WO2018157846A1 - 一种用于卫生间的侧立式中水储水及处理回用系统 - Google Patents

一种用于卫生间的侧立式中水储水及处理回用系统 Download PDF

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Publication number
WO2018157846A1
WO2018157846A1 PCT/CN2018/077809 CN2018077809W WO2018157846A1 WO 2018157846 A1 WO2018157846 A1 WO 2018157846A1 CN 2018077809 W CN2018077809 W CN 2018077809W WO 2018157846 A1 WO2018157846 A1 WO 2018157846A1
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WO
WIPO (PCT)
Prior art keywords
water storage
toilet
water
tank
pipe
Prior art date
Application number
PCT/CN2018/077809
Other languages
English (en)
French (fr)
Inventor
王凤蕊
李希成
贾晓艳
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王凤蕊
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Filing date
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Application filed by 王凤蕊 filed Critical 王凤蕊
Publication of WO2018157846A1 publication Critical patent/WO2018157846A1/zh

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    • CCHEMISTRY; METALLURGY
    • C02TREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02FTREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02F1/00Treatment of water, waste water, or sewage
    • C02F1/001Processes for the treatment of water whereby the filtration technique is of importance
    • EFIXED CONSTRUCTIONS
    • E03WATER SUPPLY; SEWERAGE
    • E03BINSTALLATIONS OR METHODS FOR OBTAINING, COLLECTING, OR DISTRIBUTING WATER
    • E03B1/00Methods or layout of installations for water supply
    • E03B1/04Methods or layout of installations for water supply for domestic or like local supply
    • E03B1/041Greywater supply systems
    • EFIXED CONSTRUCTIONS
    • E03WATER SUPPLY; SEWERAGE
    • E03BINSTALLATIONS OR METHODS FOR OBTAINING, COLLECTING, OR DISTRIBUTING WATER
    • E03B1/00Methods or layout of installations for water supply
    • E03B1/04Methods or layout of installations for water supply for domestic or like local supply
    • E03B1/041Greywater supply systems
    • E03B1/042Details thereof, e.g. valves or pumps
    • EFIXED CONSTRUCTIONS
    • E03WATER SUPPLY; SEWERAGE
    • E03CDOMESTIC PLUMBING INSTALLATIONS FOR FRESH WATER OR WASTE WATER; SINKS
    • E03C1/00Domestic plumbing installations for fresh water or waste water; Sinks
    • E03C1/12Plumbing installations for waste water; Basins or fountains connected thereto; Sinks
    • EFIXED CONSTRUCTIONS
    • E03WATER SUPPLY; SEWERAGE
    • E03CDOMESTIC PLUMBING INSTALLATIONS FOR FRESH WATER OR WASTE WATER; SINKS
    • E03C1/00Domestic plumbing installations for fresh water or waste water; Sinks
    • E03C1/12Plumbing installations for waste water; Basins or fountains connected thereto; Sinks
    • E03C1/122Pipe-line systems for waste water in building
    • EFIXED CONSTRUCTIONS
    • E03WATER SUPPLY; SEWERAGE
    • E03CDOMESTIC PLUMBING INSTALLATIONS FOR FRESH WATER OR WASTE WATER; SINKS
    • E03C1/00Domestic plumbing installations for fresh water or waste water; Sinks
    • E03C1/12Plumbing installations for waste water; Basins or fountains connected thereto; Sinks
    • E03C1/122Pipe-line systems for waste water in building
    • E03C1/1222Arrangements of devices in domestic waste water pipe-line systems
    • EFIXED CONSTRUCTIONS
    • E03WATER SUPPLY; SEWERAGE
    • E03CDOMESTIC PLUMBING INSTALLATIONS FOR FRESH WATER OR WASTE WATER; SINKS
    • E03C1/00Domestic plumbing installations for fresh water or waste water; Sinks
    • E03C1/12Plumbing installations for waste water; Basins or fountains connected thereto; Sinks
    • E03C1/122Pipe-line systems for waste water in building
    • E03C1/1222Arrangements of devices in domestic waste water pipe-line systems
    • E03C1/1227Arrangements of devices in domestic waste water pipe-line systems of pumps for facilitating drawing off
    • EFIXED CONSTRUCTIONS
    • E03WATER SUPPLY; SEWERAGE
    • E03DWATER-CLOSETS OR URINALS WITH FLUSHING DEVICES; FLUSHING VALVES THEREFOR
    • E03D11/00Other component parts of water-closets, e.g. noise-reducing means in the flushing system, flushing pipes mounted in the bowl, seals for the bowl outlet, devices preventing overflow of the bowl contents; devices forming a water seal in the bowl after flushing, devices eliminating obstructions in the bowl outlet or preventing backflow of water and excrements from the waterpipe
    • E03D11/02Water-closet bowls ; Bowls with a double odour seal optionally with provisions for a good siphonic action; siphons as part of the bowl
    • CCHEMISTRY; METALLURGY
    • C02TREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02FTREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02F2303/00Specific treatment goals
    • C02F2303/04Disinfection
    • EFIXED CONSTRUCTIONS
    • E03WATER SUPPLY; SEWERAGE
    • E03BINSTALLATIONS OR METHODS FOR OBTAINING, COLLECTING, OR DISTRIBUTING WATER
    • E03B1/00Methods or layout of installations for water supply
    • E03B1/04Methods or layout of installations for water supply for domestic or like local supply
    • E03B1/041Greywater supply systems
    • E03B2001/045Greywater supply systems using household water
    • EFIXED CONSTRUCTIONS
    • E03WATER SUPPLY; SEWERAGE
    • E03CDOMESTIC PLUMBING INSTALLATIONS FOR FRESH WATER OR WASTE WATER; SINKS
    • E03C2201/00Details, devices or methods not otherwise provided for
    • E03C2201/40Arrangement of water treatment devices in domestic plumbing installations
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02ATECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE
    • Y02A20/00Water conservation; Efficient water supply; Efficient water use
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02ATECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE
    • Y02A20/00Water conservation; Efficient water supply; Efficient water use
    • Y02A20/30Relating to industrial water supply, e.g. used for cooling

Definitions

  • the present application relates to the field of construction engineering technology, and in particular to a side vertical water storage and treatment reuse system for a toilet.
  • one is the concealed same-layer drainage system introduced from Europe.
  • the main method is to install the drainage horizontal branch pipe along the wall above the floor, and then cover the 1 meter high wall by decoration.
  • the drainage pipe; the second is the same layer of drainage that has been introduced since 2002 in China, that is, the drainage horizontal branch pipe is buried in the interlayer between the structural floor and the bathroom floor tile; the third is the introduction of the Japanese drainage collector.
  • the main practice is to make a multi-purpose plug that can connect several pipes at the same time.
  • the Chinese patent No. "02122992.9”, entitled “Kitchen Water Supply and Sewerage Crossing System Separation and Water Conveying Device”, discloses a new concept of kitchen water supply and drainage device, which has completely changed the traditional kitchen and toilet water supply and drainage installation. The way and shape save water and beautify the indoor space.
  • the water reuse of the building toilet drainage system must be adopted for the construction of new houses.
  • the structural floor slab sinking increases the construction cost and construction difficulty.
  • the purpose of the present application is to provide a side vertical water storage and treatment reuse system for a toilet, the water storage and treatment reuse system including a waste water storage tank, a middle water storage tank, and the middle water a toilet filling tank in the water storage tank;
  • the waste water storage tank is provided with a waste water inlet pipe and an overflow water pipe, and a disinfection device is arranged at the top of the waste water storage tank, the upper end of the waste water inlet pipe is connected to the disinfection device, and the waste water inlet pipe protrudes from the waste water
  • the water storage tank is connected to the toilet water collecting device, and the overflow water pipe communicates with the emptying device disposed at the bottom of the waste water storage tank;
  • the toilet water tank is connected to the middle water storage tank through the first pipeline to supply water to the toilet water tank, and the toilet water tank is connected to the toilet water inlet through the second pipeline to supply water to the toilet;
  • a filtering device is disposed between the middle water storage tank and the waste water storage tank, so that the water in the waste water storage tank is filtered and sent to the middle water storage tank.
  • the top of the waste water storage tank is provided with an inspection port.
  • a liquid level sensor is disposed in the toilet water tank.
  • the emptying device is one of a pluggable plunger, a pluggable floor drain, an emptying valve, an evacuation pump or a siphon evacuation inducing device.
  • the first pipeline is provided with a medium water pump.
  • a water-gas dual-purpose pump and an automatic intake valve are installed on the waste water inlet pipe.
  • the water-gas dual-purpose pump and the automatic intake valve are disposed outside the waste water storage tank.
  • the water and gas dual purpose pump and the automatic intake valve are disposed in a waste water storage tank.
  • the water collecting device is a water collecting tank disposed on the toilet chassis for collecting waste water.
  • the water tank is provided with a water pump for lifting the waste water to the waste water inlet pipe.
  • the present application also discloses a side vertical water storage and treatment recycling system for a toilet, wherein the middle water storage and treatment recycling system lifts the waste water into a waste water storage tank of the system through a lifting device, and Disinfecting and filtering the wastewater; the system is provided with a toilet inlet, the toilet inlet, the middle water storage and treatment recycling system is connected with the toilet to provide a water source for the toilet or the toilet tank;
  • the middle water storage and treatment recycling system is provided with a toilet sewage drainage socket, and the toilet water outlet is connected with the toilet sewage drainage socket, and communicates with the drainage riser through the toilet drainage connection pipe.
  • the medium water storage and treatment reuse system comprises a waste water storage tank and a middle water storage tank; the waste water storage tank is provided with a disinfection device; and the waste water storage tank and the middle water storage tank are provided with a filter
  • the lifting device lifts the waste water into the waste water storage tank; the toilet water inlet communicates with the middle water storage tank; the toilet drain connecting pipe passes through the middle water storage tank or the waste water storage tank and the drainage riser Connected.
  • the middle water storage and treatment recycling system further comprises a toilet water filling tank; the toilet water filling tank is disposed inside or at the top of the middle water storage tank, and the water inside the middle water storage tank is passed through the middle water pump Lift into the toilet tank.
  • the middle water storage and treatment reuse system is a tank structure, and the waste water storage tank and the middle water storage tank are both disposed inside the middle water storage and treatment reuse system.
  • the medium water storage and treatment reuse system comprises a waste water inlet pipe connected to a drain tank of the core module or a floor drain or a appliance drain outlet on the waste water drain pipe; the lifting device is arranged at The pipeline of the waste water inlet pipe or the inlet end of the water.
  • the medium water storage and treatment reuse system further comprises an overflow pipe, and the overflow pipe returns the overflowed wastewater to the waste water drainage pipe or the water tank of the core module through the emptying device or drains In the tube.
  • a section of the waste water inlet pipe and a section of the overflow pipe are disposed in the waste water storage tank, and the waste water drainage outlet at the bottom of the waste water storage tank is connected to the overflow pipe through the emptying device; the waste water inlet is opened at the side wall of the waste water storage tank Or bottom.
  • the emptying device is one or more of a pluggable plunger, a pluggable floor drain, an emptying valve, an evacuation pump or a siphon evacuation inducing device.
  • the lifting device is a combination of a water pump provided in the water tank or a water-gas dual-purpose pump and an automatic air inlet valve disposed on the waste water inlet pipe.
  • the outlet end of the toilet drain connection pipe is located at the back, side or bottom surface of the water storage and treatment recycling system.
  • the middle water storage tank or the toilet water tank directly replaces the water tank of the toilet itself.
  • the upper part of the toilet water tank is provided with a controller, and the controller is connected with a liquid level sensor that protrudes into the toilet water tank.
  • the drain riser is disposed on one side of the middle water storage and treatment reuse system or through the interior of the middle water storage and treatment module.
  • the top of the waste water storage tank is provided with an inspection port.
  • the present application also discloses a side vertical water storage and treatment recycling system for a toilet, the middle water storage and treatment recycling system comprising a water storage tank and a pipeline installation box; a toilet water inlet, the toilet water inlet communicates with the water tank to provide a water source for the toilet or the toilet water tank; the pipeline installation box is provided with a waste water inlet pipe; and the waste water is raised to the waste water through the lifting device connected to the waste water inlet pipe Inside the water tank.
  • the pipe installation box is further provided with an overflow pipe, the overflow pipe is connected to the water storage tank, a section of the communication emptying device or the waste water drainage pipe or the drainage riser, and the overflow pipe overflows the waste water through the emptying device. Return to the header tank of the core module or to the drain riser.
  • the pipe installation box is provided with a toilet drainage connection pipe, the surface is provided with a toilet sewage drainage socket, the toilet water outlet is connected with the toilet sewage drainage socket, and is connected with the drainage riser through the toilet drainage connection pipe.
  • the pipe installation box is installed with a drainage riser, and the drainage riser communicates with the toilet drainage connection pipe.
  • the upper portion of the water storage tank is provided with a controller, and the controller is connected to the liquid level sensor extending into the water storage tank.
  • the side wall or the top of the water storage tank is provided with a toilet drain button operation hole.
  • the lifting device is a combination of a water pump installed in the water tank or a water-gas dual-purpose pump and an automatic air inlet valve disposed on the waste water inlet pipe.
  • the outlet end of the toilet drain connection pipe is located at the back, side or bottom surface of the water storage and treatment recycling system.
  • the present application also discloses a side vertical water storage, treatment reuse and discharge system for a toilet, including a core module, a lifting device, a water storage and treatment reuse system, a wastewater drainage pipe and a drainage riser. ;
  • the core module is provided with a riser connection pipe, the drainage riser is connected to the riser connection pipe; the waste water drainage pipe collects waste water in the core module;
  • the lifting device lifts the wastewater in the core module to the middle water storage and treatment recycling system;
  • the middle water storage and treatment recycling system is provided with a toilet water inlet, and the toilet inlet port stores the water in the middle water
  • the treatment recycling system is in communication with the toilet to provide a water source for the toilet or the toilet tank.
  • the middle water storage and treatment recycling system is provided with a toilet sewage drainage socket, and the toilet water outlet is connected with the toilet sewage drainage socket, and communicates with the drainage riser through the toilet drainage connection pipe.
  • the toilet drain connection pipe is connected to the drainage riser by an elliptical, rectangular, semi-circular, circular or closed U-shaped section.
  • the riser connecting pipe is disposed in the core module; the core module further comprises a water collecting device; the water collecting device is provided with a water collecting tank for collecting waste water, and the top cover or the side wall of the water collecting tank is provided There is a waste water outlet connected to the waste water drainage pipe; the lifting device lifts the waste water from the water tank of the core module.
  • the medium water storage and treatment reuse system comprises a waste water storage tank and a middle water storage tank; the waste water storage tank is provided with a disinfection device; and the waste water storage tank and the middle water storage tank are provided with a filter
  • the lifting device lifts the waste water into the waste water storage tank; the toilet water inlet communicates with the middle water storage tank; and the toilet drain connecting pipe communicates with the drain riser through the middle water storage tank.
  • the medium water storage and treatment recycling system further comprises a toilet water filling tank; the toilet water filling tank is disposed inside or at the top of the middle water storage tank, and the water inside the middle water storage tank is passed through the middle water pump Lifting into the toilet water tank; the middle water storage tank and the waste water storage tank are connected by the filtering device.
  • the middle water storage and treatment reuse system is a tank structure, and the waste water storage tank and the middle water storage tank are both disposed inside the middle water storage and treatment reuse system.
  • the medium water storage and treatment reuse system comprises a waste water inlet pipe, and the waste water inlet pipe is connected to the core module; and the lifting device is disposed on the pipeline or the water inlet end of the waste water inlet pipe.
  • the medium water storage and treatment reuse system further comprises an overflow pipe, and the overflow pipe returns the overflowed wastewater to the waste water drainage pipe or the water tank of the core module through the emptying device or drains In the tube.
  • a section of the waste water inlet pipe and a section of the overflow pipe are disposed in the waste water storage tank, and the waste water drainage outlet at the bottom of the waste water storage tank is connected to the overflow water pipe through the emptying device; the waste water inlet is opened at the side of the waste water storage tank Wall or bottom.
  • the emptying device is one or more of a pluggable plunger, a pluggable floor drain, an emptying valve, an evacuation pump or a siphon evacuation inducing device.
  • the lifting device is a combination of a water pump installed in the water tank or a water and gas pump and an automatic air inlet valve disposed on the waste water inlet pipe.
  • the outlet end of the toilet drain connection pipe is located at the back, side or bottom surface of the water storage and treatment recycling system.
  • the middle water storage tank or the toilet water tank directly replaces the water tank of the toilet itself.
  • the upper part of the toilet water tank is provided with a controller, and the controller is connected with a liquid level sensor that protrudes into the toilet water tank.
  • the drain riser is disposed on one side of the intermediate water storage and treatment reuse system or through the interior of the intermediate water storage and treatment module.
  • the top of the waste water storage tank is provided with an inspection port.
  • the present application also discloses a side vertical water storage, treatment reuse and discharge system for a toilet, including a core module, a middle water storage and treatment reuse system, a waste water drainage pipe, a toilet drainage connection pipe and a drainage system.
  • a side vertical water storage, treatment reuse and discharge system for a toilet including a core module, a middle water storage and treatment reuse system, a waste water drainage pipe, a toilet drainage connection pipe and a drainage system.
  • the core module is provided with a riser connecting pipe and a water receiving tank; the drainage riser is connected to the riser connecting pipe; the water collecting tank is provided with a liquid sealing device corresponding to the position of the riser connecting pipe, and the wastewater drainage pipe is connected The water tank.
  • the medium water storage and treatment recycling system comprises a water storage tank and a pipeline installation box; the water storage tank or the pipeline installation box is provided with a toilet water inlet, and the toilet water inlet connects the water storage tank with the toilet, and is a toilet or a toilet.
  • the water tank provides a water source; the pipeline installation box is provided with a waste water inlet pipe;
  • the toilet water outlet of the toilet is in communication with the drain riser through the toilet drain connection pipe.
  • the pipe installation box is further provided with an overflow pipe, one end of which communicates with the water storage tank, one end communicates with the emptying device or the waste water drainage pipe or the drainage riser, and the overflowed wastewater is returned to the waste water through the emptying device.
  • an overflow pipe one end of which communicates with the water storage tank, one end communicates with the emptying device or the waste water drainage pipe or the drainage riser, and the overflowed wastewater is returned to the waste water through the emptying device.
  • the water tank of the core module or in the drain riser In the water tank of the core module or in the drain riser.
  • the drainage riser is installed in the pipeline installation box, and the drainage riser communicates with the toilet drainage connection pipe.
  • the upper part of the water storage tank is provided with a controller, and the controller is connected with a liquid level sensor extending into the water storage tank.
  • the side wall or the top of the water storage tank is provided with a toilet drain button operation hole.
  • the outlet end of the toilet drain connection pipe is located at the back, side or bottom surface of the water storage and treatment recycling system.
  • Wastewater drain pipe, toilet drain connection pipe, core module, medium water storage and treatment and reuse system are all assembled and assembled as integral parts in the factory. After the site, the waste water drain pipe is directly inserted into the waste water and toilet drain connection pipe of the core module. Through the connection of the three-way and riser connection pipes, the water storage and treatment reuse system directly bonds or quick-connects each reserved interface with the on-site pipe interface, that is, completes the installation of the drainage system and the water treatment system. The system can realize factory manufacturing, on-site assembly, and change the installation method of the pipe fittings of the current water supply and drainage system. The wash basin, the washing machine and the shower floor drain are discharged directly into the core module through the waste water drain pipe, and the toilet drainage is divided.
  • the discharge, the water tank and the water sealing device in the core module completely isolate the drainage riser and the toilet drainage connection pipe and the waste water drainage pipe, and cut off the passage of the odor in the riser and the toilet connection pipe to the indoor and the waste water drainage pipe. Cut off the route of the floor drain and back odor, and prevent indoor air pollution and floor drain back odor.
  • the top of the water tank of the core module is provided with an inspection port, which is convenient for clearing and maintenance, comprehensively solves the problems of leakage, odor and blockage of the current toilet drainage, and also uses the lifting device to remove the gray water inside the home (laundry, bathing, Bathing and draining) Collecting and handling on site will flush the toilet, saving tap water for flushing and increasing the utilization of tap water.
  • the indoor treatment of the use of the water avoiding the problem of mis-connection of the water pipe and the municipal reclaimed water in the current residential area, and the misunderstanding of the health of the residents, avoiding the intersection of different levels of sewage and tap water. Pollution, ensure drinking water is free from pollution and ensure water safety.
  • the single-family indoors can realize the treatment and reuse of the reclaimed water, without pipeline transportation, without high-pressure transportation, with the use of collection and treatment, energy saving and material saving, realizing the secondary utilization of mild wastewater by single households, environmental protection , saving, with good social and economic benefits.
  • the section height of the wastewater drainage pipe can be reduced and laid directly in the bathroom surface layer.
  • the toilet drain connection pipe is laid directly from the ground along the wall, or the elliptical or rectangular pipe is used to reduce the section directly laid in the surface layer.
  • the toilet is directly connected with the water storage and treatment recycling system. The installation is simple, accurate and reliable. It avoids the direct connection of the drainage pipe to the toilet. The height error of the drainage port caused by the difficulty of controlling the thickness of the floor decoration layer is difficult to install. Easy to leak the problem.
  • This application does not require a structural lowering plate.
  • the thickness of the bathroom surface layer only needs 80-100 mm. It is suitable for the industrial construction method of the residential building.
  • the same floor drainage, the user can choose the layout of the bathroom appliance and integrate the decoration design to beautify the indoor space.
  • FIG. 1 is a schematic view showing the overall structure of a side vertical water storage, treatment reuse and discharge system for a bathroom according to a first embodiment of the present application;
  • FIG. 2 is an enlarged structural view showing a water storage and treatment reuse system in the first embodiment of the present application
  • FIG. 3 is a view showing the internal structure of a water storage and treatment reuse system in the first embodiment of the present application
  • FIG. 4 is a view showing the overall structure of a side vertical water storage, treatment reuse and discharge system for a toilet according to a second embodiment of the present application;
  • Figure 5 is a view showing the overall structure of a side vertical water storage, treatment reuse and discharge system for a toilet in a third embodiment of the present application;
  • FIG. 6 is a view showing the overall structure of a side vertical water storage, treatment reuse and discharge system for a toilet according to a fourth embodiment of the present application;
  • Figure 7 is a view showing the overall structure of a side vertical water storage, treatment reuse and discharge system for a bathroom according to a fifth embodiment of the present application.
  • Figure 8 is a view showing the overall structure of a side vertical water storage, treatment reuse and discharge system for a toilet in a sixth embodiment of the present application;
  • Figure 9 is a view showing the internal structure of the water storage and treatment reuse system in the seventh embodiment of the present application.
  • Fig. 10 is a view showing the internal structure of the water storage and treatment reuse system in the eighth embodiment of the present application.
  • Embodiment 1 is a diagrammatic representation of Embodiment 1:
  • the first embodiment of the present application has an overall structure diagram of a modular water integrated system for a side vertical water storage, treatment reuse and discharge system of a toilet
  • FIG. 2 shows the first application of the present application.
  • the enlarged structural view of the core module of the embodiment, and the internal structure of the side vertical water storage, treatment reuse and discharge system of the first embodiment of the present application shown in FIG. 3 is shown in FIG.
  • the side vertical water storage, treatment reuse and discharge system for the toilet according to the present application is installed in the toilet, and together with the core module 10 of the toilet constitutes a modular water integration system, in order to make the content of the application more It can be explained that the overall structure of the above-mentioned modular water integrated system is explained in detail. As shown in FIG.
  • the modular water integration system includes a core module 10 , a medium water storage and treatment reuse system 20 , a wastewater drainage pipe 40 , a drainage riser 30 , and a core module 10 .
  • the riser is connected to the tube 50.
  • the toilet bowl 60 is disposed in front of the middle water storage and treatment reuse system 20, and connects the middle water storage and treatment reuse system 20 with the toilet 60 through the toilet inlet 2014 to provide a water source for the toilet 60.
  • the toilet water outlet 601 communicates with the toilet sewage drain socket of the middle water storage and treatment recycling system 20, and communicates with the drain riser 30 through the toilet water drain connection pipe 70 through the middle water storage and treatment reuse system 20 to realize the toilet 60. Sewage discharge inside.
  • the core module 10 includes a water collecting device, the water collecting device is provided with a water collecting tank 101 for collecting waste water below the bathroom floor, and a waste water outlet 102 opened on the top cover or the side wall of the water receiving tank 101, and the waste water outlet 102 is provided.
  • a liquid level sensor 104 is provided on the side.
  • One end of the wastewater drainage pipe 40 communicates with the appliance drain port, and the other end communicates with the water tank 101.
  • the appliance drain port includes, but is not limited to, a wash basin drain port, a shower drain port, and a washing machine drain port.
  • the appliance drain is provided with a filtering device to prevent foreign matter from entering the wastewater drain pipe 40.
  • the water tank 101 is provided with a water pump 106 for lifting the waste water to the waste water inlet pipe 105.
  • the water pump 106 communicates with the water storage and treatment system 20 through the waste water inlet pipe 105;
  • the tube is connected to the liquid sealing device 103 corresponding to the position of the tube.
  • the wastewater drainage pipe 40 discharges the domestic wastewater into the water collection tank 101 through the wastewater discharge port 401.
  • waste water inlet pipe 105 may also communicate with a floor drain or appliance drain outlet on the waste water drain pipe 40, and the waste water may be upgraded to the middle water storage and treatment reuse system 20 by a lifting device.
  • the side vertical water storage and treatment reuse system 20 for a toilet includes a waste water storage tank 202, a middle water storage tank 201, and a toilet water tank 2015 installed in the middle water storage tank 201.
  • the waste water storage tank 202 is provided with a waste water inlet pipe 105 and an overflow water pipe 2021.
  • a disinfection device 2022 is arranged at the top of the waste water storage tank 202.
  • the upper end of the waste water inlet pipe 105 communicates with the disinfection device 2022, and the lower end of the waste water inlet pipe 105 extends out of the waste water storage tank.
  • the overflow water pipe 2021 communicates with the emptying device 2024 or the wastewater drain pipe 40 or the drain riser 30 disposed at the bottom of the waste water storage tank 202.
  • the wastewater drainage outlet 2025 disposed at the bottom of the wastewater storage tank 202 communicates with the overflow water pipe 2021 through the evacuation device 2024.
  • the evacuation device 2024 is one or more of a pluggable plunger, a pluggable floor drain, an evacuation valve, an evacuation pump, or a siphon evacuation inducing device.
  • the overflow pipe 2021 returns the overflowed wastewater to the waste water drainage pipe 40 or the water collection tank 101 of the core module 10 or the drainage riser 30 through the evacuation device 2024.
  • a service port 2023 is provided at the top of the waste water storage tank 202 for easy cleaning and maintenance.
  • a filter device 2011 is disposed between the middle water storage tank 201 and the waste water storage tank 202, and the water in the waste water storage tank is filtered and sent to the middle water storage tank 201.
  • the middle water storage tank 201 is provided with a communication pipe 203 that communicates with the wastewater storage tank 202, and a filtration device 2011 is disposed in the communication pipe 203.
  • the toilet water tank 2015 communicates with the middle water pump 2012 located in the middle water storage tank 201 through the first pipe 2013 to supply water to the toilet water tank 2015, and the toilet water tank 2015 connects the toilet water inlet 2014 through the second pipe 2016 to supply water to the toilet.
  • a controller 2018 is disposed on the upper portion of the toilet water tank 2015.
  • the controller 2018 is connected to the liquid level sensor 2017 extending into the toilet water tank 2015 for detecting the water level in the toilet water tank 2015.
  • the toilet water outlet 601 communicates with the drain riser 30 through the toilet drain connection pipe 70 through the intermediate water storage tank 201 in the intermediate water storage and treatment reuse system 20.
  • the middle water storage tank 201 is provided with a cleaning device, it being understood that the cleaning device comprises a cleaning power mechanism and a cleaning tool mounted on the cleaning power mechanism.
  • the following describes the use process of the present application.
  • the domestic wastewater enters the waste water drain pipe 40 through the appliance drain port, and then enters the water transfer tank 101 of the core module 10. After the waste water enters the water seal device 103, the liquid level rises, and the water pump 106 starts to lift water.
  • the waste water is lifted to the waste water inlet pipe 105 and disinfected by the disinfection device at the top of the waste water storage tank 202, and then enters the waste water storage tank 202 of the middle water storage and treatment reuse system 20, and the waste water passes through the filter device in the communication pipe 203.
  • the filtered wastewater enters the middle water storage tank 201, and the medium water pump 2012 raises the water in the middle water storage tank 201 to the toilet water tank 2015 through the first pipeline 2013.
  • the control device 2018 controls the medium water pump 2012 to stop supplying water.
  • the toilet 60 is required to be flushed
  • the water in the toilet water tank 2015 enters the toilet 60 from the toilet water tank outlet pipe 2016, and the toilet is flushed.
  • the flushed water enters the drain riser 30 from the toilet through the toilet water outlet 601 and is discharged to the outside.
  • the waste water is returned to the water collection tank 101 by the overflow water pipe 2021, thereby effectively preventing waste of water source.
  • the design, the system of recycling, recycling, cleaning and structural protection of the water is more perfect and the system is more convenient and reliable for the user to use.
  • Washing basins, washing machines, shower floor drains and other waste water are directly discharged into the core module through the waste water drainage pipe, and are discharged with the toilet drainage channel, cutting off the route of the floor drain and returning odor, and facilitating clearing and maintenance, comprehensively solving the existence of the toilet drainage.
  • the problem of leakage, odor and blockage avoids the cross-contamination of different degrees of sewage, and realizes the secondary utilization of mild wastewater by single households.
  • Embodiment 2 is a diagrammatic representation of Embodiment 1:
  • the second embodiment of the present application has an overall structural diagram of a modular medium water integrated system for a side vertical water storage, treatment reuse and discharge system of a toilet.
  • a drainage The tube is disposed on the side of the middle water storage and treatment reuse system 20, and the waste water enters the middle water storage and treatment reuse system 20, and then enters into the toilet through the toilet inlet 2014 (not shown in the toilet), in the toilet
  • the used sewage is discharged from the toilet water outlet 601 through the toilet drainage connection pipe 70 to the drainage riser.
  • Embodiment 3 is a diagrammatic representation of Embodiment 3
  • the third embodiment of the present application has an overall structure diagram of a modular water-integrated system for a side vertical water storage, treatment reuse and discharge system of a toilet, and the embodiment and the second embodiment The difference is that the drain riser 30 runs through the interior of the intermediate water storage and treatment reuse system 20.
  • Embodiment 4 is a diagrammatic representation of Embodiment 4:
  • the overall structural diagram of the modular water-integrated system for the side vertical water storage, treatment reuse and discharge system of the toilet shown in FIG. 6 is different from the second embodiment: the toilet drainage connection
  • the outlet of the tube 70 communicates with the drain riser 30 at the lower surface of the module.
  • Embodiment 5 is a diagrammatic representation of Embodiment 5:
  • the overall structural diagram of the side vertical water storage, treatment reuse and discharge system for the toilet shown in FIG. 7 is different from the second embodiment in that the drainage riser is provided in the water module and the toilet. Between the toilet drains, the drain riser is directly connected.
  • the overall structural diagram of the side vertical water storage, treatment reuse and discharge system for the toilet shown in FIG. 8 is different from the fifth embodiment in that the outlet of the toilet drainage connection pipe 70 is under the module. The surface is connected to the drain riser 30.
  • FIG. 9 is a diagram showing the internal structure of a side vertical water storage and treatment reuse system for a bathroom according to a fourth embodiment of the present application.
  • the difference between this embodiment and the first embodiment is that the middle water storage tank 201 is not in the middle.
  • a medium water pump and a communication pipe connecting the middle water storage tank 201 and the waste water storage tank 202 are disposed, and a water and gas dual-purpose pump 1052 and an automatic intake valve 1051 are installed on the waste water inlet pipe 105.
  • the water-gas dual-purpose pump 1052 and the automatic intake valve 1051 are installed on the waste water inlet pipe 105 inside the waste water storage tank 202, and the filtering device 2011 is disposed between the middle water storage tank 201 and the waste water storage tank, and the waste water storage tank
  • the wastewater in 202 is filtered by the filtering device and then enters the middle water storage tank 201.
  • the wastewater enters the water collection tank, and the water and gas dual-purpose pump 1052 lifts the wastewater from the waste water outlet 102 into the waste water inlet pipe 105, and the waste water is disinfected by the disinfection device and then enters the waste water storage tank 202.
  • the automatic intake valve 1051 When the toilet needs water supply, the automatic intake valve 1051 is opened, and the water-gas dual-purpose pump 1052 is inflated into the waste water storage tank 202. As the air pressure rises, the waste water is filtered by the filter device 2011 and then enters the middle water storage tank 201, and enters. When the water tank is filled into the toilet, the liquid level sensor in the toilet water tank is exposed to water, the automatic intake valve 1051 is closed, the pressure is lost, and the water in the middle water storage tank 201 and the filtering device 2011 is returned to the waste water storage tank 202.
  • FIG. 10 is a diagram showing the internal structure of a side vertical water storage and treatment reuse system for a bathroom according to a fifth embodiment of the present application.
  • the difference between this embodiment and the fifth embodiment is: a water and gas dual-purpose pump 1052 and The automatic intake valve 1051 is disposed outside the waste water storage tank 202.
  • a filtering device 2011 is disposed between the middle water storage tank 201 and the wastewater storage tank, and the wastewater in the wastewater storage tank 202 is filtered by the filtering device and then enters the middle water storage tank 201.
  • the wastewater enters the water collection tank, and the water and gas dual-purpose pump 1052 lifts the wastewater from the waste water outlet 102 into the waste water inlet pipe 105, and the waste water is disinfected by the disinfection device and then enters the waste water storage tank 202.
  • the automatic intake valve 1051 is opened, and the water-gas dual-purpose pump 1052 is inflated into the waste water storage tank 202.
  • the waste water is filtered by the filter device 2011 and then enters the middle water storage tank 201, and enters.
  • the liquid level sensor in the toilet water tank is exposed to water, the automatic intake valve 1051 is closed, the pressure is lost, and the water in the middle water storage tank 201 and the filtering device 2011 is returned to the waste water storage tank 202.
  • the water storage and treatment reuse system 20 includes a water storage tank and a pipeline installation box; the water storage tank is provided with a toilet water inlet 2014, and the toilet water inlet 2014 connects the water storage tank with the toilet 60 to serve as a toilet 60 or a toilet water tank.
  • a water source is provided; a waste water inlet pipe 105 is disposed in the pipe installation box; and the waste water is lifted into the water storage tank through a lifting device connected to the waste water inlet pipe 105.
  • the pipe installation box is further provided with an overflow pipe 2021, the overflow pipe 2021 is connected to the water storage tank, a section of the communication emptying device 2024 or the wastewater drainage pipe 40 or the drainage riser 30, and the overflow pipe 2021 will overflow through the emptying device 2024.
  • the wastewater is returned to the header tank 101 of the core module 10 or to the drain riser 30.
  • a plumbing drainage connection pipe 70 is arranged in the pipeline installation box, a toilet sewage drainage socket is arranged on the surface, a toilet water outlet 601 is connected with the toilet sewage drainage socket, and the toilet drainage connection pipe 70 and the drainage riser are passed through the toilet. 30 connected.
  • a drain riser 30 is installed in the duct installation box, and the drain riser 30 communicates with the toilet drain connection pipe 70.
  • a controller 2018 is disposed at an upper portion of the water storage tank, and the controller 2018 is connected to a level sensor 2017 that extends into the water storage tank.
  • the side wall or the top of the water storage tank is provided with a toilet drain button operation hole.
  • the lifting device is a combination of a water pump 106 disposed in the water tank 101 or a water-gas dual-purpose pump 1052 and an automatic air inlet valve 1051 disposed on the waste water inlet pipe 105, see Figures 9, 10.
  • the outlet end of the toilet drain connection pipe 70 is located on the back, side or bottom surface of the water storage and treatment reuse system 20.
  • the side vertical water storage, treatment reuse and discharge system for the toilet includes a core module 10, a water storage and treatment reuse system 20, a wastewater drainage pipe 40, and a toilet drainage connection pipe. 70 and a drain riser 30;
  • the core module 10 is provided with a riser connection pipe 50 and a water tank 101; the drainage riser 30 is connected to the riser connection pipe 50; the water tank 101 is provided with a liquid sealing device 103 corresponding to the position of the riser connection pipe 50, and the waste water drainage pipe 40 Connect the water tank 101.
  • the water storage and treatment reuse system 20 includes a water storage tank and a pipeline installation box; the water storage tank or the pipeline installation box is provided with a toilet water inlet 2014, and the toilet water inlet 2014 communicates the water storage tank with the toilet 60 to serve as the toilet 60 or a toilet water tank provides a water source; the pipeline installation box is provided with a waste water inlet pipe 105;
  • the toilet water outlet 601 of the toilet 60 communicates with the drain riser 30 through the toilet drain connection pipe 70.
  • the pipe installation box is further provided with an overflow pipe 2021.
  • One end of the overflow pipe is connected to the water storage tank, and one end is connected to the emptying device 2024 or the waste water drainage pipe 40 or the drainage riser 30, and the overflowed wastewater is returned to the waste water through the emptying device 2024.
  • the water module 101 of the core module 10 is in the drain riser 30.
  • the drain riser 30 is installed in the duct installation box, and the drain riser 30 communicates with the toilet drain connection pipe 70.
  • the upper portion of the water storage tank is provided with a controller 2018 which is connected to a level sensor 2017 which projects into the water storage tank.
  • the side wall or the top of the water storage tank is provided with a toilet drain button operation hole.
  • the outlet end of the toilet drain connection pipe 70 is located on the back, side or bottom surface of the water storage and treatment reuse system 20.
  • the application can be applied to the industrialized construction mode of the house, does not need structural down-board, can be combined with the assembly-type overall decoration, is convenient to install, simple in construction, and can realize the collection and reuse of the indoor washing wastewater, and has the characteristics of environmental protection and economy.
  • the water sealing device described in the present application is preferably a u-shaped structure, but other structures having the same function are also included in the scope defined by the present application.
  • the utility model provides a modular water-integrated system, which can realize factory manufacturing, on-site assembly, and change the installation manner of the pipe fittings of the current water supply and drainage system.
  • the wash basin, the washing machine and the shower floor drain are directly discharged through the waste water drain pipe.
  • Into the core module discharge with the toilet drainage, cut off the transmission path of the floor drain and odor, and facilitate clearing and maintenance, comprehensively solve the problem of leakage, odor and blockage in the current bathroom drainage, and avoid different
  • the degree of cross-contamination of sewage has realized the secondary utilization of mild wastewater by single-family households, environmental protection, economy, and good social and economic benefits.

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Abstract

一种用于卫生间的侧立式中水储水及处理回用及排放系统,中水储水及处理回用系统(20)通过提升装置将废水提升至系统的废水储水箱(202)内,并对废水进行消毒和过滤处理;中水储水及处理回用系统(20)上开设有便器进水口(2014)便器进水口(2014)将中水储水及中水储水及处理回用系统(20)与便器(60)连通,为便器(60)或便器水箱提供水源。

Description

一种用于卫生间的侧立式中水储水及处理回用系统 技术领域
本申请涉及建筑工程技术领域,特别涉及一种用于卫生间的侧立式中水储水及处理回用系统。
背景技术
由于建筑自身构造原因,建筑室内排水系统大多存在严重的渗漏、返臭和产权不清的问题,而同层排水是解决产权不清的一种较好的途径。
目前同层排水技术有三种:一是从欧洲引进的隐蔽式同层排水系统,主要做法是将排水横支管道安装在楼板上方沿墙设置,然后,通过装修砌筑1米高的墙体隐蔽排水管道;二是我国自2002年起,开始引入的降板同层排水,也就是把排水横支管道埋在结构楼板和卫生间地板砖之间的夹层内;三是引进日本的排水集水器,主要做法是制作了一个可以同时连接几个管道的多用插头。
以上做法都是通过管道拼装连接而成,存在渗漏弊端,而且结构复杂,成本高,安装不方便,中水资源无法回收利用。
中国专利号“02122992.9”,名称为“厨卫给排水横支系统分离汇水装置”的申请专利公开了一种全新概念的厨卫给排水装置,该装置彻底改变了传统的厨卫给排水安装方式和形状,节约了用水,美化了室内空间,但该装置在近年的使用过程中,随着住宅产业化建造方式的推广和普及,发现其仍无法满足住宅产业化建造需求,无法满足已建建筑卫生间排水系统的中水利用改造,用于新建住宅必须采用结构楼板下沉方式,结构楼板下沉增加了土建造价和施工难度。
因此,需要一种能够有效防臭,避免不同程度污水交叉污染,实现了家庭单户对轻度废水的二次利用的模块化中水集成系统。
发明内容
本申请的目的在于提供一种用于卫生间的侧立式中水储水及处理回用系统,所述储水及处理回用系统包括废水储水箱、中水储水箱以及设置于所述中水储水箱内的便器充水箱;
所述废水储水箱内设有废水进水管和溢水管,在所述废水储水箱顶部设有消毒装置,所述废水进水管上端连通所述消毒装置,所述废水进水管下端伸出所述废水储水箱与卫生间汇水装置连通,所述溢水管连通设置于所述废水储水箱底部的排空装置;
所述便器充水箱通过第一管道连通所述中水储水箱为所述便器充水箱供水,所述便器充水箱通过第二管道连通便器进水口为便器供水;
所述中水储水箱与所述废水储水箱之间设有过滤装置,使废水储水箱中的水过滤后送至中水储水箱。
优选地,所述废水储水箱顶部设有检修口。
优选地,所述便器充水箱中设有液面感应器。
优选地,所述排空装置为可塞拔的插棒、可塞拔的地漏、排空阀、排空泵或虹吸排空引发装置的一种。
优选地,所述第一管道上设有中水泵。
优选地,所述废水进水管上安装水气两用泵和自动进气阀。
优选地,所述水气两用泵和所述自动进气阀设置于废水储水箱外。
优选地,所述水气两用泵和所述自动进气阀设置与废水储水箱内。
优选地,所述汇水装置为设置于卫生间底盘用于收集废水的汇水箱。
优选地,所述汇水箱内设有将废水提升至废水进水管的提水泵。
本申请还公开了一种用于卫生间的侧立式中水储水及处理回用系统,所述中水储水及处理回用系统通过提升装置将废水提升至系统的废水储水箱内,并对废水进行消毒和过滤处理;所述系统上开设有便器进水口所述便器进水口将中水储 水及处理回用系统与便器连通,为便器或便器水箱提供水源;
优选地,所述中水储水及处理回用系统上开设有便器污水排水插口,便器出水口与便器污水排水插口连通,并通过便器排水连接管与排水立管连通。
优选地,所述中水储水及处理回用系统包括废水储水箱和中水储水箱;所述废水储水箱内设置有消毒装置;所述废水储水箱与中水储水箱之间设置有过滤装置;所述提升装置将废水提升至废水储水箱内;所述便器进水口连通所述中水储水箱;便器排水连接管穿过所述中水储水箱或者废水储水箱与所述排水立管连通。
优选地,所述中水储水及处理回用系统还包括便器充水箱;所述便器充水箱设置在所述中水储水箱内部或者顶部,通过中水泵将所述中水储水箱内部的水提升至所述便器充水箱内。
优选地,所述中水储水及处理回用系统为箱体结构,所述废水储水箱和中水储水箱均设置在所述中水储水及处理回用系统内部。
优选地,所述中水储水及处理回用系统包括废水进水管,所述废水进水管与核心模块的汇水箱或废水排水管道上的地漏或器具排水出口相连通;所述提升装置设置在所述废水进水管的管路上或进水端部。
优选地,所述中水储水及处理回用系统还包括溢水管,所述溢水管通过排空装置将溢出的废水回流至所述废水排水管道或所述核心模块的汇水箱中或排水立管中。
优选地,废水进水管一段和溢水管一段均设置在所述废水储水箱内,所述废水储水箱底部的废水排水出口通过排空装置连通溢水管;废水进水口开设在废水储水箱的侧壁或底部。
优选地,所述排空装置为可塞拔的插棒、可塞拔的地漏、排空阀、排空泵或虹吸排空引发装置的一种或多种。
优选地,所述提升装置为设置在所述汇水箱内的提水泵或设置在所述废水进水管上水气两用泵和自动进气阀的组合。
优选地,所述便器排水连接管的出口端位于中水储水及处理回用系统背面、侧面或底面。
优选地,所述中水储水箱或便器充水箱直接替代便器自身的水箱使用。
优选地,所述便器充水箱上部设置有控制器,控制器与伸入至便器充水箱中的液面感应器相连接。
优选地,所述排水立管设置在中水储水及处理回用系统的一侧或贯穿于中水储水及处理模块的内部。
优选地,所述废水储水箱顶部设有检修口。
本申请还公开了一种用于卫生间的侧立式中水储水及处理回用系统,所述中水储水及处理回用系统包括储水箱和管道安装箱;所述储水箱上开设有便器进水口,所述便器进水口将储水箱与便器连通,为便器或便器水箱提供水源;所述管道安装箱内设置有废水进水管;通过连接在废水进水管上的提升装置将废水提升至储水箱内。
优选地,所述管道安装箱内还设置有溢水管,所述溢水管一段连通所述储水箱,一段连通排空装置或者废水排水管道或者排水立管,溢水管通过排空装置将溢出的废水回流至所述核心模块的汇水箱中或排水立管中。
优选地,所述管道安装箱内设有便器排水连接管,表面设有便器污水排水插口,便器出水口与便器污水排水插口连通,并通过便器排水连接管与排水立管连通。
优选地,所述管道安装箱内安装有排水立管,所述排水立管连通便器排水连接管。
优选地,所述储水箱上部设置有控制器,控制器与伸入至储水箱中的液面感 应器相连接。
优选地,所述储水箱的侧壁或顶部设有便器排水按钮操作孔。
优选地,所述提升装置为设置在所述汇水箱内的提水泵或设置在废水进水管上的水气两用泵和自动进气阀的组合。
优选地,所述便器排水连接管的出口端位于中水储水及处理回用系统背面、侧面或底面。
本申请还公开了一种用于卫生间的侧立式中水储水、处理回用及排放系统,包括核心模块、提升装置、中水储水及处理回用系统、废水排水管道和排水立管;
所述核心模块设有立管连接管,所述排水立管连接所述立管连接管;废水排水管道将废水收集在所述核心模块内;
所述提升装置将核心模块内废水提升至中水储水及处理回用系统内;所述中水储水及处理回用系统上开设有便器进水口,所述便器进水口将中水储水及处理回用系统与便器连通,为便器或便器水箱提供水源。
优选地,所述中水储水及处理回用系统上开设有便器污水排水插口,所述便器出水口与便器污水排水插口连通,并通过便器排水连接管与排水立管连通。
优选地,所述便器排水连接管连接排水立管的一段为椭圆形、矩形、半圆形、圆形或封闭U形断面。
优选地,所述立管连接管穿设在核心模块内;所述核心模块还包括汇水装置;所述汇水装置设置有用于收集废水的汇水箱,汇水箱的顶盖或侧壁上设有与废水排水管道连通的废水出水口;所述提升装置从核心模块的汇水箱内提升废水。
优选地,所述中水储水及处理回用系统包括废水储水箱和中水储水箱;所述废水储水箱内设置有消毒装置;所述废水储水箱与中水储水箱之间设置有过滤装置;所述提升装置将废水提升至废水储水箱内;所述便器进水口连通所述中水储水箱;便器排水连接管穿过所述中水储水箱与所述排水立管连通。
优选地,所述中水储水及处理回用系统还包括便器充水箱;所述便器充水箱设置在所述中水储水箱内部或顶部,通过中水泵将所述中水储水箱内部的水提升至所述便器充水箱内;所述中水储水箱与所述废水储水箱通过所述过滤装置连通。
优选地,所述中水储水及处理回用系统为箱体结构,所述废水储水箱和中水储水箱均设置在所述中水储水及处理回用系统内部。
优选地,所述中水储水及处理回用系统包括废水进水管,所述废水进水管与核心模块相连通;所述提升装置设置在所述废水进水管的管路上或进水端部。
优选地,所述中水储水及处理回用系统还包括溢水管,所述溢水管通过排空装置将溢出的废水回流至所述废水排水管道或所述核心模块的汇水箱中或排水立管中。
优选地,废水进水管的一段和溢水管的一段设置在所述废水储水箱内,所述废水储水箱底部的废水排水出口通过排空装置连通溢水管;废水进水口开设在废水储水箱的侧壁或底部。
优选地,所述排空装置为可塞拔的插棒、可塞拔的地漏、排空阀、排空泵或虹吸排空引发装置的一种或多种。
优选地,所述提升装置为设置在所述汇水箱内的提水泵或设置在所述废水进水管上的水气两用泵和自动进气阀的组合。
优选地,所述便器排水连接管的出口端位于中水储水及处理回用系统背面、侧面或底面。
优选地,所述中水储水箱或便器充水箱直接替代便器自身的水箱使用。
优选地,所述便器充水箱上部设置有控制器,控制器与伸入至便器充水箱中的液面感应器相连接。
优选地,所述排水立管设置在中水储水及处理回用系统的一侧或贯穿于中水 储水及处理模块的内部。
优选地,所述废水储水箱顶部设有检修口。
本申请还公开了一种用于卫生间的侧立式中水储水、处理回用及排放系统,包括核心模块、中水储水及处理回用系统、废水排水管道、便器排水连接管和排水立管;
所述核心模块设有立管连接管和汇水箱;所述排水立管连接所述立管连接管;所述汇水箱内设有与立管连接管位置对应的液封装置,废水排水管道连通所述汇水箱。
所述中水储水及处理回用系统包括储水箱和管道安装箱;所述储水箱或管道安装箱上开设有便器进水口,所述便器进水口将储水箱与便器连通,为便器或便器水箱提供水源;所述管道安装箱内设置有废水进水管;
所述便器的便器出水口通过便器排水连接管与排水立管连通。
优选地,所述管道安装箱内还设置有溢水管,所述溢水管一端连通所述储水箱,一端连通排空装置或者废水排水管道或者排水立管,通过排空装置将溢出的废水回流至所述核心模块的汇水箱中或排水立管中。
优选地,所述管道安装箱内安装所述排水立管,所述排水立管连通便器排水连接管。
优选地,所述储水箱上部设置有控制器,控制器与伸入至储水箱中的液面感应器相连接。
优选地,所述储水箱的侧壁或顶部设有便器排水按钮操作孔。
优选地,所述便器排水连接管的出口端位于中水储水及处理回用系统背面、侧面或底面。
本申请相对于现有技术具有如下优点:
1、废水排水管、便器排水连接管、核心模块、中水储水及处理回用系统均 在工厂制造装配为整体部件,到现场后,废水排水管直接插入核心模块的废水、便器排水连接管通过三通和立管连接管连接,中水储水及处理回用系统直接将各预留接口与现场的管道接口粘接或快接,即完成排水系统和中水会用处理系统的安装。该系统能够实现工厂化制造,现场装配,改变了当前给排水系统的管段管件拼接的安装方式,洗手盆、洗衣机、淋浴地漏排水通过废水排水管直接排入到核心模块内,与便器排水分道排放,核心模块内的汇水箱和水封装置,彻底隔离了排水立管和便器排水连接管与废水排水管道,切断了立管和便器连接管内臭气向室内和废水排水管内串气的通道,切断了地漏返臭的传播途径,杜绝室内空气污染和地漏返臭现象。而且核心模块的汇水箱顶部设有检修口,方便清通和维修,综合解决了当前卫生间排水存在的漏、臭、堵的问题,而且,通过提升装置将家庭内部的灰水(洗衣、洗浴、洗澡排水)收集并就地处理会用冲洗自家便器,节约了冲厕用自来水,提高了自来水的利用率。户内自己处理利用中水,避免了当前小区中水和市政再生水入户所致的与自来水管道误接交叉污染问题,和误饮危害居民健康的安全问题,避免了不同程度污水与自来水的交叉污染,确保饮水免受污染,保障水安全。单户户内就地实现中水的处理和回用,无需管道输送,无需高压输送,随用随收集随处理,节能、节材,实现了家庭单户对轻度废水的二次利用,环保,节约,具有良好的社会效益和经济效益。
2、采用核心模块内置汇水箱和水封装置的集约化设计,充分利用了结构楼板和地面装饰垫层的厚度,满足水封深度防臭的技术要求,废水排水管道上无须设置防臭水封,因此,废水排水管道的断面高度就能够降低,直接在卫生间面层内敷设。便器排水连接管直接从地面上沿墙敷设,或者采用椭圆或矩形管道降低断面直接敷设在面层内。便器直接与中水储水及处理回用系统连接安装,安装简单,精确,密封可靠,避免了排水管道直接与便器相接因地面装饰层厚度不易控制所带来的排水口高度误差,难安装易漏臭的问题。本申请无需结构降板,卫生间面层厚度仅需要80-100毫米,适合住宅产业化建造方式要求,同层排水,用 户可以自选卫生间器具布局、与装修一体化设计,美化了室内空间。
3、本申请中水的回收、循环使用、清洁和结构保护方面设计的更加完善、系统,使用户使用起来更加方便、放心。
附图说明
附图仅用于示出具体实施例的目的,而并不认为是对本申请的限制,在整个附图中,相同的参考符号表示相同的部件。
图1示意性示出了本申请第一实施例具有用于卫生间的侧立式中水储水、处理回用及排放系统的整体结构图;
图2示出了本申请第一实施例中水储水及处理回用系的放大结构图;
图3示出了本申请第一实施例中水储水及处理回用系内部结构图;
图4示出了本申请第二实施例具有用于卫生间的侧立式中水储水、处理回用及排放系统的整体结构图;
图5示出了本申请第三实施例具有用于卫生间的侧立式中水储水、处理回用及排放系统的整体结构图;
图6示出了本申请第四实施例具有用于卫生间的侧立式中水储水、处理回用及排放系统的整体结构图;
图7示出了本申请第五实施例具有用于卫生间的侧立式中水储水、处理回用及排放系统的整体结构图;
图8示出了本申请第六实施例具有用于卫生间的侧立式中水储水、处理回用及排放系统的整体结构图;
图9示出了本申请第七实施例中水储水及处理回用系内部结构图;
图10示出了本申请第八实施例中水储水及处理回用系内部结构图。
具体实施方式
下面结合附图和具体实施方式对本申请作进一步详细的说明。
实施例一:
如图1所示本申请第一实施例具有用于卫生间的侧立式中水储水、处理回用及排放系统的模块化中水集成系统的整体结构图,图2所示本申请第一实施例核心模块的放大结构图,图3所示本申请第一实施例用于卫生间的侧立式中水储水、处理回用及排放系统的内部结构图。根据本申请用于卫生间的侧立式中水储水、处理回用及排放系统安装在卫生间,与卫生间的核心模块10一同构成模块化中水集成系统,下面为了使本申请的内容能够更加的得以说明,先对上述模块化中水集成系统的整体结构给出详细阐释。如图1至图3所示,模块化中水集成系统包括核心模块10、中水储水及处理回用系统20、废水排水管道40、排水立管30以及穿设在所述核心模块10内的立管连接管50。本实施例中卫生间内便器60设置于中水储水及处理回用系统20前方,通过便器进水口2014将中水储水及处理回用系统20与便器60连通,从而为便器60提供水源。便器出水口601与中水储水及处理回用系统20的便器污水排水插口连通,通过便器排水连接管70穿过中水储水及处理回用系统20与排水立管30连通,实现便器60内的污水排放。
核心模块10包括汇水装置,汇水装置设有低于卫生间地板的用于收集废水的汇水箱101,以及开设在汇水箱101顶盖或侧壁上的废水出水口102,废水出水口102上侧设有液位感应器104。废水排水管道40一端连通器具排水口,另一端连通汇水箱101,应当理解,上述器具排水口包括但不限于洗手盆排水口、淋浴排水口以及洗衣机排水口。优选地,所述器具排水口设置过滤装置,防止杂物进入废水排水管道40。
汇水箱101内设有用于将废水提升至废水进水管105的提水泵106,提水泵106通过废水进水管105连通中水储水及处理回用系统20;所述汇水箱101内设有与立管连接管位置对应的液封装置103。废水排水管道40通过废水排入口401将生活废水排放至汇水箱101内。
此外,所述废水进水管105还可以与废水排水管道40上的地漏或器具排水 出口相连通,并通过提升装置将废水提升至中水储水及处理回用系统20内。
用于卫生间的侧立式中水储水及处理回用系统20包括废水储水箱202、中水储水箱201以及设置于中水储水箱201内的便器充水箱2015。废水储水箱202内设有废水进水管105和溢水管2021,在废水储水箱202顶部设有消毒装置2022,废水进水管105上端连通所述消毒装置2022,废水进水管105下端伸出废水储水箱202与卫生间汇水装置连通,溢水管2021连通设置于废水储水箱202底部的排空装置2024或者废水排水管道40或者排水立管30。设置于废水储水箱202底部的废水排水出口2025通过排空装置2024连通溢水管2021。根据本申请,在实施例中上述排空装置2024为可塞拔的插棒、可塞拔的地漏、排空阀、排空泵或虹吸排空引发装置的一种或多种。溢水管2021通过排空装置2024将溢出的废水回流至废水排水管道40或核心模块10的汇水箱101中或排水立管30中。
优选地,在废水储水箱202顶部设有检修口2023,便于清洁维修。
根据本申请,中水储水箱201与废水储水箱202之间设有过滤装置2011,使废水储水箱中的水过滤后送至中水储水箱201。本实施例中,中水储水箱201内设有连通废水储水箱202的连通管203,在连通管203内设置过滤装置2011。便器充水箱2015通过第一管道2013连通位于中水储水箱201内的中水泵2012,为便器充水箱2015供水,便器充水箱2015通过第二管道2016连通便器进水口2014为便器供水。本实施例中,在便器充水箱2015上部设置控制器2018,控制器2018与伸入至便器充水箱2015中的液面感应器2017连接,用于检测便器充水箱2015中的水位。便器出水口601通过便器排水连接管70穿过中水储水及处理回用系统20中的中水储水箱201与排水立管30连通。
优选地,中水储水箱201内设有清洁装置,应当理解,清洁装置包括清洁动力机构和安装于所述清洁动力机构上的清洁工具。下面对本申请的使用过程进行说明,生活废水经器具排水口进入废水排水管道40,然后进入核心模块10的汇水箱101,废水进入水封装置103后,液面升高,提水泵106开始提水,将废水 提升至废水进水管105并通过废水储水箱202顶部的消毒装置进行消毒,后进入中水储水及处理回用系统20的废水储水箱202内,废水经连通管203内的过滤装置2011过滤,过滤后的废水进入中水储水箱201内,中水泵2012将中水储水箱201中的水通过第一管道2013提升至便器充水箱2015。当液面感应器2017见水后,控制装置2018控制中水泵2012停止供水。需要便器60冲洗时,便器充水箱2015内的水从便器充水箱出水管2016进入便器60,对便器进行冲洗。冲洗的水从便器内经便器出水口601进入排水立管30,排出室外。当废水储水箱202中水位高于溢水管2021时,废水由溢水管2021再次回到汇水箱101中,有效防止水源浪费。
本实施例,根据本申请提供的一种模块化中水集成系统,使中水的回收、循环使用、清洁和结构保护方面设计的更加完善、系统,使用户使用起来更加方便、放心。洗手盆、洗衣机、淋浴地漏等废水通过废水排水管道直接排入到核心模块内,与便器排水分道排放,切断了地漏返臭的传播途径,而且方便清通和维修,综合解决了卫生间排水存在的漏、臭、堵的问题,避免了不同程度污水的交叉污染,实现了家庭单户对轻度废水的二次利用。
实施例二:
如图4所示本申请第二实施例具有用于卫生间的侧立式中水储水、处理回用及排放系统的模块化中水集成系统的整体结构图,本实施例中,将排水立管设置于中水储水及处理回用系统20的侧面,废水进入中水储水及处理回用系统20后,由便器进水口2014进入到便器内(便器图中未示出),便器内使用后的污水由便器出水口601通过便器排水连接管70排放至排水立管。
实施例三:
如图5所示本申请第三实施例具有用于卫生间的侧立式中水储水、处理回用及排放系统的模块化中水集成系统的整体结构图,本实施例与实施例二的区别是:排水立管30贯穿于中水储水及处理回用系统20的内部。
实施例四:
如图6所示用于卫生间的侧立式中水储水、处理回用及排放系统的的模块化中水集成系统的整体结构图,本实施例与实施例二的区别是:便器排水连接管70的出口在模块下表面连通排水立管30。
实施例五:
如图7所示用于卫生间的侧立式中水储水、处理回用及排放系统的的整体结构图,本实施例与实施例二的区别是:排水立管设在中水模块和便器之间,便器排水口直接连通排水立管。
实施例六:
如图8所示用于卫生间的侧立式中水储水、处理回用及排放系统的的整体结构图,本实施例与实施例五的区别是:便器排水连接管70的出口在模块下表面连通排水立管30。
实施例七:
如图9所示本申请第四实施例用于卫生间的侧立式中水储水及处理回用系统的内部结构图,本实施例与实施例一的区别是:中水储水箱201中不在设置中水泵和连通中水储水箱201与废水储水箱202的连通管,在废水进水管105上安装水气两用泵1052和自动进气阀1051。本实施例中,水气两用泵1052和自动进气阀1051安装于废水储水箱202内部的废水进气管105上,中水储水箱201与废水储水箱之间设置过滤装置2011,废水储水箱202内的废水由过滤装置过滤后进入到中水储水箱201。废水进入到汇水箱中,水气两用泵1052将废水由废水出水口102提升进入废水进水管105,废水经过消毒装置消毒后进入废水储水箱202。当便器需要供水时,自动进气阀1051开启,水气两用泵1052向废水储水箱202内充气,随着气压高升,废水通过滤装置2011过滤后进入到中水储水箱201中,并进入到便器充水箱,便器充水箱内的液面感应器遇水,自动进气阀1051关闭,压力消失,中水储水箱201以及过滤装置2011内的水回流至废水储水箱202。
实施例八:
如图10所示本申请第五实施例用于卫生间的侧立式中水储水及处理回用系统的内部结构图,本实施例与实施例五的区别是:水气两用泵1052和自动进气阀1051设置于废水储水箱202外。
本实施例中,中水储水箱201与废水储水箱之间设置过滤装置2011,废水储水箱202内的废水由过滤装置过滤后进入到中水储水箱201。废水进入到汇水箱中,水气两用泵1052将废水由废水出水口102提升进入废水进水管105,废水经过消毒装置消毒后进入废水储水箱202。当便器需要供水时,自动进气阀1051开启,水气两用泵1052向废水储水箱202内充气,随着气压高升,废水通过滤装置2011过滤后进入到中水储水箱201中,并进入到便器充水箱,便器充水箱内的液面感应器遇水,自动进气阀1051关闭,压力消失,中水储水箱201以及过滤装置2011内的水回流至废水储水箱202。
实施例九:
参见图3,中水储水及处理回用系统20包括储水箱和管道安装箱;储水箱上开设有便器进水口2014,便器进水口2014将储水箱与便器60连通,为便器60或便器水箱提供水源;管道安装箱内设置有废水进水管105;通过连接在废水进水管105上的提升装置将废水提升至储水箱内。
具体而言,管道安装箱内还设置有溢水管2021,溢水管2021一段连通储水箱,一段连通排空装置2024或者废水排水管道40或者排水立管30,溢水管2021通过排空装置2024将溢出的废水回流至核心模块10的汇水箱101中或排水立管30中。
具体而言,参见图1,管道安装箱内设有便器排水连接管70,表面设有便器污水排水插口,便器出水口601与便器污水排水插口连通,并通过便器排水连接管70与排水立管30连通。
具体而言,管道安装箱内安装有排水立管30,排水立管30连通便器排水连接管70。
具体而言,参见图3,储水箱上部设置有控制器2018,控制器2018与伸入至储水箱中的液面感应器2017相连接。
具体而言,储水箱的侧壁或顶部设有便器排水按钮操作孔。
具体而言,参见图2,提升装置为设置在所述汇水箱101内的提水泵106或设置在所述废水进水管105上的水气两用泵1052和自动进气阀1051的组合,参见图9、10。
具体而言,便器排水连接管70的出口端位于中水储水及处理回用系统20背面、侧面或底面。
实施例十:
参见图2、3,用于卫生间的侧立式中水储水、处理回用及排放系统,包括核心模块10、中水储水及处理回用系统20、废水排水管道40、便器排水连接管70和排水立管30;
核心模块10设有立管连接管50和汇水箱101;排水立管30连接立管连接管50;汇水箱101内设有与立管连接管50位置对应的液封装置103,废水排水管道40连通汇水箱101。
中水储水及处理回用系统20包括储水箱和管道安装箱;储水箱或管道安装箱上开设有便器进水口2014,所述便器进水口2014将储水箱与便器60连通,为便器60或便器水箱提供水源;所述管道安装箱内设置有废水进水管105;
便器60的便器出水口601通过便器排水连接管70与排水立管30连通。
具体而言,管道安装箱内还设置有溢水管2021,溢水管一端连通储水箱,一端连通排空装置2024或者废水排水管道40或者排水立管30,通过排空装置2024将溢出的废水回流至核心模块10的汇水箱101中或排水立管30中。
具体而言,管道安装箱内安装所述排水立管30,所述排水立管30连通便器排水连接管70。
具体而言,储水箱上部设置有控制器2018,控制器2018与伸入至储水箱中 的液面感应器2017相连接。
具体而言,储水箱的侧壁或顶部设有便器排水按钮操作孔。
具体而言,便器排水连接管70的出口端位于中水储水及处理回用系统20背面、侧面或底面。
本申请能够适用与住宅产业化建造方式,无需结构降板,能与装配式整体装修相结合,方便安装,施工简单,同时能够实现户内洗涤废水的收集和回用,具有环保、节约的特点。
本申请中所述的水封装置优选u形结构,但其它具有同样作用的结构也应包含在本申请所限定的范围内。
本申请提供的一种模块化中水集成系统,能够实现工厂化制造,现场装配,改变了当前给排水系统的管段管件拼接的安装方式,洗手盆、洗衣机、淋浴地漏排水通过废水排水管直接排入到核心模块内,与便器排水分道排放,切断了地漏返臭的传播途径,而且方便清通和维修,综合解决了当前卫生间排水存在的漏、臭、堵的问题,而且,避免了不同程度污水的交叉污染,实现了家庭单户对轻度废水的二次利用,环保,节约,具有良好的社会效益和经济效益。
尽管已经结合优选的实施例对本申请进行了详细地描述,但是本领域技术人员应当理解的是在不违背本申请精神和实质的情况下,各种修正都是允许的,它们都落入本申请的权利要求的保护范围之中。

Claims (46)

  1. 一种用于卫生间的侧立式中水储水及处理回用系统,其特征在于,所述中水储水及处理回用系统(20)通过提升装置将废水提升至系统的废水储水箱(202)内,并对废水进行消毒和过滤处理;所述系统上开设有便器进水口(2014),所述便器进水口(2014)将中水储水及处理回用系统(20)与便器(60)连通,为便器(60)或便器水箱提供水源。
  2. 根据权利要求1所述的侧立式中水储水及处理回用系统,其特征在于,所述系统上开设有便器污水排水插口,便器出水口(601)与便器污水排水插口连通,并通过便器排水连接管(70)与排水立管(30)连通。
  3. 根据权利要求1或2所述的侧立式中水储水及处理回用系统,其特征在于,所述中水储水及处理回用系统(20)包括废水储水箱(202)和中水储水箱(201);所述废水储水箱(202)内设置有消毒装置(2022);所述废水储水箱(202)与中水储水箱(201)之间设置有过滤装置(2011);所述提升装置将废水提升至废水储水箱(202)内;所述便器进水口(2014)连通所述中水储水箱(201);便器排水连接管(70)穿过所述中水储水箱(201)或者废水储水箱(202)与所述排水立管(30)连通。
  4. 根据权利要求3所述的侧立式中水储水及处理回用系统,其特征在于,所述中水储水及处理回用系统(20)还包括便器充水箱(2015);所述便器充水箱(2015)设置在所述中水储水箱(201)内部或者顶部,通过中水泵(2012)将所述中水储水箱(201)内部的水提升至所述便器充水箱(2015)内。
  5. 根据权利要求4所述的侧立式中水储水及处理回用系统,其特征在于,所述中水储水及处理回用系统(20)为箱体结构,所述废水储水 箱(202)和中水储水箱(201)均设置在所述中水储水及处理回用系统(20)内部。
  6. 根据权利要求1或2所述的侧立式中水储水及处理回用系统,其特征在于,所述中水储水及处理回用系统(20)包括废水进水管(105),所述废水进水管(105)与核心模块(10)的汇水箱(101)或废水排水管道(40)上的地漏或器具排水出口相连通;所述提升装置设置在所述废水进水管(105)的管路上或进水端部。
  7. 根据权利要求6所述的侧立式中水储水及处理回用系统,其特征在于,所述中水储水及处理回用系统(20)还包括溢水管(2021),所述溢水管(2021)通过排空装置(2024)将溢出的废水回流至所述废水排水管道(40)或所述核心模块(10)的汇水箱(101)中或排水立管(30)中。
  8. 根据权利要求7所述的侧立式中水储水及处理回用系统,其特征在于,废水进水管(105)的一段和溢水管(2021)的一段均设置在所述废水储水箱(202)内,所述废水储水箱(202)底部的废水排水出口(2025)通过排空装置(2024)连通溢水管(2021);废水进水口开设在废水储水箱(202)的侧壁或底部。
  9. 根据权利要求8所述的侧立式中水储水及处理回用系统,其特征在于,所述排空装置(2024)为可塞拔的插棒、可塞拔的地漏、排空阀、排空泵或虹吸排空引发装置的一种或多种。
  10. 根据权利要求1-9之一所述的侧立式中水储水及处理回用系统,其特征在于,所述提升装置为设置在所述汇水箱(101)内的提水泵(106)或设置在所述废水进水管(105)上水气两用泵(1052)和自动进气阀(1051)的组合。
  11. 根据权利要求2-10之一所述的侧立式中水储水及处理回用系统,其特征在于,所述便器排水连接管(70)的出口端位于中水储水及处理回用系统(20)背面、侧面或底面。
  12. 根据权利要求4或5所述的侧立式中水储水及处理回用系统,其特征在于,所述中水储水箱(201)或便器充水箱(2015)直接替代便器自身的水箱使用。
  13. 根据权利要求4或5所述的侧立式中水储水及处理回用系统,其特征在于,所述便器充水箱(2015)上部设置有控制器(2018),控制器(2018)与伸入至便器充水箱(2015)中的液面感应器(2017)相连接。
  14. 根据权利要求1-13之一所述的侧立式中水储水及处理回用系统,其特征在于,所述排水立管(30)设置在中水储水及处理回用系统(20)的一侧或贯穿于中水储水及处理模块(20)的内部。
  15. 根据权利要求5-13之一所述的侧立式中水储水及处理回用系统,其特征在于,所述废水储水箱(202)顶部设有检修口。
  16. 一种用于卫生间的侧立式中水储水及处理回用系统,其特征在于,所述中水储水及处理回用系统(20)包括储水箱和管道安装箱;所述储水箱上开设有便器进水口(2014),所述便器进水口(2014)将储水箱与便器(60)连通,为便器(60)或便器水箱提供水源;所述管道安装箱内设置有废水进水管(105);通过连接在废水进水管(105)上的提升装置将废水提升至储水箱内。
  17. 根据权利要求16所述的侧立式中水储水及处理回用系统,其特征在于,所述管道安装箱内还设置有溢水管(2021),所述溢水管(2021)一段连通所述储水箱,一段连通排空装置(2024)或者废水排水管道(40)或者排水立管(30),溢水管(2021)通过排空装置(2024)将溢出的废 水回流至所述核心模块(10)的汇水箱(101)中或排水立管(30)中。
  18. 根据权利要求16或17所述的侧立式中水储水及处理回用系统,其特征在于,所述管道安装箱内设有便器排水连接管(70),表面设有便器污水排水插口,便器出水口(601)与便器污水排水插口连通,并通过便器排水连接管(70)与排水立管(30)连通。
  19. 根据权利要求16-18之一所述的侧立式中水储水及处理回用系统,其特征在于,所述管道安装箱内安装有排水立管(30),所述排水立管(30)连通便器排水连接管(70)。
  20. 根据权利要求16-19之一所述的侧立式中水储水及处理回用系统,其特征在于,所述储水箱上部设置有控制器(2018),控制器(2018)与伸入至储水箱中的液面感应器(2017)相连接。
  21. 根据权利要求16-20之一所述的侧立式中水储水及处理回用系统,其特征在于,所述储水箱的侧壁或顶部设有便器排水按钮操作孔。
  22. 根据权利要求16-21之一所述的侧立式中水储水及处理回用系统,其特征在于,所述提升装置为设置在所述汇水箱(101)内的提水泵(106)或设置在所述废水进水管(105)上的水气两用泵(1052)和自动进气阀(1051)的组合。
  23. 根据权利要求18-22之一所述的侧立式中水储水及处理回用系统,其特征在于,所述便器排水连接管(70)的出口端位于中水储水及处理回用系统(20)背面、侧面或底面。
  24. 一种用于卫生间的侧立式中水储水、处理回用及排放系统,其特征在于,包括核心模块(10)、提升装置、中水储水及处理回用系统(20)、废水排水管道(40)和排水立管(30);
    所述核心模块(10)设有立管连接管(50),所述排水立管(30)连 接所述立管连接管(50);废水排水管道(40)将废水收集在所述核心模块(10)内;
    所述提升装置将核心模块(10)内废水或者所述废水排水管道(40)内的废水提升至中水储水及处理回用系统(20)内;所述中水储水及处理回用系统(20)上开设有便器进水口(2014),所述便器进水口(2014)将中水储水及处理回用系统(20)与便器(60)连通,为便器(60)或便器水箱提供水源。
  25. 根据权利要求24所述的侧立式中水储水、处理回用及排放系统,其特征在于,所述中水储水及处理回用系统(20)上开设有便器污水排水插口,所述便器出水口(601)与便器污水排水插口连通,并通过便器排水连接管(70)与排水立管(30)连通。
  26. 根据权利要求25所述的侧立式中水储水、处理回用及排放系统,其特征在于,所述便器排水连接管(70)连接排水立管(30)的一段为椭圆形、矩形、半圆形、圆形或封闭U形断面。
  27. 根据权利要求24或25所述的侧立式中水储水、处理回用及排放系统,其特征在于,所述立管连接管(50)穿设在核心模块(10)内;所述核心模块(10)还包括汇水装置;所述汇水装置设置有用于收集废水的汇水箱(101),汇水箱(101)的顶盖或侧壁上设有与废水排水管道(40)连通的废水出水口(102);所述提升装置从核心模块(10)的汇水箱(101)内提升废水。
  28. 根据权利要求24或25所述的侧立式中水储水、处理回用及排放系统,其特征在于,所述中水储水及处理回用系统(20)包括废水储水箱(202)和中水储水箱(201);所述废水储水箱(202)内设置有消毒装置(2022);所述废水储水箱(202)与中水储水箱(201)之间设置有 过滤装置(2011);所述提升装置将废水提升至废水储水箱(202)内;所述便器进水口(2014)连通所述中水储水箱(201);便器排水连接管(70)穿过所述中水储水箱(201)与所述排水立管(30)连通。
  29. 根据权利要求28所述的侧立式中水储水、处理回用及排放系统,其特征在于,所述中水储水及处理回用系统(20)还包括便器充水箱(2015);所述便器充水箱(2015)设置在所述中水储水箱(201)内部或顶部,通过中水泵(2012)将所述中水储水箱(201)内部的水提升至所述便器充水箱(2015)内;所述中水储水箱(201)与所述废水储水箱(202)通过所述过滤装置(2011)连通。
  30. 根据权利要求29所述的侧立式中水储水、处理回用及排放系统,其特征在于,所述中水储水及处理回用系统(20)为箱体结构,所述废水储水箱(202)和中水储水箱(201)均设置在所述中水储水及处理回用系统(20)内部。
  31. 根据权利要求24或25所述的侧立式中水储水、处理回用及排放系统,其特征在于,所述中水储水及处理回用系统(20)包括废水进水管(105),所述废水进水管(105)与核心模块(10)相连通;所述提升装置设置在所述废水进水管(105)的管路上或进水端部。
  32. 根据权利要求31所述的侧立式中水储水、处理回用及排放系统,其特征在于,所述中水储水及处理回用系统(20)还包括溢水管(2021),所述溢水管(2021)通过排空装置(2024)将溢出的废水回流至所述废水排水管道(40)或所述核心模块(10)的汇水箱(101)中或排水立管(30)中。
  33. 根据权利要求32所述的侧立式中水储水、处理回用及排放系统,其特征在于,废水进水管(105)的一段和溢水管(2021)的一段设置在 所述废水储水箱(202)内,所述废水储水箱(202)底部的废水排水出口(2025)通过排空装置(2024)连通溢水管(2021);废水进水口开设在废水储水箱(202)的侧壁或底部。
  34. 根据权利要求33所述的侧立式中水储水、处理回用及排放系统,其特征在于,所述排空装置(2024)为可塞拔的插棒、可塞拔的地漏、排空阀、排空泵或虹吸排空引发装置的一种或多种。
  35. 根据权利要求24-34之一所述的侧立式中水储水、处理回用及排放系统,其特征在于,所述提升装置为设置在所述汇水箱(101)内的提水泵(106)或设置在所述废水进水管(105)上的水气两用泵(1052)和自动进气阀(1051)的组合。
  36. 根据权利要求25-35之一所述的侧立式中水储水、处理回用及排放系统,其特征在于,所述便器排水连接管(70)的出口端位于中水储水及处理回用系统(20)背面、侧面或底面。
  37. 根据权利要求28或29所述的侧立式中水储水、处理回用及排放系统,其特征在于,所述中水储水箱(201)或便器充水箱(2015)直接替代便器自身的水箱使用。
  38. 根据权利要求29所述的侧立式中水储水、处理回用及排放系统,其特征在于,所述便器充水箱(2015)上部设置有控制器(2018),控制器(2018)与伸入至便器充水箱(2015)中的液面感应器(2017)相连接。
  39. 根据权利要求24-38之一所述的侧立式中水储水、处理回用及排放系统,其特征在于,所述排水立管(30)设置在中水储水及处理回用系统(20)的一侧或贯穿于中水储水及处理模块(20)的内部。
  40. 根据权利要求28或29或30所述的侧立式中水储水、处理回用 及排放系统,其特征在于,所述废水储水箱(202)顶部设有检修口。
  41. 一种用于卫生间的侧立式中水储水、处理回用及排放系统,其特征在于,包括核心模块(10)、中水储水及处理回用系统(20)、废水排水管道(40)、便器排水连接管(70)和排水立管(30);
    所述核心模块(10)设有立管连接管(50)和汇水箱(101);所述排水立管(30)连接所述立管连接管(50);所述汇水箱(101)内设有与立管连接管(50)位置对应的液封装置(103),废水排水管道(40)连通所述汇水箱(101)。
    所述中水储水及处理回用系统(20)包括储水箱和管道安装箱;所述储水箱或管道安装箱上开设有便器进水口(2014),所述便器进水口(2014)将储水箱与便器(60)连通,为便器(60)或便器水箱提供水源;所述管道安装箱内设置有废水进水管(105);
    所述便器(60)的便器出水口(601)通过便器排水连接管(70)与排水立管(30)连通。
  42. 根据权利要求41所述的侧立式中水储水、处理回用及排放系统,其特征在于,所述管道安装箱内还设置有溢水管(2021),所述溢水管(2021)一端连通所述储水箱,一端连通排空装置(2024)或者废水排水管道(40)或者排水立管(30),通过排空装置(2024)将溢出的废水回流至所述核心模块(10)的汇水箱(101)中或排水立管(30)中。
  43. 根据权利要求41或42所述的侧立式中水储水、处理回用及排放系统,其特征在于,所述管道安装箱内安装所述排水立管(30),所述排水立管(30)连通便器排水连接管(70)。
  44. 根据权利要求41-43之一所述的侧立式中水储水、处理回用及排放系统,其特征在于,所述储水箱上部设置有控制器(2018),控制器 (2018)与伸入至储水箱中的液面感应器(2017)相连接。
  45. 根据权利要求41-44之一所述的侧立式中水储水、处理回用及排放系统,其特征在于,所述储水箱的侧壁或顶部设有便器排水按钮操作孔。
  46. 根据权利要求41-45之一所述的侧立式中水储水及处理回用系统,其特征在于,所述便器排水连接管(70)的出口端位于中水储水及处理回用系统(20)背面、侧面或底面。
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