CN219222817U - Self-adaptive instant heating type flow-adjustable water boiler for high plain - Google Patents
Self-adaptive instant heating type flow-adjustable water boiler for high plain Download PDFInfo
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- CN219222817U CN219222817U CN202223140917.0U CN202223140917U CN219222817U CN 219222817 U CN219222817 U CN 219222817U CN 202223140917 U CN202223140917 U CN 202223140917U CN 219222817 U CN219222817 U CN 219222817U
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Abstract
The utility model discloses a self-adaptive instant heating type flow adjustable water boiler for a plateau, which belongs to the technical field of water boilers and comprises a water boiler body, wherein a control cabinet is arranged at the upper part of the water boiler body, a PLC (programmable logic controller) and a display panel are arranged in the control cabinet, a water tank is arranged behind the control cabinet, a water level gauge is arranged on one side of the water tank, a heavy hammer, a water level probe, a pressure sensor, a pressure switch and an exhaust hole are arranged at the upper part of the water tank, a vertical combustor is arranged at the lower part of the water boiler body, a waterway system is arranged at the bottom of the vertical combustor, and the waterway system comprises a pipeline, a water inlet magnetic gear pump and a water outlet magnetic gear pump. The utility model has the beneficial effects of automatically identifying the altitude, realizing self-adaptive work of the burner on the plateau, ensuring normal and reliable operation of equipment, saving labor cost, saving time and labor and greatly improving the working efficiency.
Description
Technical Field
The utility model relates to the technical field of water boilers, in particular to a self-adaptive instant heating type flow-adjustable water boiler for a plateau.
Background
The water boiler utilizes a heating device to heat water into drinkable boiled water, thereby providing drinkable boiled water. The water boiler needs different temperatures for heating boiled water at different altitudes.
Chinese patent (bulletin No. CN202220428396.X, bulletin day: day 2022, month 8, day 05) relates to an instant heating type large flux water purifier with a preheating container. The purified water of the purifying unit is respectively connected with the electronic faucet and the preheating container through the matching of the three-way valve, and the three-way valve is respectively connected with the electronic faucet and the preheating container to be subjected to on-off control by the water inlet electromagnetic valve I and the water inlet electromagnetic valve II; one side of the lower end of the preheating container is connected with the instant heating module through a preheating water pipeline, and the instant heating module is connected with the electronic faucet; the exhaust channel at the upper end of the preheating container is connected with the electronic faucet. The purification system and the instant heating system are combined together, so that the boiled water can be quickly heated, and in addition, the heat exchanger is adopted for temperature regulation and control to realize water outlet at different temperatures, so that the diversified requirements are met. But it has the following drawbacks: 1. the water boiler is not subjected to pressure bearing design and cannot meet the requirements of high-altitude areas; 2. the water boiler adopts fixed gear for heating, needs to be preheated in advance when heating a large amount of water, and needs longer heating time in the early stage.
Disclosure of Invention
Aiming at the defects of the background technology, the utility model provides a self-adaptive instant heating type flow-adjustable water boiler for a plateau. Compared with the prior art, the technology saves energy utilization rate, improves operation effect and high altitude environment applicability.
The utility model adopts the following technical scheme for solving the technical problems:
the utility model provides a self-adaptation instant heating type flow adjustable boiler in high plain, including the boiler body, boiler body upper portion is equipped with the switch board, establish the PLC controller in the switch board, display panel is installed to the switch board in the middle of the switch board, be equipped with the water tank at the back, the fluviograph is installed to water tank one side, weight is installed on water tank upper portion, the water level probe, pressure sensor, pressure switch and exhaust hole, boiler body lower part is equipped with vertical combustor, vertical combustor bottom is equipped with waterway system, waterway system contains the pipeline, intake magnetic gear pump and play water magnetic gear pump, intake magnetic gear pump's input passes through the pipeline and connects outside water source, intake magnetic gear pump's output passes through the pipeline and links to each other with the water tank, it stretches out outside the boiler body to go out through the pipeline to go out the output of water magnetic gear pump, display panel, vertical combustor, play water magnetic gear pump, intake magnetic gear pump and pressure sensor are connected with the PLC controller electricity.
Because weight, water level probe, pressure sensor, pressure switch and exhaust hole are installed on water tank upper portion to when the water tank internal pressure was too high, the PLC controller can be through the descending of solenoid valve (not shown in the figure) control weight and drive pressure switch's disconnection, thereby makes the pressure in the water tank discharge from the exhaust hole, maintains the pressure in the water tank at normal level, effectively protects the normal operating of equipment in the plateau area.
Preferably, a pressure gauge is further provided at the upper portion of the water tank so that a user directly observes the pressure of the water tank.
Preferably, the water tank further comprises a heat exchanger mounting frame, wherein the heat exchanger mounting frame is arranged at the upper end of the water tank, a heat exchanger is arranged on the heat exchanger mounting frame, and a chimney is arranged on the upper portion of the heat exchanger.
Preferably, the water tank further comprises a temperature sensor arranged in the water tank for monitoring the temperature in the water tank.
Preferably, the water boiler further comprises a circulating water pump, wherein the circulating water pump is positioned at the lower part of the water boiler body, and the circulating water pump is positioned behind the water inlet magnetic gear pump and the water outlet magnetic gear pump.
Preferably, the weight includes a first weight and a second weight, and the first weight is located above the second weight.
Preferably, the pressure gauge, the first weight and the second weight are located at one side of the water tank, and the water level probe, the pressure sensor, the pressure switch and the air vent are located at the other side of the water tank.
More preferably, the inner cavity wall of the water tank adopts an arc-shaped structure.
Compared with the prior art, the technical scheme provided by the utility model has the following technical effects:
the utility model adopts the arc design to add the pressure-bearing structure on the inner cavity wall of the water tank, can bear larger pressure, thus realizing the pressurized water boiling operation on the plateau, adopting the device capable of rapidly exchanging heat and the heat exchanging mode to realize the instant heating of the boiled water discharged by the equipment, adopting the high-precision magnetic gear pump to be used for adjusting the water inflow and outflow, simultaneously internally arranging the air pressure sensor to automatically identify the altitude, realizing the self-adaptive operation of the burner on the plateau, adding a series of protection structures to ensure the normal and reliable operation of the equipment, saving the cost, saving time and labor and greatly improving the operation efficiency.
Drawings
FIG. 1 is a front view of the present utility model;
FIG. 2 is a rear view of the present utility model;
FIG. 3 is a rear view of the present utility model;
FIG. 4 is a schematic view of a water tank of the present utility model;
FIG. 5 is a schematic diagram of a waterway according to the present utility model.
Detailed Description
The technical scheme of the utility model is further described in detail below with reference to the accompanying drawings. It should be understood that the present utility model may be embodied in many different forms and should not be construed as limited to the embodiments set forth herein. Rather, these embodiments are provided so that this disclosure will be thorough and complete.
As shown in figures 1-5, the self-adaptive instant heating type flow adjustable water boiler for the plateau comprises a water boiler body 1, a control cabinet 2 is arranged on the upper portion of the water boiler body 1, a PLC controller is arranged in the control cabinet 2, a display panel 3 is arranged in the middle of the control cabinet 2, a water tank 7 is arranged behind the control cabinet 2, a water level meter 18 is arranged on one side of the water tank 7, a pressure gauge 11, a first heavy hammer 12, a second heavy hammer 13, a water level probe 14, a pressure sensor 15, a pressure switch 16 and an exhaust hole 17 are arranged on the upper portion of the water tank 7, a vertical combustor 4 is arranged on the lower portion of the water boiler body 1, a waterway system is arranged at the bottom of the vertical combustor 4, the waterway system comprises a pipeline, a water inlet magnetic gear pump 6 and a water outlet magnetic gear pump 5, the input end of the water inlet magnetic gear pump 6 is connected with an external water source through a pipeline, the output end of the water inlet magnetic gear pump 6 is connected with the water tank 7 through a pipeline, the input end of the water outlet magnetic gear pump 5 is connected with the water tank 7 through a pipeline, the output end of the water outlet magnetic gear pump 5 is stretched out of the water boiler body 1 through the pipeline, and the display panel 3, the vertical combustor 4, the water outlet magnetic gear pump 5, the water outlet magnetic gear pump 6, the water pump 6 and the water inlet magnetic gear pump 15 are connected with the PLC. Because the pressure gauge 11, the first heavy hammer 12, the second heavy hammer 13, the water level probe 14, the pressure sensor 15, the pressure switch 16 and the exhaust hole 17 are arranged on the upper portion of the water tank 7, when the pressure in the water tank 7 is too high, the PLC controller can control the first heavy hammer 12 and the second heavy hammer 13 to drop through the electromagnetic valve and drive the pressure switch 16 to be disconnected, so that the pressure in the water tank 7 is discharged from the exhaust hole 17, the pressure in the water tank 7 is maintained at a normal level, and the normal operation of equipment in a plateau area is effectively protected.
In order to maintain the normal operation of the equipment, the utility model is also provided with a heat exchanger mounting frame 8 at the upper end of the water tank 7, a heat exchanger 9 is arranged on the heat exchanger mounting frame 8, and a chimney 10 is arranged at the upper part of the heat exchanger 9.
To better monitor the temperature in the water tank 7, the present utility model installs a temperature sensor 20 in the water tank 7.
In order to control the water temperature, the utility model also comprises a circulating water pump 19, wherein the circulating water pump 19 is positioned at the lower part of the water boiler body 1, and the circulating water pump 19 is positioned at the rear parts of the water inlet magnetic gear pump 6 and the water outlet magnetic gear pump 5.
Of course, in order to facilitate the installation of the above components, the pressure gauge 11, the first weight 12 and the second weight 13 of the present utility model are located at one side of the water tank 7, and the water level probe 14, the pressure sensor 15, the pressure switch 16 and the air vent 17 are located at the other side of the water tank 7.
The working principle of the utility model is as follows: before using, the water tank 7 is powered on, the water level probe 14 is started through the control cabinet 2, when the water level probe 14 detects that the water level is insufficient, the PLC controller automatically starts the water inlet magnetic gear pump 6 to supplement water to the water tank 7, and when the water level probe 14 of the water tank 7 detects the water level, the PLC controller automatically closes the water inlet magnetic gear pump 6 to stop water supplement. Meanwhile, the PLC starts the vertical burner 4 to heat the water in the water tank 7 and change the water into boiled water. When the temperature sensor 20 in the water tank detects that the temperature in the water tank reaches a set value, water can be taken out by opening the water outlet magnetic gear pump 5, the water inlet magnetic gear pump 6 is correspondingly opened to supplement water while the water outlet magnetic gear pump 5 is opened, the water quantity in the water tank 7 is kept constant, the vertical combustion engine 4 adjusts the required power according to the water quantity to heat so as to ensure that the water outlet temperature can be constant and reliable, the circulating water pump 19 is always in operation when the vertical combustion engine 4 heats, and the operation can be stopped after the vertical combustion engine 4 is closed until the water is boiled. The pressure gauge 11, the first weight 12, the first weight 13, the water level probe 14, the pressure sensor 15 and the pressure switch 16 which are arranged on the upper part of the water tank 7 play a role in protecting the operation of the whole equipment.
It will be understood by those skilled in the art that, unless otherwise defined, all terms (including technical and scientific terms) used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this utility model belongs. It will be further understood that terms, such as those defined in commonly used dictionaries, should be interpreted as having a meaning that is consistent with their meaning in the context of the prior art.
While the foregoing is directed to embodiments of the present utility model, other and further embodiments of the utility model may be devised without departing from the basic scope thereof, and the scope thereof is determined by the claims that follow.
Claims (8)
1. A self-adaptive instant heating type flow-adjustable water boiler for a plateau is characterized in that: including boiler body (1), boiler body (1) upper portion is equipped with switch board (2), establish the PLC controller in switch board (2), display panel (3) are installed in the middle of switch board (2), be equipped with water tank (7) at the back of switch board (2), water level gauge (18) are installed to water tank (7) one side, the weight is installed on water tank (7) upper portion, water level probe (14), pressure sensor (15), pressure switch (16) and exhaust hole (17), boiler body (1) lower part is equipped with vertical combustor (4), vertical combustor (4) bottom is equipped with waterway system, waterway system contains the pipeline, magnetic force gear pump (6) and go out water magnetic force gear pump (5), the input of magnetic force gear pump (6) of intaking passes through the external water source of pipe connection, the output of magnetic force gear pump (6) of intaking passes through the pipeline and links to each other with water tank (7), the input of magnetic force gear pump (5) of going out water links to each other with water tank (7) through the pipeline, the output of magnetic force gear pump (5) passes through the pipeline to stretch out outside boiler body (1), outside display panel (3), magnetic force gear pump (4), magnetic force pump (5) go out water magnetic force gear pump (5) and magnetic force pump (15) are connected with electric force sensor (15).
2. The self-adaptive instant heating type flow-adjustable water boiler for plateaus according to claim 1, wherein the self-adaptive instant heating type flow-adjustable water boiler is characterized in that: the upper part of the water tank (7) is also provided with a pressure gauge (11).
3. The self-adaptive instant heating type flow-adjustable water boiler for plateaus according to claim 1, wherein the self-adaptive instant heating type flow-adjustable water boiler is characterized in that: the heat exchanger comprises a water tank (7), and is characterized by further comprising a heat exchanger mounting frame (8), wherein the heat exchanger mounting frame (8) is arranged at the upper end of the water tank (7), a heat exchanger (9) is arranged on the heat exchanger mounting frame (8), and a chimney (10) is arranged on the upper portion of the heat exchanger (9).
4. The self-adaptive instant heating type flow-adjustable water boiler for plateaus according to claim 1, wherein the self-adaptive instant heating type flow-adjustable water boiler is characterized in that: the water tank also comprises a temperature sensor (20), wherein the temperature sensor (20) is arranged in the water tank (7) and is used for monitoring the temperature in the water tank (7).
5. The self-adaptive instant heating type flow-adjustable water boiler for plateaus according to claim 1, wherein the self-adaptive instant heating type flow-adjustable water boiler is characterized in that: the water boiler further comprises a circulating water pump (19), wherein the circulating water pump (19) is positioned at the lower part of the water boiler body (1), and the circulating water pump (19) is positioned at the rear of the water inlet magnetic gear pump (6) and the water outlet magnetic gear pump (5).
6. The self-adaptive instant heating type flow-adjustable water boiler for plateaus according to claim 1, wherein the self-adaptive instant heating type flow-adjustable water boiler is characterized in that: the heavy hammer comprises a first heavy hammer (12) and a second heavy hammer (13), and the first heavy hammer (12) is positioned above the second heavy hammer (13).
7. The plateau self-adaptive instant heating type flow-adjustable water boiler as claimed in claim 6, wherein: the pressure gauge (11), the first heavy hammer (12) and the second heavy hammer (13) are positioned on one side of the water tank (7), and the water level probe (14), the pressure sensor (15), the pressure switch (16) and the exhaust hole (17) are positioned on the other side of the water tank (7).
8. The self-adaptive instant heating type flow-adjustable water boiler for plateaus according to claim 1, wherein the self-adaptive instant heating type flow-adjustable water boiler is characterized in that: the inner cavity wall of the water tank (7) adopts an arc-shaped structure.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202223140917.0U CN219222817U (en) | 2022-11-25 | 2022-11-25 | Self-adaptive instant heating type flow-adjustable water boiler for high plain |
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CN202223140917.0U CN219222817U (en) | 2022-11-25 | 2022-11-25 | Self-adaptive instant heating type flow-adjustable water boiler for high plain |
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CN219222817U true CN219222817U (en) | 2023-06-20 |
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CN202223140917.0U Active CN219222817U (en) | 2022-11-25 | 2022-11-25 | Self-adaptive instant heating type flow-adjustable water boiler for high plain |
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2022
- 2022-11-25 CN CN202223140917.0U patent/CN219222817U/en active Active
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