Domestic water purification device
By using pipe-in-pipe and water circulation purification technology and solar hot air heating, the problems of water quality deterioration and bacterial growth in domestic water systems have been solved, achieving efficient purification and healthy water supply, and is suitable for tap water and hot water systems.
Patent Information
- Application Number
- CN202423130417.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-18
- Publication Date
- 2026-01-02
- Estimated Expiration
- 2034-12-18
AI Technical Summary
In existing domestic water systems, water in branch circuits is prone to deterioration and bacterial growth if left unused for extended periods, posing health risks. Furthermore, solar water heaters suffer from scale buildup, bacterial growth, and nitrite accumulation, issues that existing circulation systems have failed to effectively address.
Employing pipe-in-pipe and water circulation purification technology, the system uses low-pressure and high-pressure end purifiers, circulating water pumps, and a pipe-in-pipe structure to purify and circulate domestic water. Combined with solar-powered hot air heaters, it prevents the growth of scale and bacteria.
It effectively eliminates impurities and harmful ions in domestic water, improves water quality, avoids secondary pollution, and achieves flexible operation and efficient heat utilization.
Smart Images

Figure CN223752568U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of domestic water, and particularly relates to a domestic water purification device adopting a purification water circulation technology. BACKGROUND
[0002] With the improvement of people's living standards, the requirement for the quality of life is also getting higher and higher, for example, the quality of water.
[0003] The pipeline of general domestic water of ordinary family is composed of one main pipeline into the house and multiple branch pipelines distributed to each room. As known, when a branch pipeline is used to discharge water, the water in the pipeline generally only passes through the main pipeline and the branch pipeline to reach the user end, and the water in other branch pipelines is in a relatively static state. If the water in the branch pipeline is not used for a long time, it is easy to deteriorate and breed bacteria, thus endangering the health of the user.
[0004] Solar energy is a clean energy that can be used sustainably. According to the statistical data of IEA SHC TCP, in 2022, the installed capacity of household solar heat utilization systems for providing domestic hot water or heating for single-family houses accounted for about 60% of the total installed capacity of global solar heat utilization systems. Taking China as an example, the annual newly added collector area and the proportion of different types of solar collectors from 2004 to 2023 are as shown in the accompanying Figure 4
[0005] The solar water heating system is the main form of solar heat utilization in China, which is a device that uses solar energy to heat water and store it in a water tank for use.
[0006] Taking a common household direct-insert type solar vacuum water heater as an example, when it works, the vacuum tube is filled with water, which mainly plays a heat conduction role and cannot flow completely, similar to "dead water". After a period of use, scale will accumulate at the bottom of the vacuum tube, which contains organic matter. When the water temperature is between 30℃ and 60℃, it is a good condition for bacteria to breed, which may cause a large number of bacteria to breed. At the same time, the accumulation of nitrite, a carcinogenic substance harmful to the human body, is easy to occur in the vacuum tube. The above phenomena lead to serious secondary pollution of household direct-insert type solar water heaters, including bacterial breeding, heavy metal exceeding standard, scale accumulation, nitrite exceeding standard, etc. Therefore, the water heated by the solar water heater cannot be directly drunk, even if it is used for bathing, it may also cause or induce a series of diseases, such as skin itching, gynecological diseases, and pediatric hand-foot diseases. This problem is particularly serious in rural areas. In rural areas, because surface water or even river water is used as the water source of the solar water heater in many places, the water quality is complex, which requires the hot water system not only to have the function of heating water, but also to have the functions of filtering, sterilizing, removing harmful substances, and adjusting water quality.
[0007] Chinese patent CN202021346507.X - A circulating water system, discloses a circulating water system, which includes a pipe-in-pipe and a pipe joint, and a pipe-in-pipe pipeline composed of the pipe-in-pipe and the pipe joint. The end of the pipe-in-pipe pipeline is connected to a liquid outlet device through a tail valve, and the inner cavity of the tail valve is connected to the inner flow channel and the outer flow channel. The technical solution can promote the regular circulation of the liquid between the inner flow channel and the outer flow channel through the setting of the circulating pump, the filter, the sterilizer, and the tail valve, inhibit and reduce the breeding of bacteria, ensure the cleanliness and hygiene of the water source, and has excellent application effect, as shown in FIG. 1. However, there is still room for further optimization, such as reducing the cavitation phenomenon of the circulating pump, simplifying the system, and improving the flexible operation ability of the system. Figure 2
[0008] Chinese patent CN202310477593.X - A differential pressure pipe-in-pipe liquid outlet pipeline system, discloses a pipe-in-pipe liquid outlet system, which includes a main pipeline, a total water inlet valve, a plurality of branches, a differential pressure liquid inlet valve core, a plurality of differential pressure liquid outlet valve cores, and a plurality of water outlet devices. When one or more of the branches are opened, the pressure difference between the inner flow channel and the outer flow channel is generated due to the presence of the differential pressure liquid inlet valve core and the differential pressure liquid outlet valve core, and the pressure of the outer flow channel is higher than that of the inner flow channel. In the remaining branches, the liquid in the outer flow channel can flow back to the inner flow channel through the corresponding pipe outlet end, and finally flow out through the pipe outlet end of the opened water outlet device. The internal water of all branches of the system can flow at any time, preventing the occurrence of stagnant water and deteriorated water, as shown in FIG. 2. However, there is still room for optimization, such as the removal of impurities in the water and the use of differential pressure control valve cores. Figure 3
[0009] Chinese patent CN201922497721.9 - A directional hot water circulation control system, discloses a hot water circulation control system, which includes a hot water source, a circulating pump, a starting valve, and a pipe-in-pipe pipeline connected in sequence. A pipe-in-pipe backflow valve is arranged on the pipe-in-pipe pipeline to control the opening size of the inner flow channel or the outer flow channel through an adjusting valve head, and realize directional circulation of the pipe-in-pipe pipeline. The size of the inner flow channel or the outer flow channel is controlled by the adjusting valve head, and when the inner flow channel or the outer flow channel is blocked, unidirectional flow and directional flow can be realized. In the pipe-in-pipe pipeline, the inner and outer flow channels are blocked, so they do not participate in circulation, which can save a large part of the energy wasted due to circulation. When the inner and outer flow channels are opened, liquid circulation backflow can be realized, as shown in FIG. 3. However, there is still room for optimization, such as the removal of impurities and possible bacteria breeding in the hot water, and the use of backflow valves. Figure 5
[0010] Therefore, how to choose an appropriate domestic water purification device to improve the quality of domestic water is worth further research. SUMMARY
[0011] The present application aims to solve the above problems, and provides a domestic water purification device which adopts the pipe-in-pipe and water circulation purification technology, effectively eliminates impurities, harmful ions and bacteria in domestic water, and achieves the purpose of improving water quality.
[0012] A domestic water purification device comprises:
[0013] a water inlet valve 41, a water storage tank 43, a pipe-in-pipe pipeline, an outer pipeline check valve 48, a low-pressure end purifier 44 and / or a high-pressure end purifier 46, a circulating water pump 45, and a water using facility,
[0014] The pipe-in-pipe pipeline comprises an inner pipeline 50, an outer pipeline 49, and a support frame arranged between the inner and outer pipelines,
[0015] The inner pipeline comprises an inner pipe and an inner pipe fitting, and the outer pipeline comprises an outer pipe and an outer pipe fitting,
[0016] The inner pipe fitting or the outer pipe fitting comprises an elbow, a tee, a cross, a reducer, a pipe cap, etc.,
[0017] The support frame adopts a hollow structure, is arranged between the inner and outer pipelines of the pipe-in-pipe pipeline, and adopts a split or integrated structure with the inner pipeline or the outer pipeline. The integrated structure refers to that the support frame is cast together with the inner pipeline or the outer pipeline. Various types of support frames in traditional double-pipe heat exchangers can be applied to the pipe-in-pipe pipeline of the present application,
[0018] Domestic water enters the water storage tank 43 through the water inlet valve 41,
[0019] When the water using facility is not in use:
[0020] Domestic water enters the outer flow channel 52 of the outer pipeline 49 of the pipe-in-pipe pipeline through the low-pressure end purifier 44, the circulating water pump 45, and the water supply pipeline 47, flows back into the inner flow channel 53 of the pipe-in-pipe pipeline at the water using facility, returns to the water storage tank 43, and the outer pipeline check valve 48 of the pipe-in-pipe pipeline is closed,
[0021] or domestic water enters the outer flow channel 52 of the outer pipeline 49 of the pipe-in-pipe pipeline through the circulating water pump 45 and the high-pressure end purifier 46, flows back into the inner flow channel 53 of the pipe-in-pipe pipeline at the water using facility, returns to the water storage tank 43, and the outer pipeline check valve 48 of the pipe-in-pipe pipeline is closed,
[0022] or water in the water storage tank 43 enters the outer flow channel 52 of the outer pipeline 49 of the pipe-in-pipe pipeline through the low-pressure end purifier 44 and the circulating water pump 45, flows back into the inner flow channel 53 of the pipe-in-pipe pipeline at the water using facility, returns to the water storage tank 43, and the outer pipeline check valve 48 of the pipe-in-pipe pipeline is closed,
[0023] Or the water in the water storage tank 43 is pumped by the circulating water pump 45, the high-pressure end purifier 46 and the water supply pipeline 47 into the outer flow channel 52 of the outer pipeline 49 of the pipe-in-pipe pipeline, and then flows back into the inner flow channel 53 of the pipe-in-pipe pipeline at the water-using facility, and finally returns to the water storage tank 43, and the outer pipeline one-way valve 48 of the pipe-in-pipe pipeline is closed, so as to realize the purification process of domestic water.
[0024] When the water-using facility is put into operation:
[0025] The outer pipeline one-way valve 48 of the pipe-in-pipe pipeline is opened, and the circulating water pump 45 is stopped, and the water in the water storage tank is supplied to the water-using facility through the outer flow channel 52 and the inner flow channel 53 of the pipe-in-pipe pipeline,
[0026] Or the outer pipeline one-way valve 48 of the pipe-in-pipe pipeline is closed, and the circulating water pump 45 is started, and the water in the water storage tank is supplied to the water-using facility through the low-pressure end purifier 44, the circulating water pump 45 and the water supply pipeline 47, and part of the water flows back into the inner flow channel 53 of the pipe-in-pipe pipeline at the water-using facility, and finally returns to the water storage tank 43,
[0027] Or the outer pipeline one-way valve 48 of the pipe-in-pipe pipeline is closed, and the circulating water pump 45 is started, and the water in the water storage tank is supplied to the water-using facility through the circulating water pump 45, the high-pressure end purifier 46 and the water supply pipeline 47, and part of the water flows back into the inner flow channel 53 of the pipe-in-pipe pipeline at the water-using facility, and finally returns to the water storage tank 43.
[0028] The domestic water includes tap water, hot water or underground water, etc.
[0029] The low-pressure end purifier 44 and / or the high-pressure end purifier 46 include a filter, an ultraviolet sterilizer, an ozone sterilizer, a reverse osmosis membrane water purifier or a water softener (including a specific ion removal device, such as chlorine ion, etc.).
[0030] The connection between the pipes in the pipe-in-pipe pipeline, between the pipe and the pipe fitting, and between the pipe fittings is achieved by welding, hot melt connection, expansion joint or threaded connection.
[0031] The water-using facility includes a faucet, a cold and warm faucet, a shower, a washing machine, a dishwasher, a hot water heater for heating, etc.
[0032] Preferably, the water inlet valve 41 is an automatic water replenishment valve, which is opened to replenish water when the water level in the water storage tank 43 is at a set low water level, and is closed to stop replenishing water when the water level in the water storage tank 43 reaches a set high water level.
[0033] Preferably, the circulating water pump 45 is provided with a water flow switch, which is actuated to start the circulating water pump 45 to perform purification treatment of water supply when the water-using facility uses water.
[0034] Preferably, during the shutdown of the water facility, the circulating water pump 45 is started in time to purify the water in the water storage tank 43 and the pipe-in-pipe pipeline, thereby ensuring the quality of the water.
[0035] A gas-water heater 59 is provided: the water in the water storage tank 43, through the low-pressure end purifier 44, the circulating water pump 45 or the circulating water pump 45, the high-pressure end purifier 46, enters the gas-water heater 59, is heated by the hot gas sent by the solar hot air generator 61, and returns to the water storage tank 43; the hot air generated in the solar hot air generator 61 is sent to the gas-water heater 59 through the gas pipeline 62 to heat the water, and the gas with reduced temperature is sent back to the solar hot air generator 61 through the fan 60, absorbs the heat of solar energy through the heat collecting pipe in the solar hot air generator 61, and generates hot air again, thereby forming a solar heat utilization process.
[0036] Preferably, the cold water supply pipeline and the hot water return pipeline of the gas-water heater 59 adopt a pipe-in-pipe structure, thereby effectively reducing heat loss and the risk of freezing in winter.
[0037] Preferably, the gas-water heater 59 and / or the water storage tank 43 are made of stainless steel.
[0038] The outer pipeline 49 of the pipe-in-pipe pipeline is provided with a support for fixing the pipe-in-pipe pipeline.
[0039] Other supporting facilities of the domestic water purification device refer to or are matched according to reliable and mature technologies in the pipe-in-pipe pipeline.
[0040] Compared with the prior art, the present application has the following advantages:
[0041] 1. Compared with the existing pipe-in-pipe water supply or hot water supply technology (CN202021346507.X-A living water circulation system, CN202310477593.X-A differential pressure type pipe-in-pipe liquid outlet pipeline system, CN201922497721.9-A directional hot water circulation control system, etc.), the process structure of the present application retains the advantages of the existing pipe-in-pipe water supply technology, and does not need to use a differential pressure control valve or a backflow valve. Through the setting of the purifier, the water supply quality of domestic water can be effectively guaranteed, and the operation adjustment is flexible and convenient.
[0042] 2. Compared with the prior art, the technical scheme of the present application can be applied to a tap water supply system and a domestic hot water system. The setting of the water storage tank can effectively reduce the cavitation phenomenon of the circulating water pump and enhance the emergency prevention ability during water shutdown.
[0043] 3. Compared with the existing direct insertion type vacuum tube solar water heater technology, the water heater technology of the application uses solar hot air generator hot air to heat water, and the water purification technology can effectively avoid the scaling, bacterial breeding and secondary pollution of the direct insertion type vacuum tube solar water heater, and the produced hot water can be used for multiple purposes in life, safe and sanitary, and the clean and efficient heat utilization of solar energy is realized. BRIEF DESCRIPTION OF DRAWINGS
[0044] Figure 1 It is a structure schematic diagram of a domestic water purification device of the application.
[0045] Figure 1 In the figure: 41 is an inlet valve, 42 is an inlet pipeline, 43 is a water storage tank, 44 is a low-pressure end purifier, 45 is a circulating water pump, 46 is a high-pressure end purifier, 47 is a water supply pipeline, 48 is an outer pipeline check valve, 49 is an outer pipeline, 50 is an inner pipeline, 51 is a support frame, 52 is an outer flow channel, 53 is an inner flow channel, 54 is a first water use facility, 55 is a second water use facility, 56 is a third water use facility, 57 is a discharge valve, 58 is a water supply check valve, 59 is a gas-water heater, 60 is a fan, 61 is a solar hot air generator, and 62 is a gas pipeline.
[0046] Figure 2 It is a structure schematic diagram of a circulating water system.
[0047] Figure 2 In the figure: 1 is a pipe-in-pipe pipeline, 2 is a circulating pipeline, 3 is a circulating start valve, 6 is an inlet pipe, 11 is a pipe-in-pipe, 12 is a pipe joint, 21 is a circulating pipe, 22 is a circulating pump, 23 is a filter, 24 is an ultraviolet disinfection pipe, 25 is a water flow switch, 31 is a pipe-in-pipe connection end, 32 is a first inner pipe mounting end, 33 is a first outer pipe mounting end, 36 is an outlet one-way valve, 38 is a second inner pipe mounting end, and 39 is an inlet one-way valve.
[0048] Figure 3 It is a structure schematic diagram of a differential pressure type pipe-in-pipe outlet pipeline system.
[0049] Figure 3 In the figure: 1 is a main pipeline, 2 is a branch pipeline, 3 is a differential pressure inlet valve core, 4 is a differential pressure outlet valve core, 5 is a water outlet device, 7 is a total inlet valve, 11 is a pipeline inlet end, 14 is an end pipe joint, and 21 is a pipeline outlet end.
[0050] Figure 4 It is a graph showing the annual increase in collector area and the proportion of different types of solar collectors in China from 2004 to 2023.
[0051] Figure 5CN201922497721.9 - A structural schematic diagram of a directional hot water circulation control system.
[0052] Figure 5 M: 2-tube-in-tube pipeline, 100-tube-in-tube reflux valve, 200-hot water source, 300-circulation pump, 400-starting valve, 500-tap water pipeline, 600-controller, 700-manual delay switch, 800-sensing delay switch, 801-temperature probe. DETAILED DESCRIPTION
[0053] The application will be further described in detail below in combination with the accompanying drawings and specific embodiments. Figure 1
[0054] Example 1:
[0055] A domestic water purification device, comprising:
[0056] a water inlet valve 41, a water storage tank 43, a tube-in-tube pipeline, an outer pipeline check valve 48, a low-pressure end purifier 44 and / or a high-pressure end purifier 46, a circulating water pump 45, and a water using facility,
[0057] The tube-in-tube pipeline comprises an inner pipeline 50, an outer pipeline 49, and a support frame arranged between the inner and outer pipelines,
[0058] The inner pipeline comprises an inner pipe and an inner fitting, and the outer pipeline comprises an outer pipe and an outer fitting,
[0059] The inner fitting or the outer fitting comprises an elbow, a tee, a cross, a reducer, a pipe cap, etc.,
[0060] The support frame adopts a hollow structure and is arranged between the inner and outer pipelines of the tube-in-tube pipeline, and adopts a split or integrated structure with the inner pipeline or the outer pipeline. The integrated structure means that the support frame is cast together with the inner pipeline or the outer pipeline. Various types of support frames in traditional jacket heat exchangers can be applied to the tube-in-tube pipeline of the present application,
[0061] Domestic water enters the water storage tank 43 through the water inlet valve 41,
[0062] When the water using facility is not in use:
[0063] Domestic water enters the outer flow channel 52 of the outer pipeline 49 of the tube-in-tube pipeline through the water inlet valve 41, the water inlet pipeline 42, the low-pressure end purifier 44, the circulating water pump 45, and the water supply pipeline 47, and flows back into the inner flow channel 53 of the tube-in-tube pipeline at the first water using facility 54, the second water using facility 55, or the third water using facility 56, and returns to the water storage tank 43. The outer pipeline check valve 48 of the tube-in-tube pipeline is closed,
[0064] Or the water in the water tank 43 flows through the water supply check valve 58, the low pressure end purifier 44, the circulating water pump 45, the water supply pipeline 47 into the outer flow channel 52 of the outer pipeline 49 of the pipe-in-pipe pipeline, and flows into the inner flow channel 53 of the pipe-in-pipe pipeline at the first water using facility 54, the second water using facility 55 or the third water using facility 56, and returns to the water tank 43, and the outer pipeline one-way valve 48 of the pipe-in-pipe pipeline is closed,
[0065] Or the water in the water tank 43 flows through the water supply check valve 58, the low pressure end purifier 44, the circulating water pump 45, the water supply pipeline 47 into the outer flow channel 52 of the outer pipeline 49 of the pipe-in-pipe pipeline, and flows into the inner flow channel 53 of the pipe-in-pipe pipeline at the first water using facility 54, the second water using facility 55 or the third water using facility 56, and returns to the water tank 43, and the outer pipeline one-way valve 48 of the pipe-in-pipe pipeline is closed,
[0066] Or the water in the water tank 43 flows through the water supply check valve 58, the low pressure end purifier 44, the circulating water pump 45, the water supply pipeline 47 into the outer flow channel 52 of the outer pipeline 49 of the pipe-in-pipe pipeline, and flows into the inner flow channel 53 of the pipe-in-pipe pipeline at the first water using facility 54, the second water using facility 55 or the third water using facility 56, and returns to the water tank 43, and the outer pipeline one-way valve 48 of the pipe-in-pipe pipeline is closed,
[0067] When the water using facility is put into operation:
[0068] The outer pipeline one-way valve 48 of the pipe-in-pipe pipeline is opened, the circulating water pump 45 is stopped, and the water in the water tank flows through the outer flow channel 52 and the inner flow channel 53 of the outer pipeline 49 of the pipe-in-pipe pipeline to supply water to the first water using facility 54, the second water using facility 55 or the third water using facility 56,
[0069] Or the outer pipeline one-way valve 48 of the pipe-in-pipe pipeline is closed, the circulating water pump 45 is operated, and the water in the water tank flows through the water supply check valve 58, the low pressure end purifier 44, the circulating water pump 45, the water supply pipeline 47 into the outer flow channel 52 of the outer pipeline 49 of the pipe-in-pipe pipeline to supply water to the first water using facility 54, the second water using facility 55 or the third water using facility 56, and part of the water flows into the inner flow channel 53 of the pipe-in-pipe pipeline at the water using facility and returns to the water tank 43,
[0070] Or the outer pipeline one-way valve 48 of the pipe-in-pipe pipeline is closed, the circulating water pump 45 is operated, and the water in the water tank flows through the water supply check valve 58, the low pressure end purifier 44, the circulating water pump 45, the water supply pipeline 47 into the outer flow channel 52 of the outer pipeline 49 of the pipe-in-pipe pipeline to supply water to the first water using facility 54, the second water using facility 55 or the third water using facility 56, and part of the water flows into the inner flow channel 53 of the pipe-in-pipe pipeline at the water using facility and returns to the water tank 43.
[0071] The water storage tank 43 is provided with a discharge valve 57 for adjusting the water level of the water storage tank 43 to a suitable range when the system is put into operation.
[0072] The domestic water includes tap water, hot water or underground water, etc.
[0073] The low-pressure end purifier 44 and the high-pressure end purifier 46 include filters, ultraviolet sterilizers, ozone sterilizers, reverse osmosis membrane water purifiers and water softeners (including specific ion removal devices such as chlorine ions, etc.).
[0074] The connections between the pipes and the pipes, the pipes and the pipe fittings, and the pipe fittings and the pipe fittings in the pipe-in-pipe pipeline are achieved by welding, hot melt connection, expansion joint or threaded connection.
[0075] The water using facilities include faucets, dual-purpose faucets, shower heads, washing machines, dishwashers and hot water heaters for heating.
[0076] Preferably, the water inlet valve 41 is an automatic water replenishment valve which is opened to replenish water when the water level in the water storage tank 43 is at a set low water level, and is closed to stop replenishing water when the water level in the water storage tank 43 reaches a set high water level.
[0077] Preferably, the circulating water pump 45 is provided with a water flow switch which is actuated to start the circulating water pump 45 to perform purification treatment of the water when the water using facilities use water.
[0078] Preferably, the circulating water pump 45 is started at regular intervals to perform purification treatment of the water in the water storage tank 43 and the pipe-in-pipe pipeline when the water using facilities are not in operation, so as to ensure the water quality.
[0079] The gas-water heater 59 is provided: the water in the water storage tank 43, after passing through the low-pressure end purifier 44, the circulating water pump 45 or the circulating water pump 45 and the high-pressure end purifier 46, enters the gas-water heater 59, is heated by the hot gas sent by the solar heat blower 61, and returns to the water storage tank 43; the hot air generated in the solar heat blower 61 is sent to the gas-water heater 59 to heat the water, the gas with reduced temperature is sent back to the solar heat blower 61 by the air blower 60, absorbs the heat of the sun through the heat collecting pipe in the solar heat blower 61, and generates hot air again, thereby forming a solar heat utilization process.
[0080] Preferably, the cold water supply pipeline and the hot water return pipeline of the gas-water heater 59 adopt a pipe-in-pipe structure, thereby effectively reducing heat loss and the risk of freezing in winter.
[0081] The outer pipeline 49 of the pipe-in-pipe pipeline is provided with a support for fixing the pipe-in-pipe pipeline.
[0082] Other facilities of the water purification system for daily use are matched with reliable and mature technology in the known pipe-in-pipe pipeline.
[0083] Although the present application has been disclosed with reference to preferred embodiments, it is not intended to limit the present application to the preferred embodiments, and any person skilled in the art, without departing from the spirit and scope of the present application, can make various changes or modifications, which are also within the scope of the present application. Therefore, the scope of the present application should be defined by the claims of the present application.
Claims
1. A domestic water purification device, characterized in that, comprising: an inlet valve (41), a water storage tank (43), a pipe-in-pipe pipeline, an outer pipeline check valve (48), a low-pressure end purifier (44) and / or a high-pressure end purifier (46), a circulating water pump (45), a water using facility, the pipe-in-pipe pipeline comprises an inner pipeline (50), an outer pipeline (49) and a support frame arranged between the inner and outer pipelines, the inner pipeline comprises an inner pipe and an inner fitting, and the outer pipeline comprises an outer pipe and an outer fitting, the support frame adopts a hollow structure and is arranged between the inner and outer pipelines of the pipe-in-pipe pipeline, the domestic water enters the water storage tank (43) through the inlet valve (41), when the water using facility is not in use: the domestic water enters the outer flow channel (52) of the outer pipeline (49) of the pipe-in-pipe pipeline through the low-pressure end purifier (44) and the circulating water pump (45), and then flows back into the inner flow channel (53) of the pipe-in-pipe pipeline at the water using facility and returns to the water storage tank (43), and the outer pipeline check valve (48) of the pipe-in-pipe pipeline is closed, or the domestic water enters the outer flow channel (52) of the outer pipeline (49) of the pipe-in-pipe pipeline through the circulating water pump (45) and the high-pressure end purifier (46), and then flows back into the inner flow channel (53) of the pipe-in-pipe pipeline at the water using facility and returns to the water storage tank (43), and the outer pipeline check valve (48) of the pipe-in-pipe pipeline is closed, or the water in the water storage tank (43) enters the outer flow channel (52) of the outer pipeline (49) of the pipe-in-pipe pipeline through the low-pressure end purifier (44) and the circulating water pump (45), and then flows back into the inner flow channel (53) of the pipe-in-pipe pipeline at the water using facility and returns to the water storage tank (43), and the outer pipeline check valve (48) of the pipe-in-pipe pipeline is closed, or the water in the water storage tank (43) enters the outer flow channel (52) of the outer pipeline (49) of the pipe-in-pipe pipeline through the circulating water pump (45) and the high-pressure end purifier (46), and then flows back into the inner flow channel (53) of the pipe-in-pipe pipeline at the water using facility and returns to the water storage tank (43), and the outer pipeline check valve (48) of the pipe-in-pipe pipeline is closed, thereby realizing the purification process of the domestic water; when the water using facility is in use: the outer pipeline check valve (48) of the pipe-in-pipe pipeline is opened, the circulating water pump (45) is stopped, and the water in the water storage tank (43) supplies the water using facility through the outer flow channel (52) and the inner flow channel (53) of the pipe-in-pipe pipeline, or the outer pipeline check valve (48) of the pipe-in-pipe pipeline is closed, the circulating water pump (45) is operated, the water in the water storage tank (43) supplies the water using facility through the low-pressure end purifier (44), the circulating water pump (45) and the outer flow channel (52) of the outer pipeline (49) of the pipe-in-pipe pipeline, and part of the water flows back into the inner flow channel (53) of the pipe-in-pipe pipeline at the water using facility and returns to the water storage tank (43), or the outer pipeline check valve (48) of the pipe-in-pipe pipeline is closed, the circulating water pump (45) is operated, the water in the water storage tank (43) supplies the water using facility through the circulating water pump (45), the high-pressure end purifier (46) and the outer flow channel (52) of the outer pipeline (49) of the pipe-in-pipe pipeline, and part of the water flows back into the inner flow channel (53) of the pipe-in-pipe pipeline at the water using facility and returns to the water storage tank (43).
2. The domestic water purification device according to claim 1, characterized in that, The connection of pipe-in-pipe pipeline, pipe and pipe, pipe and pipe fitting, pipe fitting and pipe fitting adopts welding, hot melt connection, expansion joint or threaded connection.
3. The domestic water purification device according to claim 1, characterized in that, The low-pressure end purifier (44) and / or high-pressure end purifier (46) comprises a filter, an ultraviolet sterilizer, an ozone sterilizer, a reverse osmosis membrane water purifier or a water softener.
4. The domestic water purification device according to claim 1, characterized in that, The water-using facilities include faucets, hot and cold water faucets, shower heads, washing machines, dishwashers and hot water heaters for heating.
5. The domestic water purification device according to claim 1, characterized in that, The water inlet valve (41) is an automatic water replenishment valve, which opens when the water level in the water storage tank (43) is at a set low water level, and closes when the water level reaches a set high water level, stopping water replenishment.
6. The domestic water purification device according to claim 1, characterized in that, The circulating water pump (45) is provided with a water flow switch, which is actuated when the water-using facilities are in use, starting the circulating water pump (45) to perform purification treatment of the water supply.
7. The domestic water purification device according to claim 1, characterized in that, When the water-using facilities are not in operation, the circulating water pump (45) is started at regular intervals to perform purification treatment of the water in the water storage tank (43) and the pipe-in-pipe pipeline.
8. The domestic water purification device according to claim 1, characterized in that, A gas-water heater (59) is provided: the water in the water storage tank (43) enters the gas-water heater (59) through the low-pressure end purifier (44), the circulating water pump (45) or the circulating water pump (45) and the high-pressure end purifier (46), is heated by the hot gas sent by the solar hot air generator (61) and returns to the water storage tank (43); the hot air generated in the solar hot air generator (61) is sent to the gas-water heater (59) through the gas pipeline (62) to heat the water, the gas with reduced temperature is sent back to the solar hot air generator (61) through the fan (60), and the heat absorbed by the heat collecting pipe in the solar hot air generator (61) is used to generate hot air, thereby forming a solar heat utilization process.
9. The domestic water purification device according to claim 8, characterized in that, The cold water supply and hot water return pipeline of the gas-water heater (59) adopts a pipe-in-pipe structure.
10. The domestic water purification device according to claim 8, characterized in that, The gas-water heater (59) and / or the water storage tank (43) are made of stainless steel.
Citation Information
Patent Citations
Differential pressure type pipe-in-pipe liquid outlet pipeline system
CN116428523A
Directional hot water circulation control system
CN211552052U
Live water circulation system
CN212956776U