A treatment device and method for landscape water body restoration
By using mixed components in landscape water body repair equipment to pre-mix water bodies and drugs, and spraying the mixture of water in atomized form by lifting the spraying component, the problem of difficult to evenly distribute the drugs is solved, and the repair efficiency and convenience are improved.
Patent Information
- Application Number
- CN202510338715.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-21
- Publication Date
- 2025-06-24
- Estimated Expiration
- 2045-03-21
AI Technical Summary
When existing landscape water body repair equipment is used, the throw-out drug administration method makes it difficult to distribute the drugs evenly, affecting the repair efficiency.
The treatment equipment is adopted that includes a shelf assembly, a drive assembly, a down pressure assembly, a shelf assembly, a lift spray assembly, a conditioning assembly and a mixing assembly. The water body and medicine are premixed through the mixing assembly, and the water mixture is sprayed in atomized form by the lifting spray assembly to increase the contact area between the drug and the water body.
It improves the water repair efficiency of landscape water body repair equipment, reduces the impact of wind power on spray, and improves the convenience of equipment use.
Smart Images

Figure CN119841379B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of landscape water body restoration, and particularly relates to a treatment device and method for landscape water body restoration. Background Art
[0002] Landscape water body restoration refers to the process of restoring or improving the ecological functions and aesthetic values of damaged landscape water bodies (such as lakes, rivers, ponds, artificial water surfaces, etc. in cities) through a series of measures. This process aims to reconstruct the physical conditions of the water body, restore its chemical status, reduce or cut off pollution sources, remove pollutants in the water, and at the same time promote the restoration of biodiversity, including reintroducing native biological species to diversify the ecosystem.
[0003] In order to repair the water body, usually the method of dosing is adopted. The most common drugs are water purification agents, such as sodium polysilicate, quick purifying agent, and zeolite powder, etc. When these water purification agents are put in, they are mostly put in by sprinkling. However, when sprinkling, especially when the water flow is static or slow, the drugs may not be immediately evenly distributed in the water body, thus affecting the restoration efficiency of the landscape water body.
[0004] Therefore, when the above-mentioned landscape water body is used for restoration, it often requires staff to sprinkle the drugs on the water surface in the form of sprinkling. When the water flow is static or slow, it often makes it difficult for the drugs to be evenly distributed in the water body, thus affecting the purification effect of the drugs. Summary of the Invention
[0005] In order to overcome the problem that when the existing landscape water body restoration equipment is in use, because the existing drugs are mostly mixed by sprinkling, but the sprinkling type of dosing often leads to the drugs being difficult to mix with the water body in time, thus extremely easily affecting the water body restoration efficiency of the entire equipment.
[0006] The technical solution of the present invention is as follows: It includes an upper frame assembly, a driving and rotating assembly connected to the upper frame assembly, a pressing-down assembly connected to the upper frame assembly, a lower frame assembly movably connected to the upper frame assembly, a lifting and spraying assembly connected to the lower frame assembly, an adjusting assembly connected to the inner wall of the lower frame assembly, and a mixing assembly movably connected to the adjusting assembly. The upper frame assembly is used to obtain the wind force data around the equipment. The pressing-down assembly is used to drive the driving and rotating assembly to move in the vertical direction. The lower frame assembly is used to store the water body input by the pressing-down assembly;
[0007] The lifting and spraying assembly includes a floating assembly movably connected to the lower frame assembly and an atomizing and lifting assembly connected to the floating assembly. The lifting and spraying assembly floats on the liquid surface through the floating assembly. The atomizing and lifting assembly is used to extract the water body stored in the mixing assembly and spray it around the upper frame assembly in an atomized form;
[0008] The adjusting assembly includes a connecting block connected to the inner wall of the lower frame assembly, a clamping ring connected to the connecting block, a redirecting assembly connected to the clamping ring, and a connecting strip connected to the redirecting assembly. The redirecting assembly is used to adjust the flow direction of the water body entering the adjusting assembly;
[0009] The mixing assembly includes a medicine delivery component connected to the driving and rotating component, a stirring and guiding component connected to the medicine delivery component, and a bottom sealing frame movably connected to the stirring and guiding component. The medicine delivery component is used to sprinkle the medicine for purifying the water body inside the stirring and guiding component, and the stirring and guiding component is used to accelerate the water body to enter the stirring and guiding component.
[0010] Preferably, the floating assembly includes a fitting cover connected to the lower frame assembly, a plurality of mounting strips connected to the fitting cover, a fixing frame connected to the mounting strips, a plurality of combined frames connected to the fixing frame, a fixing airbag connected to the combined frames, and a connecting sleeve connected to the fixing airbag. The fixing airbag is used to provide the buoyancy for the fixing frame to float on the water surface.
[0011] Preferably, the lower frame assembly includes an outer cover cylinder connected to the connecting block, a storage seat connected to the outer cover cylinder, a connecting frame connected to the bottom sealing frame, a sealing piece connected to the connecting frame, and a fixing ring connected to the storage seat. The connecting frame is connected to the combined seat, the connecting frame is movably connected to the storage seat, and the connecting frame is movably connected to the fixing frame.
[0012] Preferably, the atomizing and lifting assembly includes a lifting pipe connected to the connecting sleeve, a spray head connected to one end of the lifting pipe, a second manifold head connected to the other end of the lifting pipe, a protective cover connected to the second manifold head, a lifting pump connected to the inner wall of the protective cover, a first manifold head connected to the input end of the lifting pump through a water pipe, and a plurality of drainage hoses connected to the first manifold head. The lifting pump is used to lift the water body inside the mixing assembly, transport it to the spray head through the lifting pipe, and finally spray it in a mist around the upper frame assembly through the spray head;
[0013] The redirecting assembly includes an inner adjusting seat connected to the clamping ring, a plurality of first through slots opened on the inner adjusting seat, a connecting cover connected to the inner adjusting seat, a plurality of clamping slots opened on the connecting cover, a clamping frame movably connected to the inner adjusting seat, a moving cover connected to the clamping frame, a second hydraulic push rod connected to the connecting strip, an outer adjusting seat connected to the moving cover, a plurality of second through slots opened on the outer wall of the outer adjusting seat, and a plurality of bottom leakage slots opened on the bottom end surface of the outer adjusting seat. The clamping slots and the clamping frame are arranged in one-to-one correspondence, the first through slots and the second through slots are arranged in one-to-one correspondence, and the second hydraulic push rod is used to control the clamping of the connecting cover and the clamping frame through the clamping slots.
[0014] Preferably, the medicine delivery assembly includes a material storage box connected to the rotation driving assembly, a semi-empty column connected to the material storage box, an electric control valve connected to the semi-empty column, a one-way valve and a medicine outlet head connected to the semi-empty column, and a plurality of medicine leakage holes formed in the medicine outlet head. The electric control valve is used to control the delivery of the medicine inside the material storage box to the medicine outlet head, and the one-way valve is used to prevent the water body inside the material storage box from flowing back into the material storage box.
[0015] Preferably, the stirring and guiding assembly includes stirring blades connected to the semi-empty column, second guiding blades connected to the bottom end of the semi-empty column, and a plurality of liquid guiding grooves formed in the bottom sealing frame. The second guiding blades are used to accelerate the entry of the water body inside the lower frame assembly into the bottom sealing frame.
[0016] Preferably, the upper frame assembly includes a fixing plate arranged at the upper end of the stirring and guiding assembly, a medicine storage box connected to the fixing plate, a sealing cover connected to the medicine storage box, a fixed handle connected to the sealing cover, a plurality of moving frames connected to the fixing plate, an adjusting frame movably connected to the moving frames, a non-powered wind cap connected to the adjusting frame, and an inclination sensor connected to the non-powered wind cap. A through hole is formed in the sealing cover and penetrates through the sealing cover. The inclination sensor is used to obtain the number of turns of the non-powered wind cap rotating per unit time.
[0017] Preferably, the rotation driving assembly includes a servo motor connected to the fixing plate, a first meshing wheel connected to the output shaft of the servo motor, a connecting cylinder movably connected to the medicine storage box, a fixed cover movably connected to the connecting cylinder, a second meshing wheel connected to the fixed cover, and a first guiding blade connected to the connecting cylinder. The servo motor is used to drive the fixed cover to rotate along its own central axis.
[0018] Preferably, the pressing-down assembly includes a combined seat arranged outside the rotation driving assembly, a plurality of positioning rods connected to the combined seat, a lower push rod movably connected to the fixing plate, a first hydraulic push rod connected to the lower push rod, a mounting frame connected to the first hydraulic push rod, and a reinforcing rib plate connected to the mounting frame. The first hydraulic push rod is used to drive the combined seat to move in the vertical direction.
[0019] A treatment method for a treatment device for landscape water body restoration, using a treatment device for landscape water body restoration as described above, includes the following steps:
[0020] S1: Detect the number of rotations of the unpowered wind cap per unit time through an inclination sensor. When the number of rotations is lower than the rated quantity, the medicine storage box can be opened through the sealing cover, and the medicine for neutralizing the water body is put into the interior of the medicine storage box. The lower push rod is driven by the first hydraulic push rod to push the combined seat to move, so that the combined seat is separated from the fixed plate, and the combined seat is immersed below the water surface. Under the action of atmospheric pressure, the water body is driven into the interior of the combined seat. At the same time, the servo motor is started to drive the fixed cover to rotate along its own central axis;
[0021] S2: The water body entering the interior of the combined seat can enter the interior of the inner adjustment seat under the action of gravity, and the clamping frame is driven to move by the second hydraulic push rod, so that the clamping frame is separated from the connecting cover. At the same time, it is ensured that the outer adjustment seat blocks the first through groove, and the water body entering the inner adjustment seat will enter the interior of the bottom sealing frame through the clamping groove and the bottom leakage groove. After the bottom sealing frame is filled with the water body, the combined seat is lifted by the lower push rod driven by the first hydraulic push rod, so that the combined seat is close to the fixed plate;
[0022] S3: After the water body enters the bottom sealing frame, the electric control valve is opened, and the medicine in the accumulator box is transported to the interior of the medicine outlet head through the half-empty column, and the medicine is sprinkled into the water body through the medicine leakage hole and the rotating medicine outlet head, and then the mixing of the medicine and the water body is accelerated by the rotating stirring blades;
[0023] S4: When the medicine and the water body are fully mixed, the mixed water body stored inside the lower frame assembly is transported to the interior of the lifting pipe through the drainage hose, the first manifold head and the lift pump, and is sprayed out from the spray head to realize the repair of the landscape water body around the equipment.
[0024] Advantages of the present invention:
[0025] 1. On the basis of the conventional landscape water body repair and treatment equipment, the treatment method is improved. The water body and the medicine are pre-mixed through the mixing assembly, and the water body stored inside the mixing assembly is lifted by the lifting and spraying assembly to drive the water body to move to the lifting and spraying assembly, and is sprayed out by spraying, so that the mist-like medicine water mixture can be sprayed around the equipment, and thus the water body repair efficiency of the entire treatment equipment can be greatly improved;
[0026] 2. During the spraying process of the medicine water mixture, it is inevitable that the spraying will be affected by the wind generated by the equipment, so that it is difficult to spray the mist to the corresponding position under the influence of the wind. This equipment can sense the wind around the equipment through the unpowered wind cap, and detect the number of rotations of the unpowered wind cap per unit time through the inclination sensor. When the number of rotations sensed by the inclination sensor is lower than the rated number of rotations, the spraying work can be started. When it is higher than the rated number of rotations, the spraying work is not started, thus preventing the atomized medicine mist from being affected by the wind to a certain extent;
[0027] 3. During the use of the device, the lower push rod can be driven to move by the first hydraulic push rod, so as to push the combined seat through the lower push rod. Under the action of the connecting frame, the moving combined seat can drive the bottom sealing frame to move synchronously. When the second guide vane extends out of the storage seat, the semi-empty column can be driven to rotate by the servo motor, which can drive the second guide vane to rotate synchronously. The rotating second guide vane is used to accelerate the water body into the bottom sealing frame. When the second guide vane retracts into the storage seat, the second guide vane can be reversed to drive the liquid medicine mixture to enter the interior of the storage seat through the liquid guide groove, so as to improve the use convenience of the entire processing equipment. Description of the Drawings
[0028] Figure 1 Shows the first three-dimensional structural schematic diagram of the processing equipment of the present invention;
[0029] Figure 2 Shows the second three-dimensional structural schematic diagram of the processing equipment of the present invention;
[0030] Figure 3 Shows the first three-dimensional structural schematic diagram of the lifting and spraying component of the processing equipment of the present invention;
[0031] Figure 4 Shows the first three-dimensional structural schematic diagram of the upper rack component of the processing equipment of the present invention;
[0032] Figure 5 Shows the second three-dimensional structural schematic diagram of the lifting and spraying component of the processing equipment of the present invention;
[0033] Figure 6 Shows the second three-dimensional structural schematic diagram of the upper rack component of the processing equipment of the present invention;
[0034] Figure 7 Shows the three-dimensional structural schematic diagram of the pressing-down component of the processing equipment of the present invention;
[0035] Figure 8 Shows the three-dimensional structural schematic diagram of the driving and rotating component of the processing equipment of the present invention;
[0036] Figure 9 Shows the three-dimensional structural schematic diagram of the lower rack component of the processing equipment of the present invention;
[0037] Figure 10 Shows the three-dimensional structural schematic diagram of the adjusting component of the processing equipment of the present invention;
[0038] Figure 11 Shows the first three-dimensional structural schematic diagram of the mixing component of the processing equipment of the present invention;
[0039] Figure 12 The second three-dimensional structural schematic diagram of the mixing component of the processing device of the present invention is shown.
[0040] Explanation of reference numerals: 1, upper frame component; 2, driving and rotating component; 3, pressing-down component; 4, lower frame component; 5, lifting and spraying component; 6, adjusting component; 7, mixing component; 101, fixing plate; 102, medicine storage box; 103, sealing cover; 104, fixed grip; 105, moving frame; 106, adjusting frame; 107, non-powered wind cap; 108, inclination sensor; 201, servo motor; 202, first meshing wheel; 203, second meshing wheel; 204, fixed cover; 205, connecting cylinder; 206, first guide vane; 301, mounting frame; 302, reinforcing rib plate; 303, first hydraulic push rod; 304, lower push rod; 305, combined seat; 306, positioning rod; 401, outer cover cylinder; 402, storage seat; 403, connecting frame; 404, sealing piece; 405, fixing ring; 501, drainage hose; 502, first collecting head; 503, lifting pump; 504, protective cover; 505, second collecting head; 506, lifting pipe; 507, spray head; 508, connecting sleeve; 509, fixed airbag; 510, combined frame; 511, fixing frame; 512, mounting strip; 513, fitting cover; 601, connecting block; 602, engaging ring; 603, inner adjusting seat; 604, first through groove; 605, connecting cover; 606, engaging groove; 607, engaging frame; 608, moving cover; 609, connecting strip; 610, second hydraulic push rod; 611, outer adjusting seat; 612, second through groove; 613, bottom leakage groove; 701, material accumulation box; 702, semi-empty column; 703, electric control valve; 704, one-way valve; 705, medicine outlet head; 706, medicine leakage hole; 707, stirring blade; 708, second guide vane; 709, bottom sealing frame; 710, liquid guiding groove. Detailed implementation manners
[0041] The present invention will be further described below in conjunction with the drawings and embodiments.
[0042] A processing device for landscape water body restoration, according to Figures 1-12 as shown, includes an upper frame component 1, a driving and rotating component 2 connected to the upper frame component 1, a pressing-down component 3 connected to the upper frame component 1, a lower frame component 4 movably connected to the upper frame component 1, a lifting and spraying component 5 connected to the lower frame component 4, an adjusting component 6 connected to the inner wall of the lower frame component 4, and a mixing component 7 movably connected to the adjusting component 6. The upper frame component 1 is used to obtain wind force data around the device, the pressing-down component 3 is used to drive the driving and rotating component 2 to move in the vertical direction, and the lower frame component 4 is used to store the water body input by the pressing-down component 3;
[0043] The lifting and spraying assembly 5 includes a floating assembly movably connected to the lower frame assembly 4 and an atomizing and lifting assembly connected to the floating assembly. The lifting and spraying assembly 5 floats on the liquid surface through the floating assembly, and the atomizing and lifting assembly is used to extract the water accumulated in the mixing assembly 7 and spray it around the upper frame assembly 1 in an atomized form;
[0044] The adjusting assembly 6 includes a connecting block 601 connected to the inner wall of the lower frame assembly 4, a clamping ring 602 connected to the connecting block 601, a redirecting assembly connected to the clamping ring 602, and a connecting strip 609 connected to the redirecting assembly. The redirecting assembly is used to adjust the flow direction of the water entering the adjusting assembly 6;
[0045] The mixing assembly 7 includes a medicine delivery assembly connected to the driving and rotating assembly 2, a stirring and guiding assembly connected to the medicine delivery assembly, and a bottom sealing frame 709 movably connected to the stirring and guiding assembly. The medicine delivery assembly is used to sprinkle the medicine for purifying the water body inside the stirring and guiding assembly, and the stirring and guiding assembly is used to accelerate the water body into the stirring and guiding assembly.
[0046] According to Figure 3 As shown, the floating assembly includes a fitting cover 513 connected to the lower frame assembly 4, several mounting bars 512 connected to the fitting cover 513, a fixing frame 511 connected to the mounting bars 512, several combination frames 510 connected to the fixing frame 511, a fixing airbag 509 connected to the combination frames 510, and a connecting sleeve 508 connected to the fixing airbag 509. The fixing airbag 509 is used to provide the buoyancy for the fixing frame 511 to float on the water surface.
[0047] According to Figure 9 And Figure 12 As shown, the lower frame assembly 4 includes an outer cover cylinder 401 connected to the connecting block 601, a storage seat 402 connected to the outer cover cylinder 401, a connecting frame 403 connected to the bottom sealing frame 709, a sealing piece 404 connected to the connecting frame 403, and a fixing ring 405 connected to the storage seat 402. The connecting frame 403 is connected to the combination seat 305, the connecting frame 403 is movably connected to the storage seat 402, and the connecting frame 403 is movably connected to the fixing frame 511.
[0048] It should be noted that the bottom sealing frame 709 is used to seal the fixing ring 405 to prevent the water body inside the storage seat 402 from leaking out of the storage seat 402. At the same time, through the setting of the connecting frame 403, the combination seat 305 and the bottom sealing frame 709 can move synchronously
[0049] According to Figures 2-3 And Figure 10As shown in the figure, the atomization lifting assembly includes a lifting pipe 506 connected to the connecting sleeve 508, a spray head 507 connected to one end of the lifting pipe 506, a second manifold 505 connected to the other end of the lifting pipe 506, a protective cover 504 connected to the second manifold 505, a lifting pump 503 connected to the inner wall of the protective cover 504, a first manifold 502 connected to the input end of the lifting pump 503 through a water pipe, and a plurality of drainage hoses 501 connected to the first manifold 502. The lifting pump 503 is used to lift the water body inside the mixing assembly 7, transport it to the spray head 507 through the lifting pipe 506, and finally spray it in a mist form around the upper frame assembly 1 through the spray head 507;
[0050] The redirecting assembly includes an inner adjusting seat 603 connected to the engaging ring 602, a plurality of first through slots 604 formed in the inner adjusting seat 603, a connecting cover 605 connected to the inner adjusting seat 603, a plurality of engaging slots 606 formed in the connecting cover 605, an engaging frame 607 movably connected to the inner adjusting seat 603, a moving cover 608 connected to the engaging frame 607, a second hydraulic push rod 610 connected to the connecting bar 609, an outer adjusting seat 611 connected to the moving cover 608, a plurality of second through slots 612 formed in the outer wall of the outer adjusting seat 611, and a plurality of bottom leakage slots 613 formed in the bottom end surface of the outer adjusting seat 611. The engaging slots 606 and the engaging frame 607 are arranged in one-to-one correspondence, the first through slots 604 and the second through slots 612 are arranged in one-to-one correspondence, and the second hydraulic push rod 610 is used to control the engagement of the connecting cover 605 and the engaging frame 607 through the engaging slots 606.
[0051] It should be noted that the lifting pump 503 and the drainage hoses 501 are used to suck the water body deposited inside the bottom sealing frame 709, lift it to the spray head 507 through the lifting pipe 506, and spray the mixed purified water body in an atomized manner around the equipment through the spray head 507, so that the drug can be dissolved in the water body in advance in the form of atomization, so that the drug can be more evenly dispersed in the water body, and at the same time, the diffusion path of the drug can be better controlled to reduce the impact on the surrounding environment. At the same time, the second hydraulic push rod 610 is used to drive the moving cover 608 to move, so that the moving cover 608 can drive the outer adjusting seat 611 to move, so that the engaging frame 607 can be inserted into the engaging slot 606, and ensure that the first through slot 604 and the second through slot 612 are in communication, so that when the water body enters the inner adjusting seat 603, it can pass through the first through slot 604 and the second through slot 612 in sequence and enter between the outer cover cylinder 401 and the bottom sealing frame 709, so that when the equipment is cleaned, the water body can directly enter between the outer cover cylinder 401 and the bottom sealing frame 709, so that the impurities deposited inside the water body can be driven to float by the water body to facilitate the user to clean, and thus the use convenience of the entire equipment can be greatly improved.
[0052] As shown in Figures 10-11 Figure 1, the medicine delivery assembly includes a material accumulation box 701 connected to the driving and rotating assembly 2, a semi-empty column 702 connected to the material accumulation box 701, an electric control valve 703 connected to the semi-empty column 702, a one-way valve 704 and a medicine outlet head 705 connected to the semi-empty column 702, and a plurality of medicine leakage holes 706 opened on the medicine outlet head 705. The electric control valve 703 is used to control the delivery of the medicine inside the material accumulation box 701 to the medicine outlet head 705, and the one-way valve 704 is used to prevent the water body inside the material accumulation box 701 from flowing back into the material accumulation box 701.
[0053] As shown in Figure 12 Figure 1, the stirring and guiding assembly includes a stirring blade 707 connected to the semi-empty column 702, a second guiding blade 708 connected to the bottom end of the semi-empty column 702, and a plurality of liquid guiding grooves 710 opened on the bottom sealing frame 709. The second guiding blade 708 is used to accelerate the entry of the water body inside the lower frame assembly 4 into the bottom sealing frame 709.
[0054] It should be noted that by driving the semi-empty column 702 to rotate, the rotating semi-empty column 702 can synchronously drive the stirring blade 707 to rotate, and the rotating stirring blade 707 is used to accelerate the mixing of the medicine and the water body. At the same time, the electric control valve 703 can be used to control the movement of the medicine stored inside the material accumulation box 701 to the medicine outlet head 705, so that the centrifugal force generated by the rotating medicine outlet head 705 can drive the medicine inside the medicine outlet head 705 to be sprinkled through the medicine leakage holes 706 into the water body stored inside the bottom sealing frame 709.
[0055] As shown in Figure 4 and Figures 6-7 Figure 1, the upper frame assembly 1 includes a fixing plate 101 arranged at the upper end of the stirring and guiding assembly, a medicine storage box 102 connected to the fixing plate 101, a sealing cover 103 connected to the medicine storage box 102, a fixed grip 104 connected to the sealing cover 103, a plurality of moving frames 105 connected to the fixing plate 101, an adjusting frame 106 movably connected to the moving frames 105, a non-powered wind cap 107 connected to the adjusting frame 106, and an inclination sensor 108 connected to the non-powered wind cap 107. A through hole is opened on the sealing cover 103 and penetrates through the sealing cover 103. The inclination sensor 108 is used to obtain the number of rotations of the non-powered wind cap 107 per unit time. The fixing plate 101 is connected to the pressing-down assembly 3.
[0056] It should be noted that the unpowered wind cap 107 is used to sense the magnitude of the wind around the device, and the tilt sensor 108 is used to detect the rotation speed of the unpowered wind cap 107, so as to reduce the influence of the wind on the spraying by detecting the magnitude of the wind. At the same time, the position of the unpowered wind cap 107 can also be adjusted by the adjusting frame 106 and the moving frame 105 to facilitate the staff to put the medicine.
[0057] According to Figure 6 and Figure 8 As shown, the driving and rotating assembly 2 includes a servo motor 201 connected to the fixed plate 101, a first meshing wheel 202 connected to the output shaft of the servo motor 201, a connecting cylinder 205 movably connected to the medicine storage box 102, a fixed cover 204 movably connected to the connecting cylinder 205, a second meshing wheel 203 connected to the fixed cover 204, and a first guide vane 206 connected to the connecting cylinder 205. The servo motor 201 is used to drive the fixed cover 204 to rotate along its own central axis.
[0058] It should be noted that the servo motor 201 is used to drive the first meshing wheel 202 to rotate, and the rotating first meshing wheel 202 is used to drive the second meshing wheel 203 to rotate synchronously, so as to drive the fixed cover 204 to rotate through the rotating second meshing wheel 203, and drive the connecting cylinder 205 to rotate synchronously through the rotating fixed cover 204, thereby realizing the synchronous rotation of the semi-empty column 702.
[0059] According to Figure 7 As shown, the pressing-down assembly 3 includes a combined seat 305 arranged outside the driving and rotating assembly 2, several positioning rods 306 connected to the combined seat 305, a lower push rod 304 movably connected to the fixed plate 101, a first hydraulic push rod 303 connected to the lower push rod 304, a mounting frame 301 connected to the first hydraulic push rod 303, and a reinforcing rib plate 302 connected to the mounting frame 301. The first hydraulic push rod 303 is used to drive the combined seat 305 to move in the vertical direction, and the combined seat 305 is movably connected to the lifting and spraying assembly 5.
[0060] It should be noted that the first hydraulic push rod 303 is used to drive the combined seat 305 to move, so as to move the first guide vane 206 by driving the combined seat 305 to move, and cooperate with the clamping ring 602 through the combined seat 305, so that the water body can directly enter the inner adjusting seat 603.
[0061] It should be noted that the method for treating with the above-mentioned treatment equipment for landscape water body restoration includes the following steps:
[0062] S1: Detect the number of rotations of the unpowered wind cap 107 per unit time through the inclination sensor 108. When the number of rotations is lower than the rated quantity, the medicine storage box 102 can be opened through the sealing cover 103, and the medicine for neutralizing the water body can be put into the interior of the medicine storage box 102. Drive the lower push rod 304 through the first hydraulic push rod 303 to push the combined seat 305 to move, so that the combined seat 305 is separated from the fixed plate 101, and the combined seat 305 is immersed below the water surface. Under the action of atmospheric pressure, drive the water body to enter the interior of the combined seat 305. At the same time, start the servo motor 201 to drive the fixed cover 204 to rotate along its own central axis;
[0063] S2: The water body that enters the interior of the combined seat 305 can enter the interior of the inner adjustment seat 603 under the action of gravity, and drive the engaging frame 607 to move through the second hydraulic push rod 610, so that the engaging frame 607 is separated from the connecting cover 605. At the same time, ensure that the outer adjustment seat 611 blocks the first through slot 604. The water body that enters the inner adjustment seat 603 will enter the interior of the bottom sealing frame 709 through the engaging slot 606 and the bottom leakage slot 613. After the water body fills the bottom sealing frame 709, drive the lower push rod 304 to move the combined seat 305 upward through the first hydraulic push rod 303, so that the combined seat 305 is close to the fixed plate 101;
[0064] S3: After the water body enters the bottom sealing frame 709, open the electric control valve 703 and transport the medicine in the material storage box 701 to the interior of the medicine outlet head 705 through the semi-empty column 702, and sprinkle the medicine into the water body through the medicine leakage hole 706 and the rotating medicine outlet head 705, and then accelerate the mixing of the medicine and the water body through the rotating stirring blade 707;
[0065] S4: When the medicine and the water body are fully mixed, transport the mixed water body stored in the lower frame assembly 4 to the interior of the lifting pipe 506 through the drainage hose 501, the first manifold 502 and the lift pump 503, and spray it out from the spray head 507 to realize the repair of the landscape water body around the equipment.
[0066] The whole process can mix the medicine and the water body in advance and spray it around the equipment in the form of spraying to increase the contact area between the medicine and the water body. At the same time, before spraying the medicine, the surrounding wind force of the equipment can also be detected by setting the unpowered wind cap 107 and the inclination sensor 108 to reduce the influence of the wind force on the sprayed medicine-water mixture, and thus the processing efficiency of the whole processing equipment can be greatly improved.
[0067] The embodiments of the present invention have been described in detail above with reference to the accompanying drawings. However, the present invention is not limited to the above embodiments. Within the scope of knowledge possessed by those skilled in the art, various changes can be made without departing from the purpose of the present invention.
Claims
1. A treatment device for landscape water restoration, characterized in that: The device comprises an upper frame component (1), a driving component (2) connected to the upper frame component (1), a downward pressure component (3) connected to the upper frame component (1), a lower frame component (4) movably connected to the upper frame component (1), a lifting and spraying component (5) connected to the lower frame component (4), an adjusting component (6) connected to the inner wall of the lower frame component (4), and a mixing component (7) movably connected to the adjusting component (6), wherein the upper frame component (1) is used to obtain wind data around the device, the downward pressure component (3) is used to drive the driving component (2) to move in a vertical direction, and the lower frame component (4) is used to store water input by the downward pressure component (3); The lifting and spraying assembly (5) comprises a floating assembly movably connected to the lower frame assembly (4) and an atomizing lifting assembly connected to the floating assembly. The lifting and spraying assembly (5) floats on the liquid surface through the floating assembly. The atomizing lifting assembly is used to extract the water stored in the mixing assembly (7) and spray it around the upper frame assembly (1) in the form of atomization. The regulating component (6) comprises a connecting block (601) connected to the inner wall of the lower frame component (4), a snap ring (602) connected to the connecting block (601), a redirecting component connected to the snap ring (602), and a connecting strip (609) connected to the redirecting component, wherein the redirecting component is used to adjust the flow direction of water inside the input regulating component (6); The mixing assembly (7) comprises a medicine delivery assembly connected to the driving assembly (2), a stirring and guiding assembly connected to the medicine delivery assembly, and a bottom sealing frame (709) movably connected to the stirring and guiding assembly, wherein the medicine delivery assembly is used to sprinkle the medicine for purifying the water body inside the stirring and guiding assembly, and the stirring and guiding assembly is used to accelerate the water body to enter the stirring and guiding assembly; The floating assembly comprises a fitting cover (513) connected to the lower frame assembly (4), a plurality of mounting strips (512) connected to the fitting cover (513), a fixing frame (511) connected to the mounting strips (512), a plurality of assembly frames (510) connected to the fixing frame (511), a fixing air bag (509) connected to the assembly frame (510), and a connecting sleeve (508) connected to the fixing air bag (509), wherein the fixing air bag (509) is used to provide buoyancy for the fixing frame (511) to float on the water surface; The pressing assembly (3) comprises a combination seat (305) arranged outside the driving assembly (2); The lower frame assembly (4) comprises an outer cover tube (401) connected to the connecting block (601), a storage seat (402) connected to the outer cover tube (401), a connecting frame (403) connected to the bottom sealing frame (709), a sealing sheet (404) connected to the connecting frame (403), and a fixing ring (405) connected to the storage seat (402); the connecting frame (403) is connected to the assembly seat (305), the connecting frame (403) is movably connected to the storage seat (402), and the connecting frame (403) is movably connected to the fixing frame (511).
2. A treatment device for landscape water restoration according to claim 1, characterized in that: The atomizing lifting assembly comprises a lifting pipe (506) connected to a connecting sleeve (508), a spray head (507) connected to one end of the lifting pipe (506), a second collecting head (505) connected to the other end of the lifting pipe (506), a protective cover (504) connected to the second collecting head (505), a lifting pump (503) connected to the inner wall of the protective cover (504), a first collecting head (502) connected to the input end of the lifting pump (503) via a water pipe, and a plurality of drainage hoses (501) connected to the first collecting head (502), wherein the lifting pump (503) is used to lift the water inside the mixing assembly (7) and transport it to the spray head (507) via the lifting pipe (506), and finally spray it in the form of mist around the upper frame assembly (1) via the spray head (507); The redirection assembly comprises an inner adjustment seat (603) connected to the snap ring (602), a plurality of first through grooves (604) provided on the inner adjustment seat (603), a connection cover (605) connected to the inner adjustment seat (603), a plurality of snap grooves (606) provided on the connection cover (605), a snap frame (607) movably connected to the inner adjustment seat (603), a movable cover (608) connected to the snap frame (607), a second hydraulic push rod (610) connected to the connection bar (609), and a second hydraulic push rod (611) connected to the connection bar (609). An outer adjustment seat (611) on the movable cover (608), a plurality of second through grooves (612) provided on the outer wall of the outer adjustment seat (611), and a plurality of bottom leakage grooves (613) provided on the bottom end surface of the outer adjustment seat (611); the engaging grooves (606) and the engaging frame (607) are arranged in a one-to-one correspondence; the first through grooves (604) and the second through grooves (612) are arranged in a one-to-one correspondence; and the second hydraulic push rod (610) is used to control the engaging of the connection cover (605) and the engaging frame (607) through the engaging grooves (606).
3. A treatment device for landscape water restoration according to claim 2, characterized in that: The drug delivery component comprises a material accumulation box (701) connected to the driving component (2), a semi-hollow column (702) connected to the material accumulation box (701), an electric control valve (703) connected to the semi-hollow column (702), a one-way valve (704) and a drug discharge head (705) connected to the semi-hollow column (702), and a plurality of drug leakage holes (706) provided on the drug discharge head (705), wherein the electric control valve (703) is used to control the delivery of the drug inside the material accumulation box (701) to the drug discharge head (705).
4. A treatment device for landscape water restoration according to claim 3, characterized in that: The stirring and guiding assembly comprises a stirring blade (707) connected to the semi-hollow column (702), a second guiding blade (708) connected to the bottom end of the semi-hollow column (702), and a plurality of liquid guiding grooves (710) provided on the bottom sealing frame (709), wherein the second guiding blade (708) is used to accelerate the water inside the lower frame assembly (4) to enter the bottom sealing frame (709).
5. The treatment equipment for landscape water restoration according to claim 4 is characterized in that: The upper frame assembly (1) comprises a fixed plate (101) arranged at the upper end of the stirring and guiding assembly, a medicine storage box (102) connected to the fixed plate (101), a sealing cover (103) connected to the medicine storage box (102), a fixed handle (104) connected to the sealing cover (103), a plurality of movable frames (105) connected to the fixed plate (101), an adjustment frame (106) movably connected to the movable frame (105), a non-powered wind hood (107) connected to the adjustment frame (106), and an inclination sensor (108) connected to the non-powered wind hood (107), wherein a through hole is formed on the sealing cover (103) and the through hole penetrates the sealing cover (103), and the inclination sensor (108) is used to obtain the number of revolutions of the non-powered wind hood (107) per unit time.
6. The landscape water body restoration treatment equipment according to claim 5, characterized in that: The driving assembly (2) comprises a servo motor (201) connected to a fixed plate (101), a first meshing wheel (202) connected to an output shaft of the servo motor (201), a connecting tube (205) movably connected to a medicine storage box (102), a fixed cover (204) movably connected to the connecting tube (205), a second meshing wheel (203) connected to the fixed cover (204), and a first guide vane (206) connected to the connecting tube (205). The servo motor (201) is used to drive the fixed cover (204) to rotate along its own central axis.
7. A treatment device for landscape water restoration according to claim 6, characterized in that: The pressing assembly (3) further comprises a plurality of positioning rods (306) connected to the combination seat (305), a lower push rod (304) movably connected to the fixed plate (101), a first hydraulic push rod (303) connected to the lower push rod (304), a mounting frame (301) connected to the first hydraulic push rod (303), and a reinforcing rib plate (302) connected to the mounting frame (301), wherein the first hydraulic push rod (303) is used to drive the combination seat (305) to move in a vertical direction.
8. A treatment method for landscape water restoration treatment equipment, characterized in that: The treatment equipment for landscape water restoration as claimed in claim 7 comprises the following steps: S1: The number of rotations of the non-powered wind cap (107) per unit time is detected by the inclination sensor (108). When the number of rotations is lower than the rated number, the medicine storage box (102) is opened by the sealing cover (103), and the medicine for neutralizing the water body is placed inside the medicine storage box (102). The first hydraulic push rod (303) drives the lower push rod (304) to push the assembly seat (305) to move, so that the assembly seat (305) is separated from the fixed plate (101), and the assembly seat (305) is immersed under the water surface. Under the action of atmospheric pressure, the water body is driven into the interior of the assembly seat (305), and the servo motor (201) is turned on to drive the fixed cover (204) to rotate along its own central axis. S2: The water entering the combination seat (305) enters the interior of the inner adjustment seat (603) under the action of gravity, and drives the engaging frame (607) to move through the second hydraulic push rod (610), so that the engaging frame (607) is separated from the connection cover (605), while ensuring that the outer adjustment seat (611) covers the first transparent groove (604), and the water entering the inner adjustment seat (603) enters the interior of the bottom sealing frame (709) through the engaging groove (606) and the bottom leakage groove (613), and after the water fills the bottom sealing frame (709), the first hydraulic push rod (303) drives the lower push rod (304) to move the combination seat (305) upward, so that the combination seat (305) is close to the fixed plate (101); S3: After the water enters the bottom sealing frame (709), the electric control valve (703) is opened and the medicine in the accumulation box (701) is transported to the inside of the medicine outlet head (705) through the semi-empty column (702), and the medicine is thrown into the water through the medicine leakage hole (706) and the medicine outlet head (705) in a rotating state, and then the mixing of the medicine and the water is accelerated by the rotating stirring blade (707); S4: After the medicine and the water are fully mixed, the mixed water stored in the lower frame assembly (4) is transported to the inside of the lifting pipe (506) through the drainage hose (501), the first collecting head (502) and the lifting pump (503), and is sprayed out from the spray head (507) to repair the landscape water around the equipment.
Citation Information
Patent Citations
Ecological river and lake water quality restoration device
CN219489616U
Sewage treatment agent spraying device for sewage treatment
CN220900705U