Horizontal to vertical rainwater grates and wind-resistant vertical wellhead water collection devices

By designing a flat-to-vertical rainwater grate and a wind-resistant vertical wellhead water collection device, the problems of garbage blockage and wind harassment in the well under the permeable grate are solved, and autonomous adjustment and efficient drainage are achieved, reducing maintenance needs.

CN115680102BActive Publication Date: 2025-08-29陈三军
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Patent Information

Application Number
CN202110868847.1
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2021-07-30
Publication Date
2025-08-29
Estimated Expiration
2041-07-30

AI Technical Summary

Technical Problem

There is a problem of garbage blockage in the well under the permeable grate, and it is difficult to maintain normal drainage function under natural wind.

Method used

A flat-to-vertical rainwater grate and a wind-resistant vertical wellhead water collection device were designed. The high-low difference design allowed water to penetrate into the grate and flow into the water tank vertically, and the wind-facing parts were fixed through wind-resistant components to ensure that the device works normally under wind disturbance.

Benefits of technology

It realizes independent regulation and self-producing energy, avoids subsequent management procedures, maintains the stability and efficiency of the drainage system, and reduces maintenance needs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention discloses a horizontal-to-vertical rain grate and a wind-resistant vertical wellhead water collecting device. The horizontal-to-vertical rain grate is based on the original permeable grate structure. A concave channel with a sweeping slope that can accumulate water is used to block the drainage holes of the original permeable grate. The blocked drainage holes can only drain water to the vertical drainage channels on both sides of the concave channel. The horizontal vertical drainage mode of the original permeable grate is changed to a vertical vertical rain grate drainage mode, which prevents the concave channel, which is very easy to store garbage, from squeezing garbage into the drainage channel. A curtain is installed at the drain outlet, and a water tank is placed under the curtain. The water tank is equipped with a device for opening and closing the curtain. A door-like structure is hung upside down on the upper edge of the outer frame of the vertical water collection well and the side wall of one side of the well. The leaves under the door are stuck in the wind-resistant circle to prevent wind. A water tank is installed under the door, and the water tank has a structural device that extends to control the door. The device controls the leaves to slide smoothly in the wind-resistant circle. The horizontal vertical rain grating and the wind-resistant vertical wellhead water collection device have permanent ability to resist the elements.
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Description

Technical Field

[0001] The invention relates to a rainwater collection facility for drainage engineering. Background Art

[0002] The seemingly inconspicuous permeable grates, in fact, each drainage hole of the permeable grates is connected to the huge project and the environment. It is the "guardian of the source of life and the guardian of life safety", and is the "loyal token that is level with the ground and never shuts up under the feet of human beings". It requires "always being ready, and draining the water down when it reaches the hole". In order to meet the requirements, I have invented a number of drainage project water inlet facility products, such as: "Vertical wellhead opening and closing device" (201210214241·7), "Locking for vertical sewage wellhead opening and closing device" (201510603974·3), "Water filter grate with built-in water tank of drainage hole" (201710412337.7) and other patents. During the product processing, testing and implementation, many technical defects have appeared that need to be solved and improved. Summary of the Invention

[0003] The technical problem to be solved by the present invention is: in the environment, there are garbage in the wells under the permeable grates, which blocks the water inlet of the sewer. The best way to prevent garbage from entering the well is to install a door to the drainage hole of the permeable grating. Installing a door is easy, but it is not an easy task to make each permeable grating meet the requirements. In the practice and implementation of the product, it is found that it is difficult to let the accumulated water outside the grating seep into the water inside the grating in an orderly manner (accumulation, seepage, flow, broken water, storage, floating water, opening the door to drain water) and follow the natural process. It is key to ensure that the step procedure is not isolated, interrupted, jumped, or chaotic. The biggest problem with installing a door at the vertical wellhead is that the door must be able to withstand the harassment of natural wind and the device must complete its function under the harassment of natural wind.

[0004] The new function invented to solve the above technical problems is: to install a door for the drain hole of the grate, with the two sides of the door being different in height, so that water can seep into the grate from the lower side. The water that seeps into the grate first flows straight down, and the water that flows straight down is concentrated and broken without loss of quantity, focusing on the storage of the broken water, the cleanliness of the stored water, and the sufficient water volume. After the previous steps are completed, the grate door will open automatically; the wind is used to toss the windward object to seal the well, and wind-resistant components are used on both sides of the back of the windward object to enclose the windward object within the wind-resistant components. The wind-resistant components are fixed on both sides of the main frame of the air outlet, so that the windward object can only work within the range of the wind-resistant components. Faced with the harshness of nature and the environment, the initial water intake of the drainage project can only have multiple backup plans to prepare for emergencies. The added new function can not only generate energy by itself, but also adjust itself, solve the problem once and for all, and avoid many subsequent management procedures of the drainage project. BRIEF DESCRIPTION OF THE DRAWINGS

[0005] Figure 1 , a schematic diagram of the structure of the water-permeable grate still in use today;

[0006] Figure 2, a schematic diagram of the structure of the horizontal-to-vertical rainwater grate and the wind-resistant vertical wellhead water collection device;

[0007] Figure 3 , a schematic diagram of the structure of cement prefabricated components in the horizontal-to-vertical rain grate and the wind-resistant vertical wellhead water collecting device;

[0008] Figure 4 , a schematic structural diagram of the water tank 11 and the water collecting top plate 17 of the horizontal to vertical rainwater grate and the wind-resistant vertical wellhead water collecting device;

[0009] Figure 5 , a schematic diagram of the AA cross-sectional structure of the horizontal-to-vertical rainwater grate and the wind-resistant vertical wellhead water collection device;

[0010] Figure 6 , a schematic structural diagram of the brush 21 in the horizontal-to-vertical rainwater grate and the wind-resistant vertical wellhead water collecting device;

[0011] Figure 7 , a schematic structural diagram of the closed state of the vertical wellhead front leaf door 34 in the horizontal to vertical rainwater grate and the wind-resistant vertical wellhead water collecting device;

[0012] Figure 8 , a schematic structural diagram of the vertical wellhead front leaf door 34 in the horizontal to vertical rainwater grate and the wind-resistant vertical wellhead water collecting device in an open state;

[0013] Figure 9 , schematic diagram of the structure of the vertical wellhead back door in the horizontal-to-vertical rainwater grate and the wind-resistant vertical wellhead water collection device in the closed BB state. DETAILED DESCRIPTION

[0014] The following examples are used to illustrate the present invention but are not intended to limit the scope of the present invention.

[0015] Convert horizontal to vertical rainwater grate:

[0016] Figure 1 The permeable grating currently in use mainly comprises: a grating frame 1, drain holes 2, and grating edges 3.

[0017] Figure 2 The main body of the horizontal to vertical rainwater grate is composed of cement prefabricated parts 4, concave cleaning slope 5, concave 6, concave bottom 7, drain channel 8, load-bearing plate 10, water tank 11, mesh grate 12, curtain 13, wind-resistant curtain rod 14, box water collection top plate 17, and drainage hole 20.

[0018] Figure 3 To ensure that the rainwater grate is smooth in use, grooves 9 for placing the load-bearing plates 10 are reserved on the grate frames on both sides when making the cement prefabricated parts 4.

[0019] Figure 4 The water collecting top plate 17 covering the top of the water tank 11 is covered with 1mm water-permeable holes 19. The two sides of the water collecting top plate 17 are bent directly downward to form two vertical corner non-slope water collecting platforms 22. A brush 21 is placed on the platform of the vertical corner non-slope water collecting platform 22. The surface of the top plate 17 also has a float rod string hole 18 that can be freely raised and lowered by the float rod 16 in the water tank 11.

[0020] Figure 5 In the AA cross-sectional view of the horizontal-to-vertical rain grate, the bottom edge of the curtain 13 just hangs on the top of the floating rod 16. The wind-resistant curtain rod 14 frames the curtain 13 and is fixed on the side walls of the concave channel cleaning slope 5 on both sides. A float 15 is placed in the water tank 11, and a floating rod 16 is installed on the float 15. It is clearly shown that there is a 2mm drainage hole 20 at the bottom of the water tank 11.

[0021] Figure 6 A brush 21 is placed on a platform of a vertical angled non-slope water collecting platform 22 .

[0022] Figure 1 The water-permeable grating composed of the grating frame 1, the drainage hole 2 and the grating edge 3 is a rain grating that cannot be closed. The engineering trouble after the grating comes from the rain grating that cannot be closed.

[0023] Figure 2 The horizontal-to-vertical rain grate maintains the basic shape and structure of the original permeable grate, but the size of the structure has been increased accordingly. The grate edge 3 is replaced by a load-bearing plate 10, and the grooves 9 reserved on the side walls of the cement prefabricated parts 4 allow the load-bearing plates 10 to be placed therein. The combination of the load-bearing plates 10 and the cement prefabricated parts 4 provides a stable basic plane for the use of the horizontal-to-vertical rain grate product. The drain hole 2 of the original permeable grate with an enlarged size is blocked by the recess 6. The drain hole 2 is blocked by the recess 6, which is equivalent to changing the vertical drainage method of the original permeable grate to a mode in which water first accumulates in the recess 6 and then is distributed to the back, and the drainage mode is completed by the vertical drain channels 8 on both sides of the recess 6.

[0024] Figure 3 The structural diagram of the cement prefabricated part 4 clearly shows that the concave channel 6 has a certain depth and a limited volume. The water in the concave channel 6 can flow away from the drain channels 8 on both sides. However, garbage is easily accumulated in the concave channel 6. The garbage accumulated at the bottom 7 of the concave channel cannot be cleaned manually. Concave channel cleaning slopes 5 are designed at both ends of the concave channel 6 to facilitate mechanical cleaning.

[0025] Figure 4The water collecting top plate 17 on the top of the water tank 11 is covered with 1mm water-permeable holes 19, and the two side edges of the water collecting top plate 17 of the water tank are bent directly downward to form two vertical angle non-slope water collecting platforms 22. The water collecting platforms used in previous inventions are all triangular landslide water collecting platforms. The triangular landslide water collecting platform has a good mud discharge effect, but the slope has a poor effect on the tension of the water droplets breaking the rolling. The water collecting holes set on the slope have a natural water collecting effect. The water entering the box is small, and the water storage in the box is small. The floating water component in the box starts naturally slowly, and the door installed on the drain hole opens slowly. The water collecting platform 22 on the water collecting top plate 17 of the water tank is changed into a vertical angle non-slope type. The vertical angle non-slope water collecting platform 22 allows the water droplets to roll into the vertical corners of the platform first and then roll horizontally to the edge of the platform. With the use of the original triangular landslide water collecting platform, the water entering the box can only rely on the single rolling breaking water droplet tension on the water droplet landslide. The water collecting platform 22 is changed into a vertical angle non-slope type. Slope-type water collection, the box 11 has a variety of water collection methods such as seepage, flow, and breaking water when entering the water collection platform 22. The cylindrical long-haired brush 21 placed on the water collection platform 22 has a longer rolling path for water droplets on the cylindrical surface than on the triangular landslide surface, and the path curve is difficult. The more difficult it is for the water droplets to roll on the path, the more water will remain on the path, the more water the box gets, and the more water the box gets, the faster the floating water components in the box will start and the buoyancy will be greater. Even if the brush 21 piles up the soil on the water collection platform 22 platform into a triangular landslide over time, the landslide formed by the soil will not be like the smooth slope made directly from hard materials. The soil is easy to absorb water, and the landslide surface cannot withstand the infiltration of water. The landslide soaked by water is no longer smooth, and its water-breaking and water-absorbing capabilities are much stronger than those of the landslide surface made of hard materials. The water collection box top plate 17 is also provided with a top plate float rod string hole 18 that can be freely raised and lowered by the float rod 16 extending from the box 11.

[0026] Figure 5 The curtain 13 is a board that can block the wind by connecting many curtain strips parallel to the water surface, and is naturally hung on the upper edge of the side wall of the slope 5 of the cleaning slope at both ends of the concave 6. A mesh grating 12 is installed in front of the curtain 13. The benefit of the mesh grating 12 is that when there is water, the mesh grating 12 in front of the curtain can filter water, and large pieces of garbage cannot enter the drain channel 8 with the water. The mechanical cleaning broom in the concave 6 cannot directly damage the curtain 13; the floating rod 16 floats up and down The falling direction is consistent with the tightening and closing direction of the curtain strips. A wind-resistant curtain rod 14 perpendicular to the curtain strips is installed behind the curtain on the windward side of the vertical curtain 13. The mobility of the vertical curtain 13 is framed by the wind-resistant curtain rod 14 within the wind-resistant curtain rod 14; a float 15 is placed in the water tank 11, and a float rod 16 is installed on the float 15. The float rod 16 is strung out from the top plate float rod string hole 18 on the top plate 17, and a 2mm drainage hole 20 is provided at the bottom of the water tank 11.

[0027] When water accumulates in the concave channel 6, the cement channel bottom 7 distributes the water pressure in the concave channel 6 to the drain channels 8 on both sides of the concave channel 6. When the water pressure in the concave channel 6 cannot open the curtain 13, the water pressure seeps into the grate body along the gap under the curtain 13. The water seeping into the grate body from under the curtain flows vertically along the side walls of the channel bottom 7 to the corners of the vertical non-slope water collection platform 22. The brush 21 or water tension-breaking material placed on the platform of the water collection platform 22 blocks the flow of water on the platform surface. The blocked flowing water has no choice but to seep or filter downward. Through the 1mm water-permeable hole 19; the water flowing through the upper surface of the brush 21, the brush 21 and the material that can break the water tension have hard burrs and extremely strong adhesion function, the water droplets that are punctured by the tension naturally fall along the bristles, and pass through the water-permeable hole 19 to the water tank 11. The water tank 11 gets water, which generates buoyancy, and the float 15 rises. The rise of the float 15 drives the float rod 16 to rise. The curtain 13 is naturally hung on the top of the bent rod of the float rod 16 or is connected to the float rod 16. The rise of the float rod 16 lifts the curtain 13 to open the curtain and drain water.

[0028] When the water is drained from the drain channel 8 of the opened vertical curtain 13, the water in the box 11 is also drained from the 2mm drainage hole 20 at the bottom of the box, the float rod 16 falls with the float 15, and the deadweight of the vertical curtain 13 allows the vertical curtain 13 to fall quickly and close the drain channel 8.

[0029] When the water in the concave channel 6 is drained and the water in the box 11 is drained, the horizontal-to-vertical rain grate is still affected by the wind. The float 15 and the floating rod 16 are not affected by the wind in the water tank 11. Even if the vertical curtain 13 is open and the floating rod 16 is outside the water tank 11, the movement of the floating rod 16 is behind the cleaning slope 5 and is blocked by the cleaning slope 5. The wind has no effect on the movement of the floating rod 16. The vertical curtain 13 falls, and the weight of the curtain is definitely greater than the wind force, so closing the drain channel 8 is not affected by the wind.

[0030] Wind-resistant vertical wellhead water collection device:

[0031] Figure 7 The cement outer frame 23 and the vertical well water inlet 24 of the original vertical wellhead on the front of the wind-resistant vertical wellhead remain basically unchanged. The components required for the fan door to close the vertical wellhead include: supporting fan door columns 25, supporting fan door main boards 26, supporting fan door auxiliary boards 27, supporting fan door main shafts 28, main shafts 29 for opening and closing fan door ropes, auxiliary shafts 30 for opening and closing fan door ropes, main ropes 31 for opening and closing fan door, fan door 34, sealing plates 35, fan door wind-resistant rings 36, box water collection top plates 17, and water tanks 11.

[0032] Figure 8 The wind-resistant vertical wellhead front door 34 is in the open state, and the main rope 31 for opening and closing the door, the auxiliary rope 32 for opening and closing the door, and the structural state of the floating rod 16 are clearly exposed.

[0033] Figure 9The schematic diagram of the wind-resistant vertical wellhead tightly closed door BB structure clearly shows the structural status relationship of the back parts of the door 34, the main rope 31 for opening and closing the door and the auxiliary rope 32 for opening and closing the door, and the two ends of the four ropes. One end of each rope is tied to the top of the four floating rods 16 respectively, and the other end of the rope is terminated in the two knot holes 33 on the pages of the left and right doors 34 respectively. There is a 2mm drainage hole 20 at the bottom of the water tank 11.

[0034] Figure 7 The installation of the supporting door column 25 is equivalent to dividing an original vertical wellhead with a larger area into two smaller vertical wellheads, which is beneficial for wind resistance and supporting the weight of the two doors 34. The two supporting door main boards 26 are firmly placed at the intersection of the side walls of the door column 25 and the beam under the cement outer frame 23. Only the supporting door main shaft 28 is installed on the door main board 26. The door main shaft 28 firmly holds the overall structure of the door 34 and ensures the smooth and safe operation of the door 34. The two supporting door sub-boards 27 are respectively installed at the intersection of the side walls of the outer frame 23 and the beam on both sides of the outer frame 23 at the same level as the door main board 26.

[0035] Figure 8 When the door 34 is opened, it is clearly shown that the two rope-passing main shafts 29 installed on the upper end of the supporting door column 25 and the two opening and closing door rope-passing main shafts 29 installed on the door sub-plate 27 correspondingly support the door main rope 31 for the opening and closing operation function of the door 34; the two opening and closing door rope-passing sub-shafts 30 installed on the two door sub-plates 27 at the upper corners of the vertical wellhead are mainly responsible for the opening and closing door sub-rope 32 for the opening and closing operation function of the door 34; the two ends of the door wind-resistant ring 36 are fixed on the side wall of the wellhead cement outer frame 23, and the other end is fixed on the lower end of the supporting door column 25. The setting of the door wind-resistant ring 36 allows the door 34 to withstand the harassment of wind over a large distance, and the folded fan leaves can slide smoothly in the ring track.

[0036] Figure 9 The tops of the two floating rods 16 extending from the middle of the water tank 11 are fastened with two main ropes 31 for opening and closing the doors. The two main ropes 31 are respectively hung upwards over the main shafts 29 on the main board 26, and then respectively wrapped around the two main shafts 29 fixed on the supporting door sub-plates 27 on the left and right sides, and then tied into the rope knot holes 33 on the leaves of their respective doors 34; the tops of the two floating rods 16 extending from both sides of the water tank 11 are fastened with two auxiliary ropes 32 for opening and closing the doors. The two auxiliary ropes 32 are respectively wrapped around the two opening and closing door sub-plates 27 fixed on both sides of the wellhead, and then passed through the rope auxiliary shafts 30, and then tied into the rope knot holes 33 on the leaves of their respective doors 34; the wind-resistant vertical well water tank 11 and the horizontal-to-vertical rainwater grating water tank 11 have the same structure and can be interchanged and used interchangeably.

[0037] When water accumulates at the vertical wellhead, water seeps into the well body through the gap at the lower end of the fan door 34 and flows to the corner of the vertical non-slope water collection platform 22. The brush 21 or water-breaking tension material placed on the platform of the water collection platform 22, the bristles of the brush block the flow of water on the platform surface, and the blocked flowing water has to seep down or filter through the water-permeable holes 19; the water flowing through the upper surface of the brush 21, the brush 21 and the material that can break the water tension have hard burrs and extremely strong adhesion function, the water droplets with the punctured tension fall naturally along the brush bristles, flow through the water-permeable holes 19 into the water tank 11, the water tank 11 gets water, generates buoyancy, and floats 15 rises, and the rise of the float 15 drives the four floating rods 16 to rise at the same time. The main body of the door 34 is folded and hung upside down on the door main board 26 with the main shaft 28 supporting the door as the axis. The closing of the door 34 is the tightening of the knot holes 33 on the leaves of the door 34 by the main rope 31 and the auxiliary rope 32. The rise of the floating rod 16 makes the main rope 31 and the auxiliary rope 32 loosen at the same time, and the knot holes 33 on the leaves of the door 34 naturally have no tension. In addition to the dead weight of the leaves, the folding leaves of the door 34 have to fall and rotate at the movable shaft supporting the main shaft 28 of the door, and the door 34 is opened to drain water.

[0038] As long as the main board 26 and the main shaft 28 can withstand the wind, the main rope 31 and the auxiliary rope 32 are connected to the float rod 16, the float rod 16 will not be affected by the wind in the water tank 11, and the tightening and loosening of the main rope 31 and the auxiliary rope 32 have nothing to do with the wind. As long as the main rope 31 and the auxiliary rope 32 are loose, no matter how strong the wind is, it will not be able to support the door 34 from falling due to its own weight, and there is no need to consider too many factors when opening the door 34.

[0039] When the water in the wellhead is drained, the water in the box is also drained from the drainage hole 20 at the bottom of the box, the float 15 falls with the float rod 16, the main rope 31 and the auxiliary rope 32 tighten the tension of the rope knot hole 33 of the fan door 34 on the fan leaf, and the fan leaf rises along the ring track of the windproof ring 36, closing the fan door 34.

[0040] When all the water has drained away, the wind still continues to blow through the vertical wellhead. The weight of the float 15 and the floating rod 16 is not as strong as the force of the wind on the door 34, and the float 15 and the floating rod 16 are naturally unable to pull the door 34. At this point, the door 34, which has fallen and opened, is heavily folded and hung upside down behind or beside the door support column 25. The leaves are folded and stuck in the windproof ring 36. The wind's harassment cannot damage the door 34. After the wind passes, the weight of the float 15 and the floating rod 16 will naturally pull the knot holes 33 on the leaves of the door 34, closing the vertical wellhead. Even if the door 34 is not closed, the floating rod 16 is still outside the water tank 11. However, the floating rod 16 is not bearing any weight at this time, so the wind has little effect on the floating rod 16. The holes in the leaves of the door 34 reduce the destructive force of the wind on the door 34 when it is closed.

[0041] It can be clearly seen from the structural diagram and the instructions that the structural principles of the two devices are exactly the same, so that the objects sealing the water inlet do not move, and the structures can be interchanged. For example, the structure of the vertical well opening door 34 does not move, and only the curtain 13 of the flat-to-vertical rain grate is directly moved to the vertical well mouth. The device functions as usual and the door opening method can also be varied.

[0042] 2. The water-permeable holes 19 on the water-collecting top plate 17 of the water tank 11 are significantly smaller than the drainage holes 20 at the bottom of the tank to maintain water purity. The hole density of the water-permeable holes 19 is much denser than that of the drainage holes. The total area of ​​the water-collecting holes in the water tank 11 is much larger than the area of ​​the drainage holes. The water tank 11 has a large water-collecting capacity and a much larger drainage capacity, and can maintain the amount of water collected.

[0043] The whole device box has energy as long as there is clean water, and the components are not disturbed by the outside world and can work back and forth without stopping, so there is no need for maintenance. The design principles of the horizontal to vertical rainwater grate and the wind-resistant vertical wellhead water collection device are the same. The device principle is simple, no manual control is required, and management is natural. The materials are cheap, and if there is a problem, you can just pick up a piece to repair it.

[0044] While the above description of the present invention, which includes a horizontal-to-vertical rainwater grate and a wind-resistant vertical wellhead water collection device, has been detailed using general descriptions and specific examples, modifications and improvements based on the present invention are readily apparent to those skilled in the art. Therefore, any such modifications and improvements, without departing from the spirit of the present invention, are considered within the scope of protection of the present invention.

Claims

1. A horizontal to vertical rainwater grate and a wind-resistant vertical wellhead water collection device. The vertical rainwater grate and wind-resistant vertical wellhead permanently possess the ability to cope with natural resistance. Its characteristics are: The horizontal-vertical rain grate is converted to a vertical rain grate by using a concave channel (6) to block the drain hole (2), which is equivalent to changing the vertical drainage mode of the original permeable grate to a drainage mode in which the water is first accumulated in the concave channel (6) and then diverted to the vertical drain channel (8). This prevents the concave channel (6) which is very easy to retain garbage from squeezing garbage into the drain channel (8). The vertical curtain (13) blocks the drain outlet of the drain channel (8). A windproof curtain rod is installed on the back of the vertical curtain (13). (14), the water seeps into the grating from the curtain (13) and flows to the vertical angle non-slope water receiving platform (22) on the water receiving top plate (17) of the water receiving box. The water receiving top plate (17) is covered with water holes (19). The water is fed into the water tank (11) through the water holes (19). There is a float (15) in the water tank (11). The float (15) is equipped with a float rod (16). The float rod (16) is connected to the float rod string hole (1 8), the bottom of the curtain (13) is naturally hung on the top of the floating rod (16); the wind-resistant vertical wellhead water collecting device, the fan door (34) is hung upside down on the supporting fan door main board (26) with the fan door main shaft (28) as the axis to close the wellhead, and the fan leaf is folded and stuck in the wind-resistant ring (36). The main rope (31) and the auxiliary rope (32) for opening and closing the fan door (34) are respectively wound around the rope main shaft (29) and the rope auxiliary shaft (30), and finally tied to the rope knot hole (33) on the fan leaf of the fan door (34). The other ends of the main rope (31) and the auxiliary rope (32) are tied to the top of the floating rod (16). The power source water tank (11) for operating the fan door (34) is the same as the horizontal to vertical rainwater grating water tank (11), and can be interchanged and used; The horizontal rain grate is changed to a vertical type to prevent the garbage stored in the concave channel (6) from being easily squeezed into the drain channel (8). The drain outlet of the drain channel (8) is provided with a mesh grate (12), a vertical curtain (13) is provided behind the mesh grate (12), and windproof curtain rods (14) are provided at the left and right ends behind the vertical curtain (13); A water tank (11) is installed under the water collecting top plate (17) of the horizontal-to-vertical rainwater grate box, a float (15) is arranged in the water tank (11), and a floating rod (16) is arranged on the float (15); The vertical curtain (13) hung on the drain outlet of the horizontal-to-vertical rainwater grate drain channel (8) naturally hangs on the top of the floating rod (16).

2. The horizontal-to-vertical rainwater grate and wind-resistant vertical wellhead water collection device according to claim 1 are characterized by: The horizontal-to-vertical rainwater grate is a device that blocks the drainage hole (2) with a concave channel (6), thereby changing the vertical drainage mode of the original permeable grate into a vertical drainage mode.

3. The horizontal-to-vertical rainwater grate and wind-resistant vertical wellhead water collecting device according to claim 1 are characterized by: The top plate (17) of the water collecting box in the horizontal-to-vertical rainwater grate is covered with water-permeable holes (19). The edge of the plate is bent downward to form a water collecting platform (22) with a vertical angle and no slope. A brush (21) or a material capable of breaking water tension can be placed on the platform of the water collecting platform (22). The plate surface is also provided with a floating rod (16) with a hole (18) for freely lifting the floating rod.

4. The horizontal-to-vertical rainwater grate and wind-resistant vertical wellhead water collecting device according to claim 1 are characterized by: The windproof vertical shaft door (34) is hung on the supporting shaft main shaft (28) in an inverted manner on the supporting shaft main shaft (26) to seal the vertical shaft opening. The fan leaves are foldably stuck in the windproof ring (36) and can slide smoothly in the ring track.

5. The horizontal-to-vertical rainwater grate and wind-resistant vertical wellhead water collecting device according to claim 1 are characterized by: One end of the main rope (31) and the auxiliary rope (32) of the wind-resistant vertical well opening and closing door (34) are respectively wound around the rope main shaft (29) and the rope auxiliary shaft (30), and finally tied to the rope knot hole (33) on the leaf of the door (34). The other ends of the main rope (31) and the auxiliary rope (32) are tied to the top of the floating rod (16).

6. The horizontal-to-vertical rainwater grate and wind-resistant vertical wellhead water collecting device according to claim 1 are characterized by: The power source water tank (11) capable of opening and closing the wind-resistant vertical well door (34) and the horizontal-to-vertical rainwater grating water tank (11) are similar and can be used interchangeably.

7. The horizontal-to-vertical rainwater grate and wind-resistant vertical wellhead water collecting device according to claim 1 are characterized by: The water tank (11) has clean water and energy, and the components are not disturbed by the outside world and work back and forth without manual control.

Citation Information

Patent Citations

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