Regional farmland roadbed water storage tank body structure
By designing the structure of water storage tanks for farmland roadbeds, and combining protective, shielding, supporting, and drainage components, the problem of the water storage device's footprint was solved, achieving an organic integration of the water storage device with the road, protecting the water tank and collecting rainwater, and enhancing practicality and convenience.
Patent Information
- Application Number
- CN202311221784.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-09-21
- Publication Date
- 2025-11-11
- Estimated Expiration
- 2043-09-21
AI Technical Summary
When planting in farmland, the installation of water storage devices will occupy farmland or road area, affecting the planting area. How can we achieve an organic combination of roads and water storage devices?
Design a water storage tank structure for regional farmland roadbed, including protective, shielding, supporting, drainage and buffering parts. The protective part buffers vehicle impacts, the shielding part collects and protects rainwater, the supporting part facilitates transportation, the drainage part controls the water volume, and the buffering part facilitates pushing.
It achieves an organic integration of water storage devices and roads, protects water tanks, reduces rainwater evaporation, facilitates transportation and pushing, controls drainage volume, and enhances practicality.
Smart Images

Figure CN117104729B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of tank structure technology, and in particular to a water storage tank structure for regional farmland roadbeds. Background Technology
[0002] Irrigation is required when planting crops in farmland, which necessitates the use of water storage devices. However, the installation of these devices often occupies a portion of the farmland or road surface, thus affecting the planting area. Therefore, how to organically integrate roads and water storage devices is a problem that we need to consider. Summary of the Invention
[0003] In view of this, the present invention provides a regional farmland roadbed water storage tank structure, which solves the problem that irrigation is required when planting farmland, and water storage devices are needed at this time. However, the installation of water storage devices will occupy part of the farmland or road area, thus affecting the planting area. Therefore, how to achieve the organic integration of roads and water storage devices is a problem that we need to consider.
[0004] A water storage tank structure for a regional farmland roadbed includes a protective section. This protective section serves two purposes: First, when a vehicle collides with the water tank, it first contacts an auxiliary sleeve, which provides initial cushioning. Then, under the continued impact of the vehicle, rollers rotate, guiding the vehicle in the direction of impact and effectively protecting both the vehicle and the water tank. Finally, four spring rods provide further cushioning, further protecting the water tank. Second, during installation, the auxiliary sleeve can be brought into contact with the ground, facilitating the pushing of the water tank. This provides collision protection and cushioning, and the protective and cushioning structure also facilitates easy transport. Furthermore, it can serve as a roadbed.
[0005] It also features a shielding section. This shielding section serves two purposes: firstly, when it rains, rainwater comes into contact with the top surface of the second baffle and then enters the water storage tank through the second water trough for collection. At this time, the second baffle moves upwards under the influence of the water level until it contacts the bottom surface of the first baffle. Secondly, after the rain, the evaporation of rainwater is reduced by the blocking effect of the second and first baffles, effectively protecting the collected rainwater. This design achieves rainwater collection and reduces the evaporation of collected rainwater. It has a complete structure, strong practicality, and can store water.
[0006] The purpose and effectiveness of this invention's regional farmland roadbed water storage tank structure are achieved through the following specific technical means:
[0007] This invention provides a water storage tank structure for regional farmland roadbeds, specifically including: a water storage tank;
[0008] The water storage tank is a rectangular box-shaped structure, and a shielding part is installed inside the water storage tank.
[0009] Furthermore, the shielding part consists of a first baffle, a first water groove, a second baffle, and a second water groove. There are two first baffles in total. Both of the two first baffles are rectangular plate-shaped structures. The two first baffles are respectively fixed on the left end face and the right end face of the inner wall of the water storage tank. The bottom end faces of the two first baffles are linearly arrayed with first water grooves. The first water grooves are semi-cylindrical groove-shaped structures.
[0010] Furthermore, a second baffle is slidably connected inside the water storage tank. The second baffle is a rectangular plate-shaped structure. The left end face and the right end face of the second baffle are respectively in contact with the left end face and the right end face of the inner wall of the water storage tank.
[0011] The left end face and the right end face of the second baffle are linearly arrayed with second water grooves. The second water grooves are semi-cylindrical groove-shaped structures. When it rains, the rainwater contacts the top end face of the second baffle at this time, and then enters the inside of the water storage tank through the second water grooves for collection. At this time, the second baffle moves upward under the influence of the water level until it contacts the bottom end face of the first baffle.
[0012] After the rain stops, through the blocking of the second baffle and the first baffle, the evaporation of the rainwater can be reduced, and the collected rainwater is fully protected.
[0013] Furthermore, a support part is installed on the water storage tank.
[0014] The support part consists of support blocks, threaded rods, and contact blocks. There are two support blocks in total. The two support blocks are symmetrically fixed at the bottom of the water storage tank. The two support blocks together form the support structure of the water storage tank.
[0015] Furthermore, both of the two support blocks are in a "middle" shape structure. A threaded rod for horizontal support adjustment of the water storage tank is threadedly connected to each support block. A hexagonal adjustment block is welded to each threaded rod. A contact block is rotatably connected to one end below each threaded rod. The contact block contacts the ground. The contact block is a circular plate-shaped structure. When placing, through the support of the two support blocks, the bottom end face of the water storage tank does not contact the ground at this time. Then, when handling the water storage tank, it is convenient for the fork arm of the forklift to be inserted under the water storage tank.
[0016] When the ground is not flat enough and support is needed, at this time, a wrench is clamped on the hexagonal adjustment block and the handle is rotated. At this time, through the rotation of the threaded rod, the support of the water storage tank can be realized, and thus the horizontal adjustment of the water storage tank is realized. After adjustment, through the support of the circular plate-shaped structure contact block, the settlement of the support part can be reduced.
[0017] Furthermore, a drainage part is provided on the water storage tank.
[0018] The drainage system consists of a sleeve, a drain pipe, a valve, and a drain hole. The sleeve is welded to the water storage tank, and a drain pipe is threaded into the sleeve. A valve is installed on the drain pipe to control the drainage volume.
[0019] Furthermore, the right end of the drain pipe is sealed, and the outer wall of the drain pipe has drain holes arranged in a ring array. The drain holes are elongated hole structures. When it is necessary to control the drainage volume and the flow of drainage, the valve can be turned directly. When the valve is damaged, the drain pipe can be turned. When the drain pipe is turned, it can be adjusted left and right, and the drain holes will be adjusted accordingly. The size of the area of the drain holes blocked by the sleeve will also be adjusted. At this time, the adjustment of drainage volume and the flow of drainage are completed.
[0020] Furthermore, the water storage tank is equipped with protective features;
[0021] The protective part consists of spring rods, protective plates, connecting plates, rollers, and auxiliary sleeves. There are four spring rods in total, and one right end of each of the four spring rods is fixed to the protective plate. The protective plate is a rectangular plate structure. The spring rods and the protective plate together form the buffer and protective structure of the water storage tank.
[0022] Furthermore, two connecting plates are symmetrically welded to the right end of the protective plate. Rollers are rotatably connected to the two connecting plates in a linear array. The rollers rotatably connected in a linear array together form the protective structure of the water storage tank.
[0023] Furthermore, each roller is attached with an auxiliary sleeve, which is a ring-shaped structure made of rubber. The auxiliary sleeve serves as a protective component for the water tank. When a vehicle collides with the water tank, it first contacts the auxiliary sleeve, which provides initial cushioning. Then, under the continuous impact of the vehicle, the roller rotates, guiding the vehicle in the direction of impact and thus fully protecting the vehicle and the water tank. Finally, four spring rods provide further cushioning, further protecting the water tank.
[0024] When installing the water storage tank, the auxiliary sleeve can be placed in contact with the ground, which makes it easier to push the water storage tank.
[0025] The beneficial effects of this invention are as follows:
[0026] The system is equipped with protective features. Firstly, when a vehicle collides with the water tank, it first contacts the auxiliary sleeve, which provides initial cushioning. Then, under the continued impact, the rollers rotate, guiding the vehicle in the direction of impact and effectively protecting both the vehicle and the water tank. Finally, four spring rods provide further cushioning, further protecting the water tank. Secondly, during installation, the auxiliary sleeve can be brought into contact with the ground, facilitating the pushing of the water tank. This provides both collision protection and cushioning, and the protective and cushioning structure also facilitates easy transport.
[0027] The system is equipped with a shielding section. This shielding section serves two purposes: First, when it rains, rainwater comes into contact with the top surface of the second baffle and then flows through the second water trough into the water storage tank for collection. At this point, the second baffle moves upwards under the influence of the water level until it contacts the bottom surface of the first baffle. Second, after the rain, the blocking effect of the second and first baffles reduces rainwater evaporation, effectively protecting the collected rainwater. This system achieves rainwater collection while minimizing evaporation, demonstrating a complete structure and strong practicality.
[0028] Equipped with a support structure, the water tank serves two purposes. Firstly, during placement, the two support blocks prevent the bottom of the water tank from contacting the ground, facilitating forklift forks to easily insert into the bottom of the tank during transport. Secondly, when the ground is uneven and support is needed, a wrench can be engaged with a hexagonal adjustment block, and turning the handle allows the water tank to be supported and leveled via the rotation of the threaded rod. After adjustment, the circular plate-like contact block further reduces settlement of the support structure, facilitating forklift movement and providing auxiliary support with a robust structure.
[0029] Equipped with a drainage section, this system allows for easy control of drainage volume and flow. Simply rotate the valve to adjust the flow rate and flow. If the valve is damaged, rotate the drain pipe. Rotating the drain pipe allows for left and right adjustments, which in turn adjust the drain hole size. The area of the drain hole obstructed by the sleeve can also be adjusted. This system effectively adjusts the drainage volume and flow, providing auxiliary adjustment even when the valve is damaged, demonstrating strong adaptability. Attached Figure Description
[0030] To more clearly illustrate the technical solutions of the embodiments of the present invention, the accompanying drawings of the embodiments will be briefly described below.
[0031] The accompanying drawings described below are only related to some embodiments of the invention and are not intended to limit the invention.
[0032] In the attached diagram:
[0033] Figure 1 This is an axial view structural schematic diagram of the water storage tank structure of the farmland roadbed in the region of this invention.
[0034] Figure 2 This is the present invention. Figure 1 A schematic diagram of the rotated axial view structure.
[0035] Figure 3 This is a schematic diagram of the axial view of the partially cut-open water storage tank structure of the farmland roadbed in the region of this invention.
[0036] Figure 4 This is the present invention. Figure 3 A schematic diagram of the split-axis view structure.
[0037] Figure 5 This is the present invention. Figure 4 A magnified structural diagram at point A.
[0038] Figure 6 This is the present invention. Figure 4 A magnified structural diagram at point B.
[0039] Figure 7 This is an axial view structural schematic diagram of the drainage part of the present invention.
[0040] Figure 8 This is an axial view structural schematic diagram of the protective part of the present invention.
[0041] List of reference numerals
[0042] 1. Water storage tank; 2. Sheltering part; 201. First baffle; 202. First water tank; 203. Second baffle; 204. Second water tank; 3. Support part; 301. Support block; 302. Threaded rod; 303. Contact block; 4. Drainage part; 401. Sleeve; 402. Drain pipe; 403. Valve; 404. Drain hole; 5. Protective part; 501. Spring rod; 502. Protective plate; 503. Connecting plate; 504. Roller; 505. Auxiliary sleeve. Detailed Implementation
[0043] To make the objectives, solutions, and advantages of the present invention clearer, the technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Unless otherwise stated, the terms used herein have their ordinary meanings in the art. The same reference numerals in the drawings represent the same parts. Example 1:
[0044] Please refer to Figures 1 to 8 :
[0045] The present invention provides a regional farmland roadbed water storage tank structure, including: a water storage tank 1;
[0046] The water storage tank 1 is of a rectangular box structure, and a shielding part 2 is installed inside the water storage tank 1.
[0047] Among them, the shielding part 2 is composed of a first baffle 201, a first water groove 202, a second baffle 203 and a second water groove 204. There are two first baffles 201 in total. Both first baffles 201 are of rectangular plate structures. The two first baffles 201 are respectively fixed to the left end face and the right end face of the inner wall of the water storage tank 1. The bottom end faces of the two first baffles 201 are linearly arrayed with first water grooves 202. The first water grooves 202 are of semi-cylindrical groove structures.
[0048] Among them, a second baffle 203 is slidably connected inside the water storage tank 1. The second baffle 203 is of a rectangular plate structure. The left end face and the right end face of the second baffle 203 are respectively in contact with the left end face and the right end face of the inner wall of the water storage tank 1;
[0049] The left end face and the right end face of the second baffle 203 are linearly arrayed with second water grooves 204. The second water grooves 204 are of semi-cylindrical groove structures. When it rains, the rainwater contacts the top end face of the second baffle 203 at this time, and then enters the inside of the water storage tank 1 through the second water grooves 204 for collection. At this time, the second baffle 203 moves upward under the influence of the water level until it contacts the bottom end face of the first baffle 201;
[0050] After the rain stops, through the blocking of the second baffle 203 and the first baffle 201, the evaporation of rainwater can be reduced, and the collected rainwater is fully protected.
[0051] Among them, a support part 3 is installed on the water storage tank 1;
[0052] The support part 3 is composed of support blocks 301, threaded rods 302 and contact blocks 303. There are two support blocks 301 in total. The two support blocks 301 are symmetrically fixed to the bottom of the water storage tank 1. The two support blocks 301 together form the support structure of the water storage tank 1.
[0053] Among them, both support blocks 301 are of "middle" - shaped structures. A threaded rod 302 for horizontal support adjustment of the water storage tank 1 is threadedly connected to each support block 301. A hexagonal adjustment block is welded to each threaded rod 302. A contact block 303 is rotatably connected to one end of each threaded rod 302 below. The contact block 303 contacts the ground. The contact block 303 is of a circular plate structure. When placed, through the support of the two support blocks 301, the bottom end face of the water storage tank 1 does not contact the ground at this time. Then, when the water storage tank 1 is carried, it is convenient for the fork arm of the forklift to be inserted under the water storage tank 1;
[0054] When the ground is not level enough and support is needed, a wrench can be attached to the hexagonal adjustment block and the handle can be turned. The rotation of the threaded rod 302 can support the water tank 1, thereby achieving the horizontal adjustment of the water tank 1. After adjustment, the support of the circular plate-shaped contact block 303 can reduce the settlement of the support part 3. Example 2:
[0055] Based on Example 1, such as Figure 7 As shown, it also includes: a drainage section 4, which is provided on the water storage tank 1;
[0056] The drainage section 4 consists of a sleeve 401, a drain pipe 402, a valve 403, and a drain hole 404. The sleeve 401 is welded to the water storage tank 1. A drain pipe 402 is connected to the sleeve 401 by an internal thread. A valve 403 is installed on the drain pipe 402 to control the drainage volume adjustment of the drain pipe 402.
[0057] The drain pipe 402 has a sealed end on the right side. Drain holes 404 are arranged in a ring array on the outer wall of the drain pipe 402. The drain holes 404 are elongated hole structures. When it is necessary to control the drainage volume and the drainage on / off, the valve 403 can be turned directly. When the valve 403 is damaged, the drain pipe 402 can be turned. When the drain pipe 402 is turned, it can be adjusted left and right. The drain holes 404 will be adjusted accordingly. The size of the area of the drain holes 404 that is blocked by the sleeve 401 will also be adjusted. At this time, the adjustment of drainage volume and drainage on / off is completed. Example 3:
[0058] Based on Example 2, such as Figure 8 As shown, it also includes: protective part 5, which is installed on the water storage tank 1;
[0059] The protective part 5 consists of spring rods 501, protective plates 502, connecting plates 503, rollers 504 and auxiliary sleeves 505. There are four spring rods 501 in total. The right side of each of the four spring rods 501 is fixed to the protective plate 502. The protective plate 502 is a rectangular plate structure. The spring rods 501 and the protective plate 502 together form the buffer protection structure of the water storage tank 1.
[0060] Among them, two connecting plates 503 are symmetrically welded to the right end of the protective plate 502. Rollers 504 are rotatably connected to the two connecting plates 503 in a linear array. The rollers 504 rotatably connected in a linear array together form the protective structure of the water storage tank 1.
[0061] Each roller 504 is attached with an auxiliary sleeve 505, which is a ring structure made of rubber. The auxiliary sleeve 505 is a protective component of the water tank 1. When the vehicle crashes into the water tank 1, it first comes into contact with the auxiliary sleeve 505, which provides initial cushioning. Then, under the continuous impact of the vehicle, the roller 504 will rotate, which guides the vehicle in the direction of impact, thus fully protecting the vehicle and the water tank 1. Finally, the four spring rods 501 provide further cushioning, which further protects the water tank 1.
[0062] When installing the water storage tank 1, the auxiliary sleeve 505 can be brought into contact with the ground, which makes it easier to push the water storage tank 1.
[0063] The specific usage and function of this embodiment are as follows:
[0064] When it rains, the rainwater comes into contact with the top surface of the second baffle 203 and then enters the water storage tank 1 through the second water trough 204 for collection. At this time, the second baffle 203 moves upward under the influence of the water level until it comes into contact with the bottom surface of the first baffle 201.
[0065] After the rain, the evaporation of rainwater can be reduced by the blocking of the second baffle 203 and the first baffle 201, thus fully protecting the collected rainwater.
[0066] When placed, it is supported by two support blocks 301. At this time, the bottom surface of the water tank 1 does not contact the ground, so when the water tank 1 is moved, it is convenient for the fork arm of the fork to be inserted into the bottom of the water tank 1.
[0067] When the ground is not level enough and support is needed, the wrench can be engaged with the hexagonal adjustment block and the handle can be turned. The rotation of the threaded rod 302 can support the water tank 1, thereby achieving the horizontal adjustment of the water tank 1. After adjustment, the support of the circular plate-shaped contact block 303 can reduce the settlement of the support part 3.
[0068] When it is necessary to control the drainage volume and the drainage on / off state, simply turn valve 403. If valve 403 is damaged, turn drain pipe 402. When turning drain pipe 402, it can be adjusted left and right, and drain hole 404 will adjust accordingly. The size of the area of drain hole 404 blocked by sleeve 401 will also be adjusted. At this time, the adjustment of drainage volume and drainage on / off state is completed.
[0069] When the vehicle crashes into the water tank 1, it first contacts the auxiliary sleeve 505, which provides initial cushioning. Then, under the continuous impact of the vehicle, the roller 504 rotates, which guides the vehicle in the direction of impact, thus fully protecting the vehicle and the water tank 1. Finally, the four spring rods 501 provide further cushioning, which further protects the water tank 1.
[0070] When installing the water storage tank 1, the auxiliary sleeve 505 can be brought into contact with the ground, which makes it easier to push the water storage tank 1.
Claims
1. A water storage tank structure for regional farmland roadbeds, characterized in that, Including: A water storage tank (1); the water storage tank (1) is of a rectangular box structure, and a shielding part (2) is installed inside the water storage tank (1); the shielding part (2) is composed of a first baffle (201), a first water tank (202), a second baffle (203) and a second water tank (204). There are two first baffles (201) in total. Both of the two first baffles (201) are of rectangular plate structures. The two first baffles (201) are respectively fixed on the left end face and the right end face of the inner wall of the water storage tank (1). The bottom end faces of the two first baffles (201) are linearly arrayed with first water tanks (202). The first water tank (202) is of a semi-cylindrical groove structure; a drainage part (4) is provided on the water storage tank (1); The drainage part (4) is composed of a sleeve (401), a drainage pipe (402), a valve (403) and a drainage hole (404). The sleeve (401) is welded on the water storage tank (1). A drainage pipe (402) is threadedly connected inside the sleeve (401). A valve (403) for controlling the drainage volume adjustment of the drainage pipe (402) is installed on the drainage pipe (402); A support part (3) is installed on the water storage tank (1); The support part (3) is composed of support blocks (301), threaded rods (302) and contact blocks (303). There are two support blocks (301) in total. The two support blocks (301) are symmetrically fixed at the bottom of the water storage tank (1). The two support blocks (301) together form the support structure of the water storage tank (1); Both of the two support blocks (301) are of a "middle" - shaped structure. A threaded rod (302) for horizontal support adjustment of the water storage tank (1) is threadedly connected to each support block (301). An adjustment block with a hexagonal structure is welded on each threaded rod (302). A contact block (303) is rotatably connected to the lower end of each threaded rod (302). The contact block (303) contacts the ground. The contact block (303) is of a circular plate structure; A protection part (5) is installed on the water storage tank (1); The protection part (5) is composed of spring rods (501), a protection plate (502), connecting plates (503), rollers (504) and auxiliary sleeves (505). There are four spring rods (501) in total. The right ends of the four spring rods (501) are all fixed on the protection plate (502). The protection plate (502) is of a rectangular plate structure. The spring rods (501) and the protection plate (502) together form the buffer protection structure of the water storage tank (1); Two connecting plates (503) are symmetrically welded on the right end face of the protection plate (502). Rollers (504) are rotatably connected in a linear array on the two connecting plates (503). The rollers (504) rotatably connected in a linear array together form the protection structure of the water storage tank (1); An auxiliary sleeve (505) is adhered to each roller (504). The auxiliary sleeve (505) is of an annular structure. The auxiliary sleeve (505) is made of rubber. The auxiliary sleeve (505) is a protection part of the water storage tank (1); The water storage tank (1) is slidably connected to a second baffle (203). The second baffle (203) is a rectangular plate structure. The left and right ends of the second baffle (203) are in contact with the left and right ends of the inner wall of the water storage tank (1), respectively. The second baffle (203) has a second water tank (204) in a linear array on both the left and right ends. The second water tank (204) is a semi-cylindrical trough structure.
2. The regional farmland roadbed water storage tank structure as described in claim 1, characterized in that: The right end of the drain pipe (402) is sealed, and the outer wall of the drain pipe (402) is provided with drain holes (404) in a ring array. The drain holes (404) are long strip-shaped holes.
Citation Information
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