CN204373193U - Electrical heating energy storage hot-water boiler - Google Patents
Electrical heating energy storage hot-water boiler Download PDFInfo
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- CN204373193U CN204373193U CN201520001859.4U CN201520001859U CN204373193U CN 204373193 U CN204373193 U CN 204373193U CN 201520001859 U CN201520001859 U CN 201520001859U CN 204373193 U CN204373193 U CN 204373193U
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Abstract
Electrical heating energy storage hot-water boiler, there is delivery port the top of box-type furnace, there is water inlet the below of box-type furnace, box-type furnace has water supplement port, there is blast pipe the top of box-type furnace, temperature sensor is inserted with in box-type furnace, temperature sensor is connected with temperature controller, electrical heating elements is connected with power line by temperature controller, the inner chamber of box-type furnace is divided into, lower two sections, epimere is energy storage section, hypomere is heat exchanging segment, heat exchanging segment has dividing wall type heat exchanger, heat exchanger has the hot water outlet and cooling water inlet that stretch out box-type furnace, the energy storage section of box-type furnace has electrical heating elements, circulating pump is connected with pipeline between water inlet and delivery port.Box-type furnace inner chamber of the present utility model has the heat exchanging segment of energy storage section on top and bottom, after the water of energy storage section and heat exchanging segment in box-type furnace being heated to higher more than 90 DEG C of temperature with paddy section electricity at night, energy storage section has the hot water of a great deal of, the heat of energy storage section hot water can be utilized by day, to the radiator heat supply of user, the required electricity charge of heating are lower.
Description
Technical field
The utility model relates to a kind of electrothermal homogeneous solution-type reactor, particularly a kind of box-type furnace of electrothermal homogeneous solution-type reactor.
Background technology
Electrothermal homogeneous solution-type reactor is the device being energy sources for heating water with electricity and providing hot water.Electrothermal homogeneous solution-type reactor has box-type furnace, electrical heating elements is had in box-type furnace, there is delivery port the top of box-type furnace, there is water inlet the below of box-type furnace, box-type furnace has water supplement port, and there is blast pipe the top of box-type furnace, is inserted with temperature sensor in box-type furnace, temperature sensor is connected with temperature controller, and electrical heating elements is connected with power line by temperature controller.
Electrothermal homogeneous solution-type reactor can be used for heating to user.During use, water is loaded at the inner chamber of box-type furnace, according to the output of temperature sensor, the break-make of electrical heating elements is controlled with temperature controller, water in box-type furnace is heated to the hot water of predetermined temperature, hot water is provided from delivery port to the radiator of user, hot water is after the radiator by user is lowered the temperature, return box-type furnace from water inlet to heat again, after the water yield of box-type furnace has loss, from water supplement port to box-type furnace moisturizing, during hypertonia in box-type furnace, blast pipe can discharge the gas in box-type furnace, reduces the pressure in box-type furnace.
During the water of electrothermal homogeneous solution-type reactor in electricity consumption heating element heats box-type furnace, with the mode heating water of Convective Heating, electrical heating elements is the bottom in box-type furnace, does not need to hold too many water, so the volume of box-type furnace is little in box-type furnace.
This electrothermal homogeneous solution-type reactor in use, be electricity consumption heating element heats in box-type furnace after hot water directly provide away, because the volume of box-type furnace is little, the thermal capacity of box-type furnace is little, during use, the water in energising rear chamber type body of heater will soon be used, after power failure by heating, electrical heating elements heating stops heating, and the temperature in box-type furnace can lower very soon.
In order to the use power consumption of balancing electric power mains supply system, electric power network electric power system is divided into peak the power supply among a day by the number of user power utilization amount, paddy, flat three sections, peak, paddy, the electricity charge of flat three sections are different, crest segment is by day, user is many, power consumption is large, the electricity charge are the highest, paddy section is at night, user is few, power consumption is little, the electricity charge are minimum, flat section At All Other Times, user is medium, power consumption is medium, the electricity charge are medium, electric power network presses peak for electric system, paddy, flat three sections of charges, be intended to encourage family to reduce crest segment power consumption, increase paddy section power consumption, power consumption is used with balancing electric power mains supply system.
A lot of electrothermal homogeneous solution-type reactor in use, mainly concentrates on and provides hot water daytime, and night need not provide hot water substantially.In use, crest segment that mainly energy charge is the highest electricity, can not the minimum paddy section electricity of energy charge, so the electricity charge of heating are higher for this electrothermal homogeneous solution-type reactor.
In prior art, the paddy section electricity that the electricity charge can be utilized minimum is not had to provide the electrical heating energy storage hot-water boiler of hot water by day.
Summary of the invention
The purpose of this utility model is to overcome above-mentioned deficiency, proposes the electrical heating energy storage hot-water boiler that a kind of paddy section electricity that the electricity charge can be utilized minimum provides hot water by day.
The utility model realizes with the following method.
Electrical heating energy storage hot-water boiler has box-type furnace, electrical heating elements is had in box-type furnace, there is delivery port the top of box-type furnace, there is water inlet the below of box-type furnace, and box-type furnace has water supplement port, and there is blast pipe the top of box-type furnace, temperature sensor is inserted with in box-type furnace, temperature sensor is connected with temperature controller, and electrical heating elements is connected with power line by temperature controller
The inner chamber of box-type furnace is divided into upper and lower two sections, epimere is energy storage section, hypomere is heat exchanging segment, heat exchanging segment has dividing wall type heat exchanger, heat exchanger has the hot water outlet and cooling water inlet that stretch out box-type furnace, electrical heating elements, in the energy storage section of box-type furnace, is connected with circulating pump with pipeline between water inlet and delivery port.
During use, first with paddy section electricity, the water of energy storage section and heat exchanging segment in box-type furnace is heated to higher more than 90 DEG C of temperature at night, the hot water in box-type furnace is also the water heating in heat exchanger.When needing by day to use hot water, need not be energized, from the hot water outlet of heat exchanger, the hot water in heat exchanger is sent into the radiator of user, hot water is after the radiator by user is lowered the temperature, the heat exchanger in box-type furnace is returned from the cooling water inlet of heat exchanger, the heat of inner chamber hypomere hot water absorbing box-type furnace is heated, then sends from the hot water outlet of heat exchanger and recycle.Water in heat exchanger, in cyclic process, is lowered the temperature in the radiator heat release of user, heats up in the hypomere heat absorption of box-type furnace inner chamber.Water in heat exchanger is when the hypomere of the box-type furnace inner chamber heat absorbed in box-type furnace inner chamber hypomere hot water heats up, the temperature of box-type furnace inner chamber hypomere hot water declines, density due to the higher water of temperature is less than the density of the lower water of temperature, now, the temperature of box-type furnace inner chamber epimere hot water is higher, ON cycle pump, hot water higher for box-type furnace inner chamber epimere temperature can be sent into the hypomere of box-type furnace inner chamber, with the water in the hot water heating heat exchanger that temperature is higher, the radiator of circulating-heating user.
Box-type furnace inner chamber of the present utility model has at the energy storage section on top and the heat exchanging segment in bottom, and energy storage section has electrical heating elements, has dividing wall type heat exchanger in heat exchanging segment, has circulating pump between energy storage section and heat exchanging segment.After the water of energy storage section and heat exchanging segment in box-type furnace being heated to higher more than 90 DEG C of temperature with paddy section electricity at night, energy storage section has the hot water of a great deal of, can utilize the heat of energy storage section hot water by day, and to the radiator heat supply of user, needed for heating, the electricity charge are lower.
The heat exchange area size of dividing wall type heat exchanger in the size of box-type furnace inner chamber top of the present utility model energy storage section volume, heat exchanging segment, the size of impact to user's area of heat-supply service, according to the size of user's area of heat-supply service, suitable energy storage section volume and the heat exchange area of heat exchanger can be designed.
Below in conjunction with accompanying drawing, the utility model is further described.
Accompanying drawing explanation
Fig. 1 is that the master of a kind of electrical heating energy storage hot-water boiler proposed according to scheme of the invention of the present utility model cuts open schematic diagram depending on office.
Detailed description of the invention
In Fig. 1, electrical heating energy storage hot-water boiler has box-type furnace 1, has electrical heating elements 2 in box-type furnace, and there is delivery port 3 top of box-type furnace, there is water inlet 4 below of box-type furnace, box-type furnace has water supplement port 5, and water supplement port is connected with water supply tank 6, and there are blast pipe 7 and safety valve 8 in the top of box-type furnace, temperature sensor 9 is inserted with in box-type furnace, temperature sensor is connected with temperature controller 10, and electrical heating elements is connected with power line 11 by temperature controller
The inner chamber of box-type furnace is divided into upper and lower two section 12,13, epimere is energy storage section, hypomere is heat exchanging segment, heat exchanging segment has dividing wall type heat exchanger 14, heat exchanger has the hot water outlet 15 and cooling water inlet 16 that stretch out box-type furnace, electrical heating elements, in the energy storage section of box-type furnace, is connected with circulating pump 17 with pipeline 16 between water inlet and delivery port.
Claims (1)
1. an electrical heating energy storage hot-water boiler, there is box-type furnace, have electrical heating elements in box-type furnace, there is delivery port the top of box-type furnace, and there is water inlet the below of box-type furnace, box-type furnace has water supplement port, there is blast pipe the top of box-type furnace, is inserted with temperature sensor in box-type furnace, and temperature sensor is connected with temperature controller, electrical heating elements is connected with power line by temperature controller, it is characterized in that:
The inner chamber of box-type furnace is divided into upper and lower two sections, epimere is energy storage section, hypomere is heat exchanging segment, heat exchanging segment has dividing wall type heat exchanger, heat exchanger has the hot water outlet and cooling water inlet that stretch out box-type furnace, electrical heating elements, in the energy storage section of box-type furnace, is connected with circulating pump with pipeline between water inlet and delivery port.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201520001859.4U CN204373193U (en) | 2015-01-05 | 2015-01-05 | Electrical heating energy storage hot-water boiler |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201520001859.4U CN204373193U (en) | 2015-01-05 | 2015-01-05 | Electrical heating energy storage hot-water boiler |
Publications (1)
Publication Number | Publication Date |
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CN204373193U true CN204373193U (en) | 2015-06-03 |
Family
ID=53329408
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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CN201520001859.4U Active CN204373193U (en) | 2015-01-05 | 2015-01-05 | Electrical heating energy storage hot-water boiler |
Country Status (1)
Country | Link |
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CN (1) | CN204373193U (en) |
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2015
- 2015-01-05 CN CN201520001859.4U patent/CN204373193U/en active Active
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