Designing a non resonant high voltage, single phase,  oil transformer, class =<0.5%
Input: 22kV, Test voltage 50kV,,50Hz_1min,BIL 100kV, Cu multi layer winding
Output: 2x110V,1.45A,4 Cu -single layer windings with “S1/2-S2/2-P-Screen-S1/2-S2/2” order of windings

About high voltage transformers

 

The main problem is BIL impulse voltage of 100kV. Due to the fact that the primary round, double insulated  wire is very small, the impulse voltage distribution factor is very high and the max. voltage between 2 primary turns can be higher than the breakdown voltage. Additionally, the resonance can increase  the voltage per layer. To avoid  these problems,  we are using the screen on the outside of the primary. The screen is one turn foil winding. It is connected with  the primary winding.

On the  start of 100kV-impulse the capacitive current between the screen and  the primary winding has to compensate the capacitive current between the primary winding and the ground. The result of this compensation is a low distribution factor and a low maximal voltage between 2 primary turns.

In order to support the no liad operation mode of one secondary and to limit the inductive short circuit voltage, we have the following order of the transformer windings:

–  Transformer has 2 secondary windings: S1 and S2. 50% of each secondary winding is wound inside and other 50% is wound outside to the primary winding.
– The primary winding and the screen are wound between 2 secondary groups.

Technical parameters

 

Input voltage

 

Test voltage

 

 

BIL

 

Max. 22000
sine wave

50kV, 50Hz, 1 min

 

 

100 KV

Transformer output voltage Max. 2 x 110V
Output current 21 x 1.45A,
continuous operating mode
Frequency 50Hz
Class
Design criterion
<0.5%
Load losses  Ucca =0.85%
Steel
Nominal induction
GO 23P90
1.5T
2  loops C-core Leg: 60x60mm,voke:30x60mm,2 windows: 240×100
Ambient  temperature 25°C

Creating Input

 

4 input screens are used to set the input parameters for designing a transformer:

  1. Winding parameters per leg
  2. Core
  3. Environment
  4. Other

    and 3 screens for selection and set up of material :

    – wires
    – steels
    – cores.

    At this point we are recommending you to open the input file: INPUT_FILE_HVT_SSPSS.

    In this input screen are set the following parameter of all windings:

    -The order of the windings:S1/2-S2/2-P-Screen-S1/2-S2/2
    -The  connection of windings S1 and S2
    -Nominal voltages and currents
    -50Hz, 1 min test voltages and BIL impulse test voltages
    -Cu round wires for the windings and foil for the screen
    -Spacing: If you double click the input fields O-Type or I-Typeand Margin,  the program will automatically , according to the test voltages, recommend you the size of the gaps  and the insulations.

    In this case the space between the primary winding and screen is the oil gap of 2.5mm. The second version would be the pressboard tube of 5mm. With length of screen foil turn can be the capacitive current calibrated!

    Core and steel

    The core and the steel are set in the shown input file:

    Steel : GO 23P90

    C-Core : EE 320×300/60mm, 

    2 windows 100x240mm,

    leg 60×60,

    yoke 30×60

    Min. winding  diameter; 85mm

    Press F4 to run the program.

    You are in the output screen

    In the output screen you can view,.print and save all results of the design.
    If you would like to modify BY HAND  some calculated parameters of the transformer, press F8 to print all results and then press F5 to open the test mode of design.

    Test Mode

     

    In the test mode you can modify by hand  the following transformer parameters and press F6 to redesign:

    -Turns

    – Wire and foil size

    – Material (Cu or Al)

     Number parallel connected wires and their order in strand

    – Cooling channels and insulations

     – Margin

     – Steel

    and redesign the transformer by changing:

    – input voltage
    – load
    – duty cycle of each winding
    -frequency
    -ambient temperature .

    The phase delay of the output  voltage in nominal operation at  Uccx=0.69% is smaller than 30 minutes

    -Primary          S1           S2
         V                V               V
    22000             110.2          110
    11000                55.2             55.2
    2200                11.1           11.1

    Output

    For more informations about the design results open the file.