CN112656212A - Intelligent non-pressure heat exchange boiled water drinking equipment - Google Patents

Intelligent non-pressure heat exchange boiled water drinking equipment Download PDF

Info

Publication number
CN112656212A
CN112656212A CN202010049314.6A CN202010049314A CN112656212A CN 112656212 A CN112656212 A CN 112656212A CN 202010049314 A CN202010049314 A CN 202010049314A CN 112656212 A CN112656212 A CN 112656212A
Authority
CN
China
Prior art keywords
water
heat exchange
boiled
water outlet
water tank
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Pending
Application number
CN202010049314.6A
Other languages
Chinese (zh)
Inventor
梁裕镳
韦东方
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Guangdong Bili Drinking Water Equipment Co ltd
Original Assignee
Guangdong Bili Drinking Water Equipment Co ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Guangdong Bili Drinking Water Equipment Co ltd filed Critical Guangdong Bili Drinking Water Equipment Co ltd
Priority to CN202010049314.6A priority Critical patent/CN112656212A/en
Publication of CN112656212A publication Critical patent/CN112656212A/en
Pending legal-status Critical Current

Links

Images

Abstract

The invention relates to an intelligent non-pressure heat exchange boiled water drinking device. The water heater comprises a water inlet pipeline, a heating water tank, a heat exchange water tank, a warm boiled water outlet pipeline, a boiled water outlet valve and a boiled water outlet pipeline, wherein a heating device is arranged in the heating water tank, a heat exchange coil, a water pump and the warm boiled water outlet valve are sequentially arranged on the warm boiled water outlet pipeline according to the warm boiled water outlet direction, the heat exchange coil is arranged in the heat exchange water tank, and a first water inlet and a first water outlet on the heat exchange water tank are connected in series on the water inlet pipeline. According to the invention, the boiled water in the heating water tank enters the heat exchange coil, and meanwhile, the tap water enters the heat exchange water tank, so that the boiled water exchanges heat with the tap water in the heat exchange water tank through the heat exchange coil, thereby preheating the tap water, improving the heating efficiency, and simultaneously reducing the temperature of the boiled water in the heat exchange coil to become warm boiled water. Therefore, the invention can provide boiled water and warm boiled water, and can meet various requirements of users on hot water.

Description

Intelligent non-pressure heat exchange boiled water drinking equipment
Technical Field
The invention relates to the technical field of drinking equipment, in particular to intelligent non-pressure heat exchange boiled water drinking equipment.
Background
The water dispenser is widely applied to the life of people, but when in use, the following problems can be encountered: the existing drinking equipment can only provide tap water or boiled water, the tap water is not boiled and is unhealthy, while the boiled water is drunk, some people choose to place the boiled water for gradual cooling when wanting to drink warm water, but the method is time-consuming, and people can drink the tap water with hot water, although the people with poor physical quality can drink the warm water quickly, the people are easy to get ill. Therefore, the existing water dispenser can not provide warm water and can not meet different requirements of users on hot water.
Disclosure of Invention
The invention aims to provide intelligent non-pressure heat exchange boiled water drinking equipment capable of improving heating efficiency and providing warm boiled water.
The purpose of the invention is realized as follows:
the utility model provides an intelligence non-pressure heat exchange boiling water drinking equipment, includes water intake pipe, heating water tank, heat exchange water tank, warm boiled water outlet pipe way, boiling water outlet valve and boiling water outlet pipe way, be equipped with heating device in the heating water tank, heating water tank and water intake pipe intercommunication, heating water tank and boiling water outlet pipe way intercommunication, warm boiled water outlet pipe way and heating water tank intercommunication, warm boiled water outlet pipe is provided with heat exchange coil, water pump and warm boiled water outlet valve according to warm boiled water play water direction on the road, heat exchange coil locates in the heat exchange water tank, be provided with first water inlet and first delivery port on the heat exchange water tank, first water inlet and first delivery port on the heat exchange water tank establish ties on the water intake pipe way, first water inlet on the heat exchange water tank is connected with the inlet tube, be equipped with. The boiled water heated by the heating water tank enters the heat exchange coil pipe, and meanwhile, the tap water enters the heat exchange water tank through the water inlet pipe, so that the boiled water exchanges heat with the tap water in the heat exchange water tank through the heat exchange coil pipe, the tap water is preheated, the heating efficiency is improved, the electric energy is saved, and meanwhile, after the boiled water in the heat exchange coil pipe exchanges heat, the temperature is reduced to become warm boiled water which can be directly drunk. Therefore, the invention can provide boiled water and warm boiled water, and can meet various requirements of users on hot water.
The present invention may be further improved as follows.
The top of the heating water tank is provided with an exhaust port, the heating water tank is provided with a vent pipe, the top end of the vent pipe is communicated with the top of the heating water tank, and the bottom end of the vent pipe is communicated with the heat exchange coil. The gas vent can be discharged the steam that produces in the heating water tank, and the permeability cell can be with the steam discharge to the heating water tank in the heat transfer coil to reduced heating water tank and heat transfer coil's pressure, the heat transfer coil of also being convenient for simultaneously intakes.
The water inlet control valve is a water inlet electromagnetic valve and/or a throttle valve. The water inlet electromagnetic valve and the throttle valve are used for controlling the water inlet pipe to enter water or stopping water inlet, and the throttle valve is used for controlling the water pressure of the heat exchange water tank.
The heating water tank is provided with a second water inlet and a second water outlet, the second water inlet of the heating water tank is communicated with the water inlet pipeline, the second water outlet of the heating water tank is communicated with the boiled water outlet pipeline, and the warm boiled water outlet pipeline is communicated with the boiled water outlet pipeline. Therefore, the heating water tank only needs to be provided with the second water outlet, the boiled water outlet pipeline is communicated with the warm boiled water outlet pipeline, partial pipelines are omitted, and the heating water tank is simple in structure, low in production cost and easy to produce.
The tail end of the boiled water outlet pipeline is connected with the tail end of the warm boiled water outlet pipeline in parallel, and a water outlet is arranged. The invention only needs to arrange one water outlet which is communicated with the boiled water outlet pipeline and the warm boiled water outlet pipeline, and the water outlet can output boiled water or warm boiled water, thereby omitting partial pipelines, having simple structure, low production cost and easy production.
The tail end of the boiled water outlet pipeline is correspondingly provided with a boiled water outlet valve which is provided with a boiled water outlet, and the tail end of the boiled water outlet pipeline is correspondingly provided with a warm boiled water outlet valve which is provided with a warm boiled water outlet.
The heat exchange coil is connected in series on a warm boiled water outlet pipeline.
And the first water outlet of the heat exchange water tank is communicated with the second water inlet of the heating water tank through a water inlet pipeline.
The warm boiled water outlet valve and the boiled water outlet valve are electromagnetic valves or manual valves.
The heat exchange coil is in a snake shape or a spiral shape, so that the heat exchange area of the heat exchange coil is increased, and the heat exchange efficiency is effectively improved.
The water heater is characterized in that a high water level electrode, a low water level electrode and a temperature probe are arranged in the heating water tank, the temperature probe is used for detecting the water temperature in the heating water tank, and the high water level electrode and the low water level electrode are used for detecting the water level in the heating water tank.
The heating water tank is characterized in that the top and the bottom of the heating water tank are respectively provided with an air outlet and a sewage draining outlet, steam generated in the heating water tank is drained through the air outlet, so that the pressure of the heating water tank is reduced, and the sewage draining outlet is used for draining away dirt at the bottom of the heating water tank.
The top of heating water tank is located to heating water tank's second water inlet, be equipped with the extension pipe on the second water inlet, the upper end and the water intake pipe intercommunication of extension pipe, the lower extreme of extension pipe extends to heating water tank's bottom, the extension pipe guides the running water to heating water tank bottom to avoid boiling water and running water to mix.
The invention has the following beneficial effects:
the invention (I) uses the heat exchange water tank to exchange heat between tap water and boiled water, thereby realizing the preheating of tap water, improving heating efficiency and saving electric energy, and simultaneously, boiled water is processed by the heat exchange water tank to become warm water which can be directly drunk. Therefore, the invention can provide boiled water and warm boiled water, and can meet various requirements of users on hot water. The invention overcomes the defect that the traditional water dispenser can not provide warm boiled water, and the warm boiled water can be drunk after being boiled and is convenient to use.
In addition, the ventilation pipe can exhaust steam in the heat exchange coil, so that the pressure of the heat exchange coil is reduced, and water can be conveniently fed into the heat exchange coil.
And (III) the water pump quickly conveys warm boiled water in the heat exchange water tank to the warm boiled water electromagnetic valve, so that the heat exchange efficiency of the heat exchange water tank is effectively improved.
Drawings
Fig. 1 is a schematic structural diagram of an intelligent non-pressure heat exchange water boiling and drinking device according to an embodiment of the invention. (the solid arrows in FIG. 1 indicate the direction of water flow).
Detailed Description
The invention is further described with reference to the following figures and examples.
In the first embodiment, as shown in fig. 1, an intelligent non-pressure heat exchange boiled water drinking device includes an electronic control module 25, a water inlet pipeline 3, a heating water tank 1, a heat exchange water tank 2, a boiled water outlet valve 5, a boiled water outlet pipeline 4, and a warm boiled water outlet pipeline 40, a heating device 7 is disposed in the heating water tank 1, the heating water tank 1 is communicated with the water inlet pipeline 3, the heating water tank 1 is communicated with the boiled water outlet pipeline 4, the warm boiled water outlet pipeline 40 is communicated with the heating water tank 1, a heat exchange coil 20, a water pump 23, and a warm boiled water outlet valve 6 are sequentially disposed on the warm boiled water outlet pipeline 40 in a warm boiled water outlet direction, and the heat exchange coil 20 is disposed in the heat exchange water tank. The heat exchange water tank 2 is provided with a first water inlet 21 and a first water outlet 22, and the first water inlet 21 and the first water outlet 22 on the heat exchange water tank 2 are connected in series on the water inlet pipeline 3. The first water inlet 21 on the heat exchange water tank 2 is connected with a water inlet pipe 8, and a water inlet control valve 91 is arranged on the water inlet pipe 8.
The present invention is a more specific embodiment.
The top of the heating water tank 1 is provided with an exhaust port 13, the heating water tank 1 is provided with a vent pipe 14, the top end of the vent pipe 14 is communicated with the top of the heating water tank 1, and the bottom end of the vent pipe 14 is communicated with the heat exchange coil 20.
The water inlet control valve 91 is a water inlet solenoid valve 9 and/or a throttle valve 10.
The heat exchange coil 20 is connected in series to the warm boiled water outlet pipeline 40.
The heating water tank 1 is provided with a second water inlet 11 and a second water outlet 12, the second water inlet 11 of the heating water tank is communicated with the water inlet pipeline 3, the second water outlet 12 of the heating water tank 1 is communicated with the boiled water outlet pipeline 4, and the warm boiled water outlet pipeline 40 is communicated with the boiled water outlet pipeline 4.
The first water outlet 22 of the heat exchange water tank 2 is communicated with the second water inlet 11 of the heating water tank 1 through the water inlet pipeline 3.
A third water inlet 27 is arranged at one end of the heat exchange water tank 2 corresponding to the heat exchange coil 20, and a third water outlet 26 is arranged at the other end of the heat exchange water tank 2 corresponding to the heat exchange coil 20. The third water inlet 27 of the heat exchange water tank 2 is communicated with the boiled water outlet pipeline 4, and the third water outlet 26 of the heat exchange water tank 2 is communicated with the warm boiled water outlet valve 6.
The end of the boiled water outlet pipeline 4 is connected with the end of the warm water outlet pipeline 40 in parallel, and is provided with a water outlet 24. Of course, the present invention may also be designed such that the boiled water outlet valve 5 is correspondingly disposed at the end of the boiled water outlet pipeline 4 and is provided with a boiled water outlet (not shown in the figure), and the warm boiled water outlet valve 6 is correspondingly disposed at the end of the boiled water outlet pipeline 4 and is provided with a warm boiled water outlet (not shown in the figure).
The heat exchange water tank 2 is positioned below the second water outlet 12 on the heating water tank 1.
The warm boiled water outlet valve 6 and the boiled water outlet valve 5 are electromagnetic valves or manual valves.
The heat exchange coil 20 is serpentine or helical in shape.
A high water level electrode 15, a low water level electrode 16 and a temperature probe 17 are arranged in the heating water tank 1.
The top and the bottom of the heating water tank 1 are respectively provided with an exhaust port 13 and a sewage outlet 18.
The top of heating water tank 1 is located to second water inlet 11, be equipped with extension pipe 19 on the second water inlet 11, the upper end and the inlet channel 3 intercommunication of extension pipe 19, the lower extreme of extension pipe 19 extends to the bottom of heating water tank 1.
The electric control module 25 is used for controlling the operation of the whole drinking water equipment, and the electric control module 25 is respectively electrically connected with the high water level electrode 15, the low water level electrode 16, the temperature probe 17, the warm boiled water outlet valve 6, the water pump 23 and the boiled water outlet valve 5.
The working principle of the invention is as follows:
when the water heater works, tap water enters the heat exchange water tank through the water inlet pipeline, meanwhile, the heating device heats water in the heating water tank, the tap water in the heating water tank is heated to boil and becomes boiled water, the water level in the heating water tank rises, the boiled water in the heating water tank overflows the second water outlet of the heating water tank, the boiled water in the heating water tank is output by the two ways of the water outlet pipeline 4 and the warm water outlet pipeline 40, the boiled water in the boiled water outlet pipeline 4 is conveyed to the boiled water outlet valve 5, the electric control module 25 controls the boiled water outlet valve 5 to be opened (or manually opened by a user), and the boiled water is output by the water outlet 24.
Boiled water in the warm boiled water outlet pipeline 40 is conveyed to a heat exchange coil in the heat exchange water tank, the boiled water exchanges heat with tap water in the heat exchange water tank, after heat exchange, the temperature of the tap water in the heat exchange water tank rises, the temperature of the boiled water in the heat exchange coil drops to become warm boiled water, then the water pump pumps water, the warm boiled water continuously flows to the warm boiled water outlet valve 6, the electric control module 25 controls the warm boiled water outlet valve 6 to be opened (or manually opened by a user), and the water outlet 24 outputs the warm boiled water.
Therefore, the invention can preheat the tap water, improve the heating efficiency, save the electric energy, reduce the temperature of the boiled water into warm boiled water, and meet the water demand of the user.

Claims (10)

1. An intelligent non-pressure heat exchange boiled water drinking device comprises a water inlet pipeline, a heating water tank, a boiled water outlet valve and a boiled water outlet pipeline, a heating device is arranged in the heating water tank, the heating water tank is communicated with the water inlet pipeline, the heating water tank is communicated with the boiled water outlet pipeline, it is characterized by also comprising a warm boiled water outlet pipeline and a heat exchange water tank, wherein the warm boiled water outlet pipeline is communicated with the heating water tank, the warm boiled water outlet pipeline is successively provided with a heat exchange coil, a water pump and a warm boiled water outlet valve according to the warm boiled water outlet direction, the heat exchange coil is arranged in the heat exchange water tank, the heat exchange water tank is provided with a first water inlet and a first water outlet, the first water inlet and the first water outlet on the heat exchange water tank are connected in series on the water inlet pipeline, a first water inlet on the heat exchange water tank is connected with a water inlet pipe, and a water inlet control valve is arranged on the water inlet pipe.
2. The intelligent non-pressure heat exchange water boiling and drinking device as claimed in claim 1, wherein an air outlet is arranged at the top of the heating water tank, a vent pipe is arranged on the heating water tank, the top end of the vent pipe is communicated with the top of the heating water tank, and the bottom end of the vent pipe is communicated with the heat exchange coil pipe.
3. The intelligent pressureless heat exchange water boiling and drinking device according to claim 2, wherein the water inlet control valve is a water inlet solenoid valve and/or a throttle valve.
4. The intelligent non-pressure heat exchange boiling water drinking device as claimed in claim 2, wherein the heating water tank is provided with a second water inlet and a second water outlet, the second water inlet of the heating water tank is communicated with the water inlet pipeline, the second water outlet of the heating water tank is communicated with the boiling water outlet pipeline, and the warm boiling water outlet pipeline is communicated with the boiling water outlet pipeline.
5. The intelligent pressureless heat exchange boiled water drinking equipment as claimed in claim 1, wherein the heat exchange coil is connected in series with a boiled water outlet pipeline.
6. The intelligent non-pressure heat exchange boiled water drinking device as claimed in claim 2, wherein the boiled water outlet pipeline has a boiled water outlet valve at its end, and a warm boiled water outlet valve at its end.
7. The intelligent pressureless heat exchange boiled water drinking device as claimed in claim 2, wherein the end of the boiled water outlet pipeline and the end of the warm boiled water outlet pipeline are connected in parallel and are provided with a water outlet.
8. The intelligent pressureless heat exchange water boiling and drinking device as claimed in claim 4, wherein the second water inlet is provided at the top of the heating water tank, the second water inlet is provided with an extension pipe, the upper end of the extension pipe is communicated with the water inlet pipeline, and the lower end of the extension pipe extends to the bottom of the heating water tank.
9. The intelligent non-pressure heat exchange boiled water drinking device as claimed in claim 8, wherein the warm boiled water outlet valve and the boiled water outlet valve are solenoid valves or manual valves.
10. The intelligent pressureless heat exchange water boiling and drinking device as claimed in claim 9, wherein a high water level electrode, a low water level electrode and a temperature probe are arranged in the heating water tank.
CN202010049314.6A 2020-01-17 2020-01-17 Intelligent non-pressure heat exchange boiled water drinking equipment Pending CN112656212A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202010049314.6A CN112656212A (en) 2020-01-17 2020-01-17 Intelligent non-pressure heat exchange boiled water drinking equipment

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202010049314.6A CN112656212A (en) 2020-01-17 2020-01-17 Intelligent non-pressure heat exchange boiled water drinking equipment

Publications (1)

Publication Number Publication Date
CN112656212A true CN112656212A (en) 2021-04-16

Family

ID=75402731

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202010049314.6A Pending CN112656212A (en) 2020-01-17 2020-01-17 Intelligent non-pressure heat exchange boiled water drinking equipment

Country Status (1)

Country Link
CN (1) CN112656212A (en)

Similar Documents

Publication Publication Date Title
CN202902615U (en) Double-liner heat-pump water heater
CN201814406U (en) Quick water boiling machine
CN204091728U (en) Heat quantity reclaiming type energy-saving drinking machine
CN201561569U (en) Thermostatic water tank for water heater
CN106931645A (en) A kind of energy-saving pure water boiler and its heating means
CN201083433Y (en) Solar energy combined heat pump hot water supplying energy-saving apparatus
CN201237340Y (en) Energy-saving instant water boiling equipment
CN206274228U (en) A kind of steam condensed water waste heat retracting device
CN211609275U (en) Intelligent non-pressure heat exchange boiled water drinking equipment
CN112656212A (en) Intelligent non-pressure heat exchange boiled water drinking equipment
CN207455702U (en) A kind of hot-water central heating system wall hung gas boiler
CN211609295U (en) Water tank type heat exchanger of drinking water equipment
CN216255232U (en) Heat recovery system of konjak cooking pond
CN201983469U (en) Solar heat pump water heater
CN211883411U (en) Non-pressure heat exchange boiled water drinking equipment
CN205536592U (en) Hot boiler is assisted to energy -saving solar energy electricity
CN205367777U (en) Sea water desalting device
CN211609277U (en) Aseptic boiling water drinking water equipment of intelligence constant temperature
CN201016508Y (en) Preheating, instant heating dual-purpose rapid electric heater
CN206222690U (en) A kind of drinking water heating furnace
CN206739645U (en) A kind of double water tank solar water heater
CN201772556U (en) Novel solar water heater
CN206656499U (en) A kind of energy-saving pure water boiler
CN2851954Y (en) Water heater capable of separating boiled water and raw water
CN205235948U (en) Ink production is water circulating system for line

Legal Events

Date Code Title Description
PB01 Publication
PB01 Publication
SE01 Entry into force of request for substantive examination
SE01 Entry into force of request for substantive examination