WO2019173952A1 - 一种透水箅箅体上表面加网泄水孔带开关门的透水箅 - Google Patents

一种透水箅箅体上表面加网泄水孔带开关门的透水箅 Download PDF

Info

Publication number
WO2019173952A1
WO2019173952A1 PCT/CN2018/078742 CN2018078742W WO2019173952A1 WO 2019173952 A1 WO2019173952 A1 WO 2019173952A1 CN 2018078742 W CN2018078742 W CN 2018078742W WO 2019173952 A1 WO2019173952 A1 WO 2019173952A1
Authority
WO
WIPO (PCT)
Prior art keywords
water
door
permeable
hole
tank
Prior art date
Application number
PCT/CN2018/078742
Other languages
English (en)
French (fr)
Inventor
陈三军
Original Assignee
陈三军
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 陈三军 filed Critical 陈三军
Priority to PCT/CN2018/078742 priority Critical patent/WO2019173952A1/zh
Publication of WO2019173952A1 publication Critical patent/WO2019173952A1/zh

Links

Images

Classifications

    • EFIXED CONSTRUCTIONS
    • E03WATER SUPPLY; SEWERAGE
    • E03FSEWERS; CESSPOOLS
    • E03F5/00Sewerage structures
    • E03F5/04Gullies inlets, road sinks, floor drains with or without odour seals or sediment traps

Definitions

  • the invention relates to a water suction port facility for sewage discharge engineering.
  • the technical problem to be solved by the invention is that the obstacle door is designed to be opened downwards, and the narrowest bicycle wheel is 4 cm.
  • the rainwater drain hole of the patent application cannot be wider than 3 cm wide, and the 3 cm narrow passage must be blocked.
  • the water receiving table has the same diameter as the water receiving platform. The water protects its internal structure from being damaged. The surface area of the water droplet is not damaged. The water droplets move along the line of their own forces, and the water droplets roll. To the same level of water receiving countertops, the water receiving station must instantly grasp the opportunity of breaking the force to change the direction of water droplets. The water is large, the water meets the water pressure and breaks the tension, and the water pressure of 0.5-0.8 cm requires the water tank to create conditions.
  • the water tank is the same length under the water receiving platform, 3 cm wide and 10 cm deep. It can only be expected to use 0.5-0.8 cm water from the water receiving station for the water tank. It is in the natural environment without any external help, and it will hold the work forever. The state is the instinct of the water tank. The finished product completes the basic function of “water to hole, to the hole water to drain down”. The application of the invention to add a number of new technical procedures and functions must also consciously and repeatedly complete the current permeable requirements.
  • the new function provided by the invention for solving the above technical problem is that the blocking door is hoisted on the side of the upper wall of the draining water, and the environment may be trapped in the environment, and the blocking door is opened downwards in the same direction as the inflowing water.
  • Water; the upper surface of the whole body can be fixed thin, withstand pressure, without welding mesh, less storage of waste, which is conducive to cleaning, and does not have a large pressing force on the shape of the obstruction gate.
  • the water first touches the net and the water is too fine.
  • the hole filter removes the bulk material and helps the blocker to solve the problem. It does not affect the subsequent drainage and flooding.
  • the large impurities under the water drain are left on the surface of the net, which is good for cleaning.
  • the water receiving platform is opened at the door.
  • the water receiving station On the side wall of the water hole, the water receiving station should have a small hole for clearing the water. The smaller the hole, the better.
  • the water kept by the water tank under the water receiving table is the power source for the water tank. Any power source instinct - reciprocating work, water tank There must be a drainage hole below, the diameter of the drainage hole under the water tank should be larger than the water receiving hole or mesh diameter of the water receiving platform, and the water in the water tank accidentally filtered into the water tank should be discharged from the drainage hole under the water tank to keep the water purity of the water tank;
  • the collection area of the water receiving hole must be larger than the lower row of the water tank The hole area is that the water tank holds the water amount to ensure the working state.
  • the water receiving table is dense and dense, and the water hole is filled with a small hole. Under the water tank, only one drainage hole can be used; the water droplets pass through the water receiving station, and the tension is broken. Each water collecting hole on the water platform is led to the water receiving platform, and the line has the adhesive water breaking tension resistance, or the thin wire is used to form the surface unevenness filter screen to make the water tension tension water receiving surface, and the water droplets pass through the water receiving table whether it is flat or
  • the vertical roll can be broken and changed direction; under the combination of the water tank ampule and the water receiving table, only the 0.2-0.5 cm opening and closing door transmission space, the parts can be simple and not complicated, can be straight and not thick, can be thin and not thick, paste Wall operation, the transmission faces the harshness of nature and the environment, no matter how the rope transmission is fixed and shuttled, as long as the two ends are unbalanced, the transmission can be reached; the additional new functions not only produce energy, control itself, once and for all, avoid the drainage project.
  • Figure 1 Schematic diagram of the structure of the currently used permeable raft.
  • Figure 2 Schematic diagram of the water permeable raft with the opening and closing drains on the upper surface of the permeable body.
  • Fig. 3 is a schematic view showing the structure of the water-free ventilating hole with the opening and closing of the permeable body of the water-permeable sputum with the water-permeable ⁇ A-A of the door.
  • Fig. 4 is a schematic view showing the structure of the water-permeable state of the A solution of the water-permeable sputum A-A of the upper surface of the permeable body.
  • Fig. 5 is a schematic view showing the structure of the water-free sputum A-A of the water-permeable sputum on the upper surface of the permeable body.
  • Figure 6 Schematic diagram of the water regime of the water-permeable ⁇ A-A B scheme of the upper surface of the permeable body of the permeable body.
  • Fig. 7 is a structural schematic view of a water-permeable concrete splitting platform with a draining opening on the upper surface of the water-permeable body.
  • Fig. 8 is a structural schematic view of a water-permeable woven woven netting platform with a water-discharging hole on the upper surface of the permeable body.
  • Fig. 9 Schematic diagram of a partial enlarged structure of a water-permeable mashing table with a draining opening on the upper surface of the permeable body.
  • Figure 10 is a schematic view showing the structure of a water permeable tamping plate with a water drain hole and a switch door on the upper surface of the permeable body.
  • Fig. 11 is a structural schematic view of a mud-distributing station of a water-permeable rafting solid-plate hole with a water-discharging hole on the upper surface of the permeable body.
  • Figure 1 has been used until now. It mainly consists of: ⁇ frame 1, drain hole 2, ⁇ 3 3.
  • Figure 2 is a more clear illustration of the effect of the water-permeable raft with the opening and closing of the permeable body on the upper surface of the permeable body.
  • Figure 2 can only magnify the same energy-capable diagram of each venting hole in the new raft.
  • the permeable body of the net is added: a frame 4, a drain hole 2, a ridge 5, a mesh 6, a blocking door 7, and a water tank 8.
  • Fig. 3 is a schematic diagram showing the structure of the water-permeable ⁇ A-A water-free state of the upper and lower sides of the permeable body of the permeable body, and the head of the slinger 10 is connected to the blocking door 7 and then lapped by the thread take-up shaft 11 Downwardly connected with the pull-up board 15, the pull-up board 15 is inserted in the floating block 16, and the pull-line 10 is along the force function function program; the pull-line 10 is taken as the fulcrum of the take-up shaft 11, the pull-up rope 10, the pull-up board 15, float
  • the total length of the long arm of the block 16 is far greater than the distance from the door 10 of the sliding door rope to the take-up shaft 11, the blocking door 7 is upward with respect to the take-up shaft 11; the blocking door 7 is obliquely sealed on the drain hole 2,
  • the rotating shaft ring 12 is connected to the lower side of the blocking door 7, and the ring 12 is movably arranged with a door shaft 9 fixed to the
  • the combination of the shaft 9 and the rotating shaft ring 12 is rotated as a fulcrum; one end of the control rope 13 is tied to the side of the blocking door 7 of the door shaft 9, and the other end is straightly connected to the drawing board 15, and the pulling board 15 is inserted.
  • this design adapts to a wider range of climate; no matter how it is arranged, there is a drain hole on the far side of the raft 2, the water tank 8 can not be installed, and the water tank 8 can not produce the kinetic energy of the opening and closing door, and the side blocking door
  • the switch of 7 can only be borrowed from the adjacent water tank 8, and the splitter table 26 and the solid plate table 24 with the fixed plate holes on the top of the borrowed water tank 8 have the pull plate 15 extending from the fixed plate hole 25, and the water tank 8 float block 16
  • the puller plate 15 extending from the splitter table 26 is tied with two ropes, and one of the pull ropes 10 is straight up and taken up by the thread shaft 11 and then knotted.
  • the other cable 14 is placed at the lower end of the opposite rib 5 and the take-up shaft 11 is strung from the bottom and is returned to the door opening at the upper end of the corresponding rib
  • Fig. 4 is a schematic diagram of the water-permeable state of the water-permeable sputum A-A with the opening and closing of the permeable body on the upper surface of the permeable body, the sluice is stagnant with water, and the low-side gap of the water-blocking gate 7 flows down to the slab 20 and a mud slab 26 with a solid plate hole, a water receiving table (a mud slab 20, a woven mesh table 21, a mud slab 26 with a solid plate hole) is a top cover of the water tank 8, and the mud table 20 is densely packed in Fig. 7.
  • the water collecting holes 22 are filled, and each of the water collecting holes 22 has a water guiding line 23; the water tank 8 has water, the floating block 16 floats, and the pulling plate 15 rises with the floating block 16, which is equal to the original static long arm.
  • the sum of the forces gives the door rope 10 series resistance door 7 points, the gravity causes the obstruction door 7 that is attached to the sliding door rope 10 to fall; the cable puller 15 rises, the control door rope 13 directly relaxes, and the door shaft 9 is
  • the obstruction door 7 of the fulcrum is under the action of the long and short moments, the force is unbalanced on the long arm side of the obstructing door 7, and the long arm of the obstructing door 7 is rotated down by gravity to open the door.
  • the most side switch block door 7 borrows the energy of the adjacent water tank 8, the puller plate 15 extended by the splitter table 26 rises, the pull door rope 10 is loose, the opening block door 7 falls, the pull wire plate 15 rises, and the pull wire rope 14 is wound.
  • the rope 14 In the fixed position of the lower take-up shaft 11, it can only rise with the pull-up plate 15, the rope 14 is set, the middle winding, and the upper three-point connection, and the rope-receiving force passes through the whole rope to the head, and is transmitted to the blocked opening.
  • the blocking door 7 is rotated downward to open the door.
  • Fig. 5 is a schematic view showing the structure of the water-permeable sputum A-A water-free state of the upper surface of the permeable body of the permeable body, and the opening and closing block 7 and the A scheme are similarly omitted.
  • the obstruction door 7 is movably fixed to a side wall of the drain hole 2, and one side wall of the lower edge 5 of the obstruction door 7 is fixed with two take-up shafts 11 up and down, and the strut 18 is movably placed at the bottom.
  • the lower take-up shaft 11 of the strut 18 rotates up and down, and the other end of the strut 18 is inclined upwardly across the drain hole 2 to support the opening edge of the obstruction door 7.
  • the top end of the wire drawing plate 15 is tied with two ropes, and the cable bar 19 is wound from the lower thread take-up shaft 11 and is put up into the thread take-up shaft 11
  • the edge is wound around the head of the baffle door 7 of the struts 18 across the drain hole 2, and the control line 13 is placed up on the blocker door 7 to terminate at the door opening of the blocker door 7.
  • Fig.6 is a schematic diagram of the water-permeable state of the water-permeable sputum A-A with the opening and closing of the water-permeable sputum on the upper surface of the permeable body.
  • the sluice When the sluice is stagnant, the water flows down to the woven mesh table 21, weaving The net platform 21 is fine and uneven, and the inclined table surface receives water and sludge.
  • the floating block 16 of the water tank 8 floats upward, and the pull rod rope 19 is wound around the two take-up shafts 11.
  • the pull rod rope 19 rises with the pull-up board 15, and the force passes through the pull rod rope 19
  • the strut 18 is received with the drawbar rope 19 to the upper end take-up shaft 11, the puller plate 15 is raised, the control door rope 13 is loosened, and the support door has no support weight of the strut 18 Fall, open the door.
  • FIG 7 shows that the mashing table 20 is a direct injection molding table, which is low in cost, smooth and non-sludge.
  • the table is the top of the box.
  • the water in the box comes from the table.
  • the working efficiency and service life of the water tank 8 come from two (sinks, Solid board) protection, water receiving hole 22 filters the water quality, Figure 9 water line 23 main negative break water tension, and then small water, the line must seize the opportunity to collect into the box, the slope of the table and smooth close to the mud Water effect.
  • the thin wire braiding net 21 cannot be injection molded, and the weaving net 21 is advantageous for disassembly.
  • Fig. 11 is a splitter table 26 with a solid plate hole, generally used for the most drain hole 2 of the crucible.
  • Each permeable sputum is a quasi-entry that is kept on the drainage engineering body.
  • the environmental water is the easiest to bring the garbage into the project with the water.
  • the saying “the disease is from the mouth” is not only suitable for the human body, but also suitable for drainage works.
  • the upper surface of the permeable body is meshed with ⁇ 6, and the ⁇ 6 venting hole is more finely filtered, and the upper surface of the permeable body is used until now, and the fine hole is directly welded by means of welding, riveting, setting, inserting, etc.
  • the thin mesh is directly connected to the upper surface of the permeable body that has been used up to now, and is also more environmentally friendly than the bare leeches used in the present use (see Figure 1).
  • the permeable drain hole has a door that opens downwards along the mouth. Even if the surface of the sputum is not laid, the sluice is drained and the water is caught in the door joint. The mechanical cleaning will easily pull out the material and keep the original bare water.
  • the whole set of equipment still has to be able to calm down and cope with all the requirements that nature has given him.
  • the two side walls of the venting hole door, the side wall of the door is equipped with a full-time water receiving station to collect water and sludge, not responsible for other, except for the most venting hole 2, the water tank top combined by the water receiving platform and the solid plate platform , respectively, at the lower end of the ridge 5, the water receiving station receives water into the water tank 8, the water tank 8 has self-clearing, self-storing, self-discharging function, even if there is accidental impurity with the water into the water tank 8, the water tank 8 drain hole
  • the diameter of 17 is larger than the water receiving hole or mesh diameter of the water receiving platform, and the collecting area of the water receiving hole of the water receiving station is larger than the area of the water discharging hole under the box.
  • the water reciprocating energy is the only contrasting guarantee with the water in the door. There is energy to complete the device can not stop working, for the waterproof box 8, the obstacle door 7 may have an accident, the water tank 8 has water, the box water output energy work entrance and exit is the three solid plate holes 25 on the solid plate table 24, 3 pull wires
  • the plate 15, a pull-up board 15 corresponds to a set of door opening operation program, and the entire block door 7 of the drain hole 2 is cut into three block doors 7, and a whole block 16 in the water tank 8 is cut into three pieces.
  • the most likely situation is the initial three floating blocks 16, the environment gives the tank water energy, pressure, and wave conduction instability, and a whole float block 16 is connected with three pull plates 15 and 3 plates. The movement is consistent, the procedure is the same, and the end is in a whole block door 7.
  • the three floating blocks 16 are naturally smaller and smaller in weight and more disturbed by the fluctuation of water, and the three floating blocks 16 collide with each other, collide, and force. Unable to equalize, disturbing consumes a lot of buoyancy and can't do work. The subsequent steps can't be unified.
  • partitions such as plates or nets
  • the partitions are separated from the bottom of the water tank 8 by a distance, and the cleanness of the water in the tank is maintained, and the water volume is uniform.
  • Each of the three floating blocks 16 goes through each program, and each corresponding blocking door 7 is opened. Without interference, the appearance of an obstruction door 7 will not affect the entire work of the obstruction door 7, and it is more conducive to coping with the environment.
  • the water inlet counter opposite side wall door lower door running part door shaft 9, the rotating shaft ring 12, the take-up shaft 11, the solid plate table 24, the cable plate 15, the strut 18, the rope, etc. (parts and positions can be replaced or changed by other methods)
  • the door is behind the door, protected by the door, the reciprocating stroke of the component is not disturbed by the external environment, the only possible harassment in the environment, the door is drained, and there is a gap between the fixed movable door and the side wall.
  • the water tank 8 has water, the weight of the floating block 16 is lifted to zero, the weight of the blocking door 7 is added with water pressure, the falling of the blocking door 7 is consistent with the direction of the draining of the water, and the rope of the blocking door 7 is dropped, the water tank 8 Waterless, the weight of the floating block 16 must be greater than the weight of the blocking door 7, the friction generated by the rope when it is delivered, and the starting force.
  • the floating block 16 draws the rope and vice versa.
  • the door With the door permeable to the water, except for the most one of the drain holes 2, the door drains the water and the rope drains the water hole 2, and all the drain holes 2 with the door through the water sluice can not appear at the opening of the drain rope horizontal drain hole 2 phenomenon, with The function of the door sluice and the bare water sluice is the same, and the environmental protection effect is very different.
  • the whole set of equipment box has the energy of clean water, the parts can be stopped by the external disturbance and the reciprocating work can not be stopped, and there is no need for maintenance.
  • the function of the water permeable hole with the water permeable sill is consistent with the function and style effect of the permeable water. The principle is simple, no manual control, natural management, cheap materials, problems, and easy repair.

Abstract

一种透水箅,在整个箅体上表面设有网箅(6),泄水孔(2)上沿口设阻物门(7),阻物门(7)向下开,阻物门(7)下两侧壁,一侧壁设收水台,收水台滤水给水箱(8),水箱(8)有自清、自存、自泄功能,对面侧壁设阻物门运行部件,下落的阻物门(7)护着阻物门运行部件不受外界环境影响,通过绳使阻物门(7)与浮块(16)相互连接、作用,从而使透水箅的阻物门(7)根据水量等情况自动开合。如此,透水箅既能在无水时阻止固体污物进入水井又能根据有水时的水量情况调整透水能力,从而减少排水工程上的许多后续管理工作量。

Description

一种透水箅箅体上表面加网泄水孔带开关门的透水箅 技术领域
本发明涉及污水排放工程的吸水口设施。
背景技术
近些年,我一直努力实验着雨水箅的改革创新方案,2017年6月5日在已取得证书下,又申请了《泄水孔自带水箱的滤水箅》专利,专利号:201720637945.3、201710412337.7,本专利中的A设计方案泄水通道必须达到宽7厘米和深5厘米使用才能适应环境需求,只能用于汽车道路,B设计方案阻物门向上开,箅收轻于水的塑料等物质会卡在泄水口,门关不严,过路自行车及小车等重物会把门压坏,随着实践的不断深入,产品表现出的应对整体环境细致工作不成熟,经反复摸索精雕细琢实践后再次对专利进行申请。
发明内容
本发明要解决的技术问题,设计阻物门向下开,自行车轮最窄是4厘米,本专利申请的雨水箅泄水孔最宽不能宽过3厘米,3厘米狭窄通道内必须安下阻物门、一系列开闭门的自传动部件、能量容积装置、启动装置、泄能量装置、最主要留足泄水、行洪通道,带门透水箅要永久恒定具备抗衡自然能力,不出错是对产品的标准要求。总共3厘米泄水孔需留2厘米孔泄水,孔内侧壁设与孔同长0.5—0.8厘米宽收水台,余下0.2—0.5厘米尺寸是门厚度和开闭门部件活动空间;水滴至收水台,水滴直径与收水台同宽,水为保护自身内部结构不被破坏特设表面积自带张力,水滴表面张力不遭破坏,水滴沿自身力量直线运动,滚不动为止, 水滴滚到与它同宽收水台面,收水台须瞬间抓住破力机遇改变水滴方向,水大,水遇物水压自破张力,0.5—0.8厘米水滴张力要求收水台自创条件破解,水箱安收水台下同长,3厘米宽,深10厘米,只能指望0.5—0.8厘米收水台流下的水用于水箱发功,身处自然环境无任何外助指望,永久持住工作状态是水箱的本能。成品完成基本“水至孔,到至孔水向下泄净”功能,这次申请发明附加上的多项新技术程序及功能同样要自觉周而复始完成现用透水箅要求。
为解决上述技术问题发明提供的新功能是:阻物门活动地吊住在泄水沿口上壁一侧,管住环境可能进箅垃圾,阻物门向下开与进箅水方向一致有利泄水;整个箅体上表面就可固定薄、耐压、不开焊网箅,薄存垃圾少,利于清扫,对阻物门形不成大的挤压力,水最先触网箅,水过细孔滤除大体积物质帮阻物门解部分后患,还不影响后续泄水、行洪挤占通道空间,水泄完滤下的大块杂质留在网上表面,利于清扫;收水台在开门下泄水孔侧壁上,收水台要有通透收水小孔,孔越小越好,收水台下直设水箱收留的水为水箱做动力源,任何动力源本能——往复工作,水箱下就要有排水孔,水箱下排水孔直径要大于收水台收水孔或网孔直径,收水台意外滤给水箱的水中杂质好由水箱下排水孔排出,保住水箱水净度;收水台收水孔的集合面积一定要大于水箱下排水孔面积,是水箱持住水量使出工作状态保证,收水台密密麻麻布满通透收水小孔,水箱下只要一排水孔即可;水滴过收水台瞬破张力,用线串住收水台上每个收水小孔引至收水台下,线有粘破水张力能耐,或用细线编成表面凹凸不平滤网做破水张力收水台面,水滴过收水台无论平滚还是竖滚都能被破改变方向;水箱安箅条棱与收水台组合位下,只有0.2—0.5厘米开闭门传动空间,部件能简不繁,能直不弯,能薄不厚,贴壁运作,传动面对自然和环境的苛刻,绳传动无论怎样定绕穿梭,只要两头力不平衡就可通达传递之至;附加的新功能不但自产能量、自主调控、一劳永逸、避掉排水工程上的后续许多管理程序。
附图说明
图1、沿用至今现用透水箅的结构示意图。
图2、透水箅箅体上表面加网泄水孔带开关门的透水箅的结构示意图。
图3、透水箅箅体上表面加网泄水孔带开关门的透水箅A—A的A方案无水状态的结构示意图。
图4、透水箅箅体上表面加网泄水孔带开关门的透水箅A—A的A方案有水状态的结构示意图。
图5、透水箅箅体上表面加网泄水孔带开关门的透水箅A—A的B方案无水状态的结构示意图。
图6、透水箅箅体上表面加网泄水孔带开关门的透水箅A—A的B方案有水状态的结构示意图。
图7、透水箅箅体上表面加网泄水孔带开关门的透水箅分泥台的结构示意图。
图8、透水箅箅体上表面加网泄水孔带开关门的透水箅编织网台的结构示意图。
图9、透水箅箅体上表面加网泄水孔带开关门的透水箅分泥台的局部放大结构示意图。
图10、透水箅箅体上表面加网泄水孔带开关门的透水箅固板台的结构示意图。
图11、透水箅箅体上表面加网泄水孔带开关门的透水箅带固板孔的分泥台的结构示意图。
具体实施方式
以下实施例用于说明本发明,但不用来限制本发明的范围。
图1沿用至今现用透水箅,主要有:箅框1、泄水孔2、箅棱3组成。
图2为了能更清晰说明透水箅箅体上表面加网泄水孔带开关门的透 水箅效果,图2只能扩大化地截取新箅部分每个泄水孔表现出的同样同能示意图,加了网箅的透水箅主体:箅框4、泄水孔2、箅条棱5、网箅6、阻物门7、水箱8组成。
A方案:
图3、透水箅箅体上表面加网泄水孔带开关门的透水箅A—A无水状态结构示意图,拉门绳10的一头连于阻物门7后由挑线轴11上搭过,向下与拉线板15相结,拉线板15插在浮块16内,拉门绳10的沿力道功能程序;拉门绳10以挑线轴11为支点,拉门绳10、拉线板15、浮块16的长臂力量总和远远大于拉门绳10系门点至挑线轴11距离,阻物门7向上关于挑线轴11下;阻物门7倾斜地封在泄水孔2上沿口,转轴圈12结于阻物门7的下门面,圈12中活动地串有支门轴9,支门轴9固定在箅框4两边泄水孔2上端,两阻物门7边以支门轴9和转轴圈12的组合处为支点发生转动;控门绳13的一头结在支门轴9的阻物门7一边,另一头向下径直与拉线板15相系,拉线板15插在浮块16内,这种设计适应气候范围更广;不管怎样排列,箅最边有一个泄水孔2安不了水箱8,无水箱8产不出开闭门动能,边阻物门7的开关只能借用临近水箱8,被借用的水箱8顶部带固板孔的分泥台26和固板台24都要有拉线板15从固板孔25中伸出,水箱8浮块16要兼顾两个泄水孔2的阻物门7开关,为加强功能效果,由分泥台26伸出的拉线板15系着两条绳,一条拉门绳10向上径直搭挑线轴11后结于开门边,另一条拉线绳14搭向对面箅条棱5下端挑线轴11由下自上串出,返回终结在与之对应箅条棱5上端的开门边。
图4透水箅箅体上表面加网泄水孔带开关门的透水箅A—A有水状态的结构示意图,箅口淤有积水,水顺阻物门7低边缝隙流下至分泥台20和带固板孔的分泥台26,收水台(分泥台20、编织网台21、带固板孔的分泥台26)是水箱8上顶盖,图7分泥台20密密麻麻布满通透收水孔22,图9每个收水孔22中都串有引水线23;水箱8有了水,浮块16上浮,拉线板15随浮块16上升,等于原静长臂总和力量让给了拉门绳10系阻物门7点,重力让系着拉门绳10的阻物门7边下坠;拉线板15上升,控门绳13直接松懈, 以支门轴9为支点的阻物门7在长短力矩作用下,力失衡于阻物门7长臂一方,阻物门7长臂方沿重力下坠转动,开门。最边开关阻物门7借用临近水箱8能量,由分泥台26伸出的拉线板15上升,拉门绳10松懈,开阻物门7边下坠,拉线板15上升,拉线绳14因绕在下挑线轴11固定位上,只能随拉线板15上升,绳14下定、中绕、上系的三点连,收绳力道穿梭通至整条绳至头,传至被系的开阻物门7边,阻物门7向下转动,开门。
当箅口水全部排净,水箱8下的排水孔17泄净水箱8水,浮块16随水下落,拉线板15下落,重力反转,各路拉绳随自程序力道反之,阻物门7向上关闭。
B方案:
图5透水箅箅体上表面加网泄水孔带开关门的透水箅A—A无水状态的结构示意图,开闭边阻物门7与A方案同样同理不再做说明。阻物门7活动地固在泄水孔2上一侧壁沿口,阻物门7下箅条棱5的一面侧壁,上下固定着两挑线轴11,撑杆18一头活动地套在下挑线轴11上,撑杆18以下挑线轴11为轴上下转动,撑杆18的另一头向上斜跨泄水孔2支着阻物门7的开门边。箅无期地处在自然环境中,应对调解着自然与天水关系,箅部件任何细小纰漏,都会磕绊着水中杂质,水杂质会给开闭门带来负担,如:箅边泄水孔开门泄水,绳横跨泄水孔水杂质砸中绳缠上,绝对影响门运行。门设在泄水孔沿口顶部,下落开门运门部件就可设在落门停靠侧壁,无论门开关,门始终会捂着自己部件不受其扰。拉线板15的运行在箅条棱5和两挑线轴11留这的缝隙中活动,拉线板15顶端系着两条绳,拉杆绳19从下挑线轴11绕出,向上搭上挑线轴11內缘绕出,横跨泄水孔2系撑杆18的支阻物门7杆头,控门绳13向上搭于阻物门7上面,终结在阻物门7开门边。
图6透水箅箅体上表面加网泄水孔带开关门的透水箅A—A有水状态的结构示意图,当箅口淤有积水,水顺低开门边流至编织网台21,编织网台21细腻凹凸不平倾斜台面收水泄泥,水箱8中浮块16上浮,拉杆绳19下绕上搭穿梭于两挑线轴11,拉杆绳19随拉线板15上升,力道通过拉杆 绳19传至撑杆18的支阻物门7杆头,撑杆18随拉杆绳19收靠至上端挑线轴11,拉线板15升,控门绳13得到松懈,开门边没了撑杆18的支撑自重下落,开门。
当箅口水全部排净,水箱8下的排水孔17泄净水箱8水,浮块16随水下落,拉线板15下落,重力反转,各路拉线绳随自程序力道反之,阻物门7向上关闭。
图7是箅分泥台20为直接注塑成型台面,成本低、光滑、不淤泥,台是箱的顶,箱水由台来,水箱8一切工作效率及使用年限来自两台(收水台、固板台)保护,收水孔22滤着水质量,图9引水线23主负破水滴张力,再小的水,线都要抓住机遇收至箱中,台面坡度和光滑关乎泄泥收水效果。
图8箅细线编织网台21无法注塑,编织网台21要利于拆卸。
图10从固板台24串出的拉线板15越薄占用空间越小,质量越薄运动稳定越差,固板孔25就为扶持拉线板15的运动稳定。
图11带固板孔的分泥台26,一般用于箅最边泄水孔2。
每个透水箅是守在排水工程体上的准入口,环境水最易把垃圾随水带入工程,“病从口入”俗语不但适于人体,同样适于排水工程。透水箅体上表面加网箅6,网箅6泄水孔滤水更细、沿用至今现用透水箅箅体上表面直接用焊接、拉铆、镶入、插件等定网工艺手段把细孔薄网直接连于沿用至今现用透水箅箅体上表面,也比沿用至今现用光秃透水箅(如图1)应对环境状况强。
透水箅泄水孔沿口有了向下开的门,即使箅表面不铺网,箅口泄完水有物夹于门缝,机械清扫也会容易把物揪出,在保住原光秃透水箅功能效果同时,整套装置依然要能长久镇定自若应对自然赋予他的一切要求。箅泄水孔门下两侧壁,开门边侧壁设专职收水台收水泄泥,不负责其他,箅最边泄水孔2除外,由收水台、固板台24斜坡组合的水箱顶,分别在箅条棱5下端两边,收水台收水至水箱8中,水箱8有自清、自存、自泄功能,即使出现随水入水箱8意外杂质也会因水箱8下排水孔17直径大 于收水台收水孔或网孔直径而被排除,收水台收水孔集合面积大于箱下排水孔面积,清水能量往复是带开关门透水箅与图1透水箅唯一对比保障本领,有能量整套装置停不了工作,为防水箱8、阻物门7可能出现意外,水箱8有水,箱水输出能量工作出入口是固板台24上的3个固板孔25,3个拉线板15,一个拉线板15对应一套开门运行程序,把泄水孔2的一整条阻物门7切割成3块阻物门7,把水箱8内一整条浮块16切割成3个浮块16,3个浮块16、3个固板孔、3个拉线板15、系3板绳传动、3块阻物门7板一一对应自程序,最可出现状况是初动的3个浮块16,环境给箱水能量、压力、波动传导不稳定,一整条浮块16上连着3个拉线板15,3板运动一致,程序一致,终结在一整条阻物门7,被分裂的3个浮块16体积和重量自然小很多,更受不得水波动的搅扰,3个浮块16相互挤占、碰撞、势力无法均等,搅扰消耗大量浮力无法做功,后续步调更无法统一,为减少箱内不必要水能量损耗,用隔断物(如:板或网等)把水箱8内的3个浮块16分开固定在各自固板孔25下区域内,隔断物与水箱8底分开一段距离,持住箱水净度,水量一致,3个浮块16各走各程序,各开各对应的阻物门7,互不干涉,一个阻物门7出现状况,影响不到整条阻物门7工作,更有利箅应对环境。
收水台对面侧壁门下安门运行部件支门轴9、转轴圈12、挑线轴11、固板台24、拉线板15、撑杆18、绳等(部件及位置可用其他方法替代或变换),门落部件在门后,受门保护,部件往复行程不受外界环境骚扰,环境唯一可能出现的骚扰,开门泄水,被固定的活动门与侧壁之间出现一条弥合不住的漏空缝隙,水无孔不入,补缝方法:在运行部件之上,侧壁沿口门下,做个突出挑檐防泥沙骚扰带或门形上突下翘;绳是阻物门7与浮块16平衡介递,水箱8有了水,把浮块16重力托举为零,阻物门7重量加水压力,阻物门7的下落与箅泄水方向一致,阻物门7拉绳下落,水箱8无水,浮块16重量一定要大于阻物门7重量、绳在介递时产生的摩擦力、启动力,浮块16拉绳程序反之向上关门。
带门透水箅除最边一个泄水孔2开门泄水有绳横泄水孔2,整个带门 透水箅的所有泄水孔2就根本出现不了开门泄水绳横泄水孔2现象,带门透水箅与光秃透水箅泄水的功能效果别无两样,可环保效果大有不同。
整套装置箱有净水就有能量,部件不受外界骚扰往复工作停不下来,就不用维修,泄水孔带门透水箅与沿用至今现用透水箅功能及样式效果完全一致。原理简单,无需人工操控,自然管理自然,材料廉价,出现问题,随手拈件修理。
虽然,上文中已经用一般性说明及具体实施例对本发明作了详尽的描述,但在本发明基础上,可以对之做一些修改或改进,这对本领域技术人员而言是显而易见的。因此,在不偏离本发明精神的基础上所做的这些修改或改进,均属于本发明要求保护的范围。

Claims (8)

  1. 一种透水箅箅体上表面加网泄水孔带开关门的透水箅,带门透水箅永久具备恒定地应对自然抗衡能力,其特征是:泄水孔(2)上沿口设阻物门(7),阻物门(7)向下转,箅体上表面铺网箅(6),泄水孔(2)阻物门(7)下两侧壁,一面侧壁设收水台,收水台滤水给水箱(8),水箱(8)有自清、自存和自泄功能,对面侧壁设开闭门部件,下落门护着自门运行部件,绳传动无论怎样定绕穿梭,只要两头力不平衡就可通达传递之至。
  2. 根据权利要求1所述透水箅箅体上表面加网泄水孔带开关门的透水箅,其特征是:沿用至今现用透水箅箅体上表面直接用焊接、拉铆、镶入、插件等定网工艺手段把细孔薄网直接连于沿用至今现用透水箅箅体上表面。
  3. 根据权利要求1所述透水箅箅体上表面加网泄水孔带开关门的透水箅,其特征是:收水台专职收水不留泥,收水台是水箱(8)上顶盖,分泥台(20)密密麻麻布满通透收水孔(22),每个收水孔(22)中都串有引水线(23),编织网台(21)细腻凹凸不平倾斜台面收水泄泥,箱下有排水孔(17),水箱(8)下排水孔(17)直径大于台收水孔(22)或编织网网孔的直径,收水台意外滤给箱水中杂质由箱下排水孔(17)排出,保住箱水净度,收水台收水孔集合面积大于水箱(8)下排水孔(17)面积,水箱(8)持得住往复工作状态。
  4. 根据权利要求1所述透水箅箅体上表面加网泄水孔带开关门的透水箅,其特征是:把泄水孔(2)的一整条阻物门(7)切割成多个阻物门(7),把水箱(8)内一整条浮块(16)切割成多个浮块(16),用隔断物把水箱(8)内的多个浮块(16)分开固定在各自固板孔(25)下区域内,隔断物与水箱(8)底分开一段距离,持住水箱(8)水净度,水量一致,多个浮块(16)各走各程序,各开各对应的阻物门(7),互不干涉,一个阻物门(7)出现状况,影响不到整条阻物门(7)工作, 更有利箅应对环境。
  5. 根据权利要求1所述透水箅箅体上表面加网泄水孔带开关门的透水箅,其特征是:收水台对面侧壁阻物门(7)下安阻物门(7)运行部件,阻物门(7)落部件在阻物门(7)后,开闭都受阻物门(7)保护,部件往复行程不受外界环境骚扰。
  6. 根据权利要求1所述透水箅箅体上表面加网泄水孔带开关门的透水箅,其特征是:绳是阻物门(7)与浮块(16)平衡介递,水箱(8)有水,把浮块(16)重力托举为零,阻物门(7)重量加水压力,阻物门(7)的下落与箅泄水方向一致,阻物门(7)拉绳下落,水箱(8)无水,浮块(16)重量大于阻物门(7)重量、绳在介递时产生的摩擦力、启动力,浮块(16)拉绳程序反之向上关阻物门(7)。
  7. 根据权利要求1所述透水箅箅体上表面加网泄水孔带开关门的透水箅,其特征是:由收水台、固板台(24)斜坡组合的水箱(8)顶,分别在箅条棱(5)下端两边,水箱(8)水输出能量工作出入口是固板台(24)上的固板孔(25)。
  8. 根据权利要求1所述透水箅箅体上表面加网泄水孔带开关门的透水箅,其特征是:带门透水箅的所有泄水孔(2)就根本出现不了开阻物门(7)泄水绳横泄水孔(2)现象,最边泄水孔(2)除外,带门透水箅与光秃透水箅泄水时同样同能。
PCT/CN2018/078742 2018-03-12 2018-03-12 一种透水箅箅体上表面加网泄水孔带开关门的透水箅 WO2019173952A1 (zh)

Priority Applications (1)

Application Number Priority Date Filing Date Title
PCT/CN2018/078742 WO2019173952A1 (zh) 2018-03-12 2018-03-12 一种透水箅箅体上表面加网泄水孔带开关门的透水箅

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
PCT/CN2018/078742 WO2019173952A1 (zh) 2018-03-12 2018-03-12 一种透水箅箅体上表面加网泄水孔带开关门的透水箅

Publications (1)

Publication Number Publication Date
WO2019173952A1 true WO2019173952A1 (zh) 2019-09-19

Family

ID=67908543

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/CN2018/078742 WO2019173952A1 (zh) 2018-03-12 2018-03-12 一种透水箅箅体上表面加网泄水孔带开关门的透水箅

Country Status (1)

Country Link
WO (1) WO2019173952A1 (zh)

Citations (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US6045691A (en) * 1998-08-21 2000-04-04 Mcdermott; Holly S Sewer eco-collar for opening with covers
CN2425965Y (zh) * 1999-09-24 2001-04-04 刘玉峰 封闭型下水道排水口装置
CN2581553Y (zh) * 2002-12-06 2003-10-22 陈其厚 路面排水口防臭排水盆
CN203188347U (zh) * 2012-12-05 2013-09-11 陈三军 不收固体污染物的污水收集井
CN103469885A (zh) * 2012-12-05 2013-12-25 陈三军 不收固体污染物的污水收集井
CN204252264U (zh) * 2014-10-29 2015-04-08 河海大学 智能导流雨水井栅盖
CN107524218A (zh) * 2016-06-20 2017-12-29 陈三军 不收固体污染物的污水收集井的另种开闭阻物门方式
CN108316449A (zh) * 2018-03-12 2018-07-24 陈三军 一种透水箅箅体上表面加网泄水孔带开关门的透水箅

Patent Citations (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US6045691A (en) * 1998-08-21 2000-04-04 Mcdermott; Holly S Sewer eco-collar for opening with covers
CN2425965Y (zh) * 1999-09-24 2001-04-04 刘玉峰 封闭型下水道排水口装置
CN2581553Y (zh) * 2002-12-06 2003-10-22 陈其厚 路面排水口防臭排水盆
CN203188347U (zh) * 2012-12-05 2013-09-11 陈三军 不收固体污染物的污水收集井
CN103469885A (zh) * 2012-12-05 2013-12-25 陈三军 不收固体污染物的污水收集井
CN204252264U (zh) * 2014-10-29 2015-04-08 河海大学 智能导流雨水井栅盖
CN107524218A (zh) * 2016-06-20 2017-12-29 陈三军 不收固体污染物的污水收集井的另种开闭阻物门方式
CN108316449A (zh) * 2018-03-12 2018-07-24 陈三军 一种透水箅箅体上表面加网泄水孔带开关门的透水箅

Similar Documents

Publication Publication Date Title
CN109056647B (zh) 一种模块化生态滞水护岸装置
KR100624085B1 (ko) 교량의 교각에 설치되는 하천 부유물 수거장치
CN111576287B (zh) 一种基于雨水自清理的公路绿植护栏
CN109137859A (zh) 一种水面漂浮物自动收集装置
CN205591334U (zh) 一种雨污分离装置
KR20140033194A (ko) 자동 어도를 이용하여 하천생태계를 복원시켜줌과 동시에 전기를 생산하면서 오염된 하천수를 정화시켜 주는 자연 친화적인 수질정화 친환경 공법
WO2019173952A1 (zh) 一种透水箅箅体上表面加网泄水孔带开关门的透水箅
CN214993590U (zh) 一种水利工程用水闸
CN202151528U (zh) 清除垃圾的水槽过滤装置
KR101403502B1 (ko) 스크린 일체형 펌프 게이트 장치
CN211050993U (zh) 具有自动疏通和自净功能的卸污水装置
CN204753798U (zh) 合流制地下初期雨水调蓄池
CN206720800U (zh) 一种用于污水处理厂的除油撇渣装置
CN205617316U (zh) 一种水电站水垃圾清理装置
CN108316449B (zh) 一种透水箅箅体上表面加网泄水孔带开关门的透水箅
CN212612767U (zh) 一种无能耗雨水收集装置
JP5366633B2 (ja) 網場設備
KR20140024036A (ko) 수질 정화기 겸용 자동 어도를 이용하여 자연생태계를 복원시켜주면서 비중이 무거운 깨끗한 하천수들을 우선적으로 배출하여 오염된 하천수를 자연적으로 정화시키는 자연친화적인 친환경 공법
CN208166802U (zh) 一种河道生态修复系统
KR20180025770A (ko) 저수지 또는 하천의 수면에서 부유물 청소장치
CN219908857U (zh) 一种具有收集功能的河道挡墙
JP3961702B2 (ja) 取水口への浮遊物流入防止装置
KR20140032517A (ko) 하천수를 다단계로 저장하여 전기를 생산함과 동시에 오염된 하천수를 정화시켜 주면서 자연생태계를 살려내는 자연 친화적인 수질정화 친환경 공법
CN219343077U (zh) 一种闸门水面漂浮物和淤泥自动清理装置
CN214460249U (zh) 一种水利工程闸口处的垃圾自动清理装置

Legal Events

Date Code Title Description
121 Ep: the epo has been informed by wipo that ep was designated in this application

Ref document number: 18909597

Country of ref document: EP

Kind code of ref document: A1

NENP Non-entry into the national phase

Ref country code: DE

32PN Ep: public notification in the ep bulletin as address of the adressee cannot be established

Free format text: NOTING OF LOSS OF RIGHTS PURSUANT TO RULE 112(1) EPC (EPO FORM 1205A DATED 16/02/2021)

122 Ep: pct application non-entry in european phase

Ref document number: 18909597

Country of ref document: EP

Kind code of ref document: A1