CN208190036U - A kind of energy-saving reactive compensation capacitor cabinet - Google Patents
A kind of energy-saving reactive compensation capacitor cabinet Download PDFInfo
- Publication number
- CN208190036U CN208190036U CN201820866199.XU CN201820866199U CN208190036U CN 208190036 U CN208190036 U CN 208190036U CN 201820866199 U CN201820866199 U CN 201820866199U CN 208190036 U CN208190036 U CN 208190036U
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- China
- Prior art keywords
- described device
- device shell
- compensation capacitor
- upper housing
- energy
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- Y—GENERAL 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
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02E—REDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
- Y02E40/00—Technologies for an efficient electrical power generation, transmission or distribution
- Y02E40/30—Reactive power compensation
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Abstract
The utility model discloses a kind of energy-saving reactive compensation capacitor cabinets, including upper housing, device housing, pedestal, support column, the upper housing upper end is provided with solar energy tabula rasa, the upper housing lower end is provided with described device shell, described device shell side is provided with inlet wire pipe, the described device shell other side is provided with outlet-pipe, described device housing forward end is provided with the first observation door, first observation door side is provided with the second observation door, and first observation door lower end is provided with the first chamber door.Beneficial effect is: the utility model while using compensation capacitor and filter condenser, its performance is significantly better than ordinary capacitor, dielectric loss is low, small in size, and capacity is big, and it will radiate and ventilating mechanisms are independent, it is divulged information using draught head, using solar energy radiation, improves the stability of system, and reduces loss, improve energy-saving effect.
Description
Technical field
The utility model relates to reactive compensation capacitor cabinet fields, more particularly to a kind of energy-saving reactive compensation capacitor cabinet.
Background technique
In the coming period of time, grid power quality is renovated, reducing line loss becomes one, China key project,
There are the motor that number is in the majority in power grid, when motor is an inductive load, electric motor starting and operation, the nothing of itself will certainly be generated
Electric current is larger when function loss and thus bring power supply line is lost, especially electric motor starting, causes to impact to power grid, while from electricity
A large amount of reactive capabilities are drawn in net, more increase line loss, therefore motor starting device loads itself compensation device and very must
It wants, but present reactive compensation capacitor cabinet calorific value is all very big, requires to radiate, but adding radiator fan circuit again can increase
Add the load inside capacitor box, calorific value and load capacity can all increase, and are unfavorable for energy conservation and are also unfavorable for radiating.
Utility model content
The purpose of this utility model is that solve the above-mentioned problems and provides a kind of energy-saving reactive compensation capacitor cabinet.
The utility model achieves the above object through the following technical schemes:
A kind of energy-saving reactive compensation capacitor cabinet, including upper housing, device housing, pedestal, support column, on the upper housing
End is provided with solar energy tabula rasa, and the upper housing lower end is provided with described device shell, described device shell side be provided with into
Spool, the described device shell other side are provided with outlet-pipe, and described device housing forward end is provided with the first observation door, and described first
Observation door side is provided with the second observation door, and first observation door lower end is provided with the first chamber door, first chamber door side
It is provided with the second chamber door, end is provided with observation window in front of the door for first observation, and the observation window side is provided with lock, and described the
One chamber door front end is provided with air hole, and the air hole side is provided with knob, and described device shell lower end is provided with the bottom
Seat, the upper housing rear end are provided with discharge pipe, and described device housing rear end is provided with metal mesh, the metal mesh front end setting
There is radiator fan, is provided with filter plate on the inside of first chamber door, the upper housing is internally provided with battery, the battery one
Side is provided with air port, and described device enclosure interior is provided with the support column, and the support column front end is provided with first element plate,
The first element front edge of board is provided with ammeter, and the ammeter side is provided with voltmeter, the voltmeter side setting
Have it is manual always open, the manual control is always opened lower end and is provided with always opens automatically, and the ammeter downside is provided with indicator light, the support
Controller is provided on the upside of column, the controller side is provided with processor, is provided with temperature sensor on the downside of the support column,
The temperature sensor side is provided with humidity sensor, is provided with second element plate on the downside of the first element plate, and described the
Two element front edge of board is provided with multi-function protector, and the multi-function protector side is provided with mutual inductor, the Multifunctional protective
It is provided with branch switch on the downside of shield device, the branch switch side is provided with compensation capacitor, and the compensation capacitor side is set
It is equipped with filter condenser.
In above structure, the processor model be MT6516, the controller model SPC-STW-26A1, it is described wet
Degree sensor model number is HM1520, the temperature sensor model PT100, and the solar energy tabula rasa power generation is stored in described
In battery, the storage battery power supply gives the controller, and the controller controls the radiator fan rotation, internal circuit knot
Structure generates heat at work, and after described device shell body temperature increases, inside and outside formation draught head, air enters from the air hole,
It is flowed out from the discharge pipe, the temperature sensor and the humidity sensor real-time detection described device enclosure interior environment,
When temperature and humidity is excessively high, the processor receives information, and the processor controls the controller, the controller control
It makes the heat dissipation and changes wind speed.
In order to further increase the energy-saving effect of reactive compensation capacitor cabinet, the temperature sensor is connected to institute by conducting wire
Processor is stated, the humidity sensor is connected to the processor by conducting wire, and the controller is connected to described by conducting wire
Processor, the radiator fan are connected to the controller by conducting wire, and the solar energy tabula rasa is connected to described by conducting wire
Battery, the battery are connected to the controller by conducting wire.
In order to further increase the energy-saving effect of reactive compensation capacitor cabinet, the upper housing is bolted to the dress
Shell is set, the solar energy tabula rasa is connected by screw in the upper housing, and the battery is bolted on described
Shell, the inlet wire pipe are connected by welding with the upper housing, and the outlet-pipe is connected by welding with the upper housing.
In order to further increase the energy-saving effect of reactive compensation capacitor cabinet, the first observation door is connected by hinge in institute
Device housing is stated, the second observation door is connected by hinge in described device shell, and first chamber door is connected by hinge
In described device shell, second chamber door is connected by hinge in described device shell.
In order to further increase the energy-saving effect of reactive compensation capacitor cabinet, the observation window is embedded in first observation
Door, the lock are connected by screw in the first observation door.
In order to further increase the energy-saving effect of reactive compensation capacitor cabinet, the pedestal is bolted to described device
Shell, the metal mesh are connected by screw in described device shell, and the radiator fan is connected by screw in described device
Shell.
In order to further increase the energy-saving effect of reactive compensation capacitor cabinet, the support column is bolted to the dress
Shell is set, the first element plate is bolted to the support column, and the second element plate is bolted to institute
Support column is stated, the temperature sensor is connected by screw in described device shell, and the humidity sensor is connected by screw to
In described device shell.
Beneficial effect is: the utility model while using compensation capacitor and filter condenser, performance is significantly excellent
In ordinary capacitor, dielectric loss is low, small in size, and capacity is big, and it is independent with ventilating mechanisms to radiate, and utilizes draught head
Ventilation, using solar energy radiation, improves the stability of system, and reduce loss, improves energy-saving effect.
Detailed description of the invention
Fig. 1 is a kind of main view of energy-saving reactive compensation capacitor cabinet described in the utility model;
Fig. 2 is a kind of left view structural representation of energy-saving reactive compensation capacitor cabinet described in the utility model;
Fig. 3 is a kind of rearview of energy-saving reactive compensation capacitor cabinet described in the utility model;
Fig. 4 is a kind of schematic diagram of internal structure of energy-saving reactive compensation capacitor cabinet described in the utility model;
Fig. 5 is a kind of first element plate structural schematic diagram of energy-saving reactive compensation capacitor cabinet described in the utility model;
Fig. 6 is a kind of second element plate structural schematic diagram of energy-saving reactive compensation capacitor cabinet described in the utility model;
Fig. 7 is a kind of cooling fan structure schematic diagram of energy-saving reactive compensation capacitor cabinet described in the utility model;
Fig. 8 is a kind of circuit structure flow diagram of energy-saving reactive compensation capacitor cabinet described in the utility model.
The reference numerals are as follows:
1, upper housing;2, solar energy tabula rasa;3, inlet wire pipe;4, outlet-pipe;5, the first observation door;6, the second observation door;7,
First chamber door;8, the second chamber door;9, observation window;10, it latches;11, it shakes hands;12, air hole;13, pedestal;14, device housing;
15, discharge pipe;16, metal mesh;17, battery;18, controller;19, processor;20, first element plate;21, support column;22,
Temperature sensor;23, humidity sensor;24, second element plate;25, air port;26, radiator fan;27, ammeter;28, voltage
Table;29, manual always to open;30, it always opens automatically;31, indicator light;32, multi-function protector;33, mutual inductor;34, branch switch;
35, compensation capacitor;36, filter condenser;37, filter plate.
Specific embodiment
The utility model is described in further detail with reference to the accompanying drawing:
As Figure 1-Figure 8, a kind of energy-saving reactive compensation capacitor cabinet, including upper housing 1, device housing 14, pedestal 13,
Support column 21,1 upper end of upper housing are provided with solar energy tabula rasa 2,2 starting electro ultrafiltration of solar energy tabula rasa, and upper housing 1 plays dust-proof support
Effect, 1 lower end of upper housing are provided with device housing 14, and device housing 14 plays carrying, 14 side of device housing be provided with into
Spool 3, inlet wire pipe 3 play installation power supply line, and 14 other side of device housing is provided with outlet-pipe 4, and outlet-pipe 4 plays installation power supply
Line effect, 14 front end of device housing are provided with the first observation door 5, and the first observation door 5 plays observation, the first observation 5 side of door
It is provided with the second observation door 6, the first observation 5 lower end of door is provided with the first chamber door 7, and first time chamber door plays locking, the first case
7 sides of door are provided with the second chamber door 8, and the first observation 5 front end of door is provided with observation window 9, and observation window 9 plays observation, observation window 9
Side is provided with lock 10, latches 10 and plays locking, 7 front end of the first chamber door is provided with air hole 12, and air hole 12 rises ventilative
Effect, 12 side of air hole is provided with knob 11, shakes hands 11 to play folding, 14 lower end of device housing is provided with pedestal 13, bottom
Seat 13 plays carrying, and 1 rear end of upper housing is provided with discharge pipe 15, and discharge pipe 15 plays outlet air, and 14 rear end of device housing is set
It is equipped with metal mesh 16, metal mesh 16 shields, and 16 front end of metal mesh is provided with radiator fan 26, and radiator fan 26 plays heat dissipation
It acts on, is provided with filter plate 37 on the inside of the first chamber door 7, filter plate 37 plays waterproof action, and upper housing 1 is internally provided with battery 17, stores
Battery 17 plays storage electric energy effect, and 17 side of battery is provided with air port 25, and draught effect is played in air port 25, inside device housing 14
It is provided with support column 21, support column 21 plays a supportive role, and 21 front end of support column is provided with first element plate 20, first element plate 20
Play installation, 20 front end of first element plate is provided with ammeter 27, and ammeter 27 plays the detection function of current, 27 side of ammeter
It is provided with voltmeter 28, voltmeter 28 plays detection voltage, and 28 side of voltmeter is provided with manual control and always opens 29, and manual control always opens 29
Serve and manually control, manual control, which is always opened 29 lower ends and is provided with, always opens 30 automatically, always opens 30 automatically and plays automatic control, ammeter
27 downsides are provided with indicator light 31, and indicator light 31 plays suggesting effect, and controller 18 is provided on the upside of support column 21, and controller 18 rises
Control action, 18 side of controller are provided with processor 19, and processor 19 plays processing, is provided with temperature on the downside of support column 21
Sensor 22, temperature sensor 22 play detection temperature action, and 22 side of temperature sensor is provided with humidity sensor 23, and humidity passes
Sensor 23 plays detection wetness action, and second element plate 24 is provided on the downside of first element plate 20, and second element plate 24 plays installation and makees
With 24 front end of second element plate is provided with multi-function protector 32, and multi-function protector 32 shields, multi-function protector
32 sides are provided with mutual inductor 33, and branch switch 34 is provided on the downside of multi-function protector 32, and 34 side of branch switch is provided with
Compensation capacitor 35,35 side of compensation capacitor are provided with filter condenser 36.
In above structure, 19 model MT6516 of processor, 18 model SPC-STW-26A1 of controller, humidity sensor
23 model HM1520,22 model PT100 of temperature sensor, solar energy tabula rasa 2 generate electricity, are stored in battery 17, electric power storage
Pond 17 supplies electricity to controller 18, and controller 18 controls radiator fan 26 and rotates, and internal circuit configuration generates heat at work, device shell
After temperature increases in body 14, inside and outside formation draught head, air enters from air hole 12, flows out from discharge pipe 15, temperature sensor
22 and 23 real-time detection apparatus shell of humidity sensor, 14 internal environment, when temperature and humidity is excessively high, processor 19 is received
Information, processor 19 control controller 18, and the control heat dissipation of controller 18 changes wind speed.
In order to further increase the energy-saving effect of reactive compensation capacitor cabinet, temperature sensor 22 is connected to processing by conducting wire
Device 19, humidity sensor 23 are connected to processor 19 by conducting wire, and controller 18 is connected to processor 19, radiation air by conducting wire
Fan 26 is connected to controller 18 by conducting wire, and solar energy tabula rasa 2 is connected to battery 17 by conducting wire, and battery 17 passes through conducting wire
It is connected to controller 18, upper housing 1 is bolted to device housing 14, and solar energy tabula rasa 2 is connected by screw in upper casing
Body 1, battery 17 are bolted to upper housing 1, and inlet wire pipe 3 is connected by welding and upper housing 1, and outlet-pipe 4 passes through weldering
Connect and connected with upper housing 1, the first observation door 5 is connected by hinge in device housing 14, the second observation door 6 be connected by hinge in
Device housing 14, the first chamber door 7 are connected by hinge in device housing 14, and the second chamber door 8 is connected by hinge in device housing
14, observation window 9 is embedded in the first observation door 5, and lock 10, which is connected by screw to, observes door 5 in first, and pedestal 13 is connected by bolt
It is connected to device housing 14, metal mesh 16 is connected by screw in device housing 14, and radiator fan 26 is connected by screw in device
Shell 14, support column 21 are bolted to device housing 14, and first element plate 20 is bolted to support column 21, the
Two element plate 24 is bolted to support column 21, and temperature sensor 22 is connected by screw in device housing 14, and humidity passes
Sensor 23 is connected by screw in device housing 14.
The basic principles and main features and advantage of the utility model have been shown and described above.The technical staff of the industry
It should be appreciated that the present utility model is not limited to the above embodiments, the above embodiments and description only describe this
The principle of utility model, on the premise of not departing from the spirit and scope of the utility model, the utility model also has various change
And improvement, these various changes and improvements fall within the scope of the claimed invention.
Claims (7)
1. a kind of energy-saving reactive compensation capacitor cabinet, it is characterised in that: including upper housing (1), device housing (14), pedestal
(13), support column (21), upper housing (1) upper end are provided with solar energy tabula rasa (2), and upper housing (1) lower end is provided with
Described device shell (14), described device shell (14) side are provided with inlet wire pipe (3), and described device shell (14) other side is set
It is equipped with outlet-pipe (4), described device shell (14) front end is provided with the first observation door (5), and first observation door (5) side is set
It is equipped with the second observation door (6), first observation door (5) lower end is provided with the first chamber door (7), the first chamber door (7) side
It is provided with the second chamber door (8), first observation door (5) front end is provided with observation window (9), observation window (9) the side setting
Have lock (10), the first chamber door (7) front end is provided with air hole (12), and air hole (12) side is provided with knob
(11), described device shell (14) lower end is provided with the pedestal (13), and upper housing (1) rear end is provided with discharge pipe
(15), described device shell (14) rear end is provided with metal mesh (16), and metal mesh (16) front end is provided with radiator fan
(26), it is provided with filter plate (37) on the inside of first chamber door (7), the upper housing (1) is internally provided with battery (17), described
Battery (17) side is provided with air port (25), and described device shell (14) is internally provided with the support column (21), the branch
Dagger (21) front end is provided with first element plate (20), and first element plate (20) front end is provided with ammeter (27), described
Ammeter (27) side is provided with voltmeter (28), and voltmeter (28) side is provided with manual control and always opens (29), the manual control
It always opens (29) lower end and is provided with and always open (30) automatically, be provided with indicator light (31), the support column on the downside of the ammeter (27)
(21) upside is provided with controller (18), and controller (18) side is provided with processor (19), under the support column (21)
Side is provided with temperature sensor (22), and temperature sensor (22) side is provided with humidity sensor (23), and described first yuan
It is provided with second element plate (24) on the downside of part plate (20), second element plate (24) front end is provided with multi-function protector
(32), multi-function protector (32) side is provided with mutual inductor (33), is provided on the downside of the multi-function protector (32)
Branch switch (34), branch switch (34) side are provided with compensation capacitor (35), compensation capacitor (35) side
It is provided with filter condenser (36).
2. a kind of energy-saving reactive compensation capacitor cabinet according to claim 1, it is characterised in that: the temperature sensor
(22) it is connected to the processor (19) by conducting wire, the humidity sensor (23) is connected to the processor by conducting wire
(19), the controller (18) is connected to the processor (19) by conducting wire, and the radiator fan (26) is connected by conducting wire
In the controller (18), the solar energy tabula rasa (2) is connected to the battery (17) by conducting wire, the battery (17)
The controller (18) are connected to by conducting wire.
3. a kind of energy-saving reactive compensation capacitor cabinet according to claim 1, it is characterised in that: the upper housing (1) is logical
It crosses and is bolted in described device shell (14), the solar energy tabula rasa (2) is connected by screw in the upper housing (1), institute
It states battery (17) to be bolted to the upper housing (1), the inlet wire pipe (3) passes through welding and the upper housing (1)
Connection, the outlet-pipe (4) pass through welding and the upper housing (1) connection.
4. a kind of energy-saving reactive compensation capacitor cabinet according to claim 1, it is characterised in that: the first observation door
(5) it is connected by hinge in described device shell (14), second observation door (6) is connected by hinge in described device shell
(14), first chamber door (7) is connected by hinge in described device shell (14), and second chamber door (8) is connected by hinge
It is connected to described device shell (14).
5. a kind of energy-saving reactive compensation capacitor cabinet according to claim 1, it is characterised in that: observation window (9) edge
Embedded in first observation door (5), the lock (10) is connected by screw in first observation door (5).
6. a kind of energy-saving reactive compensation capacitor cabinet according to claim 1, it is characterised in that: the pedestal (13) passes through
It is bolted in described device shell (14), the metal mesh (16) is connected by screw in described device shell (14), described
Radiator fan (26) is connected by screw in described device shell (14).
7. a kind of energy-saving reactive compensation capacitor cabinet according to claim 1, it is characterised in that: the support column (21) is logical
It crosses and is bolted in described device shell (14), the first element plate (20) is bolted to the support column (21),
The second element plate (24) is bolted to the support column (21), and the temperature sensor (22) is connected by screw to
In described device shell (14), the humidity sensor (23) is connected by screw in described device shell (14).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201820866199.XU CN208190036U (en) | 2018-05-29 | 2018-05-29 | A kind of energy-saving reactive compensation capacitor cabinet |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN201820866199.XU CN208190036U (en) | 2018-05-29 | 2018-05-29 | A kind of energy-saving reactive compensation capacitor cabinet |
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CN208190036U true CN208190036U (en) | 2018-12-04 |
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ID=64428978
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CN201820866199.XU Expired - Fee Related CN208190036U (en) | 2018-05-29 | 2018-05-29 | A kind of energy-saving reactive compensation capacitor cabinet |
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CN (1) | CN208190036U (en) |
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
WO2020124530A1 (en) * | 2018-12-18 | 2020-06-25 | 烟台三水电器有限公司 | Novel lighting distribution box |
-
2018
- 2018-05-29 CN CN201820866199.XU patent/CN208190036U/en not_active Expired - Fee Related
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
WO2020124530A1 (en) * | 2018-12-18 | 2020-06-25 | 烟台三水电器有限公司 | Novel lighting distribution box |
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Legal Events
Date | Code | Title | Description |
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GR01 | Patent grant | ||
GR01 | Patent grant | ||
CF01 | Termination of patent right due to non-payment of annual fee | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20181204 Termination date: 20200529 |