CN210490246U - Ring main unit based on high-voltage measurement - Google Patents

Ring main unit based on high-voltage measurement Download PDF

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Publication number
CN210490246U
CN210490246U CN201921730617.3U CN201921730617U CN210490246U CN 210490246 U CN210490246 U CN 210490246U CN 201921730617 U CN201921730617 U CN 201921730617U CN 210490246 U CN210490246 U CN 210490246U
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China
Prior art keywords
bin
input line
cable
side wall
door
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CN201921730617.3U
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Chinese (zh)
Inventor
董苏
安玲
董梦雅
王苗
曹杰
刘颍
赵任
刘斌
崔超奇
郭运泽
徐虎
田璐璐
欧维维
李辉
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State Grid Corp of China SGCC
Fuyang Power Supply Co of State Grid Anhui Electric Power Co Ltd
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State Grid Corp of China SGCC
Fuyang Power Supply Co of State Grid Anhui Electric Power Co Ltd
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Priority to CN201921730617.3U priority Critical patent/CN210490246U/en
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Abstract

The utility model provides a looped network cabinet based on high voltage measurement, which comprises a cabinet body, wherein a cavity and a cable bin are arranged inside the cabinet body, the side wall of the cavity is rotationally connected with a cabinet door, and the side wall of the cable bin is rotationally connected with a bin door; the mounting plate is fixed inside the cavity, and an electric element is fixed on the mounting plate; the upper end and the lower end of the electric element are respectively connected with an input line and an output line, and the end part of each input line and each output line penetrates through the cable bin and extends out of the cabinet body to be connected with an external conductive circuit in series; wherein, the input line that is located inside the cable chamber links to each other with safety mechanism, and the safety mechanism end links to each other with voltage sensor. The utility model has the advantages of being simple in structure and reasonable in layout, convenient operation, safe and reliable, it is through being equipped with safety mechanism between voltage sensor and input line, and when making the extreme condition such as take place internal short circuit, pressure sensor breaks off through safety mechanism with the input line, does not influence the normal operating of circuit, the security and the reliability of guarantee operation in high-pressure environment.

Description

Ring main unit based on high-voltage measurement
Technical Field
The utility model relates to an electrical equipment technical field especially relates to a looped netowrk cabinet based on high pressure is measurationed.
Background
With the continuous development of society, the urban power grid' cable is the mainstream, 10 kilovolt lines of a power distribution network are deep into a load center, and an outdoor ring main unit is also widely applied, wherein electrical elements are located in the outdoor ring main unit.
At present, 10KV electrical elements of an urban power distribution network gradually realize bidirectional metering, which means that a metering device needs to be added in a ring main unit. At this time, if the measurement points are added to the ring main unit according to the traditional high-voltage measurement scheme, the problems of narrow space of the ring main unit and incapability of installing a voltage sensor are faced; if a high-voltage metering box (cabinet) is additionally built, the problems of occupied area approval, civil engineering, complex environmental evaluation process, long construction period and high construction cost are faced; therefore, in order to avoid the above problems, a new ring main unit based on high voltage measurement is urgently needed to be developed for ensuring the safety and reliability of operation in high voltage environment (i.e. when the extreme conditions such as internal short circuit occur, the detection device can be ensured to be cut off from the power grid without affecting the normal operation of the line).
SUMMERY OF THE UTILITY MODEL
The utility model aims to solve the technical problem that a simple structure, spatial layout are reasonable, convenient operation is provided to safe and reliable's looped netowrk cabinet based on high pressure is measurationed.
The utility model discloses a following technical scheme solves above-mentioned technical problem:
a ring main unit based on high-voltage measurement comprises a cabinet body, wherein a cavity and a cable bin are formed in the cabinet body, a cabinet door is rotatably connected to the side wall of the cavity, and a bin door is rotatably connected to the side wall of the cable bin;
the interior of the cavity is fixedly connected with an installation plate, and an electric element is fixed on the installation plate; the upper end and the lower end of the electric element are respectively connected with a plurality of input lines and output lines, and the end parts of the input lines and the output lines extend towards the direction of the cable bin to penetrate into the cable bin, finally extend to the outside of the cabinet body and are connected with external conductive circuits in series; the input line positioned in the cable bin is particularly connected with safety mechanisms arranged on the inner side wall of the bin door, and the tail end of each safety mechanism is connected with a voltage sensor fixed on the outer side wall of the bin door; and a signal output joint is arranged on the voltage sensor.
As one of the preferable modes of the present invention, the safety mechanism includes a bottom plate, both ends of the bottom plate are fixedly connected with an insulating block, any insulating block is fixedly connected with a corresponding input line through a clamping block, and a high voltage fuse is fixedly connected between the two insulating blocks; conductors are further arranged inside the two insulation blocks respectively, and two ends of the high-voltage fuse are electrically connected with the corresponding input line and the voltage sensor through the conductors respectively.
As one of the preferable modes of the present invention, the periphery of the input line between the insulating block and the clamping block is subjected to peeling treatment to form a peeling part.
As one of the preferable modes of the utility model, a plurality of wire clamps are movably clamped on the outer side walls of the input line and the output line, and the inner end of each wire clamp is movably clamped inside the clamping groove; the clamping grooves are arranged on the side wall of the mounting plate in an array mode.
As one of the preferable modes of the utility model, be equipped with observation window and heat dissipation barrier on the lateral wall of cabinet door.
As one of the preferable modes of the utility model, a clapboard is also arranged in the middle of the cable bin; the cable bin is divided into an upper accommodating bin and a lower accommodating bin by the partition board, and the input line and the output line are respectively accommodated in the upper accommodating bin and the lower accommodating bin.
The utility model discloses compare prior art's advantage and lie in: the utility model has simple structure and reasonable space layout, the high-voltage end of each voltage sensor is respectively connected with the input line electricity, the external electric energy meter is directly connected with the voltage sensor when measuring the voltage, the plug-in connector is not needed to be arranged in the cabinet body, and the measurement operation is convenient; and simultaneously, the utility model discloses be equipped with safety mechanism between voltage sensor and input line, when taking place the extreme condition such as inside short circuit, pressure sensor breaks off through safety mechanism with the input line, does not influence the normal operating of circuit, can effectively ensure the security and the reliability of this device operation in-process in high-pressure environment.
Drawings
Fig. 1 is an overall structural schematic diagram of a ring main unit based on high voltage measurement in an embodiment 1 when a cabinet door and a cabin door are closed;
fig. 2 is a schematic view of an overall structure of the ring main unit in an open state of a cabinet door and a compartment door based on high voltage measurement in embodiment 1;
FIG. 3 is a schematic view showing the structure of input lines, output lines and electric elements in embodiment 1;
FIG. 4 is an enlarged view at A of FIG. 1;
FIG. 5 is a sectional view of the safety mechanism and the input line in embodiment 1;
FIG. 6 is a sectional view of the voltage sensor, the high-voltage fuse and the input line in embodiment 1;
FIG. 7 is an enlarged view at B of FIG. 6;
FIG. 8 is an enlarged view at C of FIG. 6;
FIG. 9 is a schematic view of the structure of an input line, an output line, a cable compartment and a partition in example 1;
FIG. 10 is a schematic structural view of a wire clamp and a clamping groove in example 1;
fig. 11 is a schematic view of the structure of the voltage sensor, the high-voltage fuse, and the input line in embodiment 1.
In the figure: 1 is the cabinet body, 2 is the cavity, 3 is the cable compartment, 4 is the cabinet door, 5 is the door in the storehouse, 6 is the mounting panel, 7 is the input line, 701 is the department of skinning, 8 is the output line, 9 is safety mechanism, 901 is the bottom plate, 902 is the insulating block, 903 is high-voltage fuse, 904 is the conductor, 905 is the clamp splice, 10 is voltage sensor, 11 is signal output joint, 12 is electrical component, 13 is the observation window, 14 is the heat dissipation barrier, 15 is the fastener, 16 is the draw-in groove, 17 is the baffle.
Detailed Description
The embodiments of the present invention will be described in detail below, and the present embodiment is implemented on the premise of the technical solution of the present invention, and a detailed implementation manner and a specific operation process are given, but the scope of the present invention is not limited to the following embodiments.
Example 1
As shown in fig. 1-11, the ring main unit based on high voltage measurement of this embodiment includes a cabinet body 1, a cavity 2 and a cable compartment 3 are opened inside the cabinet body 1, a cabinet door 4 is rotatably connected to a side wall of the cavity 2, and a compartment door 5 is rotatably connected to a side wall of the cable compartment 3.
Referring to fig. 2 and 3, an installation plate 6 is fixedly connected inside the cavity 2, and an electrical component 12 is fixed on the installation plate 6 through a bolt; the upper end and the lower end of the electric element 12 are respectively connected with a plurality of input lines 7 and output lines 8, a circuit on the input line 7 flows into the electric element 12, and then current flows to the output lines 8 from the electric element 12; and, the tip of every input line 7 and output line 8 all extends to penetrating in cable storehouse 3 towards cable storehouse 3 direction to finally extend to the cabinet body 1 outside, and be established ties with outside conducting wire. The upper end and the lower end of the electrical element 12 are provided with jacks for connecting the input line 7 and the output line 8, when the ends of the input line 7 and the output line 8 are inserted into the jacks, the ends of the input line 7 and the output line 8 are pressed in the jacks through screws arranged on the electrical element 12 to be fixed, and then the electrical element 12 is connected in series with the output line 8 through the input line 7 in a corresponding circuit.
In addition, referring to fig. 2, 3 and 4, the input lines 7 located inside the cable compartment 3 are specifically connected to the safety mechanisms 9 installed on the inner side walls of the compartment door 5, each input line 7 is connected to each safety mechanism 9 in a one-to-one correspondence, and the tail end of each safety mechanism 9 is electrically connected to the voltage sensor 10 fixed on the outer side wall of the compartment door 5, where the safety mechanisms 9 are used for ensuring the safety and reliability of the voltage sensor 10 in operation in a high-voltage environment. Wherein, voltage sensor 10 can be for capacitive voltage divider and resistive voltage divider, and inside adoption ageing-resistant insulating potting material fills, and the one end that voltage sensor 10 and safety gear 9 are connected is the high-pressure incoming end, just be equipped with signal output joint 11 on the voltage sensor 10, voltage sensor 10 can carry out signal connection with outside electric energy meter through signal output joint 11, then makes the device when measuring, only needs simple with outside electric energy meter connecting wire insert on signal output joint 11, can begin to detect, signal output joint 11 is the secondary low pressure and draws forth the signal end, and the voltage of production is less.
Further, referring to fig. 2, fig. 3, fig. 5, fig. 6, fig. 7, and fig. 11, in the present embodiment, the safety mechanism 9 specifically includes a bottom plate 901, an insulating block 902, a high-voltage fuse 903, a conductor 904, and a clamping block 905; the bottom plate 901 is fixed on the inner side wall of the bin gate 5, two ends of the bottom plate 901 are fixedly connected with insulating blocks 902, any insulating block 902 is fixedly connected with a corresponding input line 7 through a clamping block 905, and a high-voltage fuse 903 is fixedly connected between the two insulating blocks 902; conductors 904 are further arranged inside the two insulating blocks 902, and two ends of the high-voltage fuse 903 are electrically connected with the corresponding input line 7 and the voltage sensor 10 through the conductors 904; when the internal short circuit and other extreme conditions occur, the high-voltage fuse 903 can disconnect the detection circuit from the input line 7, so that the safety and reliability of the operation of the voltage sensor 10 in a high-voltage environment are guaranteed, the detection device is cut off from a power grid, and the normal operation of a line is not influenced.
Further, in this embodiment, the structure of the high-voltage fuse 903 specifically includes a fuse tube, a contact conductive portion, and the like, the fuse tube is filled with quartz sand fine particles for arc extinction, and the fuse element is a metal wire or a metal sheet made of a metal material with a lower melting point and is connected in series in a protected circuit; when the circuit or equipment in the circuit is overloaded or fails, the melting piece heats and melts, so that the circuit is cut off, and the purpose of protecting the circuit or the equipment is achieved; the high-voltage fuse 903 all has a technical scheme for public use at present, and the structure and the principle are not the technical features of the present invention, and therefore, the details are not described, for example, the model of the high-voltage fuse 903 is XRNT 1-12/200.
Further, referring to fig. 5, fig. 6 and fig. 8, in the present embodiment, a peeling process is performed on the input line 7 between the insulation block 902 and the clamp block 905 to form a peeling part 701; here, the peeling part 701 of the input line 7 exposes the conductive copper wire of the input line 7 to the outside, and then after being clamped by the clamping block 905, the conductive copper wire of the peeling part 701 of the input line 7 directly contacts with the conductor 904, so that the electrical connection is realized. Furthermore, a wire groove is formed between the insulating block 902 and the clamping block 905, and the diameter of the wire groove is smaller than that of the peeling part 701 of the input wire 7, so that the input wire 7 can be clamped more firmly by the insulating block 902 and the clamping block 905.
Further, referring to fig. 2 and 10, in the present embodiment, a plurality of wire clamps 15 are movably clamped on outer sidewalls of the input line 7 and the output line 8, and an inner end of each wire clamp 15 is movably clamped inside the clamping groove 16; the clamping grooves 16 are arranged on the side wall of the mounting plate 6 in an array mode. The number of the wire clamps 15 can be properly increased according to the lengths of the input wires 7 and the output wires 8 in the cavity 2, so that the arrangement of the input wires 7 and the output wires 8 is clear and not disordered, and the cleanness of the inside of the cavity 2 is kept.
Further, referring to fig. 1, in the present embodiment, an observation window 13 and a heat dissipation barrier 14 are disposed on a side wall of the cabinet door 4. Wherein, the observation window 13 is convenient for observing the working condition of the electric element 12 in the cavity 2; the heat dissipation barrier 14 facilitates the heat generated by the electric components 12 inside the cavity 2 during operation to be dissipated.
Further, referring to fig. 2 and 9, in the present embodiment, a partition 17 is further installed in the middle of the cable compartment 3; the cable bin 3 is divided into an upper accommodating bin and a lower accommodating bin by a partition plate 17, an input line 7 is accommodated in the upper accommodating bin, and an output line 8 is accommodated in the lower accommodating bin; this baffle 17 can be separated the input line 7 that is located inside cable chamber 3 with output line 8, makes the quick judgement kind of circuit of managers then, the management of the circuit of being convenient for.
In addition, as shown in fig. 1, in the embodiment, handles (not labeled) are further respectively disposed on the cabinet door 4 and the bin door 5, and the cabinet door 4 and the bin door 5 can be opened to the state shown in fig. 2 by pulling the handles; because the device is high-voltage electrical device, in order to ensure public safety, the department of opening and shutting of cabinet door 4 and door 5 can be equipped with mechanical lock (not marking in the figure), makes cabinet door 4 and door 5 then dead by the lock when closed, prevents that cabinet door 4 and door 5 from opening wantonly, endangering public safety.
The working principle is as follows: when the cable bin is installed, the electric element 12 is fixedly installed on the installation plate 6, the input line 7 and the output line 8 in the cable bin 3 are pulled into the cavity 2 and connected to the electric element 12; then, peeling off a proper position of the input line 7 in the cable chamber 3, electrically connecting the peeled part 701 of the input line 7 with the safety mechanism 9, and electrically connecting the other end of the safety mechanism 9 with the voltage sensor 10; at the moment, after the electric element 12 is opened and electrified, the normal operation of the device can be realized by closing the bin door 5 and the cabinet door 4; during high-voltage detection, detection can be started only by simply inserting an external electric energy meter connecting wire into the signal output connector 11; when the internal short circuit and other extreme conditions occur, the pressure sensor 10 and the input line 7 are disconnected through the safety mechanism 9, and the safety and the reliability of operation in a high-voltage environment are guaranteed.
The above description is only exemplary of the present invention and should not be taken as limiting the scope of the present invention, as any modifications, equivalents, improvements and the like made within the spirit and principles of the present invention are intended to be included within the scope of the present invention.

Claims (6)

1. The ring main unit based on high-voltage measurement is characterized by comprising a main body (1), wherein a cavity (2) and a cable bin (3) are formed in the main body (1), the side wall of the cavity (2) is rotatably connected with a cabinet door (4), and the side wall of the cable bin (3) is rotatably connected with a bin door (5);
an installation plate (6) is fixedly connected inside the cavity (2), and an electric element (12) is fixed on the installation plate (6); the upper end and the lower end of the electric element (12) are respectively connected with a plurality of input lines (7) and output lines (8), the end parts of the input lines (7) and the output lines (8) extend towards the direction of the cable bin (3) and penetrate into the cable bin (3) until the end parts extend to the outside of the cabinet body (1) and are connected with external conductive circuits in series; the input line (7) positioned in the cable bin (3) is particularly connected with safety mechanisms (9) arranged on the inner side wall of a bin door (5), and the tail end of each safety mechanism (9) is connected with a voltage sensor (10) fixed on the outer side wall of the bin door (5); and a signal output joint (11) is arranged on the voltage sensor (10).
2. The looped network cabinet based on high voltage measurement according to claim 1, wherein the safety mechanism (9) comprises a bottom plate (901), two ends of the bottom plate (901) are fixedly connected with insulating blocks (902), any insulating block (902) is fixedly connected with a corresponding input line (7) through a clamping block (905), and a high voltage fuse (903) is fixedly connected between the two insulating blocks (902); conductors (904) are further arranged inside the two insulation blocks (902), and two ends of the high-voltage fuse (903) are electrically connected with the corresponding input line (7) and the voltage sensor (10) through the conductors (904) respectively.
3. The looped network cabinet based on high voltage measurement according to claim 2, wherein a peeling part (701) is provided at the periphery of the input line (7) between the insulation block (902) and the clamping block (905).
4. The looped network cabinet based on high voltage measurement according to claim 1, wherein a plurality of wire clamps (15) are movably clamped on outer sidewalls of the input line (7) and the output line (8), and an inner end of each wire clamp (15) is movably clamped inside the clamping groove (16); the clamping grooves (16) are arranged on the side wall of the mounting plate (6) in an array arrangement mode.
5. The looped network cabinet based on high voltage measurement according to claim 1, wherein the side wall of the cabinet door (4) is provided with an observation window (13) and a heat dissipation grille (14).
6. The ring main unit based on high voltage measurement according to claim 1, wherein a partition plate (17) is further installed in the middle of the cable compartment (3); the cable bin (3) is divided into an upper containing bin and a lower containing bin by the partition plate (17), and the input line (7) and the output line (8) are contained in the upper containing bin and the lower containing bin respectively.
CN201921730617.3U 2019-10-15 2019-10-15 Ring main unit based on high-voltage measurement Active CN210490246U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201921730617.3U CN210490246U (en) 2019-10-15 2019-10-15 Ring main unit based on high-voltage measurement

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201921730617.3U CN210490246U (en) 2019-10-15 2019-10-15 Ring main unit based on high-voltage measurement

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CN210490246U true CN210490246U (en) 2020-05-08

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110571698A (en) * 2019-10-15 2019-12-13 国网安徽省电力有限公司阜阳供电公司 Ring main unit based on high-voltage measurement

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110571698A (en) * 2019-10-15 2019-12-13 国网安徽省电力有限公司阜阳供电公司 Ring main unit based on high-voltage measurement
CN110571698B (en) * 2019-10-15 2024-03-19 国网安徽省电力有限公司阜阳供电公司 Ring main unit based on high-voltage measurement

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