CN201532434U - Current transformer through-flow tester of neutral point of transformer - Google Patents

Current transformer through-flow tester of neutral point of transformer Download PDF

Info

Publication number
CN201532434U
CN201532434U CN2009202236846U CN200920223684U CN201532434U CN 201532434 U CN201532434 U CN 201532434U CN 2009202236846 U CN2009202236846 U CN 2009202236846U CN 200920223684 U CN200920223684 U CN 200920223684U CN 201532434 U CN201532434 U CN 201532434U
Authority
CN
China
Prior art keywords
transformer
terminal
neutral point
current
test
Prior art date
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
CN2009202236846U
Other languages
Chinese (zh)
Inventor
郑新才
吴建辉
李明
张凯
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
HUNAN ELECTRIC POWER COMPANY SHANGQIU POWER SUPPLY Co
Original Assignee
HUNAN ELECTRIC POWER COMPANY SHANGQIU POWER SUPPLY Co
Priority date (The priority date 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 date listed.)
Filing date
Publication date
Application filed by HUNAN ELECTRIC POWER COMPANY SHANGQIU POWER SUPPLY Co filed Critical HUNAN ELECTRIC POWER COMPANY SHANGQIU POWER SUPPLY Co
Priority to CN2009202236846U priority Critical patent/CN201532434U/en
Application granted granted Critical
Publication of CN201532434U publication Critical patent/CN201532434U/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

Links

Images

Landscapes

  • Testing Relating To Insulation (AREA)

Abstract

The utility model relates to a current transformer through-flow tester of a neutral point of a transformer; the inner part of the tester is provided with four connecting terminals, namely S1, S2, T1 and T2, two alternating-current ammeters A1 and A2 and an alternating-current air switch DK, and the outer part thereof is provided with two testing lines L1 and L2 and a pincers-shaped current sensor, wherein the connecting terminals S1 and S2 are primary output terminals and can output a 220V alternating-current voltage; the connecting terminals T1 and T2 are secondary output terminals, and the testing lines L1 and L2 are primary testing lines; and the connecting terminals T1 and T2 are connected with the pincers-shaped current sensor by testing lines K1 and K2. The tester can check the change of the neutral point TA of the transformer, avoid the other changes of the neutral point TA of the transformer when connecting wires, can thoroughly check the corresponding current secondary circuit of the neutral point TA of the transformer, guarantee the correct operation of the transformer, shorten the through-flow time of the neutral point TA of the transformer, improve the reliability of operation of the transformer and guarantee the stable operation of a power system.

Description

Transformer neutral point current transformer through-flow tester
Technical field
The utility model relates to a kind of transformer neutral point current transformer through-flow test instrument, belongs to relay protection of power system and automatic safety device check field.
Background technology
Transformer station is the power supply hinge of electric system, and it is powered to the user by the transformer in the transformer station.Transformer neutral point current transformer (hereinafter to be referred as transformer neutral point TA) is installed between bushing shell for transformer and the transformer neutral point earthing isolator.Be that transformer neutral point TA upper end links to each other with bushing shell for transformer in transformer inside, the lower end links to each other with the transformer neutral point earthing isolator.Transformer neutral point TA also is a kind of current transformer in fact, and the current transformer effect is to convert big electric current (primary current) to little electric current (secondary current), and wherein the ratio of primary current and secondary current is called the no-load voltage ratio of current transformer.
Transformer neutral point TA occupies important effect in tranformer protection, in case there is mistake in its corresponding electric current secondary loop, will cause the irregular operating of transformer.The through-flow test of so-called current transformer is exactly that Current Transformer up-flow instrument feeds big electric current in a winding of current transformer, check its corresponding secondary current current in loop then, not only can check the no-load voltage ratio of current transformer, and can check whether its secondary circuit wiring is correct.The through-flow test of conventional current mutual inductor is that Current Transformer up-flow instrument is connected on the two ends of current transformer through-flow the time, checks its corresponding electric current secondary loop.But transformer neutral point TA is installed between bushing shell for transformer and the transformer neutral point earthing isolator, and its upper end links to each other with bushing shell for transformer in transformer inside, and through-flow test is carried out at the two ends that can't Current Transformer up-flow instrument be connected on current transformer.Terminate on the sleeve pipe of transformer as if one of Current Transformer up-flow instrument in addition, the other end is connected on the transformer neutral point earthing isolator and does through-flow test, though this kind test method is the two ends that current transformer up-flow instrument are connected on depressor neutral point TA on principle, but owing between bushing shell for transformer and the transformer neutral point earthing isolator very large impedance is arranged, the up-flow instrument can't pass through electric current by between, so also can't do through-flow test.Therefore how be the most important thing of all work at the put into operation line transformer neutral point TA through-flow test that advances of transformer.
Present stage, how there is the blank of equipment and technology in the through-flow test that transformer neutral point TA is done science always, there is not special test apparatus, when testing as if the no-load voltage ratio that need be transformer neutral point TA generally speaking, all be that Current Transformer up-flow instrument was done through-flow test to transformer neutral point TA separately on the ground after depressor neutral point TA was dismantled from transformer.This in fact way is very unilateral, and it just checks the no-load voltage ratio of transformer neutral point TA itself, its corresponding electric current secondary loop is not checked, in case the electric current secondary loop existing problems will cause the harm of following three aspects equally.(1) can't check its secondary circuit comprehensively.Can not guarantee that transformer normally moves; (2) can not check whether its secondary circuit wiring is correct, the preceding pre-control of the accident of can't accomplishing; (3) waste a large amount of human and material resources, time.If can be according to some correlation properties of transformer, the through-flow test that a kind of test apparatus of utility model is transformer neutral point TA be a very important problem.
Summary of the invention
For fear of above various shortcoming, the utility model proposes the through-flow test instrument of a kind of transformer neutral point TA, this test instrument is simple to operate, can overhaul no-load voltage ratio and the corresponding electric current secondary loop of transformer neutral point TA, accomplishes the pre-control that accident is preceding; Guaranteed the safe and stable operation of electrical network.
The technical scheme that solution the utility model problem is adopted is: there are four connection terminals this test instrument inside, be S1 terminal, S2 terminal, T1 terminal, T2 terminal, two alternating current ammeter A1, A2, an interchange air switch DK, there are two test wires the outside, i.e. L1, L2 test wire and a pincerlike current sensor; Wherein S1 terminal, S2 terminal are primary output terminals, can export the 220V alternating voltage; T1 terminal, T2 terminal are secondary output terminals, and L1, L2 test wire are the single test line; A terminal at inner S1 terminal of test instrument and alternating current ammeter A1 links to each other, and another terminal of alternating current ammeter A1 links to each other with the L1 test wire; The S2 terminal links to each other with a terminal that exchanges air switch DK, and another terminal that exchanges air switch DK links to each other with the L2 test wire; The terminal of T1 terminal and alternating current ammeter A2 links to each other, the T1 terminal also links to each other with the K1 test wire of pincerlike current sensor simultaneously, the another one terminal of T2 terminal and alternating current ammeter A2 links to each other, and the T2 terminal also links to each other with the K2 test wire of pincerlike current sensor simultaneously.
Good effect of the present utility model is: can check the no-load voltage ratio of transformer neutral point TA, mistake inserts other no-load voltage ratio of transformer neutral point TA when avoiding wiring; Can overhaul the corresponding electric current secondary loop of transformer neutral point TA, guarantee the transformer true(-)running; Shorten the through-flow time of transformer neutral point TA, improved the transformer reliability of operation, ensured the stable operation of electric system.
Description of drawings
Fig. 1 is a test principle synoptic diagram of the present utility model.
Embodiment
As shown in drawings, one of this test instrument 1 inner S1 terminal 2 and AC power 22 extremely links to each other, and another of S2 terminal 5 and AC power 22 extremely links to each other, and can export the alternating voltage of 220V between the two; The two ends of reometer A1 3 link to each other with L1 test wire 4 with S1 terminal 2 respectively; The two ends that exchange air switch DK 19 link to each other with L2 test wire 6 with S2 terminal 5 respectively; The two ends of reometer A2 8 link to each other with T2 terminal 10 with T1 terminal 7 respectively, and the K1 test wire 9 of T1 terminal 7 and pincerlike current sensor 20 links to each other simultaneously, and the K2 test wire 11 of T2 terminal 10 and pincerlike current sensor 20 links to each other.
Its test method is:
(1) be attempted by step down side A phase sleeve pipe 16, B phase sleeve pipe 17, C phase sleeve pipe 18 three-phases on the grounded screen of transformer station with the thick copper lines short circuit;
(2) one of L1 test wire 4 is terminated on the transformer high-voltage side A phase sleeve pipe 12, one of L2 test wire 6 is terminated between transformer neutral point TA 13 and the transformation neutral ground disconnector 14, and disconnection neutral ground disconnector 14, terminate on the neutral ground disconnector 14 on the neutral point TA 13, terminate on the grounding net of transformer substation 15 down;
(3) pincerlike current sensor 20 is stuck on the secondary current loop 21 of transformer neutral point TA;
(4) close and exchange air switch DK 19;
(5) read the numerical value of alternating current ammeter A1 3 and alternating current ammeter A2 8;
(6) no-load voltage ratio of transformer neutral point TA 13 numerical value that equals alternating current ammeter A1 3 is removed the numerical value of alternating current ammeter A2 8;
(7) if close with transformer neutral point TA 13 actual no-load voltage ratios, think that then its no-load voltage ratio and its corresponding secondary circuit wiring are correct according to the no-load voltage ratio of calculating in (6).

Claims (1)

1. transformer neutral point current transformer through-flow tester, it is characterized in that: there are four connection terminals this test instrument inside, be S1 terminal (2), S2 terminal (5), T1 terminal (7), T2 terminal (10), two alternating current ammeter A1, A2 (3,8), an interchange air switch DK (19), there are two test wire L1, L2 (4,6) and a pincerlike current sensor (20) in the outside; Wherein S1 terminal (2), S2 terminal (5) are primary output terminals, can export the 220V alternating voltage; T1 terminal (7), T2 terminal (10) are secondary output terminals, and L1 test wire (4), L2 test wire (6) are the single test line; A terminal at inner S1 terminal (2) of test instrument and alternating current ammeter A1 (3) links to each other, and another terminal of alternating current ammeter A1 (3) links to each other with L1 test wire (4); S2 terminal (5) links to each other with a terminal that exchanges air switch DK (19), and another terminal that exchanges air switch DK (19) links to each other with L2 test wire (6); The terminal of T1 terminal (7) and alternating current ammeter A2 (8) links to each other, another terminal of alternating current ammeter A2 (8) is connected on the K1 test wire (9) of pincerlike current sensor (20), and T2 terminal (10) is connected on the K2 test wire (11) of pincerlike current sensor (20).
CN2009202236846U 2009-09-23 2009-09-23 Current transformer through-flow tester of neutral point of transformer Expired - Fee Related CN201532434U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN2009202236846U CN201532434U (en) 2009-09-23 2009-09-23 Current transformer through-flow tester of neutral point of transformer

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN2009202236846U CN201532434U (en) 2009-09-23 2009-09-23 Current transformer through-flow tester of neutral point of transformer

Publications (1)

Publication Number Publication Date
CN201532434U true CN201532434U (en) 2010-07-21

Family

ID=42527837

Family Applications (1)

Application Number Title Priority Date Filing Date
CN2009202236846U Expired - Fee Related CN201532434U (en) 2009-09-23 2009-09-23 Current transformer through-flow tester of neutral point of transformer

Country Status (1)

Country Link
CN (1) CN201532434U (en)

Similar Documents

Publication Publication Date Title
CN108680772B (en) Secondary test interface device of high-voltage circuit breaker and test method thereof
CN103675535A (en) High-tension transmission line power frequency parameter testing and testing connection switching integrated device
CN101661090A (en) Through-flow tester of neutral point current transformer of transformer
CN112506731B (en) Design method of distribution switch analog interface device
CN101692115A (en) Polarity tester for current transformer at transformer neutral point
CN108152779A (en) Electronic current mutual inductor check system and method
CN205724398U (en) The switch cubicle of power distribution network, the controller switching equipment of stand institute's terminal and power distribution network
CN202585083U (en) Instrument transformer and iron resonance suppression circuit
CN201532434U (en) Current transformer through-flow tester of neutral point of transformer
CN201532433U (en) Current transformer polarity tester of neutral point of transformer
CN206788308U (en) Full-automatic multiloop secondary cable Insulation test servicing unit
CN101728777B (en) Installation method of distribution network automation device of 10kV power distribution station
CN201716379U (en) Tester used for high-voltage electroscopic pen
CN211554237U (en) Experimental termination of generalized type circuit breaker
CN207601193U (en) It is a kind of from mutual nuclear phase display device
CN108279345B (en) Power substation power transmission testing device
CN205122957U (en) The low voltage power supply switching device with simply measure function
CN220367356U (en) Device for detecting correctness of installation phase sequence of secondary fusion circuit breaker
CN204666728U (en) With inlet wire cable, transformer is carried out to the device of dielectric loss and electric capacity measuring
CN203310928U (en) Transformer bushing ct characteristic test device
CN216748038U (en) A school examines device for motor three-phase wiring
CN202351334U (en) Multifunctional comprehensive testing table
CN204008725U (en) Vacuum circuit breaker debugging termination
CN203135585U (en) Four-in-one device integrating functions of protection, control, measurement and reactive power switch and used for transformer substation
CN212229000U (en) A wiring switching device for transformer power failure test

Legal Events

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

Granted publication date: 20100721

Termination date: 20100923