CN207739331U - Self-cleaning formula water supply cistern system - Google Patents
Self-cleaning formula water supply cistern system Download PDFInfo
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- CN207739331U CN207739331U CN201820000508.5U CN201820000508U CN207739331U CN 207739331 U CN207739331 U CN 207739331U CN 201820000508 U CN201820000508 U CN 201820000508U CN 207739331 U CN207739331 U CN 207739331U
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- XLYOFNOQVPJJNP-UHFFFAOYSA-N water Substances O XLYOFNOQVPJJNP-UHFFFAOYSA-N 0.000 title claims abstract description 170
- 238000004140 cleaning Methods 0.000 title claims abstract description 20
- 238000007689 inspection Methods 0.000 claims abstract description 18
- 238000005192 partition Methods 0.000 claims description 15
- 230000004888 barrier function Effects 0.000 claims description 8
- 239000000203 mixture Substances 0.000 claims description 2
- 238000009434 installation Methods 0.000 claims 5
- 238000007789 sealing Methods 0.000 claims 2
- 239000010802 sludge Substances 0.000 claims 1
- 238000003860 storage Methods 0.000 abstract description 11
- 238000011010 flushing procedure Methods 0.000 abstract description 8
- 239000013049 sediment Substances 0.000 abstract description 3
- 238000004519 manufacturing process Methods 0.000 abstract description 2
- 239000004020 conductor Substances 0.000 abstract 1
- 125000006850 spacer group Chemical group 0.000 abstract 1
- 238000005406 washing Methods 0.000 abstract 1
- 229910000831 Steel Inorganic materials 0.000 description 10
- 239000010959 steel Substances 0.000 description 10
- 239000012535 impurity Substances 0.000 description 6
- 238000000034 method Methods 0.000 description 5
- 230000008021 deposition Effects 0.000 description 2
- 238000001914 filtration Methods 0.000 description 2
- 238000010276 construction Methods 0.000 description 1
- 238000010586 diagram Methods 0.000 description 1
- 238000007599 discharging Methods 0.000 description 1
- 238000007726 management method Methods 0.000 description 1
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Abstract
本实用新型公开了一种自洁式供水蓄水池系统,由顶盖、输水管、出气管、弯管、过滤网、出气孔、进水管、水箱外壁、中空区、水箱内壁、出水管、导线、滤水管、过滤器、冲水口、下水孔、支架、阻隔板、隔板、垫块、止回阀、滤水口、加压泵、罐底、检查口、折页、检查口盖和滤水入口组成;通过进水管进水储存,通过出水管出水使用。开启加压泵,经过输水管、止回阀和加压泵进入过滤器,滤渣经滤水管排出。清水经输水管通过滤水入口进入中空区,经过冲水口时被加速,将罐底表面上沉积物冲刷进入滤水口,如此循环下去,完成一种自洁式供水蓄水池系统自净处理工作。该装置制作成本低,操作简便,适用范围广,便于普及使用和推广。
The utility model discloses a self-cleaning water supply storage tank system, which consists of a top cover, a water delivery pipe, an air outlet pipe, an elbow, a filter screen, an air outlet hole, a water inlet pipe, an outer wall of a water tank, a hollow area, an inner wall of the water tank, an outlet pipe, Conductors, filter pipes, filters, flush ports, drain holes, brackets, baffles, baffles, spacers, check valves, filter ports, booster pumps, tank bottoms, inspection ports, hinges, inspection port covers, and filters The water inlet is composed of; the water is stored through the water inlet pipe, and the water is discharged through the water outlet pipe for use. Turn on the booster pump, and enter the filter through the water delivery pipe, check valve and booster pump, and the filter residue is discharged through the water filter pipe. Clean water enters the hollow area through the water pipe through the filter inlet, and is accelerated when passing through the flushing outlet, washing the sediment on the bottom surface of the tank into the filter outlet, so that the cycle continues, and the self-cleaning treatment of a self-cleaning water supply and storage tank system is completed. The device has low manufacturing cost, simple and convenient operation, wide application range, and is convenient for popularization and promotion.
Description
技术领域technical field
本实用新型涉及一种可以实现自我清洁的供水蓄水池系统装置。The utility model relates to a water supply storage tank system device capable of realizing self-cleaning.
背景技术Background technique
在我们的日常生活中,如城市公共供水或自建设施供水等,经常用到二次供水,而且二次供水是高层供水的唯一选择方式。二次供水设施是否按规定建设、设计及建设的优劣直接关系到二次供水水质、水压和供水安全,与人民群众正常稳定的生活密切相关,但在我们的现实生活中,由于设施陈旧、管理薄弱等问题,使二次供水存在隐患。因此,开发一种自洁式供水蓄水池系统,在保证正常供水的同时,专职还能便于冲洗,能够自我清洁的蓄水池系统,成为人们安全用水的迫切需求。为解决上述问题,本实用新型开发一种自洁式供水蓄水池系统装置,该装置结构简单、经济环保,便于推广使用。In our daily life, such as urban public water supply or water supply of self-built facilities, secondary water supply is often used, and secondary water supply is the only choice for high-rise water supply. Whether the secondary water supply facilities are built in accordance with the regulations, the quality of design and construction is directly related to the water quality, water pressure and water supply safety of the secondary water supply, and is closely related to the normal and stable life of the people. However, in our real life, due to the outdated facilities , weak management and other issues, so that there are hidden dangers in the secondary water supply. Therefore, to develop a self-cleaning water supply storage tank system, while ensuring normal water supply, can also be convenient for flushing, and a self-cleaning storage tank system has become an urgent need for people to use safe water. In order to solve the above problems, the utility model develops a self-cleaning water supply storage tank system device, which is simple in structure, economical and environmentally friendly, and is easy to popularize and use.
发明内容Contents of the invention
本实用新型的目的在于开发一种可以实现自我清洁的供水蓄水池系统装置,装置制作成本低,运行简便,适用范围广,便于普及使用和推广。The purpose of the utility model is to develop a self-cleaning water supply reservoir system device, which has low manufacturing cost, simple operation, wide application range, and is convenient for popularization and promotion.
为了实现上述目的,本实用新型的主体结构包括顶盖、输水管、出气管、弯管、过滤网、出气孔、进水管、水箱外壁、中空区、水箱内壁、出水管、导线、滤水管、过滤器、冲水口、下水孔、支架、阻隔板、隔板、垫块、止回阀、滤水口、加压泵、罐底、检查口、折页、检查口盖和滤水入口组成:设置一个圆形的水箱外壁,在水箱外壁的下方密封安装一个倒拱形的罐底,在水箱外壁的上方密封安装一个顶盖,在顶盖上开设一个检查口,在检查口的边缘固定安装两个折页,在两个折页上都安装一个检查口盖。在顶盖上开设一个出气孔,在顶盖上方出气孔位置处固定安装一个出气管,在出气管的顶部无缝安装一个弯管,在弯管内固定安装一个过滤网。在水箱外壁的上部安装一个进水管,在水箱外壁的内部、顶盖的下方密封安装一个圆形的水箱内壁,水箱外壁和水箱内壁之间形成一个环形的中空区,在水箱内壁的下方密封安装一个圆形隔板,在水箱外壁的下部、隔板上方位置处安装一根出水管,在隔板上开设下水孔,下水孔的形状为上下粗、中间细的结构。在隔板下方的圆心位置处刚性安装一根支架,在支架的下方刚性安装一个拱形阻隔板,在水箱外壁和罐底的连接处固定安装一个圆环形的缩口垫块,缩口垫块的横截面为三角形,水箱内壁和缩口垫块在中空区的下方围合成一个环形的冲水口。在水箱外壁的上部开设一个滤水入口,在罐底的圆心位置处开设一个滤水口,在罐底下方的滤水口位置处固定安装一根输水管,在输水管上安装一个止回阀,在输水管上远离止回阀和滤水口的一侧安装一个加压泵,在输水管上远离滤水口和加压泵的一侧安装一个过滤器,在过滤器的滤渣出口处安装一根滤水管,在过滤器的清水出口处安装一根输水管与滤水入口相连,利用导线为过滤器和加压泵供电。In order to achieve the above object, the main structure of the utility model includes a top cover, a water delivery pipe, an air outlet pipe, an elbow, a filter screen, an air outlet hole, a water inlet pipe, an outer wall of a water tank, a hollow area, an inner wall of a water tank, an outlet pipe, a wire, a water filter pipe, Filter, flushing port, drain hole, bracket, barrier plate, partition, pad, check valve, water filter port, booster pump, tank bottom, inspection port, hinge, inspection port cover and water filter inlet Composition: Settings A circular water tank outer wall, an inverted arch tank bottom is sealed and installed under the outer wall of the water tank, a top cover is sealed and installed above the outer wall of the water tank, an inspection opening is opened on the top cover, and two inspection ports are fixedly installed on the edge of the inspection port. hinges, with an inspection flap installed on both hinges. An air outlet is provided on the top cover, an air outlet pipe is fixedly installed at the position of the air outlet above the top cover, an elbow is seamlessly installed on the top of the air outlet pipe, and a filter screen is fixedly installed in the elbow. A water inlet pipe is installed on the upper part of the outer wall of the water tank, and a circular inner wall of the water tank is sealed and installed inside the outer wall of the water tank and under the top cover. A ring-shaped hollow area is formed between the outer wall of the water tank and the inner wall of the water tank, and it is installed under the inner wall of the water tank. A circular clapboard, an outlet pipe is installed at the bottom of the outer wall of the water tank and the position above the clapboard, and a drain hole is set on the clapboard. The shape of the drain hole is thick up and down and thin in the middle. A bracket is rigidly installed at the center of the circle under the partition, an arched barrier is rigidly installed under the bracket, and a ring-shaped necking pad is fixedly installed at the connection between the outer wall of the water tank and the bottom of the tank. The cross section of the block is triangular, and the inner wall of the water tank and the necking cushion block form an annular flushing port under the hollow area. A water filter inlet is set on the upper part of the outer wall of the water tank, a water filter port is opened at the center of the tank bottom, a water delivery pipe is fixedly installed at the position of the water filter outlet under the tank bottom, and a check valve is installed on the water delivery pipe. Install a booster pump on the side of the water delivery pipe away from the check valve and the water filter port, install a filter on the side of the water delivery pipe away from the water filter port and the pressurized pump, and install a filter pipe at the filter residue outlet of the filter , a water delivery pipe is installed at the clear water outlet of the filter to be connected with the filtered water inlet, and a wire is used to supply power to the filter and the booster pump.
一种自洁式供水蓄水池系统正常工作状态为通过进水管进水储存,通过出水管出水使用。当一种自洁式供水蓄水池系统需要进行清洁时,开启加压泵,水箱内的水在加压泵的作用下,进入滤水口,经过输水管、止回阀和加压泵进入过滤器,滤渣经滤水管排出,并进行进一步处理。经过过滤器过滤后的清水经输水管通过滤水入口进入中空区,过滤后的清水在中空区内部沿着水箱外壁和水箱内壁向下流动,经过冲水口时,由于冲水口的宽度比中空区的宽度变窄,按照文丘里原理,清水经过时会被加速,经过加速后的清水将罐底表面上沉积物冲刷进入滤水口,并经过过滤器过滤,如此循环下去。当加压泵开启后,水流循环流动过程中,水箱内壁内的水也会通过隔板进入滤水口参与过滤循环流动,当水箱内壁内的水经过隔板时,由于隔板上的下水孔的形状也是为上下粗、中间细的文丘里结构,因此水流经过时也会被加速,可以有效地防止杂质沉积,隔板下方的阻隔板则可以有效地防止经罐底反弹后带有杂质的水流经下水孔进入水箱内壁内。当滤水管的出水和杂质减少的规定数量并相对稳定后,即可关闭加压泵,完成一种自洁式供水蓄水池系统自净处理工作。A self-cleaning water supply and storage tank system is in a normal working state of storing water through a water inlet pipe and discharging water through a water outlet pipe for use. When a self-cleaning water supply and storage tank system needs to be cleaned, the booster pump is turned on, and the water in the water tank enters the water filter port under the action of the booster pump, and enters the filter through the water delivery pipe, check valve and booster pump. filter, and the filter residue is discharged through the filter pipe for further processing. The clean water filtered by the filter enters the hollow area through the water pipe through the water filter inlet, and the filtered clean water flows downward along the outer wall of the water tank and the inner wall of the water tank inside the hollow area. The width of the tank is narrowed. According to the Venturi principle, the clean water will be accelerated when it passes through, and the accelerated clean water will wash the sediment on the bottom surface of the tank into the water filter port, and filter through the filter, so that the cycle continues. When the booster pump is turned on, during the water circulation process, the water in the inner wall of the water tank will also enter the filter port through the partition to participate in the filtration circulation. The shape is also a Venturi structure with thick top and bottom and thin middle, so the water flow will be accelerated when passing through, which can effectively prevent the deposition of impurities, and the barrier plate under the partition can effectively prevent the water flow with impurities after rebounding from the bottom of the tank Enter the inner wall of the water tank through the water hole. When the effluent of the water filter pipe and the specified amount of impurities are reduced and relatively stable, the booster pump can be turned off to complete the self-cleaning process of a self-cleaning water supply and storage tank system.
附图说明Description of drawings
图1为本实用新型的主体结构原理示意图。Fig. 1 is the principle schematic diagram of the main structure of the utility model.
图2为本实用新型的主体结构俯视图。Fig. 2 is a top view of the main structure of the utility model.
图3为本实用新型的隔板结构俯视图。Fig. 3 is a top view of the partition structure of the present invention.
具体实施方式Detailed ways
下面结合附图并通过实施例作进一步的说明。Further description will be given below in conjunction with the accompanying drawings and examples.
实施例:Example:
本实施例的主体结构包括顶盖1、输水管2、出气管3、弯管4、过滤网5、出气孔6、进水管7、水箱外壁8、中空区9、水箱内壁10、出水管11、导线12、滤水管13、过滤器14、冲水口15、下水孔16、支架17、阻隔板18、隔板19、垫块20、止回阀21、滤水口22、加压泵23、罐底24、检查口25、折页26、检查口盖27和滤水入口28组成:设置一个直径3000cm高2000cm厚1cm的钢制圆形的水箱外壁8,在水箱外壁8的下方密封安装一个直径3000cm高500cm的钢制倒拱形的罐底24,在水箱外壁8的上方密封安装一个直径3000cm厚2cm的钢制顶盖1,在顶盖1上开设一个长80cm宽80cm的检查口25,在检查口25的边缘固定安装两个折页26,在两个折页26上都安装一个长82cm宽82cm厚1cm的钢制检查口盖27。在顶盖1上开设一个直径15cm的出气孔6,在顶盖1上方出气孔6位置处固定安装一个直径15cm高30cm的钢制出气管3,在出气管3的顶部无缝安装一个钢制弯管4,在弯管4内固定安装一个直径15cm的过滤网5。在水箱外壁8的上部安装一个直径30cm的进水管7,在水箱外壁8的内部、顶盖1的下方密封安装一个直径2500cm高2000cm厚1cm的钢制圆形的水箱内壁10,水箱外壁8和水箱内壁10之间形成一个环形的中空区9,在水箱内壁10的下方密封安装一个直径2500cm厚3cm的钢制圆形隔板19,在水箱外壁8的下部、隔板19上方位置处安装一根直径30cm的出水管11,在隔板19上开设500个下水孔16,下水孔16的上、下直径都是为10cm,中间位置的孔直径为7cm,下水孔16的形状为上下粗、中间细的结构。在隔板19下方的圆心位置处刚性安装一根长10cm直径2cm的钢制支架17,在支架17的下方刚性安装一个直径50cm高8cm的钢制拱形阻隔板18,在水箱外壁8和罐底24的连接处固定安装一个圆环形的缩口垫块20,缩口垫块20的横截面为高5cm的三角形,水箱内壁10和缩口垫块20在中空区9的下方围合成一个环形的冲水口15。在水箱外壁8的上部开设一个直径40cm的滤水入口28,在罐底24的圆心位置处开设一个直径40cm的滤水口22,在罐底24下方的滤水口22位置处固定安装一根直径40cm的输水管2,在输水管2上安装一个止回阀21,在输水管2上远离止回阀21和滤水口22的一侧安装一个加压泵23,在输水管2上远离滤水口22和加压泵23的一侧安装一个长50cm宽50cm高50cm的过滤器14,在过滤器14的滤渣出口处安装一根直径20cm的滤水管13,在过滤器14的清水出口处安装一根输水管2与滤水入口28相连,利用导线12为过滤器14和加压泵23供电。The main structure of this embodiment includes a top cover 1, a water delivery pipe 2, an air outlet pipe 3, an elbow 4, a filter screen 5, an air outlet 6, a water inlet pipe 7, an outer wall of the water tank 8, a hollow area 9, an inner wall of the water tank 10, and a water outlet pipe 11 , wire 12, water filter pipe 13, filter 14, flushing port 15, water hole 16, bracket 17, barrier plate 18, partition plate 19, cushion block 20, check valve 21, water filter port 22, booster pump 23, tank Bottom 24, inspection port 25, hinge 26, inspection port cover 27 and filter water inlet 28 form: a steel circular water tank outer wall 8 with a diameter of 3000cm and a height of 2000cm thick 1cm is set, and a diameter 3000cm high 500cm steel inverted arched tank bottom 24, a steel top cover 1 with a diameter of 3000cm and a thickness of 2cm is sealed above the water tank outer wall 8, and an inspection port 25 with a length of 80cm and a width of 80cm is set on the top cover 1. Two hinges 26 are fixedly installed on the edge of inspection port 25, and a steel inspection port cover 27 of a long 82cm wide 82cm thick 1cm is all installed on two hinges 26. An air outlet 6 with a diameter of 15 cm is set on the top cover 1, a steel air outlet pipe 3 with a diameter of 15 cm and a height of 30 cm is fixedly installed at the position of the air outlet 6 above the top cover 1, and a steel air outlet pipe 3 is seamlessly installed on the top of the air outlet pipe 3. Elbow 4, a filter screen 5 with a diameter of 15cm is fixedly installed in the elbow 4. A water inlet pipe 7 with a diameter of 30cm is installed on the top of the water tank outer wall 8, and a steel circular water tank inner wall 10 with a diameter of 2500cm, a height of 2000cm, and a thickness of 1cm is installed in the inside of the water tank outer wall 8, the bottom of the top cover 1, and the water tank outer wall 8 and An annular hollow area 9 is formed between the inner walls 10 of the water tank. A steel circular partition 19 with a diameter of 2500 cm and a thickness of 3 cm is installed under the inner wall 10 of the water tank. The water outlet pipe 11 of root diameter 30cm offers 500 water holes 16 on the dividing plate 19, the upper and lower diameters of the water holes 16 are all 10cm, the hole diameter in the middle position is 7cm, and the shape of the water holes 16 is thick up and down, Medium fine structure. A steel support 17 with a length of 10 cm and a diameter of 2 cm is rigidly installed at the center of circle position below the dividing plate 19, and a steel arched barrier plate 18 with a diameter of 50 cm and a height of 8 cm is rigidly installed under the support 17. On the outer wall of the water tank 8 and the tank The junction of the bottom 24 is fixedly installed with a ring-shaped necking pad 20, the cross section of the necking pad 20 is a triangle with a height of 5 cm, and the water tank inner wall 10 and the necking pad 20 form a circle under the hollow area 9. Annular flushing outlet 15. A water filter inlet 28 with a diameter of 40 cm is set on the top of the outer wall 8 of the water tank, a water filter port 22 with a diameter of 40 cm is set at the center of the tank bottom 24, and a 40 cm diameter filter is fixedly installed at the water filter port 22 position below the tank bottom 24. Install a check valve 21 on the water delivery pipe 2, install a booster pump 23 on the side of the water delivery pipe 2 away from the check valve 21 and the water filter port 22, and install a booster pump 23 on the water delivery pipe 2 away from the water filter port 22 A filter 14 with a length of 50 cm, a width of 50 cm, and a height of 50 cm is installed on one side of the booster pump 23, a filter pipe 13 with a diameter of 20 cm is installed at the filter residue outlet of the filter 14, and a filter pipe 13 is installed at the clear water outlet of the filter 14. The water pipe 2 is connected to the filtered water inlet 28, and the wire 12 is used to supply power to the filter 14 and the booster pump 23.
一种自洁式供水蓄水池系统正常工作状态为通过进水管7进水储存,通过出水管11出水使用。当一种自洁式供水蓄水池系统需要进行清洁时,开启加压泵23,水箱内的水在加压泵23的作用下,进入滤水口22,经过输水管2、止回阀21和加压泵23进入过滤器14,滤渣经滤水管13排出,并进行进一步处理。经过过滤器14过滤后的清水经输水管2通过滤水入口28进入中空区9,过滤后的清水在中空区9内部沿着水箱外壁8和水箱内壁10向下流动,经过冲水口15时,由于冲水口15的宽度比中空区9的宽度变窄,按照文丘里原理,清水经过时会被加速,经过加速后的清水将罐底24表面上沉积物冲刷进入滤水口22,并经过过滤器14过滤,如此循环下去。当加压泵23开启后,水流循环流动过程中,水箱内壁10内的水也会通过隔板19进入滤水口22参与过滤循环流动,当水箱内壁10内的水经过隔板19时,由于隔板19上的下水孔16的形状也是为上下粗、中间细的文丘里结构,因此水流经过时也会被加速,可以有效地防止杂质沉积,隔板19下方的阻隔板18则可以有效地防止经罐底24反弹后带有杂质的水流经下水孔16进入水箱内壁10内。当滤水管13的出水和杂质减少的规定数量并相对稳定后,即可关闭加压泵23,完成一种自洁式供水蓄水池系统自净处理工作。A self-cleaning water supply storage tank system normally works as water is stored through the water inlet pipe 7, and water is discharged through the water outlet pipe 11 for use. When a self-cleaning water supply reservoir system needs to be cleaned, the booster pump 23 is turned on, and the water in the water tank enters the water filter port 22 under the action of the booster pump 23, and passes through the water delivery pipe 2, the check valve 21 and The booster pump 23 enters the filter 14, and the filter residue is discharged through the water filter pipe 13 for further processing. The clear water filtered by the filter 14 enters the hollow area 9 through the water delivery pipe 2 through the filtered water inlet 28, and the filtered clear water flows downward along the outer wall 8 of the water tank and the inner wall 10 of the water tank in the hollow area 9, and when passing through the flushing port 15, Since the width of the flushing port 15 is narrower than the width of the hollow area 9, according to the Venturi principle, the clear water will be accelerated when passing through, and the accelerated clear water will wash the sediment on the surface of the tank bottom 24 into the water filter port 22 and pass through the filter 14 filtering, and so on. After the booster pump 23 is turned on, during the water circulation process, the water in the water tank inner wall 10 will also enter the water filter port 22 to participate in the filter circulation through the partition 19. When the water in the water tank inner wall 10 passes through the partition 19, due to the partition The shape of the drain hole 16 on the plate 19 is also a Venturi structure with a thick top and bottom and a thin middle, so the water flow will also be accelerated when it passes by, which can effectively prevent the deposition of impurities, and the barrier plate 18 below the barrier plate 19 can effectively prevent it. After rebounding at the bottom of the tank 24, the water with impurities flows through the water hole 16 and enters the inner wall 10 of the water tank. When the effluent of the filter pipe 13 and the specified amount of impurities are reduced and relatively stable, the booster pump 23 can be turned off to complete the self-cleaning process of a self-cleaning water supply storage tank system.
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Cited By (2)
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CN107842066A (en) * | 2018-01-02 | 2018-03-27 | 青岛理工大学 | Self-cleaning formula water supply cistern system |
CN111501910A (en) * | 2020-04-26 | 2020-08-07 | 浙江洪福环保有限公司 | Secondary water supply tank convenient to clean |
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Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
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CN107842066A (en) * | 2018-01-02 | 2018-03-27 | 青岛理工大学 | Self-cleaning formula water supply cistern system |
CN111501910A (en) * | 2020-04-26 | 2020-08-07 | 浙江洪福环保有限公司 | Secondary water supply tank convenient to clean |
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