This application is a National Phase filing under 35 U.S.C.§371 of PCT/EP2008/066944 filed on Dec. 5, 2008; and this application claims priority to Application No. 07150130.8 filed in Europe on Dec. 19, 2007 under 35 U.S.C. §119; the entire contents of all are hereby incorporated by reference.
The present invention relates to a three-positions disconnector for medium voltage applications. The disconnector of the invention finds a convenient application in medium voltage panels, particularly in medium voltage panel in which the circuit breaker is in the so-called fixed configuration. Medium voltage panels including a three-positions disconnector of the kind disclosed herein are also part of the present invention. For the purposes of the present application the term Medium Voltage is referred to applications in the range of between 1 and 52 kV.
Medium voltage panels are well known in the art. They usually consist of a casing that is internally divided into a circuit breaker compartment, a bus-bar compartment, a feeder/cable compartment, and a control cabinet. A metal segregation between the compartments is usually foreseen.
A circuit breaker is normally positioned inside the circuit breaker compartment and, depending on the application, it can have either a fixed configuration or a withdrawable configuration. In the former, the circuit breaker has a fixed operating position once installed; in the latter the circuit breaker is movable between a service position, in which it is connected to the bus-bar and cable systems, and a test/disconnected position in which it is isolated from the bus-bar and cable systems. To this end, the circuit breaker is provided, for each phase, with a couple of contacts that can be engaged/disengaged from corresponding stationary contacts positioned in the bus-bar and feeder/cable compartments and facing the circuit breaker compartment.
For Primary Air Insulated Switchgear applications, the panel is normally provided with a disconnector consisting typically of metal arms (usually copper arms) extending from the breaker compartment to the bus-bar compartment. In order to cross the metal separation between the compartments, it is normally foreseen the use of bushings which are normally bulky as well as costly.
Even if the functionality is achieved, the presence of the bushings with their relatively large dimension requires appropriate design and dimensioning of the compartments and consequently of the panel, taking also into account that normally the compartments generally houses a number of further components and apparatuses, such as current transformers, voltage transformers and similar equipment.
This is somehow in contrast with the need of keeping width and floor occupancy of the panel at a minimum level so as to reduce the overall dimensions of the switchgear inside the installation room.
It should also be noted that usually the disconnector in itself is not very compact and simple, in terms of mechanism, thereby adding further complexity to the panel.
It is therefore an object of the present invention to provide a disconnector in which the above-mentioned drawbacks are avoided or at least reduced.
More in particular, it is an object of the present invention to provide a three-position disconnector for medium voltage applications of reduced complexity.
As a further object, the present invention is aimed at providing a three-position disconnector for medium voltage applications having a reduced number of mechanical parts.
A further object of the present invention is to provide a three-position disconnector for medium voltage applications of compact structure and dimensions.
Still a further object of the present invention is to provide a three-position disconnector that makes it possible to avoid, or at least reduce, the number of bushings needed for connection to a circuit breaker unit in a panel.
Another object of the present invention is to provide a three-position disconnector which allows to minimize the occupied space, both in terms of width and occupied area, of a medium voltage panel in which it is installed.
Still another object of the present invention is to provide a three-position disconnector for medium voltage application, as well as a medium voltage panel, with reduced manufacturing and installation costs.
Thus, the present invention relates to a three-positions disconnector which comprises, for each phase:
an insulating casing which comprises a first cavity and a second cavity separated by an insulated partition wall, a through hole being present in said partition between said first and second cavity;
a first fixed contact suitable for ground connection;
the first cavity housing:
a second fixed contact electrically connected to a corresponding branch conductor of a bus-bar system;
at least a portion of a movable contact pivotally mounted on a support positioned in said first cavity, said movable contact being electrically connected to a first electrical terminal;
the second cavity housing said first electrical terminal
The disconnector according to the invention also comprises an operating mechanism and a kinematical chain linking said movable contact with said operating mechanism, said movable contact being movable between a first position in which it is coupled to said second fixed contact, a second position in which it is isolated from both said first and second fixed contacts, and a third position in which it coupled to said first fixed contact.
In this way, it is possible to overcome some of the disadvantages and drawbacks of the disconnectors of the known art. The use of an insulating casing for each phase, having the aforesaid characteristics and housing the components specified above, allows to achieve mechanical support for some of the components of the disconnector as well as electrical insulation. Thus, mechanical stability and dielectric withstand are achieved without resorting to the need of having bushings. Also, the number of components and operating parts is reduced, with a consequent reduction of manufacturing, installation and maintenance costs.
In addition, the panel into which the three-positions disconnector of the invention is installed, has reduced footprints thereby being effective, not only in terms of performances, but also in terms of space saving.
Further characteristics and advantages of the invention will emerge from the description of preferred, but not exclusive embodiments of the three-positions disconnector and medium voltage panel according to the invention, non-limiting examples of which are provided in the attached drawings, wherein:
With reference to
With reference to
As Shown if
The movable contact 16, 26, 36 is electrically connected to a first electrical terminal 17 which is positioned in the second cavity 12 of the insulating casing.
A first fixed contact 18, 28, 38 is appropriately positioned in the nearby of the casing 10, 20, 30, so as to allow the earthing operation as better explained hereinafter.
The disconnector 1 also comprises an operating mechanism 50 and a kinematical chain 60 that connects the movable contact 16, 26, 36 with the operating mechanism 50. The movable contact is then movable between a first position in which it is coupled to the second fixed contact 15, 25, 35, a second position in which it is isolated from both the second 15, 25, and first 18, 28, 38 fixed contacts, and a third position in which it coupled to said first fixed contact 18, 28, 38.
With reference to
In details, the insulating casing 10, 20, 30 is preferably made as single-block casing of insulating polymeric material, thereby realizing a body that has both mechanical support and dielectric functions.
With reference to
As already said, at least a portion of the movable contact 16, 26, 36 is positioned in the first cavity 11, 21, 31 of the insulating casing 10, 20, 30, whereas the first electrical terminal 17 (electrically connected to the movable contact) is positioned in the second cavity 12 thereof. In order to keep the electrical connection between the movable contact and the first electrical terminal as short as possible, the support 160 of the movable contact 16, 26, 36 is preferably positioned in said first cavity 11, 21, 31, on the partition wall 13 at the bottom of said first cavity, in correspondence of said through hole 14. According to a preferred embodiment, shown in
Preferably, the support 160 of the movable contact 16, 26, 36 and the second contact 15, 25, 35 are positioned in said first cavity 11, 21, 31 at a different level with respect to a lateral view of said insulating casing 10, 20, 30. As shown in
In this way, the three-positions disconnector of the invention can have a very compact structure and maintain at the same time very good mechanical properties and dielectrical withstanding. Thanks to the insulating casing 10, 20, 30 it is in fact possible to realize a system in which the insulation between the phases is not only air, as in conventional disconnectors for Air Insulated Switchgear, but a hybrid system of air+insulating solid+air+insulating solid+air, thereby contributing to the compactness of the whole system.
In addition, also the maneuvering of the disconnector can be realized in a very simple and effective way. To this end, the kinematical chain 60 preferably comprises a rotary shaft 61 which is operatively connected to the operating mechanism 50. Then, for each phase, the kinematical chain 60 comprises a first crank 62 which is rigidly coupled to said shaft 61 and a connecting rod 63 which connects the crank 62 to said movable contact 16, 26, 36.
Preferably, the connecting rod 63 is connected to the bar-shaped element 161 of the movable contact 16 at a point between said first 162 and second 163 end thereof. The functioning of the kinematical chain 60 is clearly shown in
The three-positions disconnector according to the invention finds convenient application in Medium Voltage panels. Accordingly, Medium Voltage panels including a three-positions disconnector as disclosed herein constitute a further aspect of the present invention.
With reference to
A circuit breaker unit 130 is appropriately positioned inside the casing 100 and has, for each phase, a second electrical terminal 131 connected to the first electrical terminal 17 of said three-positions disconnector 1; the circuit breaker unit 130 has also a third electrical terminal 132 which is connected to a corresponding cable of said cable system 70.
As clearly shown in
Preferably, the Medium Voltage panel 100 according to the present invention has a fixed circuit breaker configuration. In this way, it is possible to reduce the overall dimensions of than panel, particularly its footprints, with a consequent saving of occupied area.
Also, the Medium Voltage panel 100 according to the present invention can normally comprise mechanical interlocking means between said three-positions disconnector 1 and said circuit breaker unit 130. Further equipment, such as current transformers, voltage transformers, fuses and similar apparatuses may also be present according to the specific needs of use.
It is clear from the above that the three-positions disconnector and the Medium Voltage of the invention have a number of advantages with respect to similar disconnector and panels of known type.
In particular, the three-positions disconnector of the invention is very compact, easy to realize and easy to maintain. This allows to reduce the number of components, thereby reducing the manufacturing, installation and maintenance costs. Its simplified construction and operating concepts allows further saving of costs, particularly in terms of copper connections normally needed in conventional panels.
Even more important, and thanks to the mechanical and dielectrical properties imparted by the insulating casing, it is possible to avoid the use of bushing for connection to the circuit breaker unit in the panel. The resulting overall structure of the panel can be significantly more compact with respect the panel of known type, with saving of space as well as of cost of the bushings.
The three-positions disconnector and the panel thus conceived may undergo numerous modifications and come in several variants, all coming within the scope of the inventive concept. Moreover, all the component parts described herein may be substituted by other, technically equivalent elements. In practice, the component materials and dimensions of the device may be of any nature, according to need and the state of the art.
Number | Date | Country | Kind |
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07150130 | Dec 2007 | EP | regional |
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/EP2008/066944 | 12/5/2008 | WO | 00 | 6/26/2010 |
Publishing Document | Publishing Date | Country | Kind |
---|---|---|---|
WO2009/080472 | 7/2/2009 | WO | A |
Number | Name | Date | Kind |
---|---|---|---|
6204458 | Chen et al. | Mar 2001 | B1 |
6940711 | Heuell et al. | Sep 2005 | B2 |
Number | Date | Country |
---|---|---|
1179830 | Feb 2002 | EP |
WO-03096504 | Nov 2003 | WO |
WO-2004040728 | May 2004 | WO |
Number | Date | Country | |
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20110000771 A1 | Jan 2011 | US |