Water environment intelligent treatment dissolved oxygen regulation device
By designing a water environment intelligent treatment dissolved oxygen regulation device with multiple aeration modes, the problem of poor applicability of existing equipment has been solved, achieving efficient aeration at different water levels and orientations, and improving the flexibility and effectiveness of aeration operations.
Patent Information
- Application Number
- CN202410812998.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-06-23
- Publication Date
- 2026-01-02
- Estimated Expiration
- 2044-06-23
AI Technical Summary
The existing water environment control devices have limited options for aeration equipment, are not very applicable, and are difficult to efficiently complete various aeration operations.
A smart dissolved oxygen control device for water environment management was designed, which includes a preparatory tank, a blower, a lifting and sliding mounting frame, an aeration mechanism, and multiple aeration modes. The aeration mechanism is driven by a power mechanism to perform aeration in different areas and at different heights. Multiple aeration modes can be achieved by rotating and adjusting various aeration cylinders and aeration parts.
It improves the efficiency and applicability of aeration operations, enabling efficient aeration at different water levels and locations, and enhancing the flexibility and effectiveness of the aeration device.
Smart Images

Figure CN118702302B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of water quality treatment, in particular to a water environment intelligent treatment dissolved oxygen regulating device. BACKGROUND
[0002] Water environment is a crucial link in ecological environment, and it is rich in resources and species, and is the source of life for all life. Therefore, protecting the water environment is the premise of protecting the ecological environment. The dissolved oxygen content of the water environment is an important indicator. Water organisms need oxygen, and low dissolved oxygen content is not enough for species supply, which can lead to mass mortality of organisms. Therefore, the regulation of the dissolved oxygen content of the water environment is an important operation for protecting the water environment. The current regulation measures are generally aeration treatment. There are many aeration methods, and the current aeration equipment has too few options and is not very suitable. Based on this, the present application provides a dissolved oxygen regulating device with multiple aeration methods, which can efficiently complete the aeration operation of the water environment. SUMMARY
[0003] In view of the above technical problems, the present application has multiple aeration methods, which can efficiently complete the aeration operation of the water environment and have strong applicability.
[0004] The scheme used by the present application is as follows: a water environment intelligent treatment dissolved oxygen regulating device, comprising a preparation pool, a fan is arranged on one side of the preparation pool; a lifting mounting frame is arranged on the inner side of the preparation pool and slides up and down, power mechanisms are arranged at both ends of the lifting mounting frame, and an aeration mechanism is arranged on the lifting mounting frame and slides; the power mechanisms are used to drive the aeration mechanism; the aeration mechanism comprises a communication sliding box and a sliding seat which are slidably arranged on both sides of the lifting mounting frame, a rotating frame is rotatably arranged between the communication sliding box and the sliding seat, the communication sliding box is in communication with the fan, and one end of the rotating frame facing the communication sliding box is in communication with the communication sliding box; aeration cylinders are arranged in a linear array on the inner side of the rotating frame and are rotatably arranged on the rotating frame, a second transmission pipe is arranged on one side of the rotating frame, one end of the second transmission pipe is in communication with the communication sliding box, and the second transmission pipe is in communication with the aeration cylinders arranged in a linear array to transmit airflow; aeration parts are arranged in a circular array on the aeration cylinders and are rotatably arranged on the aeration cylinders, one end of each aeration part is in communication with the aeration cylinder, and an aeration hole is arranged on each aeration part.
[0005] Preferably, a lifting oil cylinder is fixedly arranged on the outer side of the preparation pool, and the lifting oil cylinder is used to control the lifting movement of the lifting mounting frame.
[0006] Preferably, the power mechanisms comprise a winding and unwinding motor and a winding and unwinding cylinder arranged on the lifting mounting frame, the winding and unwinding motor is used to drive the winding and unwinding cylinder, a winding and unwinding rope is arranged on the winding and unwinding cylinder in a winding and unwinding manner, a free end of the winding and unwinding rope is connected to the communication sliding box and the sliding seat of the aeration mechanism to drive the aeration mechanism, and guide wheels two and one are arranged at the upper and lower ends of the vertical region of the lifting mounting frame to guide the winding and unwinding rope.
[0007] Preferably, the aeration mechanism comprises a transmission pipe one arranged on the communication slide box, one end of the transmission pipe one is communicated with the fan, the communication slide box is a hollow structure, the rotating frame is provided with a connecting pipe one at one end facing the communication slide box, the connecting pipe one is communicated with one end of the transmission pipe two, and the connecting pipe one is rotationally connected with the communication slide box and communicated; the inside of the sliding seat is provided with a rotating motor, the output shaft of the rotating motor is connected with the rotating frame, for driving the rotating frame.
[0008] Preferably, the aeration mechanism comprises a connecting rack fixedly arranged on one side of the aeration cylinder, the aeration cylinder is a hollow structure; a connecting pipe two is arranged on the other side of the aeration cylinder in communication, the connecting pipe two is rotationally installed on the rotating frame, and the connecting pipe two is communicated with the transmission pipe two on the side of the rotating frame.
[0009] Preferably, the side of the rotating frame is fixedly provided with a control oil cylinder, and the control rack is slidingly arranged, the control oil cylinder is used for controlling the movement of the control rack, and the control rack and the connecting rack constitute a gear pair.
[0010] Preferably, the inside of the aeration cylinder is provided with a control motor at the central region, the output shaft of the control motor is provided with a control gear disc, and the control gear disc is used for driving the aeration part.
[0011] Preferably, the aeration part is provided with an engaging gear at one end facing the control gear disc, the engaging gear and the control gear disc constitute a gear pair, a connecting pipe three is arranged on the aeration cylinder in communication, a connecting pipe four is arranged at one end of the aeration part facing the connecting pipe three in communication, the connecting pipe four is rotationally connected with the connecting pipe three and communicated.
[0012] The beneficial effects of the present application compared with the prior art are: (1) when the aeration operation is carried out on the inner side of the preparation pool, the aeration holes of the aeration part are directed upward, that is, consistent with the direction of the end face of the aeration cylinder, the aeration operation is completed by releasing the airflow, further, the winding and unwinding of the cylinder is realized by the winding and unwinding motor, the winding and unwinding rope controls the winding and unwinding of the connecting slide box and slide, that is, the connecting slide box and slide move on the lifting mounting frame, that is, move in the preparation pool, so as to aerate in different areas, and improve the aeration operation efficiency; (2) the lifting mounting frame can be lifted and moved by the lifting oil cylinder, that is, the height position of the aeration mechanism in the preparation pool is adjusted, so as to carry out the aeration operation at different water levels; further, the rotating frame can be rotated by the rotating motor, that is, the aeration cylinder is directed to different directions, so that the airflow is sprayed in different directions, and the control rack is controlled to slide by the control oil cylinder, under the gear transmission, the aeration cylinder rotates, that is, the direction of the aeration part is changed, and the airflow spraying direction is further adjusted; (3) when the aeration treatment is carried out on the water surface, the end face of the aeration cylinder is perpendicular to the water surface and located in the water surface area, the aeration part is deflected, that is, the aeration hole of the aeration part is changed into a side surface rotating table, that is, the aeration hole is changed from the initial state of being perpendicular to the end face of the aeration cylinder to the state of being parallel to the end face of the aeration cylinder, the rotating frame is rotated by control, the aeration cylinder is rotated, and then the aeration part stirs the water, so that the water constantly separates from the water surface and jumps in the air, that is, the contact with the air is realized, and then the water surface aeration is completed. BRIEF DESCRIPTION OF DRAWINGS
[0013] Figure 1 It is a schematic diagram of the overall structure of the present application.
[0014] Figure 2 It is a schematic diagram of the installation structure of the aeration mechanism of the present application.
[0015] Figure 3 It is a schematic diagram of the installation structure of the aeration cylinder of the present application.
[0016] Figure 4 It is a schematic diagram of the local installation structure of the aeration mechanism of the present application.
[0017] Figure 5 It is a schematic diagram of the installation structure of the aeration part of the present application.
[0018] Figure 6 It is a schematic diagram of the installation structure of the control rack of the present application.
[0019] Attached reference numerals: 1-Preparation tank; 2-Lifting cylinder; 3-Fan; 4-Transmission pipe one; 5-Lifting mounting frame; 6-Connecting slide box; 7-Guide wheel one; 8-Retracting and releasing motor; 9-Retracting and releasing cylinder; 901-Retracting and releasing rope; 10-Guide wheel two; 11-Slide seat; 12-Rotating motor; 13-Rotating frame; 14-Transmission pipe two; 15-Connecting pipe one; 16-Aeration cylinder; 17-Control cylinder; 18-Control rack; 19-Connecting rack; 20-Connecting pipe two; 21-Aeration section; 22-Connecting pipe three; 23-Connecting pipe four; 24-Meshing gear; 25-Control gear disc; 26-Control motor. Detailed Implementation
[0020] Example: Figures 1 to 6 As shown, a fan 3 is provided on one side of the preparation pool 1 for transmitting airflow; a lifting mounting frame 5 is provided on the inner side of the preparation pool 1 for lifting and sliding, and a lifting cylinder 2 is fixed on the outer side of the preparation pool 1 for controlling the lifting and moving of the lifting mounting frame 5.
[0021] A power mechanism is provided at both ends of the lifting mounting frame 5, and an aeration mechanism is slidably mounted on the lifting mounting frame 5. The power mechanism is used to drive the aeration mechanism. The aeration mechanism includes a connecting slide box 6 and a slide seat 11 slidably mounted on both sides of the lifting mounting frame 5. The power mechanism includes a take-up and release motor 8 and a take-up and release cylinder 9 mounted on the lifting mounting frame 5. The take-up and release motor 8 is used to drive the take-up and release cylinder 9. A take-up and release rope 901 is taken up and released on the take-up and release cylinder 9. The free end of the take-up and release rope 901 is connected to the connecting slide box 6 and the slide seat 11 on the aeration mechanism to drive the aeration mechanism. Guide wheels 2 10 and guide wheels 1 7 are respectively provided at the upper and lower ends of the vertical area of the lifting mounting frame 5 to guide the take-up and release rope 901.
[0022] A rotating frame 13 is rotatably installed between the connecting slide box 6 and the slide seat 11. The connecting slide box 6 is connected to the fan 3, and the end of the rotating frame 13 facing the connecting slide box 6 is connected to the connecting slide box 6. An aeration cylinder 16 is arranged in a linear array on the inner side of the rotating frame 13. The aeration cylinder 16 is rotatably installed on the rotating frame 13. A transmission pipe 24 is provided on one side of the rotating frame 13. One end of the transmission pipe 24 is connected to the connecting slide box 6, and the transmission pipe 24 is connected to the aeration cylinder 16 arranged in a linear array to transmit airflow. An aeration section 21 is arranged in a circular array on the aeration cylinder 16. The aeration section 21 is rotatably installed on the aeration cylinder 16, and one end of the aeration section 21 is connected to the aeration cylinder 16. Aeration holes are arranged on the aeration section 21.
[0023] The aeration mechanism further comprises a transmission pipe 14 arranged on the communication slide box 6, one end of the transmission pipe 14 is communicated with the fan 3, the communication slide box 6 is a hollow structure, the rotating frame 13 arranged at one end of the communication slide box 6 is provided with a connecting pipe 15, the connecting pipe 15 is communicated with one end of the transmission pipe 14, and the connecting pipe 15 is rotatably connected with the communication slide box 6 and communicated; the inside of the sliding seat 11 is provided with a rotating motor 12, the output shaft of the rotating motor 12 is connected with the rotating frame 13, for driving the rotating frame 13; the aeration mechanism further comprises a connecting rack 19 fixedly arranged on one side of the aeration cylinder 16, the aeration cylinder 16 is a hollow structure; the other side of the aeration cylinder 16 is communicated with a connecting pipe 20, the connecting pipe 20 is rotatably installed on the rotating frame 13, and the connecting pipe 20 is communicated with the transmission pipe 14 on the side surface of the rotating frame 13.
[0024] The side surface of the rotating frame 13 is fixedly provided with a control oil cylinder 17, and a control rack 18 is slidingly arranged, the control oil cylinder 17 is used for controlling the movement of the control rack 18, and the control rack 18 and the connecting rack 19 constitute a gear pair; the inside of the aeration cylinder 16 is provided with a control motor 26 at the central region, the output shaft of the control motor 26 is provided with a control tooth disc 25, and the control tooth disc 25 is used for driving the aeration part 21; one end of the aeration part 21 facing the control tooth disc 25 is provided with an engaging gear 24, the engaging gear 24 and the control tooth disc 25 constitute a gear pair, and the aeration cylinder 16 is communicated with a connecting pipe 22, one end of the aeration part 21 facing the connecting pipe 22 is communicated with a connecting pipe 23, and the connecting pipe 23 is rotatably connected with the connecting pipe 22 and communicated.
[0025] The working principle is as follows: the fan 3 works, can transmit airflow, transmits the airflow to the communication slide box 6 through the transmission pipe 14, and then passes through the transmission pipe 14, the aeration cylinder 16, and finally transmits to the aeration part 21, and is released through the aeration hole on the aeration part 21.
[0026] Specifically, when the aeration operation is performed at the bottom of the preparation pool 1, the aeration holes of the aeration part 21 are directed upward, i.e. consistent with the end surface direction of the aeration cylinder 16, and the aeration operation is completed by releasing the airflow. Further, through the operation of the winding and unwinding motor 8, the winding and unwinding cylinder 9 rotates, and the winding and unwinding rope 901 controls the winding and unwinding of the communication slide box 6 and the slide base 11, i.e. moves the communication slide box 6 and the slide base 11 on the lifting mounting frame 5, i.e. moves inside the preparation pool 1 to perform aeration in different areas, thereby improving the aeration operation efficiency. Further, the lifting mounting frame 5 can also be controlled to move up and down by the lifting oil cylinder 2, i.e. adjust the height position of the aeration mechanism inside the preparation pool 1 to perform aeration operation at different water levels. Further, the rotating frame 13 can be controlled to rotate by the rotating motor 12, i.e. make the aeration cylinder 16 face different directions so that the airflow is sprayed in different directions, and the control rack 18 is controlled to slide by the control oil cylinder 17, and the aeration cylinder 16 rotates under the gear transmission, i.e. changes the direction of the aeration part 21, further adjusts the airflow spraying direction. The above is the bottom aeration treatment.
[0027] Further, when the aeration treatment is performed on the water surface, the height of the lifting mounting frame 5 is adjusted, and the orientation of the aeration cylinder 16 is adjusted so that the end surface of the aeration cylinder 16 is perpendicular to the water surface and located in the water surface area. Specifically, the control rack 25 is controlled to rotate by controlling the motor 26 to work, and the aeration part 21 deflects under the gear transmission, i.e. the aeration holes of the aeration part 21 change to a side surface turntable, i.e. the aeration holes change from the initial state of being perpendicular to the end surface of the aeration cylinder 16 to the state of being parallel to the end surface of the aeration cylinder 16. The aeration cylinder 16 is controlled to rotate by controlling the rotating frame 13 to rotate, and then the aeration part 21 stirs the water to make the water constantly separate from the water surface and jump in the air, i.e. realize the contact with the air, and then complete the water surface aeration.
Claims
1. A water environment intelligent treatment dissolved oxygen regulating device, comprising a preparation pool (1), a fan (3) is arranged on one side of the preparation pool (1); characterized in that: The lifting mounting frame (5) is arranged on the inner side of the preparation pool (1) and slides up and down, power mechanisms are arranged at both ends of the lifting mounting frame (5), and an aeration mechanism is slidably arranged on the lifting mounting frame (5); the power mechanisms are used for driving the aeration mechanism; the aeration mechanism comprises a communication sliding box (6) and a sliding seat (11) which are slidably arranged on both sides of the lifting mounting frame (5), a rotating frame (13) is rotatably arranged between the communication sliding box (6) and the sliding seat (11), the communication sliding box (6) is in communication with the fan (3), and one end of the rotating frame (13) that faces the communication sliding box (6) is in communication with the communication sliding box (6); aeration cylinders (16) are arranged in a linear array on the inner side of the rotating frame (13), the aeration cylinders (16) are rotatably arranged on the rotating frame (13), a transmission pipe two (14) is arranged on one side of the rotating frame (13), one end of the transmission pipe two (14) is in communication with the communication sliding box (6), and the transmission pipe two (14) is in communication with the aeration cylinders (16) arranged in a linear array to transmit airflow; aeration parts (21) are arranged in a circular array on the aeration cylinders (16), the aeration parts (21) are rotatably arranged on the aeration cylinders (16), one end of the aeration parts (21) is in communication with the aeration cylinders (16), and the aeration parts (21) are provided with aeration holes; The aeration mechanism comprises a connecting rack (19) fixedly arranged on one side of the aeration cylinder (16), and the aeration cylinder (16) has a hollow structure; a connecting pipeline two (20) is arranged in communication on the other side of the aeration cylinder (16), and the connecting pipeline two (20) is rotatably arranged on the rotating frame (13) and in communication with the transmission pipe two (14) on the side of the rotating frame (13); A control oil cylinder (17) is fixedly arranged on the side of the rotating frame (13), and a control rack (18) is slidably arranged, the control oil cylinder (17) is used for controlling the movement of the control rack (18), and the control rack (18) and the connecting rack (19) form a gear pair; A control motor (26) is arranged in the inner central region of the aeration cylinder (16), a control tooth disc (25) is arranged on the output shaft of the control motor (26), and the control tooth disc (25) is used for driving the aeration part (21); One end of the aeration part (21) that faces the control tooth disc (25) is provided with an engaging gear (24), the engaging gear (24) and the control tooth disc (25) form a gear pair, a connecting pipeline three (22) is arranged in communication on the aeration cylinder (16), one end of the aeration part (21) that faces the connecting pipeline three (22) is provided with a connecting pipeline four (23), and the connecting pipeline four (23) is rotatably connected and in communication with the connecting pipeline three (22). 2.The water environment intelligent treatment dissolved oxygen regulating device according to claim 1, characterized in that: The lifting oil cylinder (2) is fixedly arranged on the outer side of the preparation pool (1) and is used for controlling the lifting movement of the lifting mounting frame (5). 3.The water environment intelligent treatment dissolved oxygen regulating device according to claim 1, characterized in that: The power mechanism comprises a winding and unwinding motor (8) and a winding and unwinding drum (9) arranged on the lifting mount (5), the winding and unwinding motor (8) is used for driving the winding and unwinding drum (9), the winding and unwinding drum (9) is arranged with a winding and unwinding rope (901), the free end of the winding and unwinding rope (901) is connected with the communication sliding box (6) and the sliding seat (11) of the aeration mechanism, so as to drive the aeration mechanism; the guide wheel two (10) and the guide wheel one (7) are arranged at the upper and lower ends of the vertical area of the lifting mount (5) respectively, so as to guide the winding and unwinding rope (901).
4. The water environment intelligent treatment dissolved oxygen regulating device according to claim 3, characterized in that: The aeration mechanism comprises a transmission pipe one (4) arranged on the communication sliding box (6), one end of the transmission pipe one (4) is communicated with the fan (3), the communication sliding box (6) is a hollow structure, the one end of the rotating frame (13) facing the communication sliding box (6) is provided with a connecting pipe one (15), the connecting pipe one (15) is communicated with one end of the transmission pipe two (14), and the connecting pipe one (15) is rotatably connected with the communication sliding box (6) and communicated; the inside of the sliding seat (11) is provided with a rotating motor (12), the output shaft of the rotating motor (12) is connected with the rotating frame (13), and the rotating frame (13) is used for driving the rotating frame (13).
Citation Information
Patent Citations
Environment-friendly treatment device for lakes and rivers
CN117699998A
Organic industrial wastewater aeration treatment device
CN218642569U