Channel and traction device convenient for collecting and releasing hydrological remote control measuring ship
By designing automated collection and release channels and traction devices, pallet trucks and electric winches are used to achieve safe and automatic collection and release of remotely controlled surveying ships, solving the problems of ship collisions and manual operation safety hazards, and improving monitoring accuracy and work efficiency.
Patent Information
- Application Number
- CN202422794744.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-16
- Publication Date
- 2025-08-26
- Estimated Expiration
- 2034-11-16
AI Technical Summary
Existing remote-controlled test ships are prone to bumps during the collection and release process, which affects the service life and monitoring accuracy, and there are safety hazards for manual operation.
A system including a collection and release channel, a traction device and an automatic silting device are designed, and the automatic storage and storage of the test ship is achieved by using a pallet truck and an electric winch. It combines wireless control and electric magnetic suction pieces to ensure the safe entry and recovery of the test ship into the water and recycling of the test ship, and is protected by 304 stainless steel material and anti-collision strips.
It realizes automatic collection and distribution of ship measurement, avoids bumps, improves monitoring accuracy and safety, reduces labor costs, and improves work efficiency.
Smart Images

Figure CN223267021U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to a channel and a traction device which are convenient for deploying and retracting a hydrological remote-controlled survey ship, and belongs to the technical field of hydrological monitoring. Background Art
[0002] With the advancement of technology, more and more advanced equipment, such as drones and remote-controlled survey vessels, is being deployed in the field of hydrological monitoring. In actual monitoring operations, we adhere to the principle of "modern hydrology" and continuously innovate and improve, striving to make these advanced devices provide more convenient and stable applications for our hydrological monitoring work.
[0003] In practice, we've discovered that surveying with remote-controlled survey vessels often requires the combined efforts of multiple personnel. Manually maneuvering the survey vessel into the water can easily cause bumps on the hull and propeller, impacting both the vessel's lifespan and monitoring accuracy. Furthermore, the complexities of the monitoring sections create numerous safety risks associated with manual handling. To ensure monitoring accuracy, efficiency, and personnel safety, we've implemented innovative improvements to the deployment and retraction methods of the hydrographic remote-controlled survey vessel. Utility Model Content
[0004] In response to the deficiencies in the background technology, the utility model provides a channel and a traction device for facilitating the retrieval and deployment of a hydrological remote-controlled survey vessel, which can realize automatic retrieval and deployment of the survey vessel, protect the survey vessel from collisions, ensure personnel safety, ensure monitoring accuracy, and improve work efficiency.
[0005] In order to solve the above technical problems, the present invention adopts the following technical solutions:
[0006] A channel and a traction device for facilitating the deployment and retraction of a hydrological remote control survey vessel, comprising a deployment and retraction channel, a traction device installed in the deployment and retraction channel, a deployment and retraction platform provided at the bottom of the deployment and retraction channel, an automatic silt removal device installed on the deployment and retraction platform, and a protection box for protecting the traction device installed at the top of the deployment and retraction channel;
[0007] The traction device includes a shipping device and a power device. The shipping device moves along the tracks on the two side walls of the channel, and the tracks are installed parallel to the two side walls of the channel. The shipping device includes a pallet truck, and a wirelessly controlled electric magnetic suction part is fixed on the bow part of the pallet truck where the hull is docked.
[0008] Furthermore, observation roads are provided on both sides of the retractable channel.
[0009] Furthermore, the pallet truck is provided with rail wheels on both sides along the running direction, and the rail wheels are rollingly connected to the rails.
[0010] Furthermore, the pallet truck is equipped with a battery for supplying power to the electric magnetic element.
[0011] Furthermore, rollers having a supporting function are installed below the end of the pallet truck along the forward direction.
[0012] Furthermore, the power device includes a wireless remote-controlled electric winch, which is installed in a protective box. A traction rope is wound around the electric winch, and one end of the traction rope is connected to the pallet truck.
[0013] Furthermore, the dredging device includes a plurality of dredging pipes evenly distributed on the retractable platform, the dredging pipes are all connected to the outlet of the dredging pump, and the pipe walls of the dredging pipes are provided with openings.
[0014] Furthermore, the door of the protection box is opened by remote control.
[0015] Furthermore, the track is made of C-shaped 304 stainless steel with the opening facing downward.
[0016] Furthermore, the pallet truck is made of 304 stainless steel and is wrapped with anti-collision strips on the outside.
[0017] Compared with the prior art, the present invention has the following advantages after adopting the above technical solution:
[0018] The utility model fully considers the characteristics of different types of hydrological remote control survey vessels, makes the safety space more reasonable, and effectively avoids various possible collisions; the hydrological observation road is combined with the retraction and deployment channel, which not only facilitates the automatic retraction and deployment operation of the survey vessel, but also provides better conditions for hydrological observation;
[0019] The power system and control method of the traction device have been optimized to be more intelligent, efficient and stable;
[0020] The application of this utility model not only effectively protects hydrological remote-controlled survey ship equipment, protecting the survey ship from collisions, reducing repair and maintenance costs, and ensuring monitoring accuracy, but also saves a significant amount of labor costs and improves work efficiency. It also provides greater assurance of safe production and makes operations safer and more convenient for workers.
[0021] The present invention will be described in detail below with reference to the accompanying drawings and embodiments. BRIEF DESCRIPTION OF THE DRAWINGS
[0022] Figure 1 It is a structural diagram of the utility model;
[0023] Figure 2 It is a schematic diagram of the installation of the power unit;
[0024] Figure 3 It is a schematic diagram of the installation of the consignment device;
[0025] Figure 4 This is a schematic diagram of the installation of an automatic silt removal device.
[0026] In the figure, 1-retractable channel; 2-observation road; 3-retractable platform; 4-shipping device, 41-pallet truck, 42-track wheel, 43-electric magnetic part, 44-roller; 5-power device, 51-electric winch, 52-traction rope; 6-track; 7-protection box; 8-automatic dredging device, 81-dredging pump, 82-dredging pipe. DETAILED DESCRIPTION
[0027] In order to have a clearer understanding of the technical features, purposes and effects of the present invention, the specific implementation methods of the present invention are now described with reference to the accompanying drawings.
[0028] like Figures 1-4 As shown together, the utility model provides a channel and a traction device that are convenient for the retrieval and deployment of a hydrological remote-controlled survey ship, including a retractable channel 1, a traction device installed in the retractable channel 1, the traction device is used to realize the automatic retrieval and deployment of the remote-controlled survey ship, a retractable platform 3 is provided at the bottom of the retractable channel 1, an automatic dredging device 8 is installed on the retractable platform 3, and a protective box 7 for protecting the traction device is installed on the top of the retractable channel 1.
[0029] Observation paths 2 are located on either side of the retractable channel 1. The channel 1 has a defined width and depth, constructed according to the slope of the slope, and cast from concrete. It is suitable for various types of remote-controlled survey vessels currently in service. Observation paths 2 facilitate movement and operation.
[0030] The traction device includes a shipping device 4 and a power device 5. The shipping device 4 moves along tracks 6 on both side walls of the channel 1. The tracks 6 are installed parallel to both side walls of the channel 1.
[0031] The shipping device 4 includes a pallet truck 41 . Rail wheels 42 are installed on both sides of the pallet truck 41 along the running direction. The rail wheels 42 are in rolling connection with the rails 6 .
[0032] An electric magnetic component 43 is fixed to the bow of the pallet truck 41 where the hull is docked. The electric magnetic component is wirelessly controlled. When the hull is recovered, it is adsorbed by the iron plate at the front end of the hull and tows the hull to dock correctly on the pallet truck 41.
[0033] The pallet truck 41 is equipped with a battery for supplying power to the electric magnetic element 43 , and a roller 44 for supporting is installed below the end of the pallet truck 41 in the forward direction.
[0034] The power unit 5 includes an electric winch 51, which is wirelessly remote-controlled and equipped with a variable frequency motor to ensure sufficient and stable power. The electric winch 51 is installed in a protective box 7. A traction rope 52 is wound around the electric winch 51, and one end of the traction rope 52 is connected to the pallet truck 41. The forward and reverse movement of the pallet truck 41 is controlled by the wireless remote control of the electric winch 51.
[0035] The desilting device 8 includes a plurality of desilting pipes 82 evenly distributed on the retractable platform 3 . The desilting pipes 82 are all connected to the outlet of the desilting pump 81 . Openings are provided on the pipe walls of the desilting pipes 82 .
[0036] The desilting pump 81 delivers water into the desilting pipe 82 and then sprays water upward from the opening to flush and clean the silt on the retractable platform 3 to prevent the presence of silt from affecting the normal retraction and deployment of the remote control survey vessel.
[0037] The door of the protection box 7 in the present invention is opened by remote control.
[0038] The track 6 of the utility model is made of C-shaped 304 stainless steel material, with the opening facing downward, and has the functions of anti-falling, waterproof, rust-proof and anti-theft.
[0039] The pallet truck 41 of the present invention is made of 304 stainless steel and is wrapped with anti-collision strips on the outside, so it has waterproof, rust-proof and anti-collision functions.
[0040] The specific working principle of this utility model:
[0041] When the survey ship needs to enter the water for monitoring, the door of the protection box 7 is opened remotely, the traction device is started, and after the pallet truck 41 is driven out of the protection box 7, the pallet truck 41 smoothly sends the survey ship from the retracting platform 3 into the water along the track 6. The survey ship naturally separates from the traction device with the help of the buoyancy of the water, and the remote-controlled survey ship can carry out the monitoring task.
[0042] After the monitoring is completed, the bow of the survey ship is remotely controlled to the electric magnetic position above the pallet truck 41, and the wireless electric magnetic component 43 is remotely controlled to release the electromagnetic attraction, and the hull is strongly adsorbed to the pallet truck 41. The traction device is started to smoothly tow the survey ship from the river channel and recover it into the protection box 7. The door of the protection box 7 is closed remotely, and the operation is completed.
[0043] The above description is merely an example of the preferred embodiment of the present invention. Any details not described in detail are common knowledge within the art. The scope of protection of the present invention is determined by the claims. Any equivalent modifications based on the technical teachings of the present invention are also within the scope of protection of the present invention.
Claims
1. A channel and traction device for facilitating the deployment and retraction of a hydrological remote-controlled survey vessel, characterized in that: The invention comprises a retractable channel (1), a traction device is installed in the retractable channel (1), a retractable platform (3) is provided at the bottom of the retractable channel (1), an automatic silt removal device (8) is installed on the retractable platform (3), and a protection box (7) for protecting the traction device is installed at the top of the retractable channel (1); The traction device comprises a shipping device (4) and a power device (5), the shipping device (4) moves along tracks (6) on the two side walls of the channel (1), and the tracks (6) are installed parallel to the two side walls of the channel (1); the shipping device (4) comprises a pallet truck (41), and a wirelessly controlled electric magnetic attraction part (43) is fixed to the bow part of the pallet truck (41) where the ship hull is docked.
2. A channel and traction device for facilitating the deployment and retraction of a hydrological remote-controlled survey vessel as claimed in claim 1, characterized in that: Observation roads (2) are respectively provided on both sides of the retractable channel (1).
3. A channel and traction device for facilitating the deployment and retraction of a hydrological remote-controlled survey vessel as claimed in claim 1, characterized in that: The pallet truck (41) is provided with rail wheels (42) on both sides along the running direction, and the rail wheels (42) are rollingly connected to the rails (6).
4. A channel and traction device for facilitating the deployment and retraction of a hydrological remote-controlled survey vessel as claimed in claim 1, characterized in that: The pallet truck (41) is equipped with a battery for supplying power to the electric magnetic attraction member (43).
5. The channel and traction device for facilitating the deployment and retraction of a hydrological remote-controlled survey vessel according to claim 1, characterized in that: A roller (44) having a supporting function is installed below the end of the pallet truck (41) in the forward direction.
6. A channel and traction device for facilitating the deployment and retraction of a hydrological remote-controlled survey vessel as claimed in claim 1, characterized in that: The power device (5) includes a wireless remote-controlled electric winch (51), which is installed in a protective box (7). A traction rope (52) is wound around the electric winch (51), and one end of the traction rope (52) is connected to the pallet truck (41).
7. A channel and traction device for facilitating the deployment and retraction of a hydrological remote-controlled survey vessel as claimed in claim 1, characterized in that: The desilting device (8) comprises a plurality of desilting pipes (82) evenly distributed on the retractable platform (3), the desilting pipes (82) are all connected to the outlet of the desilting pump (81), and the pipe wall of the desilting pipe (82) is provided with an opening.
8. The channel and traction device for facilitating the deployment and retraction of a hydrological remote-controlled survey vessel according to claim 1, characterized in that: The door of the protection box (7) is opened by remote control.
9. The channel and traction device for facilitating the deployment and retraction of a hydrological remote-controlled survey vessel according to claim 1, characterized in that: The track (6) is made of C-shaped 304 stainless steel material, with the opening facing downward.
10. The channel and traction device for facilitating the deployment and retraction of a hydrological remote-controlled survey vessel according to claim 1, characterized in that: The pallet truck (41) is made of 304 stainless steel and is wrapped with anti-collision strips on the outside.