A mountainous road pavement sewage collection system
By using stainless steel drainage ditch systems and ultrasonic bird deterrents in highway construction, the problem of sewage collection and treatment in highway engineering construction has been solved, realizing centralized collection and harmless treatment of sewage and ensuring the stability of the aquatic ecological environment.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- SICHUAN LUQIAO TRAFFIC ENGINEERING CO LTD
- Filing Date
- 2026-05-09
- Publication Date
- 2026-07-10
AI Technical Summary
Existing highway construction projects that cross water environment sensitive areas cannot centrally collect and harmlessly treat road surface sewage, resulting in sewage pollution of the water environment along the route and making it difficult to ensure the stability of the surrounding water ecological environment.
A stainless steel drainage system, including a filtration module, a water guide channel, a collection pool, and an extraction module, combined with an ultrasonic bird deterrent and a protective mechanism, is used to achieve centralized collection and harmless treatment of sewage.
This effectively prevents road surface sewage from polluting the water environment along the route, ensures the stability of the surrounding aquatic ecosystem, reduces the adverse impact of sewage on water environment sensitive areas, and guarantees the safety of water resources.
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Figure CN122358746A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of highway construction technology, and in particular to a sewage collection system suitable for mountain highway pavements. Background Technology
[0002] With the gradual development of highway construction, the requirements for environmental protection in highway construction are increasing. It is very important to coordinate the relationship between highway construction quality, resource utilization, energy consumption, pollution emissions, ecological impact and operational efficiency, and to coordinate the entire process of highway planning, design, construction, operation and management, so as to achieve the best engineering quality and the most efficient transportation service with the least resource occupation, the least energy consumption, the lowest pollution emissions and the lightest environmental impact, and to achieve the maximum balance between external rigid constraints and the internal supply of highways.
[0003] Existing highway construction projects that traverse water environment sensitive areas are unable to centrally collect, recycle, and treat road surface wastewater in a harmless manner, which can easily cause road surface wastewater to pollute the water environment along the route and make it difficult to ensure the stability of the surrounding aquatic ecological environment. Summary of the Invention
[0004] The purpose of this invention is to provide a sewage collection system suitable for mountain roads, aiming to solve the problem that existing highway construction projects passing through water environment sensitive areas cannot centrally collect, recycle, and harmlessly treat road sewage, which easily causes road sewage to pollute the water environment along the route and makes it difficult to ensure the stability of the surrounding water ecological environment.
[0005] To achieve the above objectives, the present invention provides a sewage collection system suitable for mountain roads, including a stainless steel drainage ditch, wherein limiting parts are provided on both sides of the stainless steel drainage ditch and a filter module is provided at the top inside; The bottom of the stainless steel drainage ditch is connected to a water guide channel, the outlet side of the water guide channel is provided with a horizontal channel, a collection pool is provided below the outlet of the horizontal channel, a rainproof module is provided on the top of the collection pool, and an extraction module is provided between the rainproof module and the collection pool. The top of the horizontal channel is symmetrically provided with a waterproof part and a water guiding part. The angle between the water guiding part and the horizontal plane of the horizontal channel is 6°, and the lowest point is close to the side of the water guiding channel.
[0006] The filter module includes a positioning frame and a filter frame. The positioning frame is welded to the top of the stainless steel drainage ditch and is symmetrically arranged. The filter frame is slidably inserted and installed on the top of the positioning frame.
[0007] The rainproof module includes a top plate and support rods. Multiple support rods are welded to the bottom of the top plate, and the area of the top plate is larger than the size of the collection pool.
[0008] The extraction module includes a support platform and a mating mechanism. The support platform is detachably connected to the collection pool and is located on the top side of the collection pool. The mating mechanism is disposed on the support platform.
[0009] The cooperating mechanism includes a waterproof electrical control box and a water pump. The waterproof electrical control box is installed on the support platform, and its control button box is installed on the side of the support platform. The water pump is electrically connected to the waterproof electrical control box and fixed on the support platform, and its bottom water inlet pipe is close to the bottom of the collection pool but does not abut against it.
[0010] The wastewater collection system for mountain roads also includes a bird deterrent module, which includes an ultrasonic bird deterrent and a protective mechanism. The ultrasonic bird deterrent is electrically connected to the waterproof electrical control box and fixed to the top of the top plate; the protective mechanism is located on the outside of the ultrasonic bird deterrent.
[0011] The protective mechanism includes a protective sleeve and a sound transmission ring. The protective sleeve is detachably connected to the top plate and is fitted onto the outside of the ultrasonic bird repeller. The sound transmission ring is disposed between the protective sleeves.
[0012] This invention discloses a sewage collection system for mountain highways. During highway construction, the stainless steel drainage ditch of this application is installed at the edge of the highway, lower than the road surface, to facilitate the entry of road sewage into the stainless steel drainage ditch. The sewage is then filtered by a filtration module and falls into the stainless steel drainage ditch. Finally, it is guided by a water guide channel and a horizontal channel into a collection pool for centralized collection. The collected sewage is centrally recycled by the environmental protection department for harmless treatment, avoiding pollution of the water environment along the route by road sewage, ensuring the stability of the surrounding aquatic ecological environment, minimizing the adverse effects of sewage on water-sensitive areas, and ensuring water resource safety. This solves the problem that existing highway construction projects crossing water-sensitive areas cannot centrally collect, recycle, and treat road sewage, which easily leads to pollution of the water environment along the route and makes it difficult to ensure the stability of the surrounding aquatic ecological environment. Attached Figure Description
[0013] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the accompanying drawings used in the description of the embodiments or the prior art will be briefly introduced below.
[0014] Figure 1 This is a schematic diagram of the overall structure of a sewage collection system for mountain roads according to the first embodiment of the present invention.
[0015] Figure 2 This is a schematic diagram of the support platform according to the first embodiment of the present invention.
[0016] Figure 3 This is a schematic diagram of the water guiding part according to the first embodiment of the present invention.
[0017] Figure 4 This is a schematic diagram of the protective sleeve according to the second embodiment of the present invention.
[0018] Figure 5 This is a schematic diagram of the slotted frame according to the third embodiment of the present invention.
[0019] In the diagram: 101-Stainless steel drainage ditch, 102-Limiting part, 103-Water guide channel, 104-Horizontal channel, 105-Collection pool, 106-Waterproof part, 107-Water guide part, 108-Positioning frame, 109-Filter frame, 110-Top plate, 111-Support rod, 112-Support platform, 113-Waterproof electrical control box, 114-Water pump, 201-Ultrasonic bird repeller, 202-Cylinder, 203-Sound transmission ring, 301-Filter screen, 302-Groove frame, 303-Connector. Detailed Implementation
[0020] The embodiments of the present invention are described in detail below. Examples of the embodiments are shown in the accompanying drawings. The embodiments described below with reference to the accompanying drawings are exemplary and intended to explain the present invention, but should not be construed as limiting the present invention. Example
[0021] like Figures 1 to 3 As shown, where Figure 1 This is a schematic diagram of the overall structure of a sewage collection system suitable for mountain roads. Figure 2 This is a structural schematic diagram of the support platform 112. Figure 3 This is a schematic diagram of the water guiding section 107. The present invention provides a sewage collection system suitable for mountain highways: it includes a stainless steel drainage ditch 101, a filter module, a water guiding channel 103, a horizontal channel 104, a collection pool 105, a rainproof module, and an extraction module. The filter module includes a positioning frame 108 and a filter frame 109. The rainproof module includes a top plate 110 and a support rod 111. The extraction module includes a support platform 112 and a cooperating mechanism. The cooperating mechanism includes a waterproof electrical control box 113 and a water pump 114. The aforementioned solution addresses the problem in existing highway construction projects traversing water-sensitive areas where centralized collection, recycling, and harmless treatment of road surface sewage are impossible. This easily leads to pollution of the surrounding water environment and makes it difficult to ensure the stability of the surrounding aquatic ecosystem. The aforementioned solution can centrally collect road surface sewage.
[0022] In this embodiment, the stainless steel drainage ditch 101 is lighter and easier to install than traditional concrete pouring. When multiple assemblies are assembled, they can be directly welded together, and waterproof plates can be welded to both sides. When multiple assemblies are assembled, it is not necessary to set the water guide groove 103 at the bottom of each stainless steel drainage ditch 101; it is only necessary to set it at the corresponding position, and the rest are sealed structures.
[0023] The stainless steel drainage ditch 101 has limiting parts 102 on both sides and a filter module at the top inside; the filter module is used to block debris such as leaves carried in the sewage.
[0024] The bottom of the stainless steel drainage ditch 101 is connected to a water guide channel 103. A horizontal channel 104 is provided on the outlet side of the water guide channel 103. A collection pool 105 is located below the outlet of the horizontal channel 104. A rainproof module is provided on the top of the collection pool 105, and an extraction module is provided between the rainproof module and the collection pool 105. The water guide channel 103 is welded below the bottom outlet of the stainless steel drainage ditch 101. The length of the horizontal channel 104 is set as needed and is welded to the water guide channel 103 on the inlet side. The water guide channel 103 and the horizontal channel 104 can be covered with soil. A water level detection component, such as a water level sensor or a float switch, is installed on the collection pool 105 to detect the water level. The data is then transmitted in real time to the monitoring room via a data transmission terminal inside the waterproof electrical control box 113. The rainproof module is used to reduce the amount of rainwater entering the collection pool 105, and the extraction module is used for the rapid removal and treatment of wastewater from the collection pool 105.
[0025] The top of the horizontal trough 104 is symmetrically provided with a waterproof part 106 and a water guiding part 107. The water guiding part 107 is at a 6° angle to the horizontal plane of the horizontal trough 104, and its lowest point is close to the side of the water guiding trough 103. This structure helps to prevent rainwater from falling from above the horizontal trough 104 into the collection tank 105, which facilitates better sewage collection in the collection tank 105.
[0026] Secondly, the positioning frame 108 is welded to the top of the stainless steel drainage ditch 101 and is symmetrically arranged; the filter frame 109 is slidably inserted and installed on the top of the positioning frame 108. The positioning frame 108 is made of stainless steel to avoid corrosion and is provided with a rectangular cavity to facilitate the direct insertion and positioning of the filter frame 109. The bottom of the filter frame 109 is provided with multiple rectangular water passages to facilitate the blocking of impurities such as leaves carried in the sewage.
[0027] Then, multiple support rods 111 are welded to the bottom of the top plate 110. The area of the top plate 110 is larger than that of the collection tank 105. The support rods 111 are T-shaped, with their top discs connected and fixed to the top plate 110 by bolts, and their bottoms can be directly fixed to the ground by pouring concrete. The larger area of the top plate 110 than that of the collection tank 105 prevents rainwater from entering the tank. An overflow outlet is provided at the upper end of the collection tank 105.
[0028] Furthermore, the support platform 112 is detachably connected to the collection tank 105 and is located on the top side of the collection tank 105; the mating mechanism is disposed on the support platform 112. The support platform 112 is installed on the top of the collection tank 105 by stainless steel bolts. The collection tank 105 may also be made of rust-proof material. The mating mechanism is used by environmental protection departments to quickly discharge sewage from the collection tank 105 during sewage treatment.
[0029] Finally, the waterproof electrical control box 113 is installed on the support platform 112, and its control button box is installed on the side of the support platform 112. The water pump 114 is electrically connected to the waterproof electrical control box 113 and fixed on the support platform 112, with its bottom water inlet pipe close to the bottom of the collection tank 105 but not touching it. The waterproof electrical control box 113 is equipped with corresponding electrical control equipment and a data transmission terminal. The operation of the water pump 114 can be controlled through the external control box. The water pump 114 is fixed to the support platform 112 with bolts, and its outlet is equipped with a flexible hose.
[0030] When using this invention to centrally collect road surface wastewater and ensure the stability of the surrounding aquatic ecosystem, the stainless steel drainage ditch 101 described in this application is installed at the edge of the road during road construction, lower than the road surface height, to facilitate the entry of road surface wastewater into the stainless steel drainage ditch 101. The wastewater is then filtered by the filtration module and falls into the stainless steel drainage ditch 101. Finally, it is guided by the water guide trough 103 and the horizontal trough 104 and flows into the collection pool 105 for centralized collection. The collected wastewater is periodically recycled by the environmental protection department according to actual conditions and treated harmlessly, avoiding pollution of the road surface wastewater to the surrounding water environment, ensuring the stability of the surrounding aquatic ecosystem, minimizing the adverse effects of wastewater on water environment sensitive areas, and ensuring water resource safety. This solves the problem that existing highway construction projects crossing water environment sensitive areas cannot centrally collect, recycle, and treat road surface wastewater harmlessly, easily causing pollution of the surrounding water environment and making it difficult to ensure the stability of the surrounding aquatic ecosystem. Example
[0031] like Figure 4 As shown, where Figure 4 This is a schematic diagram of the protective casing 202. Based on the first embodiment, the present invention provides a sewage collection system suitable for mountain roads. The sewage collection system for mountain roads further includes a bird deterrent module, which includes an ultrasonic bird deterrent 201 and a protective mechanism. The protective mechanism includes the protective casing 202 and a sound-conducting coil 203.
[0032] The ultrasonic bird repeller 201 is electrically connected to the waterproof electrical control box 113 and fixed to the top of the top plate 110; the protective mechanism is located on the outside of the ultrasonic bird repeller 201. The housing of the ultrasonic bird repeller 201 is fixed with stainless steel bolts to drive away birds, reduce the problem of birds damaging the protective cables of the corresponding electronic components, and also prevent birds from building nests on the support platform 112.
[0033] Secondly, the protective sleeve 202 is detachably connected to the top plate 110 and fitted onto the outside of the ultrasonic bird repeller 201; the sound transmission ring 203 is disposed between the protective sleeves 202. The protective sleeve 202 is an upper and lower assembly structure, with the two shells connected and fixed by bolts. A snap-fit groove is provided at the top of the lower shell and the bottom of the upper shell to facilitate the placement of the sound transmission ring 203, which has an O-shaped cross-section. A cable slot is provided at the bottom of the lower shell and fixed by bolts.
[0034] In this embodiment, the ultrasonic bird repeller 201 can be protected by the protective sleeve 202 and the sound transmission coil 203 without interfering with its operation. Example
[0035] like Figure 5 As shown, where Figure 5 This is a structural schematic diagram of the slotted frame 302. Based on the first embodiment, the present invention provides a sewage collection system suitable for mountain roads. The sewage collection system suitable for mountain roads also includes a secondary filtration module. The secondary filtration module includes a filter screen 301 and a support mechanism. The support mechanism includes a slotted frame 302 and a connector 303.
[0036] The filter screen 301 is disposed within the stainless steel drainage ditch 101 via the supporting mechanism; the supporting mechanism is symmetrically arranged. The filter screen 301 is used to further form a filtration structure. The supporting structure is used to fix the filter screen 301.
[0037] Secondly, the grooved frame 302 is welded inside the stainless steel drainage ditch 101; the filter screen 301 is locked onto the grooved frame 302 via the connector 303. The grooved frame 302 is made of stainless steel and has slots to facilitate the insertion of the rectangular portion of the filter screen 301. The rectangular portion of the filter screen 301 has through holes for easy installation onto the grooved frame 302 via the connector 303.
[0038] In this embodiment, after the filter screen 301 is installed, a filter structure will be added to the bottom of the filter frame 109 to prevent leaves and other debris from falling directly to the bottom of the stainless steel drainage ditch 101 after the filter frame 109 is damaged.
[0039] The above-disclosed embodiments are merely one or more preferred embodiments of this application and should not be construed as limiting the scope of this application. Those skilled in the art can understand that all or part of the processes for implementing the above embodiments and equivalent changes made in accordance with the claims of this application still fall within the scope of this application.
Claims
1. A sewage collection system suitable for mountain roads, comprising stainless steel drainage ditches, characterized in that: The stainless steel drainage ditch is provided with limiting parts on both sides and a filter module is provided at the top inside. The bottom of the stainless steel drainage ditch is connected to a water guide channel, the outlet side of the water guide channel is provided with a horizontal channel, a collection pool is provided below the outlet of the horizontal channel, a rainproof module is provided on the top of the collection pool, and an extraction module is provided between the rainproof module and the collection pool. The top of the horizontal channel is symmetrically provided with a waterproof part and a water guiding part. The angle between the water guiding part and the horizontal plane of the horizontal channel is 6°, and the lowest point is close to the side of the water guiding channel.
2. The sewage collection system for mountain roads as described in claim 1, characterized in that: The filter module includes a positioning frame and a filter frame. The positioning frame is welded to the top of the stainless steel drainage ditch and is symmetrically arranged. The filter frame is slidably inserted and installed on the top of the positioning frame.
3. The sewage collection system for mountain roads as described in claim 1, characterized in that: The rainproof module includes a top plate and support rods. Multiple support rods are welded to the bottom of the top plate, and the area of the top plate is larger than the size of the collection pool.
4. The sewage collection system for mountain roads as described in claim 1, characterized in that: The extraction module includes a support platform and a mating mechanism. The support platform is detachably connected to the collection pool and is located on the top side of the collection pool. The mating mechanism is disposed on the support platform.
5. The sewage collection system for mountain roads as described in claim 4, characterized in that... : The cooperating mechanism includes a waterproof electrical control box and a water pump. The waterproof electrical control box is installed on the support platform, and its control button box is installed on the side of the support platform. The water pump is electrically connected to the waterproof electrical control box and fixed on the support platform, and its bottom water inlet pipe is close to the bottom of the collection pool but does not abut against it.
6. The sewage collection system for mountain roads as described in claim 3, characterized in that: The sewage collection system for mountain roads also includes a bird deterrent module, which includes an ultrasonic bird deterrent and a protective mechanism. The ultrasonic bird deterrent is electrically connected to the waterproof electrical control box and fixed to the top of the top plate; the protective mechanism is located on the outside of the ultrasonic bird deterrent.
7. The sewage collection system for mountain roads as described in claim 6, characterized in that: The protective mechanism includes a protective sleeve and a sound transmission ring. The protective sleeve is detachably connected to the top plate and is fitted onto the outside of the ultrasonic bird repeller. The sound transmission ring is disposed between the protective sleeves.