WO2018128269A1 - 절연활선장선기와 바이패스점퍼케이블을 이용하여 전주 경간내 전선을 분리하여 사선상태에서 구간내 작업을 하는 무정전 배전공법 - Google Patents
절연활선장선기와 바이패스점퍼케이블을 이용하여 전주 경간내 전선을 분리하여 사선상태에서 구간내 작업을 하는 무정전 배전공법 Download PDFInfo
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- WO2018128269A1 WO2018128269A1 PCT/KR2017/013456 KR2017013456W WO2018128269A1 WO 2018128269 A1 WO2018128269 A1 WO 2018128269A1 KR 2017013456 W KR2017013456 W KR 2017013456W WO 2018128269 A1 WO2018128269 A1 WO 2018128269A1
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- wire
- pole
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- H—ELECTRICITY
- H02—GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
- H02G—INSTALLATION OF ELECTRIC CABLES OR LINES, OR OF COMBINED OPTICAL AND ELECTRIC CABLES OR LINES
- H02G1/00—Methods or apparatus specially adapted for installing, maintaining, repairing or dismantling electric cables or lines
- H02G1/02—Methods or apparatus specially adapted for installing, maintaining, repairing or dismantling electric cables or lines for overhead lines or cables
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- H—ELECTRICITY
- H02—GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
- H02G—INSTALLATION OF ELECTRIC CABLES OR LINES, OR OF COMBINED OPTICAL AND ELECTRIC CABLES OR LINES
- H02G1/00—Methods or apparatus specially adapted for installing, maintaining, repairing or dismantling electric cables or lines
- H02G1/005—Methods or apparatus specially adapted for installing, maintaining, repairing or dismantling electric cables or lines for cutting cables or wires, or splicing
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- H—ELECTRICITY
- H02—GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
- H02G—INSTALLATION OF ELECTRIC CABLES OR LINES, OR OF COMBINED OPTICAL AND ELECTRIC CABLES OR LINES
- H02G7/00—Overhead installations of electric lines or cables
- H02G7/02—Devices for adjusting or maintaining mechanical tension, e.g. take-up device
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- H—ELECTRICITY
- H02—GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
- H02G—INSTALLATION OF ELECTRIC CABLES OR LINES, OR OF COMBINED OPTICAL AND ELECTRIC CABLES OR LINES
- H02G7/00—Overhead installations of electric lines or cables
- H02G7/05—Suspension arrangements or devices for electric cables or lines
- H02G7/053—Suspension clamps and clips for electric overhead lines not suspended to a supporting wire
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- H—ELECTRICITY
- H02—GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
- H02G—INSTALLATION OF ELECTRIC CABLES OR LINES, OR OF COMBINED OPTICAL AND ELECTRIC CABLES OR LINES
- H02G7/00—Overhead installations of electric lines or cables
- H02G7/20—Spatial arrangements or dispositions of lines or cables on poles, posts or towers
Definitions
- the present invention relates to an uninterruptible power distribution method for a distribution line, and more particularly, in performing an uninterruptible work, to prevent safety accidents due to excessive work in advance, and to prevent on-site traffic obstacles due to excessive equipment and personnel input.
- Uninterrupted power distribution method that separates electric wires in electric pole span by using insulated live-route and bypass jumper cables to improve work efficiency such as enabling to cope with various site conditions. It is about.
- the conventional high voltage distribution line uses a temporary transmission method using a bypass cable, which is one of the uninterrupted electric methods, but it uses the intermediate connection material every 50m by using the high voltage three phase by using a construction switch and a three phase bypass cable. If there is a transformer in the work section, branch from the branch connection material at each transformer installation point and supply it to each uninterruptible transformer device.If there is a branch line, supply it to the branch line by using the branch connection material. Work has been done at about 200 ⁇ 300m.
- Patent Document 1 Korean Patent Registration Publication No. 10-1122499.
- the present invention was devised to solve the above-mentioned problems, significantly reducing safety accidents caused by uninterrupted work by direct line unreasonably at the beginning and end of the work section without installing a bypass cable in the field.
- the work process by applying the work process to the direct transmission method that bypasses the newly established and the old and old wires being removed, the work is simple and the direct transmission uninterrupted method that does not transfer load in the case of heavy load lines.
- Uninterruptible work is possible with one uninterruptible transformer device even when there are many transformers, so it is easy to apply the construction method in the downtown area, which is a complex urban area, and to prevent traffic obstacles, pedestrian traffic hazards, convenience and safety and economical efficiency. It is another object of the present invention to provide an uninterruptible power distribution method for in-sector work in a diagonal state by separating an electric wire in an electric pole span by using an insulated live-trailer and a bypass jumper cable.
- bypass jumper means Connect one of the bypass jumper means to the demolition wire of the insulated live-loader wire clip installed inside the work section of the work section starting and ending, and the other side of the bypass jumper to the outside section of the work section of the work section starting and ending. Connecting to bypass connection;
- the insulated live wire cable is to remove the demolition wires and poles holding the tension of the wires
- bypass jumper Connect one of the bypass jumper means to the demolition wire of the insulated live-route wire clip installed at the beginning and end of the work section, and connect the other of the bypass jumper to the outside of the work section of the work section at the beginning and end of the work section.
- the insulated live wire cable is to remove the demolition wires and poles holding the tension of the wires
- bypass jumper means Connect one of the bypass jumper means to the demolition wire of the insulated live-loader wire clip installed inside the work section of the work section starting and ending, and the other side of the bypass jumper to the outside section of the work section of the work section starting and ending. Connecting to bypass connection;
- the uninterruptible power distribution method of working in the section in the diagonal state by separating the electric wire in the electric pole span by using the insulated live-trailer and the bypass jumper cable of the present invention excludes the uninterruptible work of the start pole and the end pole of the work section in the field.
- the uninterrupted work should be laid by the bypass cable for safety even in the section where the work is already prepared, but the work efficiency is reduced and the site utilization Because of this fall, it is possible to drastically reduce safety accidents caused by uninterrupted work on the direct line at the beginning and end of the work section without installing a bypass cable in the field, and improve economic efficiency and site utilization.
- the present invention is a direct transmission method that works by bypassing new and old and old wires being removed.
- it is possible to apply uninterrupted work with one uninterruptible transformer device even if there are a large number of transformers in the work area.
- it is possible to obtain the effect of preventing the danger of pedestrian traffic, improving the convenience and safety and economic efficiency.
- Figure 1 is a simplified diagram according to the first embodiment of the uninterruptible power distribution method to work in the section in the diagonal state by separating the electric wire in the electric pole span using the insulated live-trailer and the bypass jumper cable.
- Figure 2 is a simplified diagram according to the first embodiment of the uninterruptible power distribution method to work in the section in the diagonal state by separating the electric wire in the electric pole span using the insulated live-trailer and the bypass jumper cable of the present invention.
- Figure 3 is a simplified diagram according to the first embodiment of the uninterruptible power distribution method to work in the section in the diagonal state by separating the electric wire in the electric pole span using the insulated live-trailer and the bypass jumper cable of the present invention.
- Figure 4 is a simplified diagram according to the first embodiment of the uninterruptible power distribution method to work in the section in the diagonal state by separating the electric wire in the electric pole span using the insulated live-trailer and the bypass jumper cable.
- Figure 5 is a simplified diagram according to the first embodiment of the uninterruptible power distribution method to work in the section in the diagonal state by separating the electric wire in the electric pole span using the insulated live-trailer and the bypass jumper cable of the present invention.
- Figure 6 is a simplified diagram according to the first embodiment of the uninterruptible power distribution method to work in the section in the diagonal state by separating the electric wire in the electric pole span using the insulated live-trailer and the bypass jumper cable of the present invention.
- Figure 7 is a simplified diagram according to a second embodiment of the uninterruptible power distribution method of working in the section in the diagonal state by separating the electric wire in the electric pole span using the insulated live-trailer and the bypass jumper cable of the present invention.
- Figure 8 is a simplified diagram according to a second embodiment of the uninterruptible power distribution method to work in the section in the diagonal state by separating the electric wire in the electric pole span using the insulated live-trailer and the bypass jumper cable.
- Figure 9 is a simplified diagram according to a second embodiment of the uninterruptible power distribution method to work in the section in the diagonal state by separating the electric wire in the electric pole span using the insulated live-trailer and the bypass jumper cable.
- Figure 10 is a simplified diagram according to a second embodiment of the uninterruptible power distribution method to work in the section in the diagonal state by separating the electric wire in the electric pole span using the insulated live-trailer and the bypass jumper cable.
- Figure 11 is a simplified diagram according to a second embodiment of the uninterruptible power distribution method to work in the section in the diagonal state by separating the electric wire in the electric pole span using the insulated live-trailer and the bypass jumper cable of the present invention.
- Figure 12 is a simplified diagram according to a second embodiment of the uninterruptible power distribution method to work in the section in the diagonal state by separating the electric wire in the electric pole span by using the insulated live-trailer and the bypass jumper cable.
- Figure 13 is a simplified diagram according to a third embodiment of the uninterruptible power distribution method to work in the section in the diagonal state by separating the electric wire in the electric pole span using the insulated live-trailer and the bypass jumper cable of the present invention.
- Figure 14 is a simplified diagram according to a third embodiment of the uninterruptible power distribution method to work in the section in the diagonal state by separating the electric wire in the electric pole span using the insulated live-trailer and the bypass jumper cable of the present invention.
- Figure 15 is a simplified diagram according to a third embodiment of the uninterruptible power distribution method to work in the section in the diagonal state by separating the electric wire in the electric pole span using the insulated live-trailer and the bypass jumper cable of the present invention.
- Figure 16 is a simplified diagram according to a third embodiment of the uninterruptible power distribution method to work in the section in the diagonal state by separating the electric wire in the electric pole span using the insulated live-trailer and the bypass jumper cable of the present invention.
- Figure 17 is a simplified diagram according to a third embodiment of the uninterruptible power distribution method for working in the section in the diagonal state by separating the electric wire in the electric pole span using the insulated live-trailer and the bypass jumper cable of the present invention.
- Figure 18 is a simplified diagram according to a third embodiment of the uninterruptible power distribution method for performing the work in the section in the diagonal state by separating the electric wire in the electric pole span using the insulated live-trailer and the bypass jumper cable.
- Figure 19 is a simplified diagram according to a third embodiment of the uninterruptible power distribution method to work in the section in the diagonal state by separating the electric wire in the electric pole span using the insulated live-trailer and the bypass jumper cable.
- 20 is a simplified diagram according to a third embodiment of the uninterruptible power distribution method for separating the electric wire in the electric pole span by using the insulated live-trailer and the bypass jumper cable to work in the section in a diagonal state.
- Figure 21 is a simplified diagram according to a fourth embodiment of the uninterruptible power distribution method for working in the section in the diagonal state by separating the electric wire in the electric pole span by using the insulated live-trailer and the bypass jumper cable.
- Figure 22 is a simplified diagram according to a fourth embodiment of the uninterruptible power distribution method to work in the section in the diagonal state by separating the electric wire in the electric pole span using the insulated live-trailer and the bypass jumper cable of the present invention.
- Figure 23 is a simplified diagram according to a fourth embodiment of the uninterruptible power distribution method for the operation in the section in the diagonal state by separating the electric wire in the electric pole span using the insulated live-trailer and the bypass jumper cable.
- FIG. 24 is a simplified diagram according to the fourth embodiment of the uninterruptible power distribution method for performing the operation in the section in the diagonal state by separating the electric wire in the electric pole span using the insulated live-trailer and the bypass jumper cable of the present invention.
- 25 is a simplified diagram according to a fourth embodiment of the uninterruptible power distribution method for separating the electric wire in the electric pole span using the present invention insulated live-trailer and the bypass jumper cable to perform the operation in the diagonal state.
- FIG. 26 is a simplified diagram according to a fourth embodiment of an uninterruptible power distribution method in which an in-line work is performed in an oblique state by separating an electric wire in an electric pole span using an insulated live-trailer and a bypass jumper cable of the present invention
- FIG. 27 is a simplified diagram according to a fourth embodiment of an uninterruptible power distribution method in which a wire is disconnected in an electric pole span by using the present invention insulated live-trailer and a bypass jumper cable to perform work in a section in a diagonal state;
- FIG. 28 is a simplified diagram according to a fourth embodiment of the uninterruptible power distribution method for separating the electric wire in the electric pole span by using the insulated live-trailer and the bypass jumper cable to work in the section in a diagonal state.
- 29 is another embodiment of the uninterruptible power distribution method for performing the operation in the section in the diagonal state by separating the electric wire in the electric pole span using the insulated live-trailer and the bypass jumper cable of the present invention.
- demolition wire 1a branch line demolition wire
- Old wire 2a Branch line Old wire
- jumper wire 3a branch line jumper wire
- 70 extra high voltage cable 70a: low voltage cable
- the uninterrupted electric power distribution method is variously implemented in case of uninterrupted construction of electric pole relocation, replacement and change of transition site. According to an example, it is possible to construct in an uninterruptible state, and to be possible by various embodiments.
- a safe diagonal working section of the demolition wire is secured by an insulated live-tender 20 wire clip that will secure the wire tension inside the working section of the work section starting and ending pole 10.
- the other side of the bypass jumper means 30 is connected by bypass, and as shown in FIG. 3, the jumper wires 3 of the start and end poles 10 of the work section are sequentially separated, respectively, and then shown in FIG. 4.
- the completion of the electric pole establishment in a diagonal state at the beginning and end of the electric pole 10 is completed, the new electric wire 110 is twisted, the long wire work is fixed, respectively, and the start of the end of the electric pole ( 10)
- the jumper wire 130 of the new wire 110 By-connect the jumper wire 130 of the new wire 110, the stranded wire and the long wire work is completed to the old wire (2) in sequence and in the start and end pole (10) section as shown in FIG.
- the wire clip of the insulated livestocking machine in a diagonal state performs the process of demolishing the demolition wire (1) and the pole in a diagonal state holding the tension of the wire. In addition, uninterrupted work of replacement work and change of location can be achieved.
- One side connection, and the other side of the bypass jumper means 30 connected to the outside wire of the work section start and end pole 10 by the bypass connection, and the work section start and end as shown in FIG.
- the electric wire clip of the insulated live-tender 20 to secure the wire tension inside the working section of the branch line pole 100a in the working section is secured at a point where a safe diagonal working section of the demolition wire 1a is secured.
- one of the bypass jumper means 30 is connected to the wire clip outer wire of the insulated live-trailer 20 in the working section span, and the work section of the branch line pole 100a.
- the other side of the bypass jumper means 30 is connected to the outer wire to bypass connection, and as shown in FIG. 9, the jumper wire 3a of the branch line pole 100a is separated and then insulated as shown in FIG. 10.
- Newly connected wires 110a are twisted and long wired to each other in a diagonal state in the branch line pole 100a, and each of them is fixed and connected to each other, and as shown in FIG. 11, the twisted wire and the long wire work are completed at the branch line pole 100a.
- the jumper wire 130a of the wire 110a is sequentially bypassed to the branch line old wire 2a, and as shown in FIG. 12, the start and end pole 10 of the work zone and the pole of the branch line 100a are shown in FIG. 12.
- the jumper wires 3 of the start and end poles 10 of the work section are separated, and as shown in FIG. Separate the safe working range Make and remove the electric wires from the separated electric wire to the electric pole of the electric pole in a diagonal state, and start a safe diagonal working period for the new wire and the new electric wire (110) stranded and long wire work in the diagonal state at the start and end electric pole (10). Secure each.
- the new and newly constructed electric poles 110 are twisted and twisted in the state of starting and ending electric poles 10 in a diagonal state, respectively, and fixed, respectively.
- the jumper wire 130 of the newly formed wire 110 in which the stranded wire and the long wire work is completed, is bypassed connected to the old wire 2 in sequence in (10).
- the secondary low voltage cable 70a of the uninterruptible transformer device is connected to the secondary low voltage line 80 in which the uninterruptible transformer device 60 is installed in the columnar transformer column 10b in the work section.
- the secondary lowering line 52 of the columnar transformer 50 is separated, the columnar transformer COS 51 is opened, and the columnar transformer 50 is removed and reused or newly installed and Replaced and installed in the new pole (100b), the new columnar transformer (50a) COS (51a) is put and the transformer secondary lowering line (52a), the uninterruptible transformer device 60 is cut off and the uninterruptible transformer device (60) Remove the low voltage cable (70a) of the transformer to complete the work to install and relocate the transformer in the work zone uninterrupted.
- Uninterrupted preparation work is carried out by carrying out the construction of new poles, pole poles, and wires in the diagonal state, and as shown in FIG. 22, the wire tension is held inside the work zones of the start and end pole poles 10 and the branch pole pole pole 100a as shown in FIG.
- One side is connected, and the other side of the bypass jumper means 30 is connected to the outside wire of the work section start and end pole 10 and the branch line pole 100a by a bypass connection, As shown in FIG.
- the jumper wires 3 of the start and end pole poles 10 and the branch line pole pole 100a are separated, and as shown in FIG. Secure wires by separating the wires Start and end the safe diagonal line to make up sections, remove the obstacles by removing the wires from the separated wires to the pole suspension in the diagonal state, and work on the new wires (110, 110a). It secures to the electric pole 10 and the branch line electric pole 100a.
- the new and first wires 110 and 110a are twisted and twisted in the diagonal line to the start and end pole 10 and the branch line pole 100a, respectively.
- the jumper wires 130 of the new electric wires 110 and 110a in which the stranded wire and the long wire work are completed, are sequentially bypassed to the old electric wire 2 in the electric pole 10 and the branch line electric pole 100a.
- the uninterruptible transformer device 60 is installed in the columnar transformer column 10b in the work section, and the secondary low voltage cable 70a of the uninterruptible transformer device 60 is installed on the secondary low voltage line 80 of the columnar transformer 50. ) And bypass the secondary lowering line 52 of the columnar transformer 50, open the columnar transformer COS 51, and remove and reuse the columnar transformer 50 as shown in FIG.
- the new columnar transformer (50a) COS (51a) is introduced, the new columnar transformer (50a) secondary cut line (52a) connected, the uninterruptible transformer (60) is cut off Then, the low-voltage cable (70a) of the uninterruptible transformer device is separated to complete the work of replacing and relocating the transformer to the uninterruptible work area.
- the bypass jumper means 30, which is installed in the electric pole within the section of the starting and ending pole 10 and the branch line pole 100a, are sequentially separated, and the insulated live-trailer is held in a diagonal state.
- the connecting pipe pass jumper means 30 is not limited, but may be variously applied.
- bypass jumper means 30 and a bypass jumper cable 30a forming a single line are applied.
- the bypass jumper cable 30a is applied to each of the three phases.
- Applicable demolition wire (1) and the old wire (2) can be applied by connecting to each other, it will be possible to perform a single phase of each of the three phases, or to work simultaneously three phases.
- the bypass jumper 30 is applied to the construction switchgear 30b capable of simultaneously inputting and outputting three phases, in which case the demolition wire 1 is a terminal for a switchgear for each phase of the three phases.
- the construction switch 30b using a cable 30c, and connect the construction switch 30b with the old cable (2) and the other switch terminal cable 30c for each phase of the three phases.
- Each of the middle phases can be performed or three phases can be operated simultaneously.
- the construction switch 30b in the application of the construction switch 30b, the work is not shown in the drawing when performing the work phase by phase, but the construction switch 30b is opened only for one phase to perform the work, and closed for the remaining two phases When the work is to be performed in a state, when the three phases at the same time work in the construction switchgear (30b) will be to perform the work in the open state for all three phases to be performed.
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Claims (7)
- 전주이설, 교체 및 경과지 변경 공사를 무정전으로 시공하는 무정전 배전공법에 있어서,사선상태에서 작업구간내의 전주신설 및 장주, 전선가선 공사를 수행하여 무정전 대비작업을 하는 공정과;작업구간 시작과 끝 전주(10)의 작업구간 내측에 전선장력을 잡아줄 절연활선장선기(20) 전선클립을 철거전선(1)에 안전한 사선작업구간이 확보되는 지점에 각각 설치하는 공정과;작업구간 시작과 끝 전주(10)의 작업구간내 설치된 절연활선장선기(20) 전선클립 외측 철거전선(1)에 바이패스점퍼수단(30) 한쪽을 연결하고, 작업구간 시작과 끝 전주(10)의 작업구간 외측 구 전선(2)에 바이패스점퍼수단(30)의 다른 한쪽을 연결하여 바이패스 연결하는 공정과;작업구간 시작과 끝 전주(10)의 점퍼선(3)을 순차적으로 각각 분리하고 절연활선장선기(20) 전선클립이 물려있는 지점에서 전주(10) 측의 경간내 철거전선(1)을 각각 분리하는 공정과;작업구간 시작전주와 끝 전주(10)의 경간내 분리된 지점에서 전주(10)측 현수애자 까지의 철거전선(1)을 철거하여 안전한 사선상태 작업공간을 확보하고, 신설전선(110) 연선 및 긴선작업을 하여 각각 고정하는 공정과;작업구간 시작과 끝 전주(10)에 가선된 신설전선(110)의 신설전선의 점퍼선(130)을 구 전선(2)에 순차적으로 각각 연결하고 설치된 바이패스점퍼수단(30)을 분리하는 공정과;절연활선장선기(20) 전선클립이 전선의 장력을 잡고 있는 철거전선(1) 및 전주를 철거하는 공정을 수행함을 특징으로 하는 절연활선장선기와 바이패스점퍼케이블을 이용하여 전주 경간내 전선을 분리하여 사선상태에서 구간내 작업을 하는 무정전 배전공법.
- 전주이설, 교체 및 경과지 변경 공사를 무정전으로 시공하는 무정전 배전공법에 있어서,작업구간내 분기선로 전주(100a)가 있는 경우,사선상태에서 작업구간내의 전주신설 및 장주, 전선가선 공사를 수행하여 무정전 대비작업을 하는 공정과;분기선로 전주(100a)가 있는 작업구간 시작과 끝 전주(10) 작업구간 내측에 전선장력을 잡아줄 절연활선장선기(20) 전선클립을 철거전선(1)에 안전한 사선작업구간이 확보되는 지점에 각각 설치하는 공정과;작업구간 시작과 끝 전주(10)에 설치된 절연활선장선기(20) 전선클립 외측 철거전선(1)에 바이패스점퍼수단(30) 한쪽을 연결하고, 작업구간 시작과 끝 전주(10) 의 작업구간 외측 구 전선(2)에 바이패스점퍼수단(30)의 다른 한쪽을 연결하여 바이패스 연결하는 공정과;작업구간 시작과 끝 전주(10)의 점퍼선(3)을 순차적으로 각각 분리하고, 절연활선장선기(20) 전선클립이 물려있는 지점에서 전주(10) 측의 경간내 철거전선(1)을 각각 분리하는 공정과;작업구간 시작전주와 끝 전주(10)의 경간내 분리된 지점에서 전주(10)측 현수애자 까지의 철거전선(1)을 철거하여 안전한 사선상태 작업공간을 확보하고, 신설전선(110) 연선 및 긴선작업을 하여 각각 고정하는 공정과;분기선로 전주(100a) 작업구간 내측에 전선장력을 잡아줄 절연활선장선기(20) 전선클립을 철거전선(1a)에 안전한 사선작업구간이 확보되는 지점에 각각 설치하는 공정과;분기선로 전주(100a)에 설치된 절연활선장선기(20) 전선클립 외측 철거전선(1a)에 바이패스점퍼수단(30) 한쪽을 연결하고, 분기선로 전주(100a)의 작업구간 외측 구 전선(2)에 바이패스점퍼수단(30)의 다른 한쪽을 연결하여 바이패스 연결하는 공정과;분기선로 전주(100a)의 점퍼선(3a)을 순차적으로 분리하고 절연활선장선기(20) 전선클립이 물려있는 지점에서 분기선로 전주(100a) 측의 경간내 철거전선(1a)을 각각 분리하는 공정과;분기선로 전주(100a)의 경간내 분리된 지점에서 분기선로 전주(100a)측 현수애자 까지의 철거전선(1a)을 철거하여 안전한 사선상태 작업공간을 확보하고, 신설전선(110a) 연선 및 긴선작업을 하여 각각 고정하는 공정과;작업구간 시작과 끝 전주(10) 및 분기선로 전주(100a)에 가선된 신설전선(110)(110a)의 점퍼선(130)(130a)을 구 전선(2)(2a)에 순차적으로 각각 연결하고 설치된 바이패스점퍼수단(30)을 분리하는 공정과;절연활선장선기(20) 전선클립이 전선의 장력을 잡고 있는 철거전선(1)(1a) 및 전주를 철거하는 공정을 수행함을 특징으로 하는 절연활선장선기와 바이패스점퍼케이블을 이용하여 전주 경간내 전선을 분리하여 사선상태에서 구간내 작업을 하는 무정전 배전공법.
- 제2항에 있어서,작업 구간내 분기선로가 다수개소 있는 경우,분기선로 전주(100a)에 절연활선 장선기를 설치하는 공정에서 분기선로 신설전선(110a) 연선 및 긴선작업을 하여 고정하는 공정을 분기선로 다수개소 수만큼 반복 수행함을 특징으로 하는 절연활선장선기와 바이패스점퍼케이블을 이용하여 전주 경간내 전선을 분리하여 사선상태에서 구간내 작업을 하는 무정전 배전공법.
- 전주이설, 교체 및 경과지 변경 공사를 무정전으로 시공하는 무정전 배전공법에 있어서,작업구간내 주상변압기주(10b)가 있는 경우,사선상태에서 작업구간내의 전주신설 및 장주, 전선가선 공사를 수행하여 무정전 대비작업을 하는 공정과;작업구간 시작과 끝 전주(10)의 작업구간 내측에 전선장력을 잡아줄 절연활선장선기(20) 전선클립을 철거전선(1)에 안전한 사선작업구간이 확보되는 지점에 각각 설치하는 공정과;작업구간 시작과 끝 전주(10)의 작업구간내 설치된 절연활선장선기(20) 전선클립 외측 철거전선(1)에 바이패스점퍼수단(30) 한쪽을 연결하고, 작업구간 시작과 끝 전주(10)의 작업구간 외측 구 전선(2)에 바이패스점퍼수단(30)의 다른 한쪽을 연결하여 바이패스 연결하는 공정과;작업구간 시작과 끝 전주(10)의 점퍼선(3)을 순차적으로 각각 분리하고 절연활선장선기(20) 전선클립이 물려있는 지점에서 전주(10) 측의 경간내 철거전선(1)을 각각 분리하는 공정과;작업구간 시작전주와 끝 전주(10)의 경간내 분리된 지점에서 전주(10)측 현수애자 까지의 철거전선(1)을 철거하여 안전한 사선상태 작업공간을 확보하고, 신설전선(110) 연선 및 긴선작업을 하여 각각 고정하는 공정과;작업구간 시작과 끝 전주(10)에 가선된 신설전선(110)의 신설 점퍼선(130)을 구 전선(2)에 순차적으로 각각 연결 공정과;작업구간내 주상변압기주(10b)에 무정전변압기장치(60)를 설치하여 설치된 주상변압기(50) 2차 저압선(80)에 무정전변압기장치(60)의 2차 저압케이블(70a)을 연결하여 바이패스시킨 후 주상변압기(50)의 2차인하선(52)을 분리하고, 주상변압기 COS(51)를 개방하고, 주상변압기(50)를 철거하는 공정과,신설전주(100b)에 철거된 주상변압기를 재사용하거나 교체 및 신설하여 설치하고, 신설 주상변압기(50a) COS(51a)를 투입하고, 주상변압기(50a) 2차인하선(52a)을 연결한 후 무정전변압기장치(60)의 전원을 차단하고 무정전변압기장치(60)의 저압케이블(70a)을 분리하여 작업구간내 주상변압기를 교체 및 신설하여 이설하는 공정과,작업구간 시작과 끝 전주(10)에 설치된 바이패스점퍼수단(30)을 분리하고 작업구간 시작과 끝 전주(10) 구간내 절연활선장선기의 전선클립이 전선의 장력을 잡고 있는 철거전선(1)과 전주 및 무정전변압기장치(60)를 철거하는 공정을 수행함을 특징으로 하는 절연활선장선기와 바이패스점퍼케이블을 이용하여 전주 경간내 전선을 분리하여 사선상태에서 구간내 작업을 하는 무정전 배전공법.
- 제4항에 있어서,작업구간내 주상변압기주(10b)가 다수개소 있는 경우작업구간내 주상변압기주(10b)에 무정전변압기장치(60)를 설치하여 설치하는 공정에서 신설전주(100b)에 철거된 주상변압기를 재사용하거나 교체 및 신설하여 설치하고 무정전으로 이설하는 공정을 주상변압기주(10b) 다수개소 수만큼 반복 수행함을 특징으로 하는 절연활선장선기와 바이패스점퍼케이블을 이용하여 전주 경간내 전선을 분리하여 사선상태에서 구간내 작업을 하는 무정전 배전공법.
- 전주이설, 교체 및 경과지 변경 공사를 무정전으로 시공하는 무정전 배전공법에 있어서,작업 구간내 분기선로 전주(100a) 및 주상변압기주(10b)가 있는 경우,사선상태에서 작업구간내의 전주신설 및 장주, 전선가선 공사를 수행하여 무정전 대비작업을 하는 공정과;분기선로 전주(100a)가 있는 작업구간 시작과 끝 전주(10) 작업구간 내측에 전선장력을 잡아줄 절연활선장선기(20) 전선클립을 철거전선(1)에 안전한 사선작업구간이 확보되는 지점에 각각 설치하는 공정과;작업구간 시작과 끝 전주(10)에 설치된 절연활선장선기(20) 전선클립 외측 철거전선(1)에 바이패스점퍼수단(30) 한쪽을 연결하고, 작업구간 시작과 끝 전주(10)의 작업구간 외측 구 전선(2)에 바이패스점퍼수단(30)의 다른 한쪽을 연결하여 바이패스 연결하는 공정과;작업구간 시작과 끝 전주(10)의 점퍼선(3)을 순차적으로 각각 분리하고, 절연활선장선기(20) 전선클립이 물려있는 지점에서 전주(10) 측의 경간내 철거전선(1)을 각각 분리하는 공정과;작업구간 시작전주와 끝 전주(10)의 경간내 분리된 지점에서 전주(10)측 현수애자 까지의 철거전선(1)을 철거하여 안전한 사선상태 작업공간을 확보하고, 신설전선(110) 연선 및 긴선작업을 하여 각각 고정하는 공정과;분기선로 전주(100a) 작업구간 내측에 전선장력을 잡아줄 절연활선장선기(20) 전선클립을 철거전선(1a)에 안전한 사선작업구간이 확보되는 지점에 각각 설치하는 공정과;분기선로 전주(100a)에 설치된 절연활선장선기(20) 전선클립 외측 철거전선(1a)에 바이패스점퍼수단(30) 한쪽을 연결하고, 분기선로 전주(100a)의 작업구간 외측 구 전선(2)에 바이패스점퍼수단(30)의 다른 한쪽을 연결하여 바이패스 연결하는 공정과;분기선로 전주(100a)의 점퍼선(3a)을 순차적으로 분리하고 절연활선장선기(20) 전선클립이 물려있는 지점에서 분기선로 전주(100a) 측의 경간내 철거전선(1a)을 각각 분리하는 공정과;분기선로 전주(100a)의 경간내 분리된 지점에서 분기선로 전주(100a)측 현수애자 까지의 철거전선(1a)을 철거하여 안전한 사선상태 작업공간을 확보하고, 신설전선(110a) 연선 및 긴선작업을 하여 각각 고정하는 공정과;작업구간 시작과 끝 전주(10) 및 분기선로 전주(100a)에 가선된 신설전선(110)(110a)의 신설 점퍼선(130)(130a)을 구 전선(2)(2a)에 순차적으로 각각 연결하는 공정과;작업구간내 주상변압기주(10b)에 무정전변압기장치(60)를 설치하여 설치된 주상변압기(50) 2차 저압선(80)에 무정전변압기장치(60)의 2차 저압케이블(70a)을 연결하여 바이패스시킨 후 주상변압기(50)의 2차인하선(52)을 분리하고, 주상변압기 COS(51)를 개방하고, 주상변압기(50)를 철거하는 공정과,신설전주(100b)에 철거된 주상변압기를 재사용하거나 교체 및 신설하여 설치하고, 신설 주상변압기(50a) COS(51a)를 투입하고, 주상변압기(50a) 2차인하선(52a)을 연결한 후 무정전변압기장치(60)의 전원을 차단하고 무정전변압기장치(60)의 저압케이블(70a)을 분리하여 작업구간내 주상변압기를 교체 및 이설하는 공정과,작업구간 시작과 끝 전주(10) 및 분기선로 전주(100a)에 설치된 바이패스점퍼수단(30)을 분리하고 작업구간 시작과 끝 전주(10) 및 분기선로 전주(100a) 구간내 절연활선장선기의 전선클립이 전선의 장력을 잡고 있는 철거전선(1)(1a)과 전주 및 무정전변압기장치(60)를 철거하는 공정을 수행함을 특징으로 하는 절연활선장선기와 바이패스점퍼케이블을 이용하여 전주 경간내 전선을 분리하여 사선상태에서 구간내 작업을 하는 무정전 배전공법.
- 제1항, 제2항, 제4항, 제6항 중 어느 한 항에 있어서,바이패스점퍼수단(30)은,단일선을 이루는 바이패스점퍼케이블(30a)을 적용하되,바이패스점퍼케이블(30a)을 3상의 각 상에 대하여 철거전선(1)과 구 전선(2)을 연결하고,3상 중 단상씩 또는 3상을 동시 작업이 가능하게 하거나,바이패스점퍼수단(30)은,3상의 개폐가 동시에 가능한 공사용개폐기(30b)를 적용하되,3상의 각 상에 대하여 철거전선(1)과 구 전선(2)을 공사용개폐기(30b)와 연결되는 개폐기용 단말케이블(30c)로 연결하고,공사용개폐기(30b)를 3상 중 단상씩 또는 3상을 동시 개폐하여 작업이 가능하게함을 특징으로 하는 절연활선장선기와 바이패스점퍼케이블을 이용하여 전주 경간내 전선을 분리하여 사선상태에서 구간내 작업을 하는 무정전 배전공법.
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| KR20100036065A (ko) * | 2008-09-29 | 2010-04-07 | (주)동성 | 활선상태에서 배전선로의 교체시공방법 |
| KR101103553B1 (ko) * | 2011-03-07 | 2012-01-06 | 대원전기 주식회사 | 간격유지용 절연 가이더를 이용한 배전선로의 무정전 바이패스 공법 |
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| JP3254407B2 (ja) * | 1997-06-27 | 2002-02-04 | 中部電力株式会社 | 鉄塔建て替え工事方法 |
| EP1396057A1 (en) * | 2001-06-11 | 2004-03-10 | Daewon Electric Company Limited | Wire-changing device inside of electric pole and non-power-failure power distribution method |
| JP3914068B2 (ja) * | 2002-03-07 | 2007-05-16 | 中部電力株式会社 | ジャンパ装置 |
| DK1727251T3 (en) * | 2003-08-29 | 2018-03-26 | Quanta Services | Procedure for anchoring a vehicle |
| CN101064431B (zh) * | 2006-04-29 | 2010-09-29 | 江苏省电力公司常州供电公司 | 带负荷更换10kV配电变压器的方法 |
| CN101794973A (zh) * | 2010-04-07 | 2010-08-04 | 绵阳电业局 | 更换配电变压器的带电作业法 |
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- 2017-01-05 KR KR1020170001651A patent/KR101777080B1/ko active Active
- 2017-11-24 CN CN201780082481.7A patent/CN110168826B/zh active Active
- 2017-11-24 WO PCT/KR2017/013456 patent/WO2018128269A1/ko not_active Ceased
- 2017-11-24 US US16/475,161 patent/US20190334328A1/en not_active Abandoned
- 2017-11-24 JP JP2019556775A patent/JP6778879B2/ja active Active
- 2017-11-24 AU AU2017390523A patent/AU2017390523A1/en not_active Abandoned
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| KR20010084955A (ko) * | 2001-06-11 | 2001-09-07 | 권세원 | 전주내 전선이선기구 및 이를 이용한 무정전 배전공법 |
| KR100815836B1 (ko) * | 2007-12-28 | 2008-03-24 | 대원전기 주식회사 | 폴 클램프 및 폴 크러셔를 이용한 배전선로용 콘크리트전주의 무정전 커팅 교체 시공법 |
| KR20100036065A (ko) * | 2008-09-29 | 2010-04-07 | (주)동성 | 활선상태에서 배전선로의 교체시공방법 |
| KR20120010370A (ko) * | 2010-07-26 | 2012-02-03 | 대원전기 주식회사 | 전선이선기구 및 바이패스케이블을 이용한 무정전 배전공법 |
| KR101103553B1 (ko) * | 2011-03-07 | 2012-01-06 | 대원전기 주식회사 | 간격유지용 절연 가이더를 이용한 배전선로의 무정전 바이패스 공법 |
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| Publication number | Priority date | Publication date | Assignee | Title |
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| CN109784720A (zh) * | 2019-01-15 | 2019-05-21 | 南京邮电大学 | 一种台风灾害下基于时空网格关联的配电网风险评估方法 |
| CN109784720B (zh) * | 2019-01-15 | 2021-07-02 | 南京邮电大学 | 一种台风灾害下基于时空网格关联的配电网风险评估方法 |
Also Published As
| Publication number | Publication date |
|---|---|
| CN110168826B (zh) | 2021-07-09 |
| JP2020504593A (ja) | 2020-02-06 |
| AU2017390523A1 (en) | 2019-08-01 |
| US20190334328A1 (en) | 2019-10-31 |
| JP6778879B2 (ja) | 2020-11-04 |
| CN110168826A (zh) | 2019-08-23 |
| KR101777080B1 (ko) | 2017-09-12 |
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