CN201491991U - Environmental protection type energy-saving integrated kitchen - Google Patents

Environmental protection type energy-saving integrated kitchen Download PDF

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Publication number
CN201491991U
CN201491991U CN2009203084696U CN200920308469U CN201491991U CN 201491991 U CN201491991 U CN 201491991U CN 2009203084696 U CN2009203084696 U CN 2009203084696U CN 200920308469 U CN200920308469 U CN 200920308469U CN 201491991 U CN201491991 U CN 201491991U
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CN
China
Prior art keywords
communicated
stove
hot water
pipeline thermal
burner hearth
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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.)
Expired - Fee Related
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CN2009203084696U
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Chinese (zh)
Inventor
龚光焕
申亦成
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Individual
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Individual
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Priority to CN2009203084696U priority Critical patent/CN201491991U/en
Application granted granted Critical
Publication of CN201491991U publication Critical patent/CN201491991U/en
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Expired - Fee Related legal-status Critical Current

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Abstract

The utility model discloses an environmental protection type energy-saving integrated kitchen. In the technical scheme, a two-phase pool (9) is arranged in a stove body (8), the bottom of a steam cabinet (11) is communicated with the two-phase pool (9), a steam ring (5) is arranged close to a furnace grate (6) on the periphery of a furnace hearth (4) and is communicated with the bottom of the two-phase pool (9), the lower part of the two-phase pool (9) is provided with a first pipeline heat exchanger (7), the inlet (13) of the first pipeline heat exchanger (7) is communicated with the furnace hearth (4) through a flame channel (10), the outlet of the first pipeline heat exchanger (7) is connected with an exhaust port (15), a hot water core (2) is arranged close to a pot (3) on the periphery of the furnace hearth (4), the upper part of the two-phase pool (9) is provided with a second pipeline heat exchanger (1), and the second pipeline heat exchanger (1) is communicated with the hot water core (2). The utility model has the advantages of no scaling, long service life and high thermal efficiency.

Description

The environmental protection and energy saving whole kitchen
Technical field
The utility model relates to a kind of environmental protection and energy saving whole kitchen.
Background technology
Reach unit such as school, the factory etc. of certain scale in the number of having dinner, need large kitchen to cook messes, boil water and hot water satisfies living needs.The structure of present whole kitchen is to be provided with burner hearth and fire grate in stove, on stove, be provided with heat exchanger and steam generator, and the steamer that is connected with steam generator, the structure of heat exchanger and steam generator is that water flows in the pipeline of heat exchanger, and the water in the pipeline of thermal source heat exchanging device outside pipeline heats, water behind the receipt produces steam to steamer heating steamed wheaten foods thing again to steam generator, adopt the whole kitchen of this structure, when water temperature in the pipeline in the heat exchanger reaches more than 80 ℃, just be easy to fouling in the pipeline, blocking pipe, thus the efficient and the service life of whole kitchen influenced.
The utility model content
Technical problem to be solved in the utility model provides that a kind of pipeline is less scaling, long service life, environmental protection and energy saving whole kitchen that the thermal efficiency is high.
In order to solve the problems of the technologies described above, the environmental protection and energy saving whole kitchen that the utility model provides, comprise stove and be located at stove interior burner hearth and fire grate, on stove, be provided with steamer and the pot body corresponding with burner hearth, in described stove, be provided with the two-phase pond, described steamer bottom is communicated with described two-phase pond, close on described fire grate place in described burner hearth periphery and be provided with the steam circle, described steam circle is communicated with bottom, described two-phase pond, be provided with the first pipeline thermal interchanger in the bottom in described two-phase pond, the inlet of the described first pipeline thermal interchanger is communicated with described burner hearth by quirk, the outlet of the described first pipeline thermal interchanger is connected with the tail gas outlet, close on described pot body place in described burner hearth periphery and be provided with hot water liner, be provided with the second pipeline thermal interchanger on top, described two-phase pond, the described second pipeline thermal interchanger is communicated with described hot water liner.
The structure of the described first pipeline thermal interchanger is to be provided with inlet and flue dust clean-up port dodge gate in the bottom of housing, and top is provided with fume pipe, and described fume pipe one end is communicated with inlet, and the other end is communicated with described tail gas outlet.
Described hot water liner is arc and is arranged at and is positioned at operator's one side on the described stove.
Adopt the environmental protection and energy saving whole kitchen of technique scheme, because employing is provided with the first pipeline thermal interchanger in the bottom in two-phase pond, the inlet of the first pipeline thermal interchanger is communicated with burner hearth by quirk, the outlet of the first pipeline thermal interchanger is connected with the tail gas outlet, high-temperature flue gas enters in the first pipeline thermal interchanger by quirk and inlet and circulates during use, and need the water of heating in the two-phase pond, to be in outside the pipe of the first pipeline thermal interchanger, like this, no matter water temperature how, non flouling behaviour all in the first pipeline thermal interchanger, there is not blocking pipe, like this, just improved the service life and the efficiency of utilization of whole kitchen.The steam circle is communicated with bottom, two-phase pond, the steam that the steam circle produces is given the heating of the water in the two-phase pond, simultaneously the first pipeline thermal interchanger in the two-phase pond with the two-phase pond in water carry out heat exchange, water in the two-phase pond is heated into boiling water to be used for the user, the steam circle and the first pipeline thermal interchanger the two in conjunction with the efficient that has improved heat exchange, hot water liner and top, two-phase pond are provided with the second pipeline thermal interchanger and are communicated with and produce hot water and use for the user, hot water liner is arc and is arranged at and is positioned at operator's one side on the stove, hot water liner has been taken away the heat that stove is positioned at operator one side, make operator's working environment be in low temperature environment, operate comfortable.
In sum, the utility model be that a kind of pipeline is less scaling, long service life, environmental protection and energy saving whole kitchen that the thermal efficiency is high.
Description of drawings
Fig. 1 is the utility model structural representation;
Fig. 2 is the first pipeline thermal exchanger arrangement schematic diagram;
Fig. 3 is the hot water liner structural representation;
Fig. 4 is a steam coil structures schematic diagram.
The specific embodiment
The utility model is described in further detail below in conjunction with the drawings and specific embodiments.
Referring to Fig. 1, Fig. 2, Fig. 3 and Fig. 4, in stove 8, be provided with burner hearth 4 and fire grate 6, on stove 8, be provided with steamer 11 and the pot body 3 corresponding with burner hearth 4, in stove 8, be provided with two-phase pond 9, steamer 11 bottoms are communicated with two-phase pond 9, close on fire grate 6 places in burner hearth 4 peripheries and be provided with steam circle 5, steam circle 5 is communicated with 9 bottoms, two-phase pond, be provided with the first pipeline thermal interchanger 7 in the bottom in two-phase pond 9, the structure of the first pipeline thermal interchanger 7 is to be provided with inlet 13 and flue dust clean-up port dodge gate 14 in the bottom of housing 12, top is provided with fume pipe 16, fume pipe 16 1 ends are communicated with inlet 13, the other end is communicated with tail gas outlet 15, inlet 13 is communicated with burner hearth 4 by quirk 10, closes on pot body 3 places in burner hearth 4 peripheries and is provided with hot water liner 2, and hot water liner 2 is arc and is arranged at and is positioned at operator's one side on the stove 8, be provided with the second pipeline thermal interchanger, 1, the second pipeline thermal interchanger 1 is communicated with hot water liner 2 on 8 tops, two-phase pond.
Referring to Fig. 1, Fig. 2, Fig. 3 and Fig. 4, high-temperature flue gas during use in the burner hearth 4 enters the fume pipe 16 interior circulations of the first pipeline thermal interchanger 7 by quirk 10 and inlet 13, and need the water of heating in two-phase pond 9, to be in outside fume pipe 16 pipes of the first pipeline thermal interchanger 7, like this, no matter water temperature how, and there is not blocking pipe in non flouling behaviour all in the fume pipe 16 of the first pipeline thermal interchanger 7, the service life and the efficiency of utilization of whole kitchen like this, have just been improved.Steam circle 5 is communicated with 9 bottoms, two-phase pond, the steam that steam circle 5 produces is given the heating of the water in the two-phase pond 9, the first pipeline thermal interchanger 7 carries out heat exchange in two-phase pond 9 water in the two-phase pond 9 simultaneously, water in the two-phase pond 9 is heated into boiling water to be used for the user, the steam circle 5 and the first pipeline thermal interchanger 7 the two in conjunction with the efficient that has improved heat exchange, hot water liner 2 and 9 tops, two-phase pond are provided with the second pipeline thermal interchanger 1 and are communicated with and produce hot water and use for the user, hot water liner 2 is for arc and be arranged at and be positioned at operator's one side on the stove 8, hot water liner 2 has been taken away the heat that stove 8 is positioned at operator one side, make operator's working environment be in low temperature environment, operate comfortable.
The utility model can satisfy having dinner and boiling water, hot water needs of 1000 people, for 1000 human needs, average consumption has only 10kg/h, consumption costs has only the 1/8-1/41 of other equipment, and investment cost only needs 60000 yuan, is the 1/3-1/2 of other investment cost of equipment, it is a kind of normal pressure kitchen, not pressure vessel, use simple, safe and reliable.

Claims (3)

1. environmental protection and energy saving whole kitchen, comprise stove (8) and be located at stove (8) interior burner hearth (4) and fire grate (6), on stove (8), be provided with steamer (11) and the pot body (3) corresponding with burner hearth (4), it is characterized in that: in described stove (8), be provided with two-phase pond (9), described steamer (11) bottom is communicated with described two-phase pond (9), close on described fire grate (6) in described burner hearth (4) periphery and locate to be provided with steam circle (5), described steam circle (5) is communicated with bottom, described two-phase pond (9), be provided with the first pipeline thermal interchanger (7) in the bottom in described two-phase pond (9), the inlet (13) of the described first pipeline thermal interchanger (7) is communicated with described burner hearth (4) by quirk (10), the outlet of the described first pipeline thermal interchanger (7) is connected with tail gas outlet (15), close on described pot body (3) in described burner hearth (4) periphery and locate to be provided with hot water liner (2), be provided with the second pipeline thermal interchanger (1) on top, described two-phase pond (9), the described second pipeline thermal interchanger (1) is communicated with described hot water liner (2).
2. environmental protection and energy saving whole kitchen according to claim 1, it is characterized in that: the structure of the described first pipeline thermal interchanger (7) is to be provided with inlet (13) and flue dust clean-up port dodge gate (14) in the bottom of housing (12), top is provided with fume pipe (16), described fume pipe (16) one ends are communicated with inlet (13), and the other end exports (15) with described tail gas and is communicated with.
3. environmental protection and energy saving whole kitchen according to claim 1 and 2 is characterized in that: described hot water liner (2) is for arc and be arranged at and be positioned at operator's one side on the described stove (8).
CN2009203084696U 2009-08-20 2009-08-20 Environmental protection type energy-saving integrated kitchen Expired - Fee Related CN201491991U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN2009203084696U CN201491991U (en) 2009-08-20 2009-08-20 Environmental protection type energy-saving integrated kitchen

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN2009203084696U CN201491991U (en) 2009-08-20 2009-08-20 Environmental protection type energy-saving integrated kitchen

Publications (1)

Publication Number Publication Date
CN201491991U true CN201491991U (en) 2010-06-02

Family

ID=42435201

Family Applications (1)

Application Number Title Priority Date Filing Date
CN2009203084696U Expired - Fee Related CN201491991U (en) 2009-08-20 2009-08-20 Environmental protection type energy-saving integrated kitchen

Country Status (1)

Country Link
CN (1) CN201491991U (en)

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C14 Grant of patent or utility model
GR01 Patent grant
C17 Cessation of patent right
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20100602

Termination date: 20130820