Cover for a distribution transformer filled with a dielectric liquid
11211190 · 2021-12-28
Assignee
Inventors
- Witold SOBCZAK (Pabianice, PL)
- Pawel KLYS (Lodz, PL)
- Max Claessens (Untersiggenthal, CH)
- Filip Grecki (Cracow, PL)
- Pawel Aloszko (Cracow, PL)
- Lukasz Bachorz (Cracow, PL)
- Krzysztof Obrebski (Warsaw, PL)
- Marcin Czopek (Cracow, PL)
Cpc classification
H01F27/04
ELECTRICITY
H01F27/14
ELECTRICITY
International classification
H01F27/04
ELECTRICITY
H01F27/14
ELECTRICITY
Abstract
The subject of the present application is a cover for distribution transformer filled with a dielectric liquid, equipped with electronic device integrated with the cover which is applied for transmission and distribution of electric energy. The cover is characterized in that the electronic device is immersed in the dielectric liquid filling a cooling compartment fixed on the cover; the cooling compartment has side walls, a top wall and a bottom wall which bottom wall is matched in the window made in the cover and the bottom wall forms a thermal barrier between the interior of the electric power device and the interior of the cooling compartment and the both interiors of the cooling compartment and of the electric power device are hermetically closed together.
Claims
1. A cover for covering a distribution transformer filled with a dielectric liquid in which an active part of the distribution transformer is placed; the cover comprising: a cooling compartment located at an upper part of the cover, wherein the cooling compartment has side walls and a top wall, wherein the cover is equipped with a window in which a bottom wall of the cooling compartment is inserted and matched by a chamfer disposed on the entirely circumference of the bottom wall and the bottom wall forms a thermal barrier between the interior of a main tank of the distribution transformer and the interior of the cooling compartment and the both interiors of the cooling compartment and of the main tank are hermetically closed together when filled with the dielectric liquid and in the dielectric liquid filling the cooling compartment at least one electronic device is placed having an electrical connection with the active part of the distribution transformer.
2. The cover according to claim 1, wherein the thermal barrier is made from a high thermal resistive material having a coefficient of the thermal conductivity not higher than 0.24 W/(m*K).
3. The cover according to claim 1, wherein the bottom wall of the cooling device is provided with at least one through hole for insertion in it a conductor for electrical connection of the electronic device with the active part of the distribution transformer.
4. The cover according to claim 1, wherein the cooling compartment is connected with an oil filling pipe of the main tank of the distribution transformer via a flexible pipe and a protection device is installed on the filling pipe, for measuring of a level of the dielectric liquid inside the cooling compartment.
5. The cover according to claim 1, wherein the at least one side wall of the cooling compartment is equipped with external ribs.
6. The cover according to claim 1, wherein the top wall of the cooling compartment is equipped with external ribs.
7. The cover according to claim 1, wherein the electronic device is a tap-changer device placed in the cooling compartment.
8. A combination, comprising: a cover for covering a distribution transformer filled with a dielectric liquid in which an active part of the distribution transformer is placed, the cover has a cooling compartment located at an upper part of the cover, wherein the cooling compartment has side walls and a top wall, wherein the cover is equipped with a window in which a bottom wall of the cooling compartment is inserted and matched by a chamfer disposed on the entirely circumference of the bottom wall and the bottom wall forms a thermal barrier between the interior of a main tank of the distribution transformer and the interior of the cooling compartment and both interiors of the cooling compartment and of the main tank are hermetically closed together when filled with the dielectric liquid and in the dielectric liquid filling the cooling compartment at least one tap changer is placed having an electrical connection with the active part of the distribution transformer, the electrical connection is made by a conductor passing through a hole in the bottom wall of the cooling compartment.
9. The cover according to claim 2, wherein the bottom wall of the cooling device is provided with at least one through hole for insertion in it a conductor for electrical connection of the electronic device with the active part of the distribution transformer.
10. The cover according to claim 9, wherein the cooling compartment is connected with an oil filling pipe of the main tank of the distribution transformer via a flexible pipe and a protection device is installed on the filling pipe, for measuring of a level of the dielectric liquid inside the cooling compartment.
11. The cover according to claim 2, wherein the cooling compartment is connected with an oil filling pipe of the main tank of the distribution transformer via a flexible pipe and a protection device is installed on the filling pipe, for measuring of a level of the dielectric liquid inside the cooling compartment.
12. The cover according to claim 3, wherein the cooling compartment is connected with an oil filling pipe of the main tank of the distribution transformer via a flexible pipe and a protection device is installed on the filling pipe, for measuring of a level of the dielectric liquid inside the cooling compartment.
13. The cover according to claim 2, wherein the top wall of the cooling compartment is equipped with external ribs.
14. The cover according to claim 3, wherein the top wall of the cooling compartment is equipped with external ribs.
15. The cover according to claim 4, wherein the top wall of the cooling compartment is equipped with external ribs.
16. The cover according to claim 5, wherein the top wall of the cooling compartment is equipped with external ribs.
17. The cover according to claim 9, wherein the top wall of the cooling compartment is equipped with external ribs.
18. The cover according to claim 2, wherein the electronic device is a tap-changer device placed in the cooling compartment.
19. The cover according to claim 3, wherein the electronic device is a tap-changer device placed in the cooling compartment.
20. The cover according to claim 4, wherein the electronic device is a tap-changer device placed in the cooling compartment.
Description
(1) The present invention is present in the exemplary embodiment in the drawing where:
(2)
(3)
(4)
(5) An electric power device in the form of a distribution transformer 1 has a cover 2 connected to the main tank 3 filled with the oil 4. The oil 4 could be a mineral oil, synthetic oil, ester oil and other dielectric liquid. The oil is not indicated on the drawing in a special style. Only the index “4” indicates where the oil is placed. The cover 2 is equipped with a window 2a (
(6) TABLE-US-00001 TABLE 1 Parameter Value Unit Density 1.37 g/cm.sup.3 Max. service temp. 170 ° C. (short term) Max. service temp. (long 110 ° C. term) Coefficient of thermal 0.24 W/(m * K) conductivity Specific heat 1.1 J/(g * K) Surface resistance 10.sup.15 Ω Dielectric strength 1 mm 60 kV/mm
(7) The cooling compartment 5 with the bottom wall 6 as the thermal barrier between the interior of the main thank 3 and the interior of the cooling compartment 5 is also equipped with additional ribs 16 adapted for the oil heat dissipation and presented in the first and second embodiment of the invention.
(8) In the first embodiment of the invention at least one of the side walls 7 of the enclosure 5 is equipped with external ribs 16. The ribs have longitudinal shape 16A what is presented in the drawing for the two side walls 7 of the cooling compartment 5. The other shapes of the ribs 16 are possible and there many of its are known in the prior art. The side walls 7 of the cooling compartment 5 are made from material having a high ability to give up the heat, for example from aluminum or the black anodized aluminum. The ribs 16A can be made as integral part of the walls 7 or can be fixed to the walls as separate parts. The ribs are made from the same material as the walls of the compartment or from other material having the higher ability to give up the heat than the walls. The side walls 7 can also be carried out as the corrugated walls what is not presented in the drawing.
(9) In the second embodiment of the invention the top wall 8 of the cooling compartment 5 is also equipped with external ribs 16. The ribs on the top wall 8 have cylindrical shape 16B and they are displaced on the wall in any arbitrary arrangements. The other shapes of the ribs are possible and there many of its are known in the prior art. The top wall 8 of the cooling compartment 5 is made from material having a high ability to give up the heat, for example from aluminum or the black anodized aluminum. The ribs 16B can be made as integral part of the wall 8 or can be fixed to the wall as separate parts. The ribs 16B are made from the same material as the top wall 8 of the compartment 5 or from other material having the higher ability to give up the heat than the top wall.
(10) In both embodiment of the invention the cover 2 has others openings for inserting there bushings with conductors, placed outside the bottom wall 6 of the cooling compartment 5, what is not presented in the drawing. In order to avoid a movement of the thermal barrier inside the window 2a, additional tie rods and nuts made from fiber glass are fixed to the cover 2, what is not explained in the description. Between transformer cover 2 and cooling compartment 5 a rubber flat seal 17 is inserted in order to seal the cooling compartment from the external side of the cover 2.
(11) In the exploitation condition of the invention, the cover 2 with the thermal barrier in the form of the bottom wall 6 of the cooling compartment 5, works as the following. Inside cooling compartment 5 the electronic devises 11 are placed. The electronic devices could be for example the electronic boards contain thyristors, IGBT's or any other power electronic solid state valves. Such electronic devices should have no more than +75° C. maximum operation temperature in order to ensure sufficient reliability for 20 years operation. The hot oil 4 in the main tank 3 can reach temperatures up to 100° C. under full load conditions. The ambient air outside the transformer could reach up to +40° C. In the consequence the temperature inside the cooling compartment 5 may be established in a level between those two values. However the electronic boards generate additional load losses mainly because of the work of thyristors. The heat fluxes strongly depend on the dimensioning of the cooling ribs 16A , 16B and the dimension of the bottom wall 6 forming the thermal barrier. The barrier allows to isolate oil from hot top oil in the main tank 3 into separate compartment where oil has the lower temperature. A high temperature gradient is provided along the cross-section of the thermal barrier. Generally, the area of the holes 12 made in the bottom wall 6 of the compartment 5 should be as low as possible for limiting the oil mixing of the hot top oil from the main tank 3 with the cool oil from the cooling compartment 5, whereas the area between cool compartment 5 and ambient air should be vice versa. It is possible to limit the oil temperature inside the cool compartment 5 to around 72° C. in such presented conditions. Heat dissipation by walls 7 and 8 of the cooling compartment 5 with ribs 16 is much more significant that heat transfer from the hot top oil via thermal barrier. As a result the temperature of the oil inside the cooling compartment 5 is much lower than the top temperature of the oil in the main tank 3.