A mobile algae suction device

By using a mobile algae suction device, a trimaran-powered vessel, and a high-flow algae suction pump, combined with wireless monitoring, efficient removal of cyanobacteria and water surface treatment have been achieved. This solves the problem of poor mobility of existing equipment and improves treatment efficiency and environmental adaptability.

CN115162300BActive Publication Date: 2025-11-25ANHUI LEIKE ENVIRONMENTAL TECH CO LTD
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Patent Information

Application Number
CN202210758394.1
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-06-30
Publication Date
2025-11-25
Estimated Expiration
2042-06-30

AI Technical Summary

Technical Problem

Existing emergency cyanobacteria removal equipment has poor mobility, cannot track algal blooms in real time, has low processing efficiency, and traditional equipment affects the water landscape and ecology.

Method used

Design a mobile algae suction device that uses a trimaran propulsion vessel to drive an algae water collection platform and delivery pipeline, combined with a high-flow algae suction pump and a wireless monitoring probe, to flexibly track the area of ​​cyanobacterial blooms and adjust the operation plan in real time.

Benefits of technology

It improves the efficiency of algae water collection, can remove blue-green algae in large flow rates and efficiently, adapts to multiple operating scenarios, reduces the impact on the water surface environment, and features high automation and low energy consumption.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The application discloses a mobile algae suction device, which comprises a mobile ship body, an algae water collecting platform and an algae water conveying pipeline. The algae water collecting platform comprises a floating body connected to the front end of the mobile ship body and an algae suction pump. The floating body is provided with an algae suction channel. The algae suction pump is arranged in the algae suction channel and the inlet of the algae suction pump is communicated with the algae suction channel. The bottom of the mobile ship body is provided with a positioning pipeline. The inlet of the algae water conveying pipeline is connected with the outlet of the algae suction pump. The outlet of the algae water conveying pipeline extends to the rear end of the ship body through the positioning pipeline from the front end of the ship body. The algae suction device can track the outbreak area of blue algae in a mobile and flexible manner.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of blue-green algae treatment, in particular to a mobile algae suction device. BACKGROUND

[0002] The emergency disposal of blue-green algae is a difficult problem faced by large lakes, reservoirs and rivers in China. The time and location of blue-green algae outbreak are influenced by the environment, temperature and wind direction, and there is serious uncertainty. Currently, the algae water separation station and fixed algae collection platform used for blue-green algae emergency salvage have poor mobility in the use process and cannot track the algal bloom in real time, but can only deal with blue-green algae by waiting for the situation. At the same time, the arrangement of the enclosure on the water surface will form a water surface cut, affecting the water landscape and water ecology. The existing algae water collection ship has small flow, which cannot meet the processing capacity requirement when the blue-green algae outbreak, and has low processing efficiency. SUMMARY

[0003] The technical problem to be solved by the present application is to provide a mobile algae suction device to improve the algae water collection efficiency, track the algal bloom flexibly, and quickly remove the blue-green algae.

[0004] The technical scheme of the present application is as follows:

[0005] A mobile algae suction device, comprising a mobile ship body, an algae water collection platform and an algae water conveying pipeline, the algae water collection platform comprising a floating body connected to the front end of the mobile ship body and an algae suction pump, the floating body being provided with an algae suction channel, the inlet of the algae suction channel penetrating through the outer wall of the floating body, the algae suction pump being arranged in the algae suction channel and the inlet of the algae suction pump being communicated with the algae suction channel; the bottom of the mobile ship body being provided with a positioning pipeline, the inlet of the algae water conveying pipeline being connected with the outlet of the algae suction pump, and the outlet of the algae water conveying pipeline extending to the rear end of the ship body from the front end of the ship body through the positioning pipeline.

[0006] The mobile ship body is a three-body propulsion power ship, which comprises a main ship body and side wings connected to both sides of the main ship body, and an electric propeller installed on each side wing, the front end of each side wing being connected with a horizontal connecting rod, the rear end of the floating body being fixedly connected with the front ends of the two horizontal connecting rods, and the front end of the main ship body being provided with a wireless monitoring probe.

[0007] The three-body propulsion power ship is a remote control ship.

[0008] The floating body is composed of a plastic float, and the algae suction pump is a large-flow algae suction pump.

[0009] The algae suction channel is provided with three inlets penetrating through the front side wall and the left and right side walls of the floating body, and a filter grating net is arranged on the front side wall and the left and right side walls of the floating body, the filter grating net filtering and blocking the three inlets of the algae suction channel.

[0010] The floating body top of the algal water collection platform is provided with an electric control box, and the algal water pump is connected with the electric control box to realize power supply.

[0011] The algal water conveying pipeline is provided with a pipeline float on part of the rear end of the ship body.

[0012] The algal water conveying pipeline is a multi-section spliced PVC sealing rubber pipe, and adjacent two PVC sealing rubber pipes are sealed and connected through a pipeline quick connector.

[0013] The advantages of the present application are:

[0014] (1), the present application is provided with a moving ship body, the moving ship body drives the algal water collection platform and the algal water conveying pipeline, which can track the cyanobacteria outbreak area flexibly and quickly remove cyanobacteria.

[0015] (2), compared with the current traditional algal water salvage ship, the algal water collection amount is large, and the present application controls the overall draft of 25-35cm, which is shallow, can reach the nearshore cyanobacteria gathering area, and can accurately suck large flow high concentration algal water.

[0016] (3), the front end of the main ship body of the present application is provided with a wireless monitoring probe, which can accurately understand the outbreak degree of cyanobacteria and adjust the operation scheme in real time.

[0017] (4), the moving ship body of the present application adopts a three-body propulsion power ship, which can be manually controlled in the manned state, and can be remotely controlled in the unmanned state, has the advantages of high automation degree, shallow draft, small self-weight, strong wind resistance, high stability, low energy consumption in the navigation process, and convenient long-time operation. BRIEF DESCRIPTION OF DRAWINGS

[0018] Fig. 1 is the front view of the present application.

[0019] Fig. 2 is the top view of the algal water collection platform connected to the moving ship body of the present application.

[0020] Fig. 3 is the structural schematic view of the algal water collection platform of the present application.

[0021] Reference signs: 1-moving ship body, 2-algal water collection platform, 3-algal water conveying pipeline, 4-positioning pipeline, 5-pipeline float, 11-main ship body, 22-side wing, 13-electric propulsion, 14-horizontal connecting rod, 15-wireless monitoring probe, 21-floating body, 22-algal water pump, 23-algal water channel, 24-filtering grid, 25-electric control box. DETAILED DESCRIPTION

[0022] With reference to the drawings of the embodiments of the present application, the technical solutions in the embodiments of the present application will be clearly and completely described. Obviously, the described embodiments are only a part of the embodiments of the present application, rather than all the embodiments of the present application. Based on the embodiments of the present application, all the other embodiments obtained by a person of ordinary skill in the art without creative work fall within the protection scope of the present application.

[0023] See Figs. 1-3 A mobile algae suction device comprises a mobile ship body 1, an algae water collection platform 2 and an algae water conveying pipeline 3.

[0024] The mobile ship body is a three-body propulsion power ship that can be remotely controlled, manually controlled in a manned state and remotely controlled in an unmanned state. The three-body propulsion power ship comprises a main ship body 11, side wings 12 connected to both sides of the main ship body 11 and electric propellers 13 installed on each side wing 12. The front end of each side wing 12 is connected with a horizontal connecting rod 14, and the front end of the main ship body 11 is provided with a wireless monitoring probe 15.

[0025] The algae water collection platform 2 comprises a floating body 21, a large-flow algae suction pump 22, filter grating nets 24 and an electric control box 25. The rear end of the floating body 21 is fixedly connected with the front ends of the two horizontal connecting rods 14. The floating body 21 is provided with an algae suction passage 23, and the top end of the floating body 21 is provided with the electric control box 24. The large-flow algae suction pump 22 is arranged in the algae suction passage 23 and the inlet of the algae suction pump 22 is communicated with the algae suction passage 23. The large-flow algae suction pump 22 is connected with the electric control box 24 to realize power supply. The algae suction passage 23 is provided with three inlets which are respectively penetrated through the front side wall and the left and right side walls of the floating body 21. The front side wall and the left and right side walls of the floating body 21 are both provided with the filter grating nets 24. The filter grating nets 24 filter and block the three inlets of the algae suction passage 23 to filter sundries in the algae water.

[0026] The bottom of the main ship body 11 is provided with a positioning pipeline 4. The inlet of the algae water conveying pipeline 3 is connected with the outlet of the algae suction pump 22. The outlet of the algae water conveying pipeline 3 extends to the rear end of the main ship body 11 after penetrating through the positioning pipeline 4 from the front end of the main ship body 11. The part of the algae water conveying pipeline 3 located at the rear end of the main ship body 11 is provided with a pipeline float 5. The algae water conveying pipeline 3 is a multi-section spliced PVC sealing rubber pipe. The adjacent two sections of the PVC sealing rubber pipe are sealingly connected through a pipeline quick connector.

[0027] The floating body 21 is composed of plastic floating buoys and fixedly integrated by stainless steel welding. The water inlet depth of the inlet of the algae suction passage 23 is controlled to be 2-5 cm. The ballast water is reserved on the floating body 21. The water inlet depth is adjusted by controlling the ballast water amount of the floating body 21, so as to adjust the surface layer depth of the sucked algae water.

[0028] In actual use, multiple mobile algae suction devices of the present application can be arranged on the surface of a river or lake to perform joint operation. After the algae suction pump 22 of each mobile algae suction device is started, the algae water is pumped by the algae suction pump 22 into the algae water conveying pipeline 3 after passing through the algae suction channel 23, and the algae water in the algae water conveying pipeline 3 is conveyed to a matched cyanobacteria magnetic trapping ship for online separation and magnetic trapping of the algae water, thereby effectively realizing environmental protection treatment of cyanobacteria.

[0029] The image data monitored by the wireless monitoring probe 15 includes algae density and turbidity, and the monitoring image is wirelessly transmitted to a remote monitoring platform in real time for display. The degree of cyanobacteria outbreak can be determined according to the conditions of the algae density and turbidity, and a corresponding processing scheme is made.

[0030] Although embodiments of the present application have been shown and described, it is to be understood that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present application, and the scope of the present application is defined by the appended claims and their equivalents.

Claims

1. A mobile algae suction device, characterized by: The algae water collecting platform comprises a floating body connected to the front end of the moving ship body and an algae suction pump, and the floating body is provided with an algae suction channel, the inlet of the algae suction channel penetrating through the outer wall of the floating body, and the algae suction pump is arranged in the algae suction channel and the inlet of the algae suction pump is communicated with the algae suction channel. The moving ship body is a three-body propulsion power ship, which comprises a main ship body, side wings connected to the two sides of the main ship body, and electric propellers installed on each side wing, and the front end of each side wing is connected with a horizontal connecting rod, the rear end of the floating body is fixedly connected with the front ends of the two horizontal connecting rods, and the front end of the main ship body is provided with a wireless monitoring probe. The algae suction channel is provided with three inlets penetrating through the front side wall and the left and right side walls of the floating body, and the front side wall and the left and right side walls of the floating body are provided with filter grating nets for filtering and blocking the three inlets of the algae suction channel.

2. The mobile algae suction device according to claim 1, characterized in that: The three-body propulsion power ship is a remote control ship.

3. The mobile algae suction device according to claim 1, characterized in that: The floating body is composed of plastic floating cylinders, and the algae suction pump is a large-flow algae suction pump.

4. The mobile algae suction device according to claim 1, characterized in that: The top end of the floating body of the algae water collecting platform is provided with an electric control box, and the algae suction pump is connected with the electric control box to realize power supply.

5. The mobile algae suction device according to claim 1, characterized in that: The algae water conveying pipeline is provided with a pipeline float on the part of the rear end of the ship body.

6. The mobile algae suction device according to claim 1, characterized in that: The algae water conveying pipeline is a multi-section spliced PVC sealing rubber pipe, and adjacent two PVC sealing rubber pipes are sealed and connected through a pipeline quick connector.

Citation Information

Patent Citations

  • Novel magnetic catching ship algae-laden water extracting device

    CN111676924A

  • Overflow oil recovery variant ship based on intelligent suction port

    CN114560048A

  • Blue-green algae removing ship

    CN214460243U