CN205174861U - Utilize circulation system of solar heating industry conduction oil - Google Patents

Utilize circulation system of solar heating industry conduction oil Download PDF

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Publication number
CN205174861U
CN205174861U CN201520711013.XU CN201520711013U CN205174861U CN 205174861 U CN205174861 U CN 205174861U CN 201520711013 U CN201520711013 U CN 201520711013U CN 205174861 U CN205174861 U CN 205174861U
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China
Prior art keywords
oil
heat
accumulator tank
fluid
supervisor
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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
Application number
CN201520711013.XU
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Chinese (zh)
Inventor
张振宇
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Jiangsu Xia Phd Light Heat Technology Co ltd
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Jiangsu Xinlai Contract Energy Management Co Ltd
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Priority to CN201520711013.XU priority Critical patent/CN205174861U/en
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Publication of CN205174861U publication Critical patent/CN205174861U/en
Expired - Fee Related legal-status Critical Current
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E10/00Energy generation through renewable energy sources
    • Y02E10/40Solar thermal energy, e.g. solar towers
    • Y02E10/44Heat exchange systems
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02PCLIMATE CHANGE MITIGATION TECHNOLOGIES IN THE PRODUCTION OR PROCESSING OF GOODS
    • Y02P80/00Climate change mitigation technologies for sector-wide applications
    • Y02P80/20Climate change mitigation technologies for sector-wide applications using renewable energy

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  • Heat-Pump Type And Storage Water Heaters (AREA)

Abstract

The utility model relates to an utilize circulation system of solar heating industry conduction oil has heat conduction oil tank, solar collector and uses the unit, still include heating device and controller, heating device includes heat -accumulator tank and electric heater, electric heater sets up in the heat -accumulator tank, is equipped with high temperature heat storage materials in the heat -accumulator tank, be equipped with the coil pipe in the heat -accumulator tank, the coil pipe is established in high temperature heat storage materials, heat conduction oil tank's oil -out is connected through oil pipe with the oil inlet of solar collector's inlet and coil pipe respectively and is communicated with each other, the oil inlet of using the unit is connected through oil pipe with the oil -out of solar collector's liquid outlet and coil pipe respectively and is communicated with each other, the oil -out of using the unit is connected through oil pipe with heat conduction oil tank's oil inlet and is communicated with each other. The utility model discloses utilize solar energy to heat the conduction oil to compensate heating, energy -concerving and environment -protective and low cost through heating device.

Description

A kind of circulatory system utilizing solar energy heating industry conduction oil
Technical field
The utility model relates to conduction oil industrial applicability field, particularly a kind of circulatory system utilizing solar energy heating industry conduction oil.
Background technology
Conduction oil, also known as organic heat carrier or thermal medium oil, applies to the existing history for many years of industry as intermediate heat medium.Conduction oil has the performance of heat resistanceheat resistant cracking and chemical oxidation, penetrates excellent in efficiency, rapid heat dissipation, Heat stability is good.Conduction oil has following feature as industry oil heat transfer medium: under the condition of almost normal pressure, can obtain very high operating temperature.Namely greatly can reduce operating pressure and the safety requirements of high-temperature heating system, improve the reliability of system and equipment; The technological requirement of different temperatures heating, cooling can be met in wider temperature range, or realize high-temperature heating and subcooled technological requirement with same conduction oil simultaneously in same system.Therefore conduction oil is widely used in industrial circles such as printing and dyeing, chemical fibre, truth, chemical industry.Carrier as conduction oil industrial applicability is common is heat conducting oil boiler.Traditional heat conducting oil boiler is using coal, heavy oil, light oil, fuel gas or other combustible materials as fuel, conduction oil is as heat carrier, utilize oil circulating pump to force liquid phase circulation, after heat energy is flowed to heating equipment, then return the single flow industrial furnace reheated.
Conventional thermal conductive thermo oil boiler consumes the flammable resources such as a large amount of coal, oil, gas due to it, for enterprise adds production cost.Meanwhile, it produces a large amount of toxic emissions, causes serious atmosphere pollution.
Utility model content
The purpose of this utility model is to provide a kind of circulatory system utilizing solar energy heating industry conduction oil, and this energy saving of system environmental protection, operating cost is low.
The technical scheme realizing the utility model object is: the utility model has solar thermal collector, heat conduction oil tank and applying unit; Described solar thermal collector has inlet and liquid outlet; Also comprise heater and controller; Described heater comprises heat-accumulator tank and electric heater; Described electric heater is arranged in heat-accumulator tank, is provided with high-temperature heat accumulation material in heat-accumulator tank; The tank skin of described heat-accumulator tank comprises outer wall and inwall, is provided with insulation material between outer wall and inwall; Be provided with coil pipe in described heat-accumulator tank, coil pipe is located in high-temperature heat accumulation material, and the oil-in of coil pipe and oil-out are separately positioned on the outer wall of heat-accumulator tank; The first temperature sensor and pressure sensor is also provided with in described heat-accumulator tank; The oil-out of described heat conduction oil tank is connected by oil pipe with the inlet of solar thermal collector and the oil-in of coil pipe respectively and communicates; The oil-in of described applying unit is connected by oil pipe with the liquid outlet of solar thermal collector and the oil-out of coil pipe respectively and communicates; The oil-out of described applying unit and the oil-in of heat conduction oil tank are connected by oil pipe and communicate; The oil-in place of described coil pipe is provided with the first magnetic valve, and the inlet place of solar thermal collector is provided with the second magnetic valve; The oil-in place of described applying unit is provided with the second temperature sensor; Described first temperature sensor, the second temperature sensor, pressure sensor, electric heater, the first magnetic valve, the second magnetic valve are all electrically connected with controller; Described controller is provided with temperature indicator and pressure display unit.
Above-mentionedly be connected with the liquid outlet of solar thermal collector the oil pipe communicated and be provided with instant heater; Described instant heater and controller are electrically connected.
Above-mentioned solar thermal collector comprises multiple vacuum tube, header and thermal-collecting tube group; Described thermal-collecting tube group is arranged in header, and vacuum tube is disposed side by side on header; Described thermal-collecting tube group comprises feed tube group and drain pipe group; Described feed tube group comprises a feed liquor supervisor and the many liquid feeding sub-tubes be connected to side by side on feed liquor supervisor; Described drain pipe group comprises a fluid supervisor and the many fluids be connected to side by side on fluid supervisor are in charge of; One end of described feed liquor supervisor is closed, and the other end is inlet; One end and the feed liquor of described liquid feeding sub-tube are responsible for connection and are connected, other end opening; One end of described fluid supervisor is closed, and the other end is liquid outlet; One end that described fluid is in charge of is responsible for connection with fluid and is connected, and the other end is closed; Described fluid supervisor is provided with the jack corresponding with liquid feeding sub-tube, and liquid feeding sub-tube inserts fluid through jack and is in charge of interior and formed in the junction of liquid feeding sub-tube and jack and seal; A described fluid is inserted with a liquid feeding sub-tube in being in charge of, and is provided with a fluid and is in charge of in a vacuum tube; The inlet of described feed liquor supervisor and the liquid outlet of fluid supervisor stretch out header; The inlet of described feed liquor supervisor is the inlet of solar thermal collector; The liquid outlet of described fluid supervisor is the liquid outlet of solar thermal collector.
Above-mentioned high-temperature heat accumulation material at least comprises the wherein a kind of of metal, sandstone, brick clay, cement, slag, quartz, graphite powder and goose soft rock.
Above-mentioned heat-accumulator tank is provided with the dog-house for loading high-temperature heat accumulation material, and dog-house is provided with capping; The bottom of described heat-accumulator tank is funnel-form, and forms discharge port at lowest part; Described discharge port is provided with automatic valve.
Above-mentioned heat-accumulator tank is erected on bracing frame.
The utility model has positive effect: (1) the utility model heats to adapt to commercial Application to conduction oil by solar thermal collector, energy-conserving and environment-protective; (2) in the utility model, the thermal-collecting tube group of solar thermal collector solves the problem that header fluid easily reveals, and improves result of use and the life-span of solar thermal collector; (3) the utility model can heat to meet industrial requirement to conduction oil when illumination condition is bad by controller and instant heater; (4) heater in the utility model utilizes high-temperature heat accumulation material to carry out energy storage in advance, and to meet the demand for heat of conduction oil, and this heater can meet separately the demand of conduction oil applying unit; (5) heat storage tank in the utility model, by dog-house, discharge port and automatic valve, substantially increases the degree of convenience that high temperature energy-accumulation material is filled up and changed.
Accompanying drawing explanation
In order to make content of the present utility model more easily be clearly understood, below according to specific embodiment also by reference to the accompanying drawings, the utility model is described in further detail, wherein
Fig. 1 is structural representation of the present utility model;
Fig. 2 is the structural representation of solar thermal collector in the utility model;
Fig. 3 is the structural representation of the thermal-collecting tube group of solar thermal collector in the utility model;
Fig. 4 is the structural representation of heater in the utility model.
Detailed description of the invention
See Fig. 1 to Fig. 4, the utility model has solar thermal collector 1, heat conduction oil tank 2 and applying unit 3; Described solar thermal collector 1 has inlet and liquid outlet; Also comprise heater 4 and controller 5; Described heater 4 comprises heat-accumulator tank 41 and electric heater 42; Described electric heater 42 is arranged in heat-accumulator tank 41, and heat-accumulator tank is provided with high-temperature heat accumulation material 43 in (41); The tank skin of described heat-accumulator tank 41 comprises outer wall 41-1 and inwall 41-2, is provided with insulation material 41-3 between outer wall 41-1 and inwall 41-2; Be provided with coil pipe 44 in described heat-accumulator tank 41, coil pipe 44 is located in high-temperature heat accumulation material 43, and the oil-in of coil pipe 44 and oil-out are separately positioned on the outer wall 41-1 of heat-accumulator tank 41; The first temperature sensor 46 and pressure sensor is also provided with in described heat-accumulator tank 41; The oil-out of described heat conduction oil tank 2 is connected by oil pipe with the inlet of solar thermal collector 1 and the oil-in of coil pipe 44 respectively and communicates; The oil-in of described applying unit 3 is connected by oil pipe with the liquid outlet of solar thermal collector 1 and the oil-out of coil pipe 44 respectively and communicates; The oil-out of described applying unit 3 and the oil-in of heat conduction oil tank 2 are connected by oil pipe and communicate; The oil-in place of described coil pipe 44 is provided with the first magnetic valve 45, and the inlet place of solar thermal collector 1 is provided with the second magnetic valve 14; The oil-in place of described applying unit 3 is provided with the second temperature sensor 31; Described first temperature sensor 46, second temperature sensor 31, pressure sensor, electric heater 42, first magnetic valve 45, second magnetic valve 14 are all electrically connected with controller 5; Described controller 5 is provided with temperature indicator and pressure display unit.
The described oil pipe communicated that is connected with the liquid outlet of solar thermal collector 1 is provided with instant heater 6; Described instant heater 6 is electrically connected with controller 5.
Described solar thermal collector 1 comprises multiple vacuum tube 11, header 12 and thermal-collecting tube group 13; Described thermal-collecting tube group 13 is arranged in header 12, and vacuum tube 11 is disposed side by side on header 12; Described thermal-collecting tube group 13 comprises feed tube group 131 and drain pipe group 132; Described feed tube group 131 comprises feed liquor supervisor 131-1 and Duo Gen and is connected to liquid feeding sub-tube 131-2 on feed liquor supervisor 131-1 side by side; Described drain pipe group 132 comprises the fluid that fluid supervisor 132-1 and Duo Gen be connected on fluid supervisor 132-1 side by side and is in charge of 132-2; One end of described feed liquor supervisor 131-1 is closed, and the other end is inlet; One end and the feed liquor of described liquid feeding sub-tube 131-2 are responsible for 131-1 and are communicated with and connect, other end opening; One end of described fluid supervisor 132-1 is closed, and the other end is liquid outlet; Described fluid one end of being in charge of 132-2 and fluid are responsible for 132-1 and are communicated with and connect, and the other end is closed; Described fluid supervisor 132-1 is provided with the jack corresponding with liquid feeding sub-tube 131-2, and liquid feeding sub-tube 131-2 inserts fluid through jack and to be in charge of in 132-2 and to be formed in the junction of liquid feeding sub-tube 131-2 and jack and seal; A described fluid is in charge of in 132-2 and is inserted with a liquid feeding sub-tube 131-2, is provided with a fluid and is in charge of 132-2 in a vacuum tube 11; The inlet of described feed liquor supervisor 131-1 and the liquid outlet of fluid supervisor 132-1 stretch out header 12; The inlet of described feed liquor supervisor 131-1 is the inlet of solar thermal collector 1; The liquid outlet of described fluid supervisor 132-1 is the liquid outlet of solar thermal collector 1.
Described high-temperature heat accumulation material 43 at least comprises the wherein a kind of of metal, sandstone, brick clay, cement, slag, quartz, graphite powder and goose soft rock.
Described heat-accumulator tank 41 is provided with the dog-house 41-4 for loading high-temperature heat accumulation material 43, and on dog-house, 41-4 is provided with capping; The bottom of described heat-accumulator tank 41 is funnel-form, and forms discharge port 41-5 at lowest part; Described discharge port 41-5 is provided with automatic valve 41-6; Described heat-accumulator tank 41 is erected on bracing frame.
Above-described specific embodiment; the purpose of this utility model, technical scheme and beneficial effect are further described; be understood that; the foregoing is only specific embodiment of the utility model; be not limited to the utility model; all within spirit of the present utility model and principle, any amendment made, equivalent replacement, improvement etc., all should be included within protection domain of the present utility model.

Claims (5)

1. utilize a circulatory system for solar energy heating industry conduction oil, there is solar thermal collector (1), heat conduction oil tank (2) and applying unit (3); Described solar thermal collector (1) has inlet and liquid outlet; It is characterized in that: also comprise heater (4) and controller (5); Described heater (4) comprises heat-accumulator tank (41) and electric heater (42); Described electric heater (42) is arranged in heat-accumulator tank (41), is provided with high-temperature heat accumulation material (43) in heat-accumulator tank (41); The tank skin of described heat-accumulator tank (41) comprises outer wall (41-1) and inwall (41-2), is provided with insulation material (41-3) between outer wall (41-1) and inwall (41-2); Coil pipe (44) is provided with in described heat-accumulator tank (41), coil pipe (44) is located in high-temperature heat accumulation material (43), and the oil-in of coil pipe (44) and oil-out are separately positioned on the outer wall (41-1) of heat-accumulator tank (41); The first temperature sensor (46) and pressure sensor is also provided with in described heat-accumulator tank (41); The oil-out of described heat conduction oil tank (2) is connected by oil pipe with the inlet of solar thermal collector (1) and the oil-in of coil pipe (44) respectively and communicates; The oil-in of described applying unit (3) is connected by oil pipe with the liquid outlet of solar thermal collector (1) and the oil-out of coil pipe (44) respectively and communicates; The oil-out of described applying unit (3) and the oil-in of heat conduction oil tank (2) are connected by oil pipe and communicate; The oil-in place of described coil pipe (44) is provided with the first magnetic valve (45), and the inlet place of solar thermal collector (1) is provided with the second magnetic valve (14); The oil-in place of described applying unit (3) is provided with the second temperature sensor (31); Described first temperature sensor (46), the second temperature sensor (31), pressure sensor, electric heater (42), the first magnetic valve (45), the second magnetic valve (14) are all electrically connected with controller (5); Described controller (5) is provided with temperature indicator and pressure display unit.
2. a kind of circulatory system utilizing solar energy heating industry conduction oil according to claim 1, is characterized in that: be describedly connected with the liquid outlet of solar thermal collector (1) oil pipe communicated and be provided with instant heater (6); Described instant heater (6) and controller (5) are electrically connected.
3. a kind of circulatory system utilizing solar energy heating industry conduction oil according to claim 1 and 2, is characterized in that: described solar thermal collector (1) comprises multiple vacuum tube (11), header (12) and thermal-collecting tube group (13); Described thermal-collecting tube group (13) is arranged in header (12), and vacuum tube (11) is disposed side by side on header (12); Described thermal-collecting tube group (13) comprises feed tube group (131) and drain pipe group (132); Described feed tube group (131) comprises feed liquor supervisor (131-1) and the many liquid feeding sub-tubes (131-2) be connected to side by side on feed liquor supervisor (131-1); Described drain pipe group (132) comprises fluid supervisor (132-1) and the many fluids be connected to side by side in fluid supervisor (132-1) are in charge of (132-2); One end of described feed liquor supervisor (131-1) is closed, and the other end is inlet; One end of described liquid feeding sub-tube (131-2) is responsible for (131-1) and is communicated with and connects, other end opening with feed liquor; One end of described fluid supervisor (132-1) is closed, and the other end is liquid outlet; One end that described fluid is in charge of (132-2) is responsible for (132-1) and is communicated with and connects with fluid, the other end is closed; Described fluid supervisor (132-1) is provided with the jack corresponding with liquid feeding sub-tube (131-2), and liquid feeding sub-tube (131-2) inserts fluid through jack and to be in charge of in (132-2) and to be formed in the junction of liquid feeding sub-tube (131-2) and jack and seal; A described fluid is in charge of in (132-2) and is inserted with a liquid feeding sub-tube (131-2), is provided with a fluid and is in charge of (132-2) in a vacuum tube (11); The inlet of described feed liquor supervisor (131-1) and the liquid outlet of fluid supervisor (132-1) stretch out header (12); The inlet of described feed liquor supervisor (131-1) is the inlet of solar thermal collector (1); The liquid outlet of described fluid supervisor (132-1) is the liquid outlet of solar thermal collector (1).
4. a kind of circulatory system utilizing solar energy heating industry conduction oil according to claim 3, it is characterized in that: described heat-accumulator tank (41) is provided with the dog-house (41-4) for loading high-temperature heat accumulation material (43), and on dog-house, (41-4) is provided with capping; The bottom of described heat-accumulator tank (41) is funnel-form, and forms discharge port (41-5) at lowest part; Described discharge port (41-5) is provided with automatic valve (41-6).
5. a kind of circulatory system utilizing solar energy heating industry conduction oil according to claim 4, is characterized in that: described heat-accumulator tank (41) is erected on bracing frame.
CN201520711013.XU 2015-09-14 2015-09-14 Utilize circulation system of solar heating industry conduction oil Expired - Fee Related CN205174861U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201520711013.XU CN205174861U (en) 2015-09-14 2015-09-14 Utilize circulation system of solar heating industry conduction oil

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201520711013.XU CN205174861U (en) 2015-09-14 2015-09-14 Utilize circulation system of solar heating industry conduction oil

Publications (1)

Publication Number Publication Date
CN205174861U true CN205174861U (en) 2016-04-20

Family

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN201520711013.XU Expired - Fee Related CN205174861U (en) 2015-09-14 2015-09-14 Utilize circulation system of solar heating industry conduction oil

Country Status (1)

Country Link
CN (1) CN205174861U (en)

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C14 Grant of patent or utility model
GR01 Patent grant
CP03 Change of name, title or address

Address after: 213000 Room 903 and 905 of 2 Blocks of Hang Seng Science Park, Tianning District, Changzhou City, Jiangsu Province

Patentee after: Jiangsu Xia PhD light heat Technology Co.,Ltd.

Address before: 213000 No. 2 Building 307, 21 Building No. 2, Hang Seng Science Park, Tianning District, Changzhou City, Jiangsu Province

Patentee before: JIANGSU XINLAI CONTRACT ENERGY MANAGEMENT Co.,Ltd.

CP03 Change of name, title or address
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20160420