Detachable runoff plot convenient to use in earth and stone stacking and storing field along canal

By designing detachable runoff plots and using snap-fit ​​and threaded connection structures, the problem of traditional runoff plots being unable to fully cover soil and water loss monitoring was solved, achieving large-scale, long-term monitoring results and reducing construction difficulty and cost.

CN223766957UActive Publication Date: 2026-01-06GUANGXI ZHUANG AUTONOMOUS REGION NATURAL RESOURCES ECOLOGICAL RESTORATION CENT
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Patent Information

Application Number
CN202520172126.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-26
Publication Date
2026-01-06
Estimated Expiration
2035-01-26

AI Technical Summary

Technical Problem

Traditional runoff monitoring at earthwork storage sites along canals cannot fully cover soil erosion, and the construction is difficult and costly, making it unsuitable for the long-term monitoring needs when the scale of the project expands.

Method used

A detachable runoff plot is designed, employing a snap-fit ​​and threaded connection structure for easy installation and disassembly. Combined with support components and limit blocks, stability is improved, ensuring the continuity and stability of the monitoring area.

Benefits of technology

It enables large-scale, long-term soil and water loss monitoring, reduces construction difficulty and cost, and ensures the stability and flexibility of monitoring.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a detachable runoff plot convenient to use in earth and stone stockpiling field along the canal, and relates to the technical field of water and soil conservation and environmental monitoring, the detachable runoff plot comprises an end plate, the two ends of the end plate are both clamped with side plates I, and the ends, away from the end plate, of the two side plates I are both fixedly connected with side plates II; the ends, away from the first side plate, of the two second side plates are fixedly connected with third side plates, the ends, away from the second side plates, of the two third side plates are connected with folding plates in a clamped mode, and the ends, away from the third side plates, of the two folding plates are provided with outflow pipelines. The end plate body and the first plate body are clamped, the third plate body and the folding plate body are clamped, and mounting and dismounting are very convenient. A plurality of front semicircular threaded holes I of the plate body I and a plurality of front semicircular threaded holes II of the plate body II are in butt joint to form complete threaded holes, and the plate body I and the plate body II can be fixedly connected after threads are screwed into the threaded holes, so that the connection stability of the plate body I, the plate body II and the plate body III can be ensured while quick mounting and dismounting are realized.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of water and soil conservation and environmental monitoring, and particularly relates to a detachable runoff plot convenient for use in a soil and rock pile storage yard along a canal. BACKGROUND

[0002] A waste soil and rock pile concentrated storage place generated by a construction project is called a spoil yard. Based on economic cost factors, the spoil yard has a large slope gradient, and there is a large difference in nature between the spoil layer and the natural rock-soil layer. Therefore, the spoil yard has a risk of geological disasters such as landslides and collapses. The occurrence of geological disasters will cause property losses to human life and also damage the environment.

[0003] The construction of a canal not only needs to deepen and widen a natural river channel, but also needs to excavate a canal channel according to the size of the waterway in a river section without a natural river channel. Therefore, a spoil yard needs to be designed and planned along the canal to store soil and rock piles. This will destroy the original topography and vegetation conditions, reduce the soil erosion resistance, and cause serious soil erosion if scientific and reasonable protection measures are not taken. The ecological environment of the canal waterway is also affected by the construction, so attention needs to be paid to the environmental pollution risk that may be caused by the spoil yard along the canal. Therefore, a runoff plot needs to be arranged at the spoil yard.

[0004] The runoff plot is an important means for quantitative monitoring of soil erosion, but the runoff plot has problems such as large construction disturbance, great construction difficulty, and unstable performance. After the runoff plot is built, only a limited area can be monitored. During the construction of the canal, the amount of soil and rock piles in the storage yard is increasing, which causes frequent changes in the structure of the soil and rock piles in the storage yard, and makes it impossible for the traditional runoff plot monitoring to comprehensively cover the soil erosion in these areas. UTILITY MODEL CONTENTS

[0005] The utility model aims to provide a detachable runoff plot convenient for use in a soil and rock pile storage yard along a canal, meet the needs of effective large-scale and long-period soil erosion monitoring when the engineering scale is continuously expanding, and reduce the cost expenditure, so as to solve the technical problems in the background technology.

[0006] To achieve the above-mentioned purpose, the utility model provides the following technical scheme.

[0007] A detachable runoff plot convenient for use in a soil and rock pile storage yard along a canal, comprising an end plate, both ends of the end plate are clamped with a side plate one, the end away from the end plate of both side plates one is fixedly connected with a side plate two, the end away from the side plate one of both side plates two is fixedly connected with a side plate three, the end away from the side plate two of both side plates three is clamped with a folding plate, and the end away from the side plate three of both folding plates is provided with an outflow pipeline.

[0008] The side plate one includes a plate body one, which is uniformly provided with a plurality of front half circular threaded holes one away from one end of the end plate; the side plate two includes a plate body two, which is uniformly provided with a plurality of front half circular threaded holes two close to one end of the plate body one, and the plurality of front half circular threaded holes one correspond to the positions of the plurality of front half circular threaded holes two respectively;

[0009] The plate body two is uniformly provided with a plurality of rear half circular threaded holes one away from one end of the plate body one; the side plate three includes a plate body three, which is uniformly provided with a plurality of rear half circular threaded holes two close to one end of the plate body two, and the plurality of rear half circular threaded holes two correspond to the positions of the plurality of rear half circular threaded holes one respectively.

[0010] As a further technical scheme of the utility model, the end plate includes an end plate body, and both ends of the end plate body are provided with a slot one close to one side of the side plate one.

[0011] As a further technical scheme of the utility model, the plate body one is integrally provided with a clamping strip one close to one end of the end plate body, the clamping strip one is located at the inner side of the slot one, and the shape and size of the clamping strip one are the same as those of the slot one.

[0012] As a further technical scheme of the utility model, one end of the plate body one away from the clamping strip one is provided with a clamping groove one; the plate body two is integrally provided with a clamping strip two close to one side of the clamping groove one, the clamping strip two is located at the inner side of the clamping groove one, and the shape and size of the clamping strip two are the same as those of the clamping groove one.

[0013] As a further technical scheme of the utility model, one end of the plate body two away from the clamping strip two is provided with a clamping groove two; the plate body three is integrally provided with a clamping strip four close to one end of the clamping groove two, the clamping strip four is located at the inner side of the clamping groove two, and the shape and size of the clamping strip four are the same as those of the clamping groove two.

[0014] As a further technical scheme of the utility model, one end of the plate body three away from the clamping strip four is integrally provided with a clamping strip three; the folding plate includes a folding plate body, which is provided with a slot two close to one side of the clamping strip three, and the clamping strip three is located at the inner side of the slot two; the shape and size of the clamping strip three are the same as those of the slot two.

[0015] As a further technical scheme of the utility model, both ends of the folding plate body away from the plate body three are inclined; the outflow pipeline is located between the two ends of the folding plate body away from the plate body three.

[0016] As a further technical scheme of the utility model, the outflow pipeline comprises a bottom plate, an integral type cylinder silo is arranged at the top of the bottom plate away from one end of the folding plate body; two supporting pieces are symmetrically arranged at the bottom of the end of the bottom plate away from the cylinder silo; the supporting piece comprises a supporting plate, the top of the supporting plate is attached to the bottom of the bottom plate; a limiting block is integrally arranged at the side of the top of the supporting plate away from the cylinder silo.

[0017] Compared with the prior art, the utility model has the beneficial effects that:

[0018] 1. The utility model discloses, the end plate body and the board body one between, the board body three and the folding plate body between all are clamped, and installation and disassembly are very convenient; after the butt joint of the multiple front half circle screw holes one of the board body one and the multiple front half circle screw holes two of the board body two, a complete screw hole is formed, after the screw is screwed into the screw hole, the board body one and the board body two can be fixedly connected, and the connection of the board body two and the board body three is the same, while playing the quick installation and disassembly, also can guarantee the stability of the board body one, the board body two and the board body three connection.

[0019] 2. The utility model discloses, the space for the passage of discarded soil and stone between the two folding plate bodies, discarded soil and stone can flow out through the passage in the cylinder silo; the supporting plate plays the role of supporting the bottom plate and the cylinder silo, and guarantees the stability of the cylinder silo at the same time; the limiting block can prevent the displacement of the supporting bottom plate, and further improve the stability of the supporting bottom plate and the cylinder silo. DRAWINGS

[0020] Figure 1 It is the three-dimensional structure schematic diagram of the utility model.

[0021] Figure 2 It is the side view of the utility model in Figure 1 .

[0022] Figure 3 It is the plan view of the utility model in Figure 1 .

[0023] Figure 4 It is the three-dimensional structure schematic diagram of the end plate of the utility model.

[0024] Figure 5 It is the three-dimensional structure schematic diagram of the side plate one of the utility model.

[0025] Figure 6 It is the three-dimensional structure schematic diagram of the side plate two of the utility model.

[0026] Figure 7 It is another view of the utility model in Figure 6 .

[0027] Figure 8 It is the three-dimensional structure schematic diagram of the side plate three of the utility model.

[0028] Figure 9 is another perspective view of the utility model Figure 8 .

[0029] Figure 10 is the position relation diagram of the folding board and the outflow pipeline of the utility model.

[0030] Figure 11 is the front view of the utility model Figure 10 .

[0031] Figure 12 is the position relation diagram of the outflow pipeline and the supporting piece of the utility model.

[0032] Figure 13 is another perspective view of the utility model Figure 12 .

[0033] In the drawing: 1 - end plate, 2 - side plate one, 3 - side plate two, 4 - side plate three, 5 - folding board, 6 - outflow pipeline, 7 - supporting piece;

[0034] 11 - end plate body, 12 - slot one, 21 - plate body one, 22 - clamping strip one, 23 - clamping groove one, 24 - front half circular threaded hole one, 31 - plate body two, 32 - clamping strip two, 33 - clamping groove two, 34 - rear half circular threaded hole one, 35 - front half circular threaded hole two, 41 - plate body three, 42 - clamping strip three, 43 - clamping strip four, 44 - rear half circular threaded hole two, 51 - folding board body, 52 - slot two, 61 - bottom plate, 62 - silo, 71 - supporting plate, 72 - limiting block. DETAILED DESCRIPTION

[0035] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the protection scope of the utility model.

[0036] Please refer to Figures 1-13 , in the embodiments of the utility model, a detachable runoff plot convenient for use in the earthwork storage yard along the canal comprises an end plate 1, both ends of the end plate 1 are clamped with a side plate one 2, one end of the two side plate ones 2 away from the end plate 1 is fixedly connected with a side plate two 3, one end of the two side plate twos 3 away from the side plate one 2 is fixedly connected with a side plate three 4, one end of the two side plate threes 4 away from the side plate two 3 is clamped with a folding board 5, and one end of the two folding boards 5 away from the side plate three 4 is provided with an outflow pipeline 6, the outflow pipeline 6 is located between the two folding boards 5.

[0037] The side plate one 2 comprises a plate body one 21, which is uniformly provided with a plurality of front half circular threaded holes one 24 away from one end of the end plate 1; the side plate two 3 comprises a plate body two 31, which is uniformly provided with a plurality of front half circular threaded holes two 35 close to one end of the plate body one 21, and the plurality of front half circular threaded holes one 24 correspond to the positions of the plurality of front half circular threaded holes two 35 respectively;

[0038] The plate body two 31 is uniformly provided with a plurality of rear half circular threaded holes one 34 away from one end of the plate body one 21; the side plate three 4 comprises a plate body three 41, which is uniformly provided with a plurality of rear half circular threaded holes two 44 close to one end of the plate body two 31, and the plurality of rear half circular threaded holes two 44 correspond to the positions of the plurality of rear half circular threaded holes one 34 respectively;

[0039] The end plate 1 comprises an end plate body 11, which is uniformly provided with an insertion slot one 12 close to one side of the side plate one 2 at both ends, and the length of the two insertion slot one 12 is the same as the width of the end plate body 11;

[0040] The plate body one 21 is integrally provided with a clamping strip one 22 close to one end of the end plate body 11, which is located at the inner side of the insertion slot one 12, and the shape and size of the clamping strip one 22 are the same as those of the insertion slot one 12;

[0041] One end of the plate body one 21 away from the clamping strip one 22 is provided with a clamping groove one 23; the plate body two 31 is integrally provided with a clamping strip two 32 close to one side of the clamping groove one 23, which is located at the inner side of the clamping groove one 23, and the shape and size of the clamping strip two 32 are the same as those of the clamping groove one 23;

[0042] One end of the plate body two 31 away from the clamping strip two 32 is provided with a clamping groove two 33; the plate body three 41 is integrally provided with a clamping strip four 43 close to one end of the clamping groove two 33, which is located at the inner side of the clamping groove two 33, and the shape and size of the clamping strip four 43 are the same as those of the clamping groove two 33;

[0043] One end of the plate body three 41 away from the clamping strip four 43 is integrally provided with a clamping strip three 42; the folding plate 5 comprises a folding plate body 51, which is provided with an insertion slot two 52 close to one side of the clamping strip three 42, and the clamping strip three 42 is located at the inner side of the insertion slot two 52; the shape and size of the clamping strip three 42 are the same as those of the insertion slot two 52.

[0044] The end plate body 11 and the plate body one 21 are clamped, the plate body three 41 and the folding plate body 51 are clamped, and installation and disassembly are very convenient; a plurality of front half circular threaded holes one 24 of the plate body one 21 and a plurality of front half circular threaded holes two 35 of the plate body two 31 are butted to form complete threaded holes, the plate body one 21 and the plate body two 31 are fixedly connected after the threads are screwed into the threaded holes, and the plate body two 31 and the plate body three 41 are connected in the same way, so that the plate body one 21, the plate body two 31 and the plate body three 41 are stably connected while being quickly installed and disassembled.

[0045] In the embodiment, the two folding plate bodies 51 are inclined away from the one end of the plate body three 41; and the outflow pipeline 6 is located between the two folding plate bodies 51 away from the one end of the plate body three 41.

[0046] The outflow pipeline 6 comprises a bottom plate 61, and a silo 62 is integrally arranged at the top of the one end of the bottom plate 61 away from the folding plate body 51; two support pieces 7 are symmetrically arranged at the bottom of the one end of the bottom plate 61 away from the silo 62; and the support piece 7 comprises a support plate 71, and a limiting block 72 is integrally arranged at the top of the one side of the support plate 71 away from the silo 62.

[0047] The space between the two folding plate bodies 51 is used for the passage of the waste soil and stone, and the waste soil and stone can flow out through the channel in the silo 62; the support plate 71 supports the bottom plate 61 and the silo 62, and guarantees the stability of the silo 62; and the limiting block 72 prevents the displacement of the support plate 61, and further improves the stability of the support plate 61 and the silo 62.

[0048] The end plate body 11 and the plate body one 21 are clamped, the plate body three 41 and the folding plate body 51 are clamped, and installation and disassembly are very convenient; a plurality of front half circular threaded holes one 24 of the plate body one 21 and a plurality of front half circular threaded holes two 35 of the plate body two 31 are butted to form complete threaded holes, the plate body one 21 and the plate body two 31 are fixedly connected after the threads are screwed into the threaded holes, and the plate body two 31 and the plate body three 41 are connected in the same way, so that the plate body one 21, the plate body two 31 and the plate body three 41 are stably connected while being quickly installed and disassembled.

[0049] The space between the two folding plate bodies 51 is used for the passage of the waste soil and stone, and the waste soil and stone can flow out through the channel in the silo 62; the support plate 71 supports the bottom plate 61 and the silo 62, and guarantees the stability of the silo 62; and the limiting block 72 prevents the displacement of the support plate 61, and further improves the stability of the support plate 61 and the silo 62.

[0050] Furthermore, it should be understood that although the specification is described in terms of embodiments, not every embodiment includes every feature described. The specification can include implicit combinations of explicitly mentioned features and / or explicit combinations of implicitely mentioned features. Each embodiment depends on the explicit combinations of features and / or the implicit combinations of features made specifically within that embodiment, and each such embodiment can be combined with every other such embodiment to create further embodiments.

Claims

1. A detachable runoff cell for use in earthwork storage areas along a canal, characterized by: The utility model provides an end plate (1), both ends of the end plate (1) are clamped with side plate one (2), one end of two side plate one (2) away from end plate (1) is fixedly connected with side plate two (3), one end of two side plate two (3) away from side plate one (2) is fixedly connected with side plate three (4), one end of two side plate three (4) away from side plate two (3) is clamped with folding board (5), one end of two folding board (5) away from side plate three (4) is equipped with outflow pipeline (6), and the outflow pipeline (6) is located between two folding board (5); The side plate one (2) includes a plate body one (21), and a plurality of front half circular threaded holes one (24) are uniformly arranged at one end of the plate body one (21) away from the end plate (1); the side plate two (3) includes a plate body two (31), and a plurality of front half circular threaded holes two (35) are uniformly arranged at one end of the plate body two (31) close to the plate body one (21); and the plurality of front half circular threaded holes one (24) correspond to the positions of the plurality of front half circular threaded holes two (35) respectively. The plate body two (31) is uniformly provided with a plurality of rear half circular threaded holes one (34) at one end away from the plate body one (21); the side plate three (4) includes a plate body three (41), and a plurality of rear half circular threaded holes two (44) are uniformly arranged at one end of the plate body three (41) close to the plate body two (31); and the plurality of rear half circular threaded holes two (44) correspond to the positions of the plurality of rear half circular threaded holes one (34) respectively.

2. The demountable runoff cell for use with an earthwork storage site along a canal, according to claim 1, wherein: The end plate (1) includes an end plate body (11), and the two ends of the end plate body (11) are provided with insertion grooves one (12) on the side close to the side plate one (2); the lengths of the two insertion grooves one (12) are the same as the width of the end plate body (11).

3. The demountable runoff cell for use with an earthwork storage site along a canal, according to claim 2, wherein: The plate body one (21) is integrally provided with a clamping strip one (22) at one end close to the end plate body (11); the clamping strip one (22) is located on the inner side of the insertion groove one (12), and the shape and size of the clamping strip one (22) are the same as those of the insertion groove one (12).

4. The demountable runoff cell for use with an earthwork storage site along a canal, according to claim 3, wherein: The plate body one (21) is provided with a clamping groove one (23) at one end away from the clamping strip one (22); the plate body two (31) is integrally provided with a clamping strip two (32) on the side close to the clamping groove one (23); the clamping strip two (32) is located on the inner side of the clamping groove one (23), and the shape and size of the clamping strip two (32) are the same as those of the clamping groove one (23).

5. The demountable runoff cell for use with an earthwork storage site along a canal, according to claim 4, wherein: The plate body two (31) is provided with a clamping groove two (33) at one end away from the clamping strip two (32); the plate body three (41) is integrally provided with a clamping strip four (43) at one end close to the clamping groove two (33); the clamping strip four (43) is located on the inner side of the clamping groove two (33), and the shape and size of the clamping strip four (43) are the same as those of the clamping groove two (33).

6. The demountable runoff cell for use with an earthwork storage site along a canal, according to claim 5, wherein: The plate body three (41) is integrally provided with the clasp three (42) away from one end of the clasp four (43); the folding plate (5) comprises a folding plate body (51), one side of the folding plate body (51) close to the clasp three (42) is provided with the slot two (52), and the clasp three (42) is located inside the slot two (52); the shape and size of the clasp three (42) are same with the shape and size of the slot two (52).

7. The demountable runoff cell for use with an earthwork storage site along a canal, according to claim 6, wherein: Two ends of the folding plate body (51) away from the plate body three (41) are both provided in an inclined manner; the outflow pipeline (6) is located between the two ends of the folding plate body (51) away from the plate body three (41).

8. The demountable runoff cell for use with an earthwork storage site along a canal, according to claim 7, wherein: The outflow pipeline (6) comprises a bottom plate (61), one end of the top of the bottom plate (61) away from the folding plate body (51) is integrally provided with the silo (62); two support pieces (7) are symmetrically arranged at the bottom of one end of the bottom plate (61) away from the silo (62); the support piece (7) comprises a support plate (71), the top of the support plate (71) is attached to the bottom of the bottom plate (61); the limit block (72) is integrally arranged on one side of the top of the support plate (71) away from the silo (62).