CN114790772A - Cleaning system of black and odorous water channel silt - Google Patents

Cleaning system of black and odorous water channel silt Download PDF

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Publication number
CN114790772A
CN114790772A CN202210397401.XA CN202210397401A CN114790772A CN 114790772 A CN114790772 A CN 114790772A CN 202210397401 A CN202210397401 A CN 202210397401A CN 114790772 A CN114790772 A CN 114790772A
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water
aeration
black
cylinders
channel
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CN202210397401.XA
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Inventor
戴康海
李龙钰
李来顺
黄伟兵
马浩
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Hunan Zhongsen Environmental Technology Co ltd
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Hunan Zhongsen Environmental Technology Co ltd
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Priority to CN202210397401.XA priority Critical patent/CN114790772A/en
Publication of CN114790772A publication Critical patent/CN114790772A/en
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    • EFIXED CONSTRUCTIONS
    • E03WATER SUPPLY; SEWERAGE
    • E03FSEWERS; CESSPOOLS
    • E03F9/00Arrangements or fixed installations methods or devices for cleaning or clearing sewer pipes, e.g. by flushing
    • E03F9/007Devices providing a flushing surge
    • CCHEMISTRY; METALLURGY
    • C02TREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02FTREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02F1/00Treatment of water, waste water, or sewage
    • C02F1/52Treatment of water, waste water, or sewage by flocculation or precipitation of suspended impurities
    • C02F1/5281Installations for water purification using chemical agents
    • CCHEMISTRY; METALLURGY
    • C02TREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02FTREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02F7/00Aeration of stretches of water
    • CCHEMISTRY; METALLURGY
    • C02TREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02FTREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02F2103/00Nature of the water, waste water, sewage or sludge to be treated
    • C02F2103/007Contaminated open waterways, rivers, lakes or ponds

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  • Chemical & Material Sciences (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Hydrology & Water Resources (AREA)
  • Engineering & Computer Science (AREA)
  • Water Supply & Treatment (AREA)
  • Environmental & Geological Engineering (AREA)
  • Organic Chemistry (AREA)
  • Chemical Kinetics & Catalysis (AREA)
  • General Chemical & Material Sciences (AREA)
  • Health & Medical Sciences (AREA)
  • Public Health (AREA)
  • Biological Treatment Of Waste Water (AREA)

Abstract

The invention discloses a cleaning system for sludge in a black and odorous water channel, wherein a plurality of black and odorous water quality monitors are arranged on the liquid level of the channel at intervals; a plurality of groups of fixed rods are arranged at the two inner side ends of the ditch at intervals, 2 water baffles are pinned between the tops of the fixed rods in each group, and the 2 water baffles are transversely spliced to form a whole water baffle; the supporting devices are sequentially and continuously arranged on one side end of the water channel and the other side end of the water channel at intervals, the lower end of each supporting device is connected with 2 vertical cylinders and 2 inclined cylinders in a pin mode, cylinder shafts of the 2 vertical cylinders are respectively connected with the upper ends of aeration plates of the spliced 2 water baffles, and cylinder shafts of the 2 inclined cylinders are respectively connected with the front end faces of the spliced 2 water baffles; 2 upright cylinders, 2 oblique cylinders all are connected with cylinder drive equipment. The cleaning system for the sludge in the black and odorous water channel provided by the invention solves the problem that the channel sludge needs to be manually cleaned or the cleaning effect is not ideal when the channel sludge is automatically cleaned.

Description

Cleaning system of black and odorous water channel silt
Technical Field
The invention relates to the technical field of sludge treatment equipment, in particular to a cleaning system for sludge in a black and odorous water channel.
Background
Urban and rural rivers are important components of urban and rural resources and play an important role in the development process of urban and rural areas. With the development of modern industrialization and the acceleration of urban and rural development, the original functions of urban and rural rivers are gradually weakened, the reorganization of urban and rural industrial structures further changes the functions of urban and rural land in the coastal areas of the rivers, the rivers are largely buried, the disordered arrangement without restriction causes the water bodies of most of the rivers to be seriously polluted, the features of the rivers in the cities and the villages are gradually lost, the ecological environment of the cities and the villages is influenced, and the surrounding residents are also greatly influenced.
Under the increasingly rising concern on natural ecological environment and the influence of sustainable development thought of people, the ecological concept is introduced to restore and reform the river into a necessary way for river management. Meanwhile, river management is a system project needing to be insisted for a long time, the related region is wide, the condition is complex, the river management needs to be considered in all directions, the renovation strength is enhanced, the functionality of the river is quickly recovered, the daily cleaning and management maintenance work of the river water surface is enhanced, the cleanness and the intact facilities of the river water surface are kept, the long-term management benefit of the river is fully played, and a beautiful and clean water environment is created.
The oxygen deficiency of the water body is the root cause of the black and odorous river channel, and the selection of a proper oxygen increasing mode is an important technical link for biological repair of the black and odorous river channel in cities and villages. The dissolved oxygen in the water body mainly depends on factors such as oxygen release amount of algae in the water, atmosphere reoxygenation, biochemical oxygen consumption of organic pollution of the water body, oxygen consumption of bottom mud and the like, the increase of the dissolved oxygen in the water body is beneficial to conversion of a water body microorganism area system from anaerobic to aerobic, the establishment of the aerobic microorganism area system stimulates the growth of the algae in the river channel, a natural reoxygenation mechanism of the algae in the water body of the river channel is formed, and the black and odorous water body is eliminated.
According to the characteristic that the river water body is anoxic (or anaerobic) after being polluted, natural drop water (waterfall, fountain, rockery and the like) or artificial aeration is utilized to reoxygenate the water body, so that the mixing of the upper and lower layers of water bodies is promoted, the fluidity of the local water body is increased, the water body is kept in an aerobic state, the DO content in the water is increased, the reoxygenation process of the water body is accelerated, the release of bottom mud N, P is inhibited, and the black and odorous phenomenon of the water body is prevented; restoring and enhancing the activity of aerobic microorganisms in the water body, purifying pollutants in the water body and improving the water quality of rivers.
The defects and shortcomings of the prior art are as follows: the channel sludge needs to be manually cleaned or the cleaning effect is not ideal when the channel sludge is automatically cleaned; the reoxygenation equipment has single technology, low oxygenation efficiency, limited application range and the like, and black and odorous water body treatment agents cannot be added in time.
Disclosure of Invention
In view of this, the invention provides a cleaning system for sludge in black and odorous water channels.
In order to achieve the purpose, the invention adopts the following technical scheme:
a cleaning system for sludge in a black and odorous water channel comprises a black and odorous water quality monitor, a supporting device, a fixing rod, an upright cylinder, an inclined cylinder, a cylinder driving device and a water baffle;
a plurality of black and odorous water quality monitors are arranged on the liquid level of the water channel at intervals; a plurality of groups of fixed rods are arranged at the two inner side ends of the water channel at intervals, 2 water baffles are pinned between the tops of each group of fixed rods, the 2 water baffles are transversely spliced to form a whole water baffle, the width of the whole water baffle is equal to that of the water channel, and the bottom of the whole water baffle is completely attached to the bottom of the water channel when in a vertical state; an aeration groove is formed in the upper end of the rear side of each water baffle, a plurality of water diversion grooves which are communicated from front to back are formed in the end face of each water baffle, and the aeration grooves are internally provided with aeration plates which are connected in a matched sliding mode; the supporting devices are sequentially and continuously arranged on one side end of the water channel and the other side end of the water channel at intervals, and a group of fixing rods are arranged below each supporting device; a cylinder driving device is arranged above each supporting device; the lower end of each supporting device is in pin joint with 2 upright cylinders and 2 inclined cylinders, the cylinder shafts of the 2 upright cylinders are respectively connected with the upper ends of the aeration plates of the spliced 2 water baffles, and the cylinder shafts of the 2 inclined cylinders are respectively connected with the front end surfaces of the spliced 2 water baffles; the 2 inclined cylinders are obliquely and downwards arranged from the water flow outlet end of the water channel to the water flow inlet end; 2 upright cylinders, 2 oblique cylinders are all connected with cylinder drive equipment.
Preferably, the cylinder driving device is an air compressor.
Preferably, an aeration cavity is formed in each aeration plate; a hard aeration pipe communicated with an aeration cavity inside the aeration plate is arranged on a top plate of each aeration plate, a soft aeration pipe is sleeved on the hard aeration pipe, and the soft aeration pipe is connected with an air compressor; the bottom plate of each aeration plate is provided with a plurality of aeration holes communicated with the aeration cavity inside the aeration plate, and the positions of the aeration holes correspond to the positions in the grooves of the water diversion grooves one by one.
Preferably, the supporting device comprises a supporting rod and an arc-shaped top cover plate; the supporting rod is a square supporting rod consisting of a transverse supporting rod and a longitudinal supporting rod which are integrally arranged on the end face of the side of the ditch, the lower end of the transverse supporting rod at the rear side is in pin joint with 2 vertical cylinders, and the lower end of the transverse supporting rod at the front side is in pin joint with 2 inclined cylinders; the rear end of the supporting equipment is provided with an air compressor, a vertical rod is arranged on the air compressor, an arc top cover plate is arranged on the vertical rod, and the arc top cover plate completely covers the air compressor, a supporting rod, a whole water baffle, 2 vertical cylinders and 2 inclined cylinders below the arc top cover plate.
Preferably, 2 vertical cylinders are positioned near the middle of the water channel; the 2 inclined cylinders are positioned close to the middle part of the water channel.
Preferably, the lower end of the transverse supporting rod at the rear side is in pin joint with 2 first connecting pieces, and the bottom ends of the 2 first connecting pieces are in pin joint with the top ends of the 2 vertical cylinders respectively; the lower end of the front side transverse supporting rod is in pin joint with 2 second connecting pieces, and the bottom ends of the 2 second connecting pieces are in pin joint with the top ends of the 2 inclined cylinders respectively.
Preferably, the diversion trench is vertical and long.
Preferably, the splicing and fitting end faces of the 2 transversely spliced water baffles are correspondingly perforated with adjusting grooves; the adjusting tank is filled with black and odorous water body adjusting agent, the opening end of the adjusting tank is provided with a fiber filter layer, and the black and odorous water body adjusting agent is coated in the adjusting tank through the fiber filter layer.
Compared with the prior art, the invention has the beneficial effects that:
(1) the cleaning system for the sludge in the black and odorous water channel adopts the sectional type bottom sludge washing work, so that the problem that the sludge in the black and odorous water channel needs to be cleaned manually or the cleaning effect is not ideal when the sludge is cleaned automatically is solved;
(2) the cleaning system for the sludge in the black and odorous water channel can also carry out sectional oxygenation treatment, namely, a certain water baffle is controlled to be put into oxygenation work in a targeted manner, so that energy waste and resource loss are further avoided;
(3) this clearance system of black smelly water channel silt is when oxygenating the process, and black smelly water adjusting medicament in the adjustment tank of breakwater can flow through the fiber filter layer and come, flows into the water, further carries out the water purification treatment of black smelly water.
Drawings
FIG. 1 is a schematic overall perspective view of the present invention;
FIG. 2 is a schematic overall perspective view of the present invention;
FIG. 3 is an overall top view of the present invention;
FIG. 4 is an overall front view of the present invention;
FIG. 5 is an overall right side view of the present invention;
FIG. 6 is an overall left side view of the present invention;
FIG. 7 is an overall front view of the present invention with one end of the canal removed;
FIG. 8 is an enlarged view of portion A of FIG. 7;
FIG. 9 is a schematic view of the overall structure of the present invention with one side end of the canal removed;
FIG. 10 is a schematic view of the present invention with one side end of the channel removed;
fig. 11 is a schematic view of the overall structure of the present invention with one side end of the canal removed.
In the figure: 1. a fixing rod; 2. a vertical cylinder; 3. an inclination cylinder; 4. an air compressor; 5. a water baffle; 6. a water channel; 7. an aeration tank; 8. a water diversion tank; 9. an aeration plate; 10. an aeration cavity; 11. a hard aeration pipe; 12. an aeration hole; 13. a support device; 14. a vertical rod; 15. an arc-shaped top cover plate; 16. a first connecting piece; 17. a second connecting piece; 18. a fibrous filtration layer.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments.
In the description of the present invention, "a plurality" means two or more unless otherwise specified; the terms "upper", "lower", "left", "right", "inner", "outer", "front", "rear", "head", "tail", and the like, indicate orientations or positional relationships based on the orientations or positional relationships shown in the drawings, are only for convenience in describing and simplifying the description, and do not indicate or imply that the device or element referred to must have a particular orientation, be constructed in a particular orientation, and be operated, and thus, should not be construed as limiting the invention. Furthermore, the terms "first," "second," "third," and the like are used for descriptive purposes only and are not to be construed as indicating or implying relative importance.
In the description of the present invention, it is to be noted that, unless otherwise explicitly specified or limited, the terms "connected" and "connected" are to be interpreted broadly, e.g., as being fixed or detachable or integrally connected; can be mechanically or electrically connected; may be directly connected or indirectly connected through an intermediate. The specific meanings of the above terms in the present invention can be understood in specific cases to those skilled in the art.
Example (b):
as shown in fig. 1 to 11, the cleaning system for the sludge in the black and odorous water channel comprises a black and odorous water quality monitor, a supporting device 13, a fixing rod 1, an upright cylinder 2, an inclined cylinder 3, an air compressor 4 and a water baffle 5.
A plurality of black and odorous water quality monitors are arranged on the liquid level of the water channel 6 at intervals; two medial extremity of ditch 6 are to be equipped with multiunit dead lever 1 with the interval, the pin joint has 2 breakwater 5 between 1 tops of every group dead lever, 2 breakwater 5 transversely splice form monoblock breakwater 5, the width of monoblock breakwater 5 equals the width of ditch 6, laminate completely with ditch 6 bottom during the vertical state in monoblock breakwater 5 bottom (ditch 6 bottom generally has tongue fur class or shallow silt or impurity etc. to be convenient for 5 rotary motion of monoblock breakwater).
An aeration groove 7 is formed in the upper end of the rear side of each water baffle 5, a plurality of water diversion grooves 8 which are communicated from front to back are formed in the end face of each water baffle 5, the water diversion grooves 8 are vertical and long-strip-shaped, and aeration plates 9 are connected in a matched and sliding mode in the aeration grooves 7; a plurality of supporting devices 13 are sequentially and continuously arranged on one side end of the water channel 6 and the other side end of the water channel 6 at intervals, and a group of fixing rods 1 are arranged below each supporting device 13; an air compressor 4 is arranged above each supporting device 13.
An aeration cavity 10 is arranged in each aeration plate 9; a hard aeration pipe 11 communicated with an aeration cavity 10 inside each aeration plate 9 is arranged on the top plate of each aeration plate 9, a soft aeration pipe is sleeved on each hard aeration pipe 11, and the soft aeration pipe is connected with the air compressor 4; the bottom plate of each aeration plate 9 is provided with a plurality of aeration holes 12 communicated with the aeration cavity 10 inside, and the positions of the aeration holes 12 correspond to the positions in the water diversion grooves 8 one by one.
The lower end of each supporting device 13 is pinned with 2 upright cylinders 2 and 2 inclined cylinders 3, specifically: the 2 vertical cylinders 2 are positioned close to the middle part of the water channel 6; 2 inclined cylinders 3 are positioned at the position close to the middle part of the water channel 6; the lower end of the rear transverse supporting rod is in pin joint with 2 first connecting pieces 16, and the bottom ends of the 2 first connecting pieces 16 are in pin joint with the top ends of the 2 vertical cylinders 2 respectively; the lower end of the front side transverse supporting rod is in pin joint with 2 second connecting pieces 17, and the bottom ends of the 2 second connecting pieces 17 are in pin joint with the top ends of the 2 inclined cylinders 3 respectively; the cylinder shafts of the 2 vertical cylinders 2 are respectively connected with the upper ends of the aeration plates 9 of the spliced 2 water baffles 5, and the cylinder shafts of the 2 inclined cylinders 3 are respectively connected with the front end surfaces of the spliced 2 water baffles 5; the 2 inclined cylinders 3 are arranged from the water flow outlet end of the water channel 6 to the water flow inlet end in an inclined and downward mode.
2 upright cylinder 2, 2 slope cylinders 3 all are connected with air compressor machine 4.
The support device 13 comprises a support bar and an arc-shaped top cover plate 15; the supporting rod is a square supporting rod consisting of a transverse supporting rod and a longitudinal supporting rod which are integrally arranged on the end face of the side of the water channel 6, the lower end of the transverse supporting rod at the rear side is in pin joint with 2 vertical cylinders 2, and the lower end of the transverse supporting rod at the front side is in pin joint with 2 inclined cylinders 3; the rear end of the supporting equipment 13 is provided with an air compressor 4, the air compressor 4 is provided with a vertical rod 14, the vertical rod 14 is provided with an arc top cover plate 15, and the arc top cover plate 15 completely covers the air compressor 4, a supporting rod, a whole water baffle plate 5, 2 upright cylinders 2 and 2 inclined cylinders 3 below the arc top cover plate.
The splicing and attaching end faces of the transversely spliced 2 water baffles 5 are correspondingly communicated with and provided with adjusting grooves; the adjustment tank is filled with black and odorous water body adjustment agent, the open end of the adjustment tank is provided with a fiber filter layer 18, and the fiber filter layer 18 coats the black and odorous water body adjustment agent in the adjustment tank.
The working principle of the invention is as follows:
in the initial state, all the integral water baffles are in the closed state, in the figure 1-11, the right second aeration plate 9 is pulled up by the vertical cylinder 2, and the rest are in the initial state;
at intervals, starting from two adjacent integral water baffles 5 at the outermost side of the outlet end of the water channel (namely two integral water baffles 5 at the rightmost side in the figure), wherein the vertical cylinder 2 in the integral water baffle 5 at the left side drives the aeration plate 9 at the rear side of the water baffle 5 to move upwards (generally extend out of the water surface), so that the water diversion grooves 8 are communicated front and back, and therefore, when water in the water channel passes through the water diversion grooves 8, the sectional area is reduced, the water flow speed is increased, and the pulse type water flow speed is increased; then the air compressor 4 acts on the right inclined cylinder 3, so that the inclined cylinder 3 drives the right integral water baffle 5 connected with the inclined cylinder to be quickly opened, after the inclined cylinder is opened for a certain time (the length of the opening time can be set), the right inclined cylinder 3 controls the integral water baffle 5 to be quickly closed, pulse water flow generated by quick opening and quick closing washes channel bottom mud between two adjacent integral water baffle 5 areas, the channel bottom mud is washed out of a water channel, and the channel is prevented from being blackened and smelled due to anaerobic fermentation caused by accumulation of deeper mud;
according to the same principle, the water is sequentially pushed to the left, every two adjacent whole water baffles 5 work in a matched mode, channel bottom mud between every two adjacent whole water baffles 5 is washed out sequentially from the right to the left, and finally channel bottom mud in the whole water channel is washed out of the water channel;
the sludge is washed in a sectional mode, so that the problem that the sludge in the channel of the black and odorous water body needs to be manually cleaned or the cleaning effect is not ideal when the sludge is automatically cleaned is solved;
when the black and odorous water quality monitor detects that the water quality in the water channel is abnormal (such as water quality changes color, odor, excessive microorganisms or too low dissolved oxygen), the upright cylinder 2 drives the aeration plate 9 at the rear side of the water baffle 5 to move upwards, the aeration plate 9 is still remained in the water surface, and the air generated by the air compressor 4 sequentially passes through the soft aeration pipe (the soft aeration pipe is long enough), the hard aeration pipe 11, the aeration cavity 10, the aeration hole 12 and the water diversion groove 8 to enter the water body, so that the water body is oxygenated, and the water body is prevented from being odor and black;
the cleaning system for the sludge in the black and odorous water channel can also carry out sectional type oxygenation treatment, when the black and odorous water quality monitor in a certain area detects that the water quality in the channel is abnormal, the air generated by the air compressor 4 in the certain area sequentially passes through the soft aeration pipe, the hard aeration pipe 11, the aeration cavity 10, the aeration hole 12 and the water diversion tank 8 in the certain area to enter the water body, oxygenation to the water body is realized, the water body is prevented from being smelly and blackened, and energy waste and resource loss caused by opening all the air compressors 4 are also avoided; the reason why the monoblock breakwater 5 is set to be formed by splicing two transverse breakwater 5 lies in that: a certain water baffle 5 (namely the area needs to be oxygenated) can be controlled to be put into the oxygenation work in a targeted manner, so that the energy waste and the resource loss are further avoided;
the whole water baffle 5 is formed by splicing two transverse water baffles 5, wherein one spliced water baffle 5 can be controlled by the inclined cylinder 3 on the front end surface to be opened leftwards (or rightwards) and move around the pin shaft point of the spliced water baffle 5 and the fixed rod 1, and the other spliced water baffle 5 can be controlled by the inclined cylinder 3 on the front end surface to be opened rightwards (or leftwards) and move around the pin shaft point of the spliced water baffle 5 and the fixed rod 1 (at the moment, the vertical cylinder 2, the first connecting piece 16 and the second connecting piece 17 all perform adaptive movement), so that the two water baffles 5 are X-shaped, different areas can be oxygenated conveniently, the adjusting grooves are exposed, and the black and odorous water regulating medicament in the adjusting grooves of the two water baffles 5 flows out through the fiber filter layer 18 and flows into the water body to further perform water body purification treatment on the black and odorous water body; the black and odorous water regulating agent cannot flow out of the regulating groove when the two water baffles 5 are spliced into the whole water baffle 5.
The above description is only for the preferred embodiment of the present invention, but the scope of the present invention is not limited thereto, and any person skilled in the art should be considered as the technical solutions and the inventive concepts of the present invention within the technical scope of the present invention.

Claims (8)

1. A cleaning system for sludge in a black and odorous water channel is characterized by comprising a black and odorous water quality monitor, a supporting device (13), a fixing rod (1), an upright cylinder (2), an inclined cylinder (3), a cylinder driving device and a water baffle (5);
a plurality of black and odorous water quality monitors are arranged on the liquid level of the water channel (6) at intervals; the water channel structure is characterized in that a plurality of groups of fixing rods (1) are arranged at two inner side ends of the water channel (6) at intervals, 2 water baffles (5) are connected between the tops of each group of fixing rods (1) in a pin joint mode, the 2 water baffles (5) are transversely spliced to form a whole water baffle (5), the width of the whole water baffle (5) is equal to that of the water channel (6), and the bottom of the whole water baffle (5) is completely attached to the bottom of the water channel (6) when in a vertical state; an aeration groove (7) is formed in the upper end of the rear side of each water baffle (5), a plurality of water distribution grooves (8) which are communicated from front to back are formed in the end face of each water baffle (5), and an aeration plate (9) is connected in a matched and sliding mode in each aeration groove (7); the supporting equipment (13) is sequentially and continuously arranged on one side end of the water channel (6) and the other side end of the water channel (6) at intervals, and a group of fixing rods (1) are arranged below each supporting equipment (13); a cylinder driving device is arranged above each supporting device (13); the lower end of each supporting device (13) is in pin joint with 2 upright cylinders (2) and 2 inclined cylinders (3), the cylinder shafts of the 2 upright cylinders (2) are respectively connected with the upper ends of aeration plates (9) of the spliced 2 water baffles (5), and the cylinder shafts of the 2 inclined cylinders (3) are respectively connected with the front end surfaces of the spliced 2 water baffles (5); the 2 inclined cylinders (3) are arranged from the water flow outlet end of the water channel (6) to the water flow inlet end in an inclined downward mode; 2 upright cylinders (2) and 2 inclined cylinders (3) are connected with the cylinder driving device.
2. The black odorous water channel sludge cleaning system as claimed in claim 2, wherein the cylinder driving device is an air compressor (4).
3. The system for cleaning the sludge in the black and odorous water channel as claimed in claim 2, wherein an aeration cavity (10) is formed in each aeration plate (9); a hard aeration pipe (11) communicated with an internal aeration cavity (10) of each aeration plate (9) is arranged on a top plate of each aeration plate, a soft aeration pipe is sleeved on each hard aeration pipe (11), and the soft aeration pipes are connected with an air compressor (4); a plurality of aeration holes (12) communicated with the aeration cavity (10) inside the aeration plate are formed in the bottom plate of each aeration plate (9), and the positions of the aeration holes (12) correspond to the positions in the water diversion grooves (8) one by one.
4. The black and odorous water body channel sludge cleaning system as claimed in claim 2, wherein the support device (13) comprises a support bar and an arc-shaped roof plate (15); the supporting rod is a square supporting rod consisting of a transverse supporting rod and a longitudinal supporting rod which are integrally arranged on the end surface of the side of the water channel (6), the lower end of the transverse supporting rod at the rear side is in pin joint with 2 vertical cylinders (2), and the lower end of the transverse supporting rod at the front side is in pin joint with 2 inclined cylinders (3); the rear end of support equipment (13) is equipped with air compressor machine (4), be equipped with vertical pole (14) on air compressor machine (4), be equipped with arc top cover plate (15) on vertical pole (14), arc top cover plate (15) cover its below completely air compressor machine (4), bracing piece, monoblock breakwater (5), 2 upright cylinder (2) and 2 slope cylinders (3).
5. The black and odorous water body channel sludge cleaning system according to any one of claim 4, wherein 2 vertical cylinders (2) are located near the middle of the channel (6); the 2 inclined cylinders (3) are positioned at the position close to the middle part of the water channel (6).
6. The cleaning system for the black and odorous water channel sludge as claimed in any one of the claim 5, wherein the lower end of the rear side transverse support rod is pinned with 2 first connecting pieces (16), and the bottom ends of the 2 first connecting pieces (16) are respectively pinned with the top ends of 2 vertical cylinders (2); the lower end of the front side transverse supporting rod is in pin joint with 2 second connecting pieces (17), and the bottom ends of the 2 second connecting pieces (17) are in pin joint with the top ends of the 2 inclined cylinders (3) respectively.
7. The black odorous water channel sludge cleaning system as claimed in any one of the claim 1, wherein the diversion trench (8) is vertically long and long.
8. The cleaning system for the sludge in the black and odorous water channel according to any one of claims 1 to 7, wherein adjusting grooves are correspondingly formed through the splicing and fitting end surfaces of the 2 transversely spliced water baffles (5); the black and odorous water regulating agent is filled in the regulating tank, the opening end of the regulating tank is provided with a fiber filtering layer (18), and the black and odorous water regulating agent is coated in the regulating tank by the fiber filtering layer (18).
CN202210397401.XA 2022-04-15 2022-04-15 Cleaning system of black and odorous water channel silt Pending CN114790772A (en)

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