Multifunctional water supply device for intelligent water affairs and use method thereof
Technical Field
The invention relates to the technical field of intelligent water affairs, in particular to a multifunctional water supply device for the intelligent water affairs and a using method thereof.
Background
The intelligent water affair is a comprehensive body of water storage reservoirs, water pumps, pipelines and other projects which are required by different water using departments and are supplied by a water supply system according to certain quality requirements, and the intelligent water affair is characterized in that a data value and logic relation is fully developed through deep fusion of a new generation information technology and a water affair technology, so that control intellectualization, data recycling, management accuracy and decision intelligence of a water affair service system are realized, safe operation of water affair facilities is guaranteed, operation of the water affair service is more efficient, management is more scientific, and service is more excellent. The technical function of the water supply system, the whole water supply system should meet the requirements of users on water quality, water quantity and water pressure, and the water supply equipment comprises: the water supply device which can automatically start and stop and output a certain flow and lift in unit time. According to the application: fire control, life, production and sewage treatment.
However, the existing water supply device generally adopts a frequency conversion non-negative pressure mode to supply water, the water supply method needs to add a water storage device to deal with the defect of low water storage capacity of the water supply device, the addition of the water storage device is easy to have the defect of water quality reduction caused by water body mixing with different injection time, and the frequency conversion non-negative pressure water supply device does not have the function required for solving the defect, so that the problem of improving the functionality of the water supply device is needed; therefore, the existing requirements are not met, and a multifunctional water supply device for intelligent water service and a using method thereof are provided.
Disclosure of Invention
The invention aims to provide a multifunctional water supply device for intelligent water service and a use method thereof, aiming at solving the problems that the existing water supply device provided in the background technology generally adopts a frequency conversion non-negative pressure mode to supply water, the water supply method needs to be additionally provided with a water storage device to deal with the defect of low water storage capacity, the water storage device is added to easily cause the defect of water quality reduction caused by water body mixing with different injection time, and the frequency conversion non-negative pressure water supply device does not have the functions required for solving the defect and needs to improve the functionality of the water storage device.
In order to achieve the purpose, the invention provides the following technical scheme: a multifunctional water supply device for intelligent water service comprises a water supply mechanism body, wherein a water storage mechanism is installed above the water supply mechanism body, a simulated water supply mechanism is installed on one side of the water storage mechanism, a water storage tank is installed at the upper end of the water storage mechanism, an interlayer water filtering frame is installed inside the water storage tank, four groups of interlayer water filtering frames are installed on the interlayer water filtering frame, the outer wall of the interlayer water filtering frame is detachably connected with the water storage tank, a mixing layer is installed at the middle position of the interlayer water filtering frame, a high-efficiency filter screen is installed on the upper surface of the interlayer water filtering frame and detachably connected with the upper surface of the interlayer water filtering frame, a chassis is installed on the lower surface of the interlayer water filtering frame, a chassis filter screen is installed on the lower surface of the chassis, a second motor set is installed at the middle position of the lower surface of the chassis, and a shielding plate is installed at the output end of the second motor set, the output of second motor group passes through the shaft coupling and is connected with the shielding plate transmission, install accuse volume analog tube between water storage mechanism and the simulation water supply mechanism, the simulation feed tank is installed to the outer wall of simulation water supply mechanism, the water pitcher for the simulation is installed to the inside top of simulation feed tank, the internally mounted of water pitcher for the simulation has inside detection mechanism, the water storage tank is kept away from one side outer wall of accuse volume analog tube and is installed interlayer water detection mechanism, and interlayer water detection mechanism installs four groups.
Preferably, the upper sampling detection mechanism of the water tank for simulation, the lower end of the sampling detection mechanism is provided with a sampling tube, the sampling tube is adjacent to the sampling detection mechanism, a communicating tube is arranged between the water tanks for simulation, a water outlet is arranged at the bottom of the lower part of the water tank for simulation, a water falling collection box is arranged below the water outlet at the bottom, and one end of the water falling collection box is provided with a delivery tube.
Preferably, a tank body base is installed to the lower extreme of water storage tank, and the upper end and the water storage tank integral type of tank body base are connected, the display screen is installed to the outer wall of terminal surface before the tank body base, the input and the four groups of display screen interlayer water body detection mechanism's output electric connection.
Preferably, the inside of mixing the layer installs first motor group, the transfer line is installed to the output of first motor group, the outer wall of transfer line is installed and is mixed the stirring leaf, and the output of first motor group passes through the transfer line and is connected with mixing the stirring leaf transmission.
Preferably, it is adjacent install stationary flow jar intercommunication mouth between the interlayer drainage frame, and stationary flow jar intercommunication mouth installs four, the charge door is installed to one side of stationary flow jar intercommunication mouth, and the charge door installs four, intercommunication control valve is installed to one side of interlayer drainage frame, and four groups are installed to intercommunication control valve.
Preferably, no negative pressure stationary flow jar is installed to the rear end of water storage mechanism, water supply delivery pipe spare is installed to one side of no negative pressure stationary flow jar, variable frequency constant voltage control cabinet is installed to the opposite side of no negative pressure stationary flow jar.
Preferably, a vacuum suppressor is installed at the middle position above the non-negative-pressure steady flow tank, a water level controller is installed on one side of the vacuum suppressor, and a pump set is installed at the lower end of the water supply conveying pipe fitting.
Preferably, a storage pipe is installed between adjacent communication control valves, and a side valve port is installed on one side of the storage pipe close to the middle position.
Preferably, a main water inlet pipe is installed at the middle position of the upper end of the water storage tank, auxiliary water inlet pipes are installed on two sides of the main water inlet pipe, and a supporting base is installed below the water supply mechanism body.
Preferably, the use method of the multifunctional water supply device for intelligent water service comprises the following steps:
the method comprises the following steps: conveying the treated water body from a main water inlet pipe or an auxiliary water inlet pipe to a water storage tank for storage for subsequent water supply, wherein the water body entering the water storage tank penetrates through an interlayer water filtering frame in the falling process, so that the water body is in contact with a high-efficiency filter screen on the upper surface of the interlayer water filtering frame, trace impurities possibly existing in the water body are filtered, the water body is placed at different levels according to the entering time, when the water body entering the water storage tank firstly is opened to fall to the lowest position for waiting, the lowest position is stored to two thirds of the space and then a flow channel is closed, a shielding plate can be driven by a second motor group to rotate in the closing process so that the filter screen of a chassis is shielded and sealed, the water body added for the second time is blocked by the shielding plate so that the water body for the second time exists at the upper level of the lowest layer, the water injection operation is continued according to the process until all levels are fully stored, and the water body placed in a blocking way can be detected by an interlayer detection mechanism at the corresponding level, the water supply device is used for guaranteeing the storage safety of the internal water body, and when the daily water supply is not tense and the stored water body is not used, the water body can be conveyed to a simulation water tank in the simulation water supply tank through the quantity control simulation pipe; the water detection is carried out on the storage water body by an internal detection mechanism in the simulation water tank, and the process is used for simulating water for a user to detect whether potential safety hazards exist after the user uses the storage water body;
step two: the detection process of the simulation water tank can enhance the detection effect on the internal water body by additionally arranging the sampling pipe and the sampling detection mechanism, the stored water bodies of different levels can downwards control the amount of the water bodies of different levels by communicating the control valve with the storage pipe and the structure at the position of the lateral valve port so as to achieve the effect of sampling of different levels, and the water bodies can be conveyed into the water falling collection box from the position of the water falling port at the bottom after the detection is finished by the plurality of groups of simulation water tanks and then are conveyed out to the regions of the treatment mechanism and the like through the delivery pipes;
step three: the water body is conveyed into the non-negative pressure steady flow tank through the steady flow tank communicating port for non-negative pressure control storage, and then the water body can be conveyed out through the water supply conveying pipe fitting and the pump set.
Compared with the prior art, the invention has the beneficial effects that:
1. the invention conveys the treated water body from the main water inlet pipe or the auxiliary water inlet pipe to the water storage tank for storage, the water body enters the water storage tank and passes through the interlayer water filtering frame in the falling process, the water body is contacted with the high-efficiency filter screen on the upper surface of the interlayer water filtering frame, trace impurities possibly existing in the water body are filtered, the water body is placed at different levels according to the entering time, when the water body entering the water storage tank firstly is opened and falls to the lowest position for waiting, the lowest position is stored to two thirds of the space and then the flow channel is closed, the shielding plate is driven by the second motor group to rotate in the closing process to shield and seal the filter screen of the chassis, the water body added for the second time is blocked by the shielding plate, the water body for the second time exists at the upper level of the lowest layer, and the water injection operation is continued according to the process until all levels are fully stored, the water bodies placed in a separated mode can be detected by the interlayer water body detection mechanisms at the corresponding levels, so that the storage safety of the internal water bodies is guaranteed, and when the stored water bodies are not used due to lack of daily water supply, the water bodies can be conveyed to the simulation water tanks in the simulation water supply tanks through the quantity control simulation pipes; carry out the water detection to depositing the water by the inside detection mechanism in the simulation water tank, this process is used for simulating the user water and detects whether there is the problem of potential safety hazard after the user uses and deposits the water, above-mentioned structure can improve the functionality of whole water supply equipment water supply in-process, especially deposit the aspect to the water, the effect of accomplishing different water and depositing in grades, and can carry out the self-checking to the water after depositing, quality when having ensured the water and depositing, water supply equipment's water safety and user health have been improved.
2. The utility model discloses a water tank for simulation testing process accessible is with establishing sampling tube and sampling test mechanism additional and strengthen the detection effect to inside water, the different levels water accessible intercommunication control valve of depositing with deposit the structure of pipe and lateral part valve mouth department will carry the water of different levels downwards accuse volume, be used for reaching the effect of different levels samples, can carry the water to the collecting box that falls into water from bottom water outlet after the completion is detected with water pitcher department to the multiunit simulation, later in deliver to processing mechanism etc. in the region through the delivery pipe again, the precision that water detected can be strengthened through above-mentioned structure and process, the testing process can detect the water of different levels, avoid single level water and single check out test data deviation that causes.
3. The accessible charge door is inwards thrown reinforced at the water and is deposited the in-process, utilizes the first motor group that mixes layer department to drive the transfer line and mix the mode of stirring the leaf with it and water and mix, can solve the problem that exists in some waters through reinforced mixing to this process can be carried out by automated control, makes the user of being convenient for more of whole equipment use.
4. When water is needed to be supplied, the water body can be conveyed by the water supply conveying pipe fitting and the pump set, the water level controller is used for controlling the water level in the non-negative-pressure flow stabilization tank, the vacuum suppressor is used for suppressing the negative pressure generated by the vacuum suppressor, the pressure balance of the water supply system is guaranteed, and the structure is used for improving the stability of the water supply process.
Drawings
FIG. 1 is a schematic view of the overall structure of the present invention;
FIG. 2 is a schematic view of a partial structure of a water storage tank according to the present invention;
FIG. 3 is a partial structure schematic view of the interlayer water filtering frame of the invention;
FIG. 4 is a partial structural view of the chassis of the present invention;
FIG. 5 is a schematic view of a partial structure of a simulation water tank according to the present invention;
in the figure: 1. a water supply mechanism body; 2. a variable-frequency constant-voltage control cabinet; 3. a water storage mechanism; 4. a negative pressure-free flow stabilization tank; 5. a water supply delivery pipe; 6. a simulated water supply mechanism; 7. a support base; 8. a water storage tank; 9. a tank body base; 10. a display screen; 11. a main water inlet pipe; 12. an auxiliary water inlet pipe; 13. an interlayer water body detection mechanism; 14. an interlayer water filtering frame; 15. a communication control valve; 16. a storage tube; 17. a side valve port; 18. a steady flow tank communicating opening; 19. a feed inlet; 20. a quantity control simulation tube; 21. simulating a water supply tank; 22. a simulation water tank; 23. a communicating pipe; 24. an internal detection mechanism; 25. a sampling tube; 26. a sampling detection mechanism; 27. a bottom water falling port; 28. a water falling collecting box; 29. a delivery pipe; 30. a high-efficiency filter screen; 31. a first motor group; 32. a transmission rod; 33. mixing and stirring the leaves; 34. a mixed layer; 35. a chassis; 36. a second motor group; 37. a shielding plate; 38. a chassis filter screen; 39. a vacuum suppressor; 40. a water level controller; 41. and a pump group.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments.
Referring to fig. 1-5, an embodiment of the present invention is shown: a multifunctional water supply device for intelligent water service comprises a water supply mechanism body 1, a water storage mechanism 3 is installed above the water supply mechanism body 1, a simulation water supply mechanism 6 is installed on one side of the water storage mechanism 3, a water storage tank 8 is installed at the upper end of the water storage mechanism 3, an interlayer water filtering frame 14 is installed inside the water storage tank 8, four groups of interlayer water filtering frames 14 are installed, the outer wall of each interlayer water filtering frame 14 is detachably connected with the water storage tank 8, a mixing layer 34 is installed at the middle position of each interlayer water filtering frame 14, a high-efficiency filter screen 30 is installed on the upper surface of each interlayer water filtering frame 14, a chassis 35 is installed on the lower surface of each water filtering interlayer frame 14, a chassis filter screen 38 is installed on the lower surface of the chassis 35, a second motor group 36 is installed at the middle position of the lower surface of the chassis 35, and a shielding plate 37 is installed at the output end of the second motor group 36, the output end of the second motor set 36 is in transmission connection with the shielding plate 37 through a coupler, a quantity control simulation pipe 20 is installed between the water storage mechanism 3 and the simulation water supply mechanism 6, the simulation water supply tank 21 is installed on the outer wall of the simulation water supply mechanism 6, the simulation water tank 22 is installed above the interior of the simulation water tank 21, the internal detection mechanism 24 is installed inside the simulation water tank 22, the interlayer water body detection mechanism 13 is installed on the outer wall of one side of the water storage tank 8, which is far away from the quantity control simulation pipe 20, and four groups are installed on the interlayer water body detection mechanism 13.
Further, top sampling test mechanism 26 of water pitcher 22 is used in the simulation, sampling tube 25 is installed to the lower extreme of sampling test mechanism 26, install communicating pipe 23 between the water pitcher 22 is used in the adjacent simulation, the below bottom of water pitcher 22 is used in the simulation mouth of a river 27 that falls, the collecting box 28 that falls into water is installed to the below of bottom mouth of a river 27, delivery pipe 29 is installed to the one end of collecting box 28 that falls into water, sampling tube 25 and sampling test mechanism 26 are used for taking a sample the water of inside and detect, in order to reach the more accurate mesh of detection to the water, but water accessible bottom mouth of a river 27 department gets into to in the collecting box 28 that falls into water after the detection is accomplished, and handle in delivering out to next equipment or region by delivery pipe 29.
Further, a jar body base 9 is installed to the lower extreme of water storage tank 8, and the upper end and the water storage tank 8 integral type of jar body base 9 are connected, and display screen 10 is installed to the outer wall of terminal surface before jar body base 9, and the input of display screen 10 and the output electric connection of four group's interlayer water detection mechanism 13, jar body base 9 are used for improving the stability when water storage tank 8 places, and the display screen 10 of terminal surface can be convenient for with the data that survey inside survey before it.
Further, a first motor set 31 is installed inside the mixing layer 34, a transmission rod 32 is installed at the output end of the first motor set 31, a mixing and stirring blade 33 is installed on the outer wall of the transmission rod 32, the output end of the first motor set 31 is in transmission connection with the mixing and stirring blade 33 through the transmission rod 32, and the first motor set 31 is used for driving the transmission rod 32 and the mixing and stirring blade 33 to stir the internal water body and the added materials so as to achieve the purpose of uniform mixing.
Further, install stationary flow jar intercommunication mouth 18 between adjacent interlayer drainage frame 14, and stationary flow jar intercommunication mouth 18 installs four, and charging opening 19 is installed to one side of stationary flow jar intercommunication mouth 18, and charging opening 19 installs four, and intercommunication control valve 15 is installed to one side of interlayer drainage frame 14, and intercommunication control valve 15 installs four groups, and charging opening 19 is used for feeding in raw material, and stationary flow jar intercommunication mouth 18 is used for being connected with the stationary flow jar, and intercommunication control valve 15 is used for communicateing each level to the accuse volume is carried.
Further, no negative pressure stationary flow jar 4 is installed to the rear end of water storage mechanism 3, and water supply delivery pipe spare 5 is installed to one side of no negative pressure stationary flow jar 4, and frequency conversion constant voltage control cabinet 2 is installed to the opposite side of no negative pressure stationary flow jar 4, and no negative pressure stationary flow jar 4 is used for playing the effect of no negative pressure water supply, and its accessible frequency conversion constant voltage control cabinet 2 controls.
Further, a vacuum suppressor 39 is installed at the middle position above the non-negative-pressure steady-flow tank 4, a water level controller 40 is installed at one side of the vacuum suppressor 39, a pump unit 41 is installed at the lower end of the water supply conveying pipe 5, when water supply is needed, water can be conveyed through the water supply conveying pipe 5 and the pump unit 41, the water level controller 40 is used for controlling the water level in the non-negative-pressure steady-flow tank 4, and the vacuum suppressor 39 is used for suppressing the negative pressure generated by the water supply and guaranteeing the pressure balance of the water supply system.
Further, a storage pipe 16 is installed between adjacent communication control valves 15, a side valve port 17 is installed on one side of the storage pipe 16 close to the middle position, the storage pipe 16 is used for storing some water bodies flowing into the interior, and the side valve port 17 is used for communicating with each level for the water bodies in each level to flow into the interior.
Further, a main water inlet pipe 11 is installed at the middle position of the upper end of the water storage tank 8, auxiliary water inlet pipes 12 are installed on two sides of the main water inlet pipe 11, a supporting base 7 is installed below the water supply mechanism body 1, and the main water inlet pipe 11 and the auxiliary water inlet pipes 12 are used for achieving the purpose of adding water.
Further, a use method of the multifunctional water supply device for the intelligent water service comprises the following steps:
the method comprises the following steps: the treated water body is conveyed into the water storage tank 8 from the main water inlet pipe 11 or the auxiliary water inlet pipe 12 for storage and used for subsequent water supply, the water body entering the inside penetrates through the interlayer water filtering frame 14 in the falling process, the water body is contacted with the high-efficiency filter screen 30 on the upper surface of the interlayer water filtering frame 14, trace impurities possibly existing in the water body are filtered, the water body is placed at different levels according to the entering time, when the water body entering the inside at first is opened and falls to the lowest position for waiting, the lowest position is stored to two thirds of the space and then the flow channel is closed, the closing process can drive the baffle plate 37 to rotate through the second motor group 36 to enable the bottom plate filter screen 38 to be shielded and sealed, the water body added for the second time is blocked by the baffle plate 37 to enable the water body to exist at the upper level of the lowest layer, the water injection operation is continued according to the process until all levels are fully stored, the water bodies placed in a separated mode can be detected by the interlayer water body detection mechanism 13 at the corresponding level, so that the storage safety of the water bodies in the water bodies is guaranteed, and when the stored water bodies are not used due to lack of daily water supply, the water bodies can be conveyed into a simulation water tank 22 in a simulation water supply tank 21 through the quantity control simulation pipe 20; the internal detection mechanism 24 in the simulation water tank 22 is used for detecting the water consumption of the storage water body, and the process is used for simulating the water consumption of a user to detect whether the potential safety hazard exists after the user uses the storage water body;
step two: the detection effect of the simulation water tank 22 on the internal water body can be enhanced by additionally arranging the sampling pipe 25 and the sampling detection mechanism 26 in the detection process, the stored water bodies of different levels can downwards control the quantity of the water bodies of different levels through the structures at the positions of the communication control valve 15, the storage pipe 16 and the side valve ports 17 so as to achieve the effect of sampling of different levels, the water bodies can be conveyed into the falling water collection tank 28 from the position of a falling water port 27 at the bottom after the detection is completed at a plurality of groups of simulation water tanks 22, and then the water bodies are sent out to areas such as a treatment mechanism through the delivery pipe 29;
step three: in the water storage process, the materials can be fed inwards through the feeding port 19, the first motor group 31 at the mixed layer 34 is used for driving the transmission rod 32 and the mixing stirring blades 33 to be mixed with the water body so as to reach the required standard of the water body, the water body reaching the standard is sent into the non-negative-pressure flow stabilization tank 4 through the flow stabilization tank communication port 18 for non-negative-pressure quantity control storage, and then the water body can be sent out through the water supply conveying pipe fitting 5 and the pump set 41.
It will be evident to those skilled in the art that the invention is not limited to the details of the foregoing illustrative embodiments, and that the present invention may be embodied in other specific forms without departing from the spirit or essential attributes thereof. The present embodiments are therefore to be considered in all respects as illustrative and not restrictive, the scope of the invention being indicated by the appended claims rather than by the foregoing description, and all changes which come within the meaning and range of equivalency of the claims are therefore intended to be embraced therein. Any reference sign in a claim should not be construed as limiting the claim concerned.