The invention relates to a switch assembly with a switching module and a cooling conduit.
The object of the invention is to provide a switch assembly with a switching module in which the cooling is designed to be simple, economic and maintenance-friendly.
This object is fulfilled by a switch assembly according to the independent claim. The features of the subclaims in that case define advantageous developments of the invention.
The invention proposes a switch assembly comprising:
Through a hydraulic connection between the cooling circuit and the interior of the housing in which the at least one switching module is arranged it is possible to use the same insulating liquid for cooling the switches and for insulating the switching modules. Possible leakages in the cooling conduit have a less bad effect, due to the use of one of the same insulating liquid, on the switch assembly than, for example, in the case of different insulating liquids and cooling liquids, for example water. Mixing of the different liquids, for example water and oil, can have disastrous consequences. In addition, maintenance is as a result substantially simplified. It is here merely necessary to change one insulating liquid, instead of two. Compensation for small leakages in the cooling conduit is provided by the hydraulic connection so that immediate maintenance and thus shutdown of the switch assembly are not necessary.
The switch assembly can be constructed in any desired mode and manner, for example as a tap changer for tapped transformers in the low-voltage, medium-voltage and high-voltage field and as tap changers for tapped transformers in energy mains or smelting furnace applications.
The switching module of the switch assembly can be constructed in any desired mode and manner and can consist of, for example, semiconductor wafer cells, particularly thyristors IGBTs, etc.
The insulating liquid can be formed in any desired mode and manner, for example as insulating oil or ester liquid.
The switch assembly can include any desired number of switching modules, preferably one switching module for each phase of a tapped transformer to be switched.
The connection between the interior of the housing and the cooling circuit can be formed in any desired mode or manner; for example this can be arranged in the expansion tank outside the switch assembly.
It can be provided that
The cooling boxes are constructed from an electrically as well as thermally conductive material such as, for example, aluminum. The cooling conduits pass through the interior of the cooling boxes in, for example, meander form.
It can be provided that
The switches can be constructed in any desired mode and manner and, for example, electrically connected individually or in groups. In the groups, the switches are electrically connected in series or in parallel. The switching module can contain any desired number of switching module columns.
It can be provided that
It can be provided that
The hydraulic connection between the tie rods and the cooling conduits can be formed by at least one cooling box connected with a tie rod by lines. The cooling conduit can be formed, for example, by cooling boxes hydraulically connected in parallel or in series.
The tie rods and the distributor plates can be constructed in any desired mode and manner, for example from a high-strength electrically insulating material such as glass fiber-reinforced plastic.
It can be provided that
It can be provided that
It can be provided that
It can be provided that
The invention and the advantages thereof are described in more detail with reference to the accompanying drawings, in which:
Identical reference numerals are used for the same or equivalent elements of the invention. Moreover, for the sake of clarity only reference numerals are illustrated in the individual figures that are required for description of the respective figure. The illustrated forms of embodiment merely represent examples of how the switch assembly according to the invention can be and thus do not represent a definitive limitation of the invention.
The switches 4 can be electrically connected individually or in groups. In the groups, the switches 4 are connected in series or in parallel.
An upper distributor plate 50 is above the upper clamping plate 15 and a lower distributor plate 51 is below the lower clamping plate 16. The upper distributor plate 50, which serves as a return run 61, has, in the interior, channels that on the one hand are hydraulically connected with the tie rods 42 and on the other hand with the heat exchanger 10 or the pump 8 of the circuit 7. In addition, the lower distributor plate 51 serving as forward run 61 has, in the interior, channels that are connected on the one hand with the tie rods 42 and on the other hand with the heat exchanger 10 or the pump 8 of the circuit 7. The lower distributor plate 51 additionally serves for mounting the switching module 3. Since the two distributor plates 50, 51 consist of plastics material, these at the same time serve for insulation of the switching module 3 relative to the potential at the housing 2.
Since each switching module column 30 is braced by a separate pressure distributor 70 the two switching module columns 30 are mechanically decoupled from one another and compensation can thus be provided for differences in height.
Number | Date | Country | Kind |
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10 2014 102 262.9 | Feb 2014 | DE | national |
Filing Document | Filing Date | Country | Kind |
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PCT/EP2015/053126 | 2/13/2015 | WO | 00 |