18), limit ring, (19), positioning frame, (20), handrail. DETAILED DESCRIPTION
[0023] As shown in the description Figures 1-3 The utility model discloses a dredging investigation tool, including the hull (1), and the hull is attached with power machine and has anchor tool still, still including artificial measurement structure (2), electronic measurement structure (3) and sample preserver (4), artificial measurement structure (2) is located on the hull (1), and electronic measurement structure (3) is located on the hull (1), and artificial measurement structure (2) and electronic measurement structure (3) mutually assist detection silt condition, and sample preserver (4) is located on the hull (1), and sample preserver (4) is used for saving sample water or sample silt, and artificial measurement structure (2) includes engagement ring (5) and probe rod assembly (6), and engagement ring (5) is located on the hull (1), and engagement ring (5) is equipped with multiple groups, and probe rod assembly (6) is engaged and is located on multiple engagement ring (5).
[0024] As shown in the description Figure 4 Probe rod assembly (6) includes long rod (7) and handle (8), and long rod (7) is engaged and is located on engagement ring (5), and handle (8) is located on long rod (7). Long rod (7) is equipped with file (9), if contact with silt, can leave silt residual trace, convenient for measuring water height, and file can also be used as the tool of collecting silt sample.
[0025] As shown in the description Figure 5 Electronic measurement structure (3) includes mounting seat (10), support seat (11), support column (12) and sonar detector (13), and mounting seat (10) is installed on the side of hull (1), and support seat (11) is located on mounting seat (10), and support seat (11) is symmetrically equipped with two groups, and support column (12) is located on support seat (11), and support column (12) is equipped with multiple groups, and sonar detector (13) is installed on support column (12) through bolt, and the attached equipment of sonar detector (13) can be placed in the hull (1).
[0026] As shown in the description Figure 2As shown, the sample holder (4) includes a base (14) and a rotating disc (15), the base (14) is arranged on the hull (1), the rotating disc (15) is rotatably arranged on the base (14), and a plurality of storage slots (16) are arranged on the rotating disc (15), in which the test tubes storing samples are placed, and if necessary, labels are pasted on the test tubes to distinguish them. The rotating disc (15) is provided with a plurality of shifting rods (17) along the circumferential side wall.
[0027] As shown in the accompanying drawings Figures 1-3 As shown, the hull (1) is provided with a limiting ring (18) on one side, which is used to help the long rod (7) to maintain a relative vertical angle, and the long rod (7) can pass through the limiting ring (18) to assist positioning when in use. The hull (1) is provided with a positioning frame (19) for placing a tool box to position the work box, and the tool box carries a dropper, a power supply and other tools. The hull (1) is provided with a plurality of handrails (20).
[0028] Specific use: after stopping the boat, if the surface of the boat is relatively stationary, the test can be directly performed, if the boat (1) is floating due to strong wind, the anchor can be considered to be fixed, the long rod (7) is taken off from the clamping ring (5), inserted into the water through the limiting ring (18), and marked on the long rod (7) at the water surface position after feeling the contact with the silt, the long rod (7) is pulled out to measure the position of the mark and the silt, so that the water depth can be known, and the sonar detector (13) can be used to detect the silt thickness and other data, the sampled water and silt are stored in the test tubes and placed in the storage slots (16), and after landing, the detection is performed.
[0029] It should be understood that although the present specification is described in terms of embodiments, not every embodiment contains only one independent technical solution, and the description manner of the specification is only for the sake of clarity, and the person skilled in the art should consider the specification as a whole, and the technical solutions in each embodiment can be appropriately combined to form other embodiments which can be understood by the person skilled in the art.
Claims
1. A dredging and surveying tool, comprising a hull (1), characterized in that: It also includes a manual measurement structure (2), an electronic measurement structure (3), and a sample preserver (4). The manual measurement structure (2) is located on the hull (1), and the electronic measurement structure (3) is located on the hull (1). The manual measurement structure (2) and the electronic measurement structure (3) assist each other in detecting the silt condition. The sample preserver (4) is located on the hull (1) and is used to preserve sample water or sample silt. The manual measurement structure (2) includes a locking ring (5) and a probe assembly (6). The locking ring (5) is located on the hull (1) and there are multiple sets of locking rings (5). The probe assembly (6) is locked onto multiple sets of locking rings (5).
2. The dredging and surveying tool according to claim 1, characterized in that: The probe rod assembly (6) includes a long rod (7) and a handle (8). The long rod (7) is engaged with the engagement ring (5), and the handle (8) is disposed on the long rod (7).
3. The dredging and surveying tool according to claim 2, characterized in that: The long rod (7) is provided with file marks (9).
4. The dredging and surveying tool according to claim 1, characterized in that: The electronic measurement structure (3) includes a mounting base (10), a support base (11), a support column (12), and a sonar detector (13). The mounting base (10) is installed on the side of the hull (1). The support base (11) is located on the mounting base (10). Two sets of the support base (11) are symmetrically arranged. The support column (12) is located on the support base (11). Multiple sets of the support column (12) are arranged. The sonar detector (13) is installed on the support column (12) by bolts.
5. The dredging and surveying tool according to claim 1, characterized in that: The sample preserver (4) includes a base (14) and a rotating disk (15). The base (14) is mounted on the hull (1), and the rotating disk (15) is rotatably mounted on the base (14). The rotating disk (15) is provided with multiple storage slots (16).
6. The dredging and surveying tool according to claim 5, characterized in that: The rotating disk (15) is provided with multiple sets of levers (17) along its circumferential sidewall.
7. The dredging and surveying tool according to claim 1, characterized in that: The hull (1) has a limiting ring (18) on one side, which is used to assist the long rod (7) in maintaining a relative vertical angle.
8. The dredging and surveying tool according to claim 7, characterized in that: The hull (1) is provided with a positioning frame (19).
9. A dredging and surveying tool according to claim 8, characterized in that: The hull (1) is equipped with multiple sets of handrails (20).