Integrally-connected retaining wall structure with multifunctional discharge port
By designing multiple sets of triangular stiffening ribs and composite discharge pipes on the retaining wall, combined with impact components and scraping components, the complexity of existing retaining wall discharge systems is solved, achieving structural stability and simplification of the discharge system, and providing preliminary treatment and efficient cleaning of flue gas and water.
Patent Information
- Application Number
- CN202522184473.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-16
- Publication Date
- 2025-11-21
- Estimated Expiration
- 2035-10-16
AI Technical Summary
The existing retaining wall drainage system has a single function, which leads to the need to set up multiple different types of drainage systems, resulting in complex structures and potentially threatening the stability of the retaining wall.
A multifunctional integrated retaining wall structure is designed, which adopts multiple sets of triangular stiffening ribs and composite discharge pipes, combined with impact components and wall scraping components, to achieve multifunctional discharge and comprehensive cleaning of the inner wall of the discharge pipe.
It achieves initial stabilization and auxiliary reinforcement of the retaining wall, simplifies the structure of the discharge system, avoids threats to the stability of the retaining wall, and provides preliminary treatment of flue gas and water during the discharge process, thereby improving the cleaning effect.
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Figure CN223577167U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the retaining wall field, concretely relates to integrated connection retaining wall structure with multifunctional discharge port. BACKGROUND
[0002] The retaining wall of the airport terminal is the key structure for guaranteeing the stability of the flight area and the surrounding terrain of the terminal, is mainly used for retaining the soil of the filled or excavated area, and prevents the landslide, collapse and other geological disasters from threatening the airport operation. The design needs to comprehensively consider the geological conditions, climate environment, load action and construction feasibility, and the retaining wall needs to be provided with a drainage hole, a filter layer and a settlement joint in addition to the wall body.
[0003] The existing discharge system provided on the retaining wall is single, if different substances in the airport indoor are discharged, a plurality of different discharge systems need to be provided, so that the assembly of the discharge system in the retaining wall is too complex, and the stability of the retaining wall is seriously threatened.
[0004] Therefore, an integrated connection retaining wall structure with multifunctional discharge port is needed to solve the above technical problems. UTILITY MODEL CONTENTS
[0005] To achieve the above purpose, the utility model provides the following technical scheme, an integrated connection retaining wall structure with multifunctional discharge port, comprising: a retaining wall, a base, a triangular rib stiffener, a connecting pipe and a discharge pipe;
[0006] The retaining wall, the base, the triangular rib stiffener, the connecting pipe and the discharge pipe;
[0007] Among them, the base is installed at the bottom of the retaining wall;
[0008] A plurality of triangular rib stiffeners are equidistantly arranged and connected to the side of the retaining wall close to the soil through the base;
[0009] The discharge pipe is provided in the retaining wall, one end of the discharge pipe is provided outside the retaining wall, the other end is connected with the connecting pipe, and the end of the connecting pipe away from the discharge pipe is connected with the indoor discharge device.
[0010] Further, as preferred, the discharge pipe is equidistantly arranged with a plurality of groups in the retaining wall and the soil, each group of the discharge pipe is located in the retaining wall and the soil between the adjacent two triangular rib stiffeners, and the plurality of groups of the discharge pipe are located at the same horizontal height.
[0011] Further, as preferred, the discharge pipe comprises a pipe body, a layered assembly, a hitting assembly and a wall scraping assembly.
[0012] The layered assembly is arranged at the middle position of the pipe body, and the layered assembly divides the pipe body into two layers.
[0013] The hitting assembly is arranged in the lower layer space of the pipe body, and the wall scraping assembly is arranged in the upper layer space of the pipe body.
[0014] Further, preferably, the layered assembly comprises a layered plate, a sliding groove, a rotating body, an arc block, a sliding block, a first driving member and a supporting portion.
[0015] The layered plate is arranged at the middle position of the pipe body, and a cavity is arranged at the middle position of the layered plate.
[0016] The rotating body is rotatably connected to one side of the sliding block through the arc block, and the other side of the sliding block is slidably connected to the sliding groove.
[0017] The first driving member is connected to the sliding block through the supporting portion.
[0018] Further, preferably, the hitting assembly comprises a rear shell, a front shell, a hitting column, a sliding sleeve, a hitting spring, a rotating disc, a lever, a contact column, a connecting rod and a second driving member.
[0019] One end of the rear shell is connected to the rotating body, and the other end is connected to the front shell.
[0020] The hitting column is slidably connected to the front shell and the rear shell, the sliding sleeve is sleeved on the outer wall of the hitting column in the front shell, and the hitting spring is arranged outside the hitting column between the sliding sleeve and the inner wall of the front shell.
[0021] The center shaft is rotatably arranged in the rear shell, the lever is arranged on the center shaft, one end of the center shaft is connected to the output end of the second driving member, the second driving member is arranged on the rear shell, the rotating disc is rotatably sleeved on the outer wall of the center shaft away from the second driving member, and the contact column is arranged on the rotating disc.
[0022] The hitting column and the rotating disc are hingedly connected through the connecting rod.
[0023] Further, preferably, the end of the hitting column away from the connecting rod is provided with a hitting round end.
[0024] Further, preferably, the wall scraping assembly comprises a rear plate, a front plate, a connecting seat, an extrusion spring, a storage cavity, a connecting portion and a scraping end.
[0025] One end of the back plate is connected to the rotating body through a main rod, the other end is rotatably connected with the front plate, and a torsional spring is arranged at the connection position;
[0026] The front plate and the back plate are connected by the connecting seat, and the extrusion spring is connected to the front plate through the connecting part in a detachable manner.
[0027] Further, as a preferred, the end of the front plate away from the back plate is provided with the scraping end, and the scraping end is provided with a bidirectional arc-shaped scraping head, and the curvature of the bidirectional arc-shaped scraping head matches the curvature of the inner wall of the pipe body.
[0028] Further, as a preferred, the end of the discharge pipe located outside the retaining wall is further provided with a supplementary pipe, a pushing piece is installed in the supplementary pipe through a horizontal plate, and the end of the pushing piece away from the horizontal plate is connected with the sliding block.
[0029] Compared with the prior art, the utility model provides a kind of integrated connection retaining wall structure with multifunctional discharge port, with the following beneficial effects:
[0030] Advantage one: the utility model is preliminarily stabilized and reinforced by a plurality of triangular body stiffening ribs and a plurality of discharge pipes.
[0031] Advantage two: the utility model discloses a composite discharge pipe, which can realize multifunctional discharge operation, so it is not necessary to set various types of discharge systems to discharge different substances.
[0032] Advantage three: in the process of discharging smoke and water, the water discharge in the lower layer can absorb the water-soluble gas in the upper layer smoke discharge, realizing preliminary treatment of smoke discharge and preparing for subsequent concentrated treatment of smoke discharge.
[0033] Advantage four: the utility model discloses a scraping assembly and a hitting assembly for corresponding cleaning operation on the inner walls of the upper and lower layers of the discharge pipe. BRIEF DESCRIPTION OF DRAWINGS
[0034] Figure 1 It is a kind of integrated connection retaining wall structure with multifunctional discharge port schematic diagram;
[0035] Figure 2 It is a kind of integrated connection retaining wall structure with multifunctional discharge port discharge pipe schematic diagram;
[0036] Figure 3 Integrated connection retaining wall structure hitting assembly state with multifunctional discharge outlet Figure 1 ;
[0037] Figure 4 Integrated connection retaining wall structure hitting assembly state with multifunctional discharge outlet Figure 2 ;
[0038] Figure 5 Integrated connection retaining wall structure wall scraping assembly state with multifunctional discharge outlet Figure 1 ;
[0039] Figure 6 Integrated connection retaining wall structure wall scraping assembly state with multifunctional discharge outlet Figure 2 ;
[0040] Figure 7 Integrated connection retaining wall structure hitting assembly and wall scraping assembly rotating route schematic diagram with multifunctional discharge outlet
[0041] Figure 8 Integrated connection retaining wall structure triangular rib stiffener schematic diagram
[0042] In the figure: 1, retaining wall; 2, base; 3, triangular rib stiffener; 4, connecting pipe; 5, discharge pipe; 51, pipe body; 52, layered assembly; 521, layered plate; 522, chute; 523, rotating body; 524, arc block; 525, sliding block; 526, first driving part; 527, support part; 53, hitting assembly; 531, rear shell; 532, front shell; 533, hitting column; 5331, hitting round end; 534, sliding sleeve; 535, hitting spring; 536, rotating disc; 537, lever; 538, abutting column; 539, connecting rod; 5310, second driving part; 54, wall scraping assembly; 541, rear plate; 542, front plate; 543, connecting seat; 544, extrusion spring; 545, storage cavity; 546, connecting part; 547, scraping end; 6, supplementary pipe; 61, pushing part. DETAILED DESCRIPTION
[0043] Please refer to Figures 1-8 , the utility model provides a kind of integrated connection retaining wall structure with multifunctional discharge outlet, it include: retaining wall 1, base 2, triangular rib stiffener 3, connecting pipe 4 and discharge pipe 5;
[0044] Among them, the base 2 is installed in the bottom of the retaining wall 1;
[0045] A plurality of said triangular stiffening ribs 3 are equidistantly arranged and connected to the side of the retaining wall 1 close to the soil through the base 2;
[0046] The retaining wall 1 is provided with the discharge pipe 5, one end of which is arranged outside the retaining wall 1, and the other end is connected to the connecting pipe 4, and the end of the connecting pipe 4 away from the discharge pipe 5 is connected to the indoor drainage device.
[0047] Further, a plurality of groups of the discharge pipe 5 are equidistantly arranged in the retaining wall 1 and the soil, and each group of the discharge pipe 5 is arranged in the retaining wall 1 and the soil at a position between two adjacent triangular stiffening ribs 3, and a plurality of groups of the discharge pipe 5 are arranged at the same horizontal height.
[0048] In the embodiment, referring to Figure 1 The utility model realizes the preliminary stable foundation and auxiliary stable enhancement of the retaining wall 1 by means of a plurality of triangular stiffening ribs 3 and a plurality of discharge pipes 5. Specifically, a plurality of triangular stiffening ribs 3 are equidistantly arranged on the side of the retaining wall 1 close to the soil (referring to Figure 8 Because the triangular stiffening ribs 3 are triangular stable mechanisms, the plurality of equidistantly arranged triangular stiffening ribs 3 can provide a preliminary stable foundation for the retaining wall 1. The utility model arranges each group of discharge pipes 5 in the retaining wall 1 and the soil at a position between two adjacent triangular stiffening ribs 3, and there is no vertical height difference between the discharge pipes 5. Therefore, for the retaining wall 1 as a whole, the discharge pipes 5 do not occupy space and press the retaining wall 1 at each height level, and the retaining wall 1 is uniformly stressed. Therefore, the discharge pipes 5 at the same horizontal height can serve as auxiliary stable enhancement of the retaining wall 1.
[0049] It should be noted that because there are many indoor spaces in the airport, and the substances to be discharged in each space cannot be uniformly and centrally discharged in the same discharge system, it will not only cause the working pressure of the discharge system to be too large, but also increase the probability of blockage and damage. Therefore, the utility model sets a plurality of discharge pipes 5, which are connected to each drainage device in the indoor space of the airport through a plurality of connecting pipes 4, and the positions of the plurality of discharge pipes 5 are set to achieve the auxiliary stable enhancement of the retaining wall 1 as described above.
[0050] Further, the discharge pipe 5 comprises a pipe body 51, a layered assembly 52, a hitting assembly 53 and a wall scraping assembly 54.
[0051] The layered assembly 52 is arranged at a middle position in the pipe body 51, and divides the pipe body 51 into two layers.
[0052] The beating assembly 53 is arranged in the lower space of the pipe body 51, and the wall scraping assembly 54 is arranged in the upper space of the pipe body 51.
[0053] As a preferred embodiment, the discharge pipe 5 is a composite discharge pipe, which can realize multifunctional discharge operation, so that various types of discharge systems do not need to be arranged to discharge different substances. The discharge system assembly in the utility model has simple structure and does not threaten the stability of the retaining wall 1. It should be noted that although the number of the discharge pipe 5 in the utility model is multiple, the structure size of each group of discharge pipes 5 is uniform, compared with the mixed use of various types of discharge systems in the prior art, the utility model still does not threaten the stability of the retaining wall 1.
[0054] In the embodiment, as shown in Figure 1 and Figure 2 The discharge pipe 5 in the utility model is divided into upper and lower spaces (the connecting pipe 4 connected thereto is also correspondingly arranged in a layered structure), and the upper and lower spaces are not completely separated, but there is a cavity between the layered plates 521. The upper and lower layers in the discharge pipe 5 are connected to two discharge devices of a space in the airport chamber through the connecting pipe 4. According to the existing knowledge, the substances discharged in the space of the airport chamber mainly include exhaust smoke and exhaust water, so the upper space of the discharge pipe 5 is recorded as a smoke discharge space and the lower space is recorded as a water discharge space for the two kinds of discharge substances.
[0055] When the exhaust smoke and the exhaust water enter the discharge pipe 5 through the connecting pipe 4, due to the difference in the medium of the exhaust smoke and the exhaust water, the exhaust smoke will continuously be in the upper space of the discharge pipe 5, and the exhaust water will continuously be in the lower space of the discharge pipe 5, and both of them continuously flow to the pipe opening position of the discharge pipe 5. As mentioned above, the upper and lower spaces in the discharge pipe 5 are not completely separated, so during the flow of the two, the exhaust water in the lower layer can absorb the part of the gas in the exhaust smoke in the upper layer which can be dissolved in water, realizing the preliminary treatment of the exhaust smoke and making preliminary preparation for the subsequent centralized treatment of the exhaust smoke.
[0056] Further, the layered assembly 52 comprises a layered plate 521, a sliding groove 522, a rotating body 523, an arc block 524, a sliding block 525, a first driving member 526 and a supporting portion 527.
[0057] The layered plate 521 is arranged at the middle position in the pipe body 51, a cavity is formed in the middle of the layered plate 521, and the sliding groove 522 is formed on the side of the layered plate 521 close to the cavity.
[0058] The rotating body 523 is provided with the arc block 524. The rotating body 523 is rotatably connected to one side of the slider 525 through the arc block 524. The other side of the slider 525 is slidably connected to the groove 522.
[0059] The first driving member 526 is mounted on the rotating body 523, and the first driving member 526 is connected to the slider 525 through the support part 527.
[0060] In a preferred embodiment, the inner wall of the discharge pipe 5, through which substances are discharged over a long period of time, will accumulate certain stains, requiring regular cleaning to prevent blockage. This invention provides a wall-scraping component 54 and a striking component 53 to perform corresponding cleaning operations on the upper and lower inner walls of the discharge pipe 5. Specifically: the upper layer of the discharge pipe 5 is the smoke exhaust space, where oil stains and similar dirt will accumulate on its inner wall; therefore, the wall-scraping component 54 scrapes away these stains. The lower layer of the discharge pipe 5 is the drainage space, where scale or silt will accumulate on its inner wall; therefore, the striking component 53 strikes the scale or silt on the lower inner wall of the discharge pipe 5.
[0061] Please note that you should refer to [link / reference]. Figure 2 As shown, this utility model has two sets of striking components 53 and wall-scraping components 54 respectively provided on the rotating body 523. The rotating body 523 can perform non-full-circumferential reciprocating rotation under the drive of the first driving member 526, thereby realizing complete circumferential cleaning of the inner wall of the discharge pipe 5 by the striking components 53 and the wall-scraping components 54. It should be noted that the first driving member 526 can be any component in the prior art that can drive the rotating body 523 to perform non-full-circumferential reciprocating rotation.
[0062] In this embodiment, please refer to Figure 7 As shown, the overall process of the non-full-circumference reciprocating rotation of the first driving component 526 is caused by... Figure 7 The rotation from position A to position B, eventually reaching position C, then reverses direction. In other words, the first driving component 526 drives the rotating body 523, which in turn drives the striking component 53 and the scraping component 54 in a non-full-circle reciprocating rotation, roughly following the cycle ABCBABC...
[0063] Furthermore, the striking assembly 53 includes: a rear housing 531, a front housing 532, a striking post 533, a sliding sleeve 534, a striking spring 535, a turntable 536, a lever 537, a contact post 538, a connecting rod 539, and a second driving member 5310.
[0064] The rear housing 531 is connected at one end to the rotating body 523 and at the other end to the front housing 532;
[0065] The hitting column 533 is slidingly connected in the front shell 532 and the rear shell 531, the sliding sleeve 534 is sleeved on the outer wall of the hitting column 533 in the front shell 532, and the hitting spring 535 sleeved on the outside of the hitting column 533 is arranged between the sliding sleeve 534 and the inner wall of the front shell 532;
[0066] The center shaft is rotationally arranged in the rear shell 531, the center shaft is provided with the lever 537, one end of the center shaft is connected with the output end of the second driving part 5310, the second driving part 5310 is arranged on the rear shell 531, the center shaft is rotatably sleeved with the rotating disc 536 on the outer wall of the lever 537 away from the second driving part 5310, and the rotating disc 536 is provided with the abutting column 538.
[0067] The hitting column 533 and the rotating disc 536 are hingedly connected through the connecting rod 539.
[0068] Further, the hitting column 533 is provided with a hitting round end 5331 away from the connecting rod 539.
[0069] As a preferred embodiment, please refer to Figure 3 and Figure 4 It is shown that the hitting operation of the hitting assembly 53 on the inner wall of the lower layer of the discharge pipe 5 is as follows:
[0070] The second driving part 5310 drives the center shaft to rotate, so that the lever 537 on the center shaft is synchronously rotated, with the rotation of the lever 537, the lever 537 starts to abut against the abutting column 538, then drives the abutting column 538 and the rotating disc 536 to start to rotate, at this moment, the hitting column 533 is pulled by the connecting rod 539, and the hitting spring 535 starts to store energy at this moment. The abutting column 538 will abut against the lever 537 at a moment, at this moment, the elastic force of the hitting spring 535 is released, and the hitting column 533 will be hit outward. The hitting round end 5331 on the hitting column 533 will crush the dirt block or silt on the inner wall of the lower layer of the discharge pipe 5, so as to achieve the purpose of cleaning.
[0071] It should be noted that the second driving member 5310 can be selected from the existing common components that can realize the rotation operation of the central column around the whole. Since the drain pipe 5 is in a non-working state when the cleaning operation is performed on the drain pipe 5, that is, there is no water flow through the lower layer of the drain pipe 5 at this time. And when the drain pipe 5 is in a working state, the water surface flowing in the lower layer of the drain pipe 5 will not be higher than the horizontal plane where the second driving member 5310 is located, so there is no need to protect the second driving member 5310. If it is worried that the second driving member 5310 will be affected by the discharge water and water vapor, the second driving member 5310 can be sheathed or other common protection operation, but it should be noted that the heat dissipation condition of the second driving member 5310, and regular heat dissipation treatment or strict control of its working time. Whether to choose to make the above-mentioned processing to the second driving member 5310 can be determined according to the actual situation.
[0072] In this embodiment, the size of the drain pipe 5 (the size of the internal components changes accordingly) needs to be determined according to the precipitation and other related factors of the place where the utility model is used, so as to ensure that the discharge water entering the lower space of the drain pipe 5 in the maximum state will not overflow into the upper space of the drain pipe 5.
[0073] Further, the wall scraping assembly 54 comprises a rear plate 541, a front plate 542, a connecting seat 543, a squeezing spring 544, a storage cavity 545, a connecting part 546 and a scraping end 547.
[0074] Among them, one end of the rear plate 541 is connected to the rotating body 523 through the main rod, and the other end is rotatably connected with the front plate 542 and the connecting part is provided with a torsional spring.
[0075] The front plate 542 and the rear plate 541 are connected by the connecting seat 543 and the squeezing spring 544, and the front plate 542 is detachably connected with the storage cavity 545 through the connecting part 546.
[0076] Further, the front plate 542 away from the rear plate 541 one end is provided with the scraping end 547, the scraping end 547 is provided with bidirectional arc-shaped scraping head, the scraping head arc and the pipe body 51 inner wall arc match.
[0077] As a preferred embodiment, please refer to Figure 5 and Figure 6 As shown, the wall scraping assembly 54 scrapes the inner wall of the upper layer of the drain pipe 5 as follows:
[0078] As the rotating body 523 rotates, the scraping end 547 on the front plate 542 slides against the upper inner wall of the discharge pipe 5. The tilt angle of the front plate 542 is moderate when it does not encounter the oil stain (this angle is the initial angle). When it encounters the oil stain on the upper inner wall, the scraping end 547 will drive the front plate 542 to rotate under the action of the oil stain (rotation direction as follows). Figure 6 (Dashed arrow in the middle). At this time, the tilt angle of the front panel 542 will increase (this angle is the cleaning angle), and then the scraping end 547 will scrape off the oil stains. The scraped oil stains will fall into the storage cavity 545 (e.g., Figure 6 (Solid arrow in the middle). After the scraping end 547 has finished scraping, it returns to the state where the front plate 542 is at the initial angle under the action of the torsion spring and the compression spring 544.
[0079] It should be noted that when too much dirt is collected in the storage cavity 545, the storage cavity 545 can be removed for cleaning via the connecting part 546. The connecting part 546 can be a snap-fit type or other common easily detachable connecting parts. When the front plate 542 is at the initial angle and the cleaning angle, the dirt in the storage cavity 545 on it will not fall out. Since the scraping end 547 is a bidirectional arc-shaped scraping head and its curvature matches the curvature of the inner wall of the tube body 51, it will not damage the inner wall of the discharge pipe 5 during the non-full-circle reciprocating rotation of the rotating body 523, nor will it damage the main structure of the scraping assembly 54 itself.
[0080] Furthermore, a supplementary pipe 6 is provided at one end of the discharge pipe 5 located outside the retaining wall 1. A pusher 61 is installed inside the supplementary pipe 6 via a horizontal plate. The end of the pusher 61 away from the horizontal plate is connected to the slider 525.
[0081] For a preferred embodiment, please refer to Figure 1 and Figure 2 As shown, this invention achieves complete circumferential cleaning of the inner wall of the discharge pipe 5 by the striking component 53 and the scraping component 54, while also achieving complete axial cleaning of the inner wall of the discharge pipe 5. Specifically, the pusher 61 located on the horizontal plate will push the slider 525 to move along the slide groove 522 in the axial direction of the discharge pipe 5, thereby driving the first drive component 526 and the rotating body 523 to move together, completing the complete axial cleaning of the inner wall. This invention, through the combination of movement and rotation of the rotating body 523, achieves complete cleaning of the inner wall of the discharge pipe 5 in all directions by the striking component 53 and the scraping component 54, with a comprehensive cleaning range and high cleaning effect.
[0082] It should be noted that this utility model also provides a cover with an opening at the outlet of the discharge pipe 5 for protection. The cover can be rectangular or circular, depending on the actual requirements of the site.
[0083] In the implementation, the utility model is with the help of multiple sets of triangular body stiffening rib 3 and multiple sets of discharge pipe 5 to the retaining wall 1 realizes the preliminary stable foundation and the auxiliary stable enhancement, wherein the discharge pipe 5 is composite discharge pipe, it can realize the multifunctional discharge function. The inside of discharge pipe 5 is divided into two layers of space, the upper layer is the smoke exhaust space, the lower layer is the drainage space, the oil stain piece is scraped off the operation to the upper layer inner wall by scraping wall subassembly 54, the scale block or the silt is beaten the operation to the lower layer inner wall by beating subassembly 53. The utility model realizes the complete cleaning of beating subassembly 53 and scraping wall subassembly 54 to the inside wall of discharge pipe 5 in each direction by the combination of the movement and rotation of rotating body 523, the cleaning range is comprehensive, and the cleaning effect is high.
[0084] The above described, only for the preferred specific implementation mode of the utility model, but the protection scope of the utility model is not limited to this, any skilled person in the art in the technical range disclosed by the utility model, according to the technical scheme of the utility model and the utility model concept add up to equivalent replacement or change, all should be covered in the protection scope of the utility model.
Claims
1. An integrated retaining wall structure with a multi-functional discharge outlet, characterized in that: include: Retaining wall (1), base (2), triangular stiffening rib (3), connecting pipe (4) and discharge pipe (5); The base (2) is installed at the bottom of the retaining wall (1); Multiple sets of the triangular stiffening ribs (3) are arranged at equal intervals and are all connected to the side of the retaining wall (1) near the soil through the base (2); The retaining wall (1) is provided with the discharge pipe (5). One end of the discharge pipe (5) is located outside the retaining wall (1), and the other end is connected to the connecting pipe (4). The end of the connecting pipe (4) away from the discharge pipe (5) is connected to the indoor discharge device.
2. The integrated retaining wall structure with multi-functional discharge outlet according to claim 1, characterized in that: The discharge pipes (5) are arranged in multiple sets at equal intervals in the retaining wall (1) and the soil. Each set of discharge pipes (5) is located in the retaining wall (1) and the soil between two adjacent triangular stiffening ribs (3). The multiple sets of discharge pipes (5) are located at the same horizontal height.
3. The integrated retaining wall structure with multi-functional discharge outlet according to claim 1, characterized in that: The discharge pipe (5) includes: a pipe body (51), a layering component (52), a striking component (53), and a wall scraping component (54); The layering component (52) is provided in the middle of the tube body (51) of the discharge pipe (5), and the layering component (52) divides the tube body (51) into upper and lower layers. The striking component (53) is provided on the layered component (52) in the lower space of the tube body (51), and the wall scraping component (54) is provided on the layered component (52) in the upper space of the tube body (51).
4. The integrated retaining wall structure with a multi-functional discharge outlet according to claim 3, characterized in that: The layered component (52) includes: a layered plate (521), a slide (522), a rotating body (523), an arc block (524), a slider (525), a first driving member (526), and a support part (527); The layered plate (521) is located in the middle of the tube body (51), and a cavity is formed in the middle of the layered plate (521). The groove (522) is formed on the side of the layered plate (521) near the cavity. The rotating body (523) is provided with the arc block (524), and the rotating body (523) is rotatably connected to one side of the slider (525) through the arc block (524). The other side of the slider (525) is slidably connected to the groove (522). The first driving member (526) is mounted on the rotating body (523), and the first driving member (526) is connected to the slider (525) through the support part (527).
5. The integrated retaining wall structure with a multi-functional discharge outlet according to claim 4, characterized in that: The striking assembly (53) includes: a rear housing (531), a front housing (532), a striking post (533), a sliding sleeve (534), a striking spring (535), a turntable (536), a lever (537), a contact post (538), a connecting rod (539), and a second driving member (5310). The rear housing (531) is connected at one end to the rotating body (523) and at the other end to the front housing (532); The striking post (533) is slidably connected to the front housing (532) and the rear housing (531). The striking post (533) is located on the inner and outer walls of the front housing (532) and the sliding sleeve (534) is sleeved on it. The striking spring (535) is provided between the sliding sleeve (534) and the inner wall of the front housing (532) and is sleeved on the outside of the striking post (533). A central shaft is rotatably disposed inside the rear housing (531), and a lever (537) is disposed on the central shaft. One end of the central shaft is connected to the output end of the second driving member (5310). The second driving member (5310) is disposed on the rear housing (531). The turntable (536) is rotatably sleeved on the outer wall of the central shaft on the side away from the second driving member (5310) of the lever (537). The abutment post (538) is disposed on the turntable (536). The striking post (533) and the turntable (536) are hinged together by the connecting rod (539).
6. The integrated retaining wall structure with a multi-functional discharge outlet according to claim 5, characterized in that: The striking post (533) is provided with a striking round end (5331) at the end away from the connecting rod (539).
7. The integrated retaining wall structure with a multi-functional discharge outlet according to claim 4, characterized in that: The wall scraping assembly (54) includes: a rear plate (541), a front plate (542), a connecting seat (543), a compression spring (544), a storage cavity (545), a connecting part (546), and a scraping end (547). The rear plate (541) is connected to the rotating body (523) at one end via a main rod, and the front plate (542) is rotatably connected to the other end, with a torsion spring provided at the connection point. The compression spring (544) is connected between the front plate (542) and the rear plate (541) via the connecting seat (543), and the storage cavity (545) is detachably connected to the front plate (542) via the connecting part (546).
8. An integrated retaining wall structure with a multi-functional discharge outlet as described in claim 7, characterized in that: The front plate (542) is provided with a scraping end (547) at one end away from the rear plate (541). The scraping end (547) is provided with a bidirectional arc-shaped scraping head, and the curvature of the bidirectional arc-shaped scraping head matches the curvature of the inner wall of the tube body (51).
9. An integrated retaining wall structure with a multi-functional discharge outlet according to claim 4, characterized in that: The discharge pipe (5) is provided with a supplementary pipe (6) at one end outside the retaining wall (1). A pusher (61) is installed inside the supplementary pipe (6) through a horizontal plate. The end of the pusher (61) away from the horizontal plate is connected to the slider (525).