
110-220kV Oil Immersed Transformers
The product breaks through the traditional planar structure and adopts a three-phase symmetrical three-dimensional structure. And because there is no air gap in its magnetic circuit, the winding is tighter, the magnetic conductivity direction of the silicon steel strip is exactly the same as the direction of the magnetic circuit, the three heart stems are equilateral triangles arranged three-dimensionally, and the three magnetic circuits have the same length and are the shortest.
Product introduction
The three-dimensional wound core oil-immersed transformer is a new type of high reliability transformer product with more reasonable structure, better performance and lower manufacturing cost.
The product breaks through the traditional planar structure and adopts a three-phase symmetrical three-dimensional structure. And because there is no air gap in its magnetic circuit, the winding is tighter, the magnetic conductivity direction of the silicon steel strip is exactly the same as the direction of the magnetic circuit, the three heart stems are equilateral triangles arranged three-dimensionally, and the three magnetic circuits have the same length and are the shortest. There is no waste material in the processing and trimming; therefore, it is a high-efficiency and energy-saving transformer using traditional materials, but with lower noise and a more compact structure, It reduces losses and saves outstanding performance on materials. It is in full compliance with China's energy conservation policy. This product is included in the first batch of products selected by the national energy efficiency power plant; the 2008 National Torch Plan project; the national budget and investment project of the national resource conservation and environmental protection in 2011; the national award is 10 million yuan; the second batch of energy-saving electromechanical products (products) of the Ministry of Industry and Information; Focus on new products.
Product advantages
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Product Item |
Three-dimensional wound core oil-filled transformer |
Laminated core oil-filled transformer |
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Material Savings |
Processing waste-free, that is, sets of cut, the material utilization of 100% can save silicon steel the amount of 25 to 30 percent, copper and the amount of 5 to 8 percent |
Silicon steel plate use factor not high, too much waste material . |
|
No-load current |
The three-dimensional volume iron core three-phase magnetic circuit does not have joint, the magnetic flux direction is completely consistent with the silicon steel plate crystal orientation, significantly reduces the no-load loss and no-load current. |
There are many joints formed by the air gap in the magnetic circuit, this air gap has increased the reluctance of the magnetic circuit, thus increasing the loss and no-load current. |
|
Three-phase equilibrium |
Put together three-dimensional wound core consists of three identical single-frame, three hearts column was an equilateral triangle arrangement of three hearts column in the magnetic path length is exactly the same, and the shortest, three hearts column loss, and thus three-phase equilibrium. |
unbalanced |
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Third Harmonic |
Reduce |
No Reduce |
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Electro-magnetic field intensity |
Low |
High |
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Ability to withstand short circuit |
Powerful |
General |
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Productivity |
It compared to folding iron core few 5-6 processes, therefore the production efficiency is high, the quality is stable. |
Low |
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Volume |
Small size, beautiful appearance |
Big |
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Anti theft |
Three-dimensional wound core as a whole, core knock lingers,the coils do not get down, high antitheft performance. |
Security is not high |
Technical Parameter
S13-M RL-30~1600/10 new energy-efficient three-dimensional wound core oil-immersed transformers (excellent piece)
|
Rated capacity (kVA) |
Connection group symbol |
Voltage combination (kV) |
Non-load current % |
Non-load loss W |
Load loss (75℃) W |
Short-circuit impedance % |
|
|
H.V. (kV) |
L.V (kV) |
||||||
|
30 |
Dyn11 Yzn11 Yyn0 |
10±5 10±2x2.5 |
0.4 |
2.1 |
80 |
630/600 |
4.0 |
|
50 |
2 |
100 |
910/870 |
4.0 |
|||
|
63 |
1.9 |
110 |
1090/1040 |
4.0 |
|||
|
80 |
1.8 |
130 |
1310/1250 |
4.0 |
|||
|
100 |
1.6 |
150 |
1580/1500 |
4.0 |
|||
|
125 |
1.5 |
170 |
1890/1800 |
4.0 |
|||
|
160 |
1.4 |
200 |
2310/2200 |
4.0 |
|||
|
200 |
1.3 |
240 |
2730/2600 |
4.0 |
|||
|
250 |
1.2 |
290 |
3200/3050 |
4.0 |
|||
|
315 |
1.1 |
340 |
3830/3650 |
4.0 |
|||
|
400 |
1.0 |
410 |
4520/4300 |
4.0 |
|||
|
500 |
1.0 |
480 |
5410/5150 |
4.0 |
|||
|
630 |
0.9 |
570 |
6200 |
4.5 |
|||
|
800 |
0.8 |
700 |
7500 |
4.5 |
|||
|
1000 |
0.7 |
830 |
10300 |
4.5 |
|||
|
1250 |
0.6 |
970 |
12000 |
4.5 |
|||
|
1600 |
0.5 |
1170 |
14500 |
4.5 |
|||
|
2000 |
0.5 |
1550 |
18300 |
5.0 |
|||
|
2500 |
0.5 |
1830 |
21200 |
5.0 |
|||
S11-M RL-30~2500/10 energy-saving three-dimensional wound core oil-immersed transformers (National Standards)(Ordinary piece)
|
Rated capacity (kVA) |
Connection group symbol |
Voltage combination (kV) |
Non-load current % |
Non-load loss W |
Load loss (75℃) W |
Short-circuit impedance % |
|
|
H.V. (kV) |
L.V (kV) |
||||||
|
30 |
Dyn11 Yzn11 Yyn0 |
10±5 10±2x2.5 |
0.4 |
0.33 |
100 |
630/600 |
4.0 |
|
50 |
0.30 |
130 |
910/870 |
4.0 |
|||
|
80 |
0.27 |
180 |
1310/1250 |
4.0 |
|||
|
100 |
0.26 |
200 |
1580/1500 |
4.0 |
|||
|
160 |
0.24 |
280 |
2310/2200 |
4.0 |
|||
|
200 |
0.23 |
340 |
2730/2600 |
4.0 |
|||
|
250 |
0.22 |
400 |
3200/3050 |
4.0 |
|||
|
315 |
0.21 |
480 |
3830/3650 |
4.0 |
|||
|
400 |
0.21 |
570 |
4520/4300 |
4.0 |
|||
|
500 |
0.20 |
680 |
5410/5100 |
4.0 |
|||
|
630 |
0.20 |
810 |
6200 |
4.5 |
|||
|
800 |
0.19 |
980 |
7500 |
4.5 |
|||
|
1000 |
0.18 |
1150 |
10300 |
4.5 |
|||
|
1250 |
0.17 |
1360 |
12000 |
4.5 |
|||
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1600 |
0.16 |
1640 |
14500 |
4.5 |
|||
|
2000 |
0.15 |
2250 |
18300 |
5.0 |
|||
|
2500 |
0.15 |
2290 |
21200 |
5.0 |
|||
S11-M RL-80~1600/10 energy-saving three-dimensional wound core oil-immersed transformer (Provincial standards) (excellent piece)
|
Rated capacity (kVA) |
Connection group symbol |
Voltage combination (kV) |
Non-load current % |
Non-load loss W |
Load loss (75℃) W |
Short-circuit impedance % |
|
|
H.V. (kV) |
L.V (kV) |
||||||
|
80 |
Dyn11 Yzn11 Yyn0 |
10±5 10±2x2.5 |
0.4 |
0.27 |
180 |
1250 |
4.0 |
|
100 |
0.26 |
200 |
1500 |
4.0 |
|||
|
160 |
0.24 |
280 |
2200 |
4.0 |
|||
|
200 |
0.23 |
340 |
2600 |
4.0 |
|||
|
250 |
0.22 |
400 |
3050 |
4.0 |
|||
|
315 |
0.21 |
480 |
3650 |
4.0 |
|||
|
400 |
0.21 |
570 |
4300 |
4.0 |
|||
|
500 |
0.20 |
680 |
5100 |
4.0 |
|||
|
630 |
0.20 |
810 |
6200 |
4.5 |
|||
|
800 |
0.19 |
980 |
7500 |
4.5 |
|||
|
1000 |
0.18 |
1150 |
10300 |
4.5 |
|||
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1250 |
0.17 |
1360 |
12000 |
4.5 |
|||
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1600 |
0.16 |
1640 |
14500 |
4.5 |
|||
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