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100MVA Design details.TXT \\TW0513\C:\TDS Designs\data\ELTAS1\Turkey full design 100mva\Turkey full design 100mva.TDS Number of Library Designs 2 Engine created Design
ID= 1-Library Design 1
Design 1
General details------------------------------------------------------------------------------------------------------------------------Document---------File : :\\TW0513\C:\TDS Designs\data\ELTAS1\Turkey full design 100mva\Turkey full design 100mva.TDS Design Name: :Engine created Design ID= 1-Library Design 1 ---------Input Data--------Type of Transformer :Separate winding Number of Terminals :2 Number of Phases :3 Over Exciting Ability :5% Frequency :50 Cooling Type :ONAN/ONAF Three Phase Nominal Power of Terminal HV :80\100 [MVA] Three Phase Nominal Power of Terminal LV :80\100 [MVA] Three Phase Line Voltage of Terminal HV :154 [KV] Three Phase Line Voltage of Terminal LV :33.6 [KV] Voltage Regulation Range in Terminal HV :-12*1.25% , +12*1.25% Voltage Regulation Range in Terminal LV :-0*0% , +0*0% Tap Changer Connected to Terminal :HV Type of Tap Changer : :ON LOAD Tap Changer Class : :coarse Tap Changer Name :
:14273G
Three Phase Connection Vector Group : Ambient Temperature : Guaranty Temperature Rise for OIL Guaranty Temprature Rise for HV Guaranty Temperature Rise for LV Guaranty Hot Spot Rise for HV Guaranty Hot Spot Rise for LV Insulation Levels : Lightning impulse LV 145
UM
:Ynyn0 :45 [`C] :55 [`K] :60 [`K] :60 [`K] :75 [`K] :75 [`K] Power Frequency
36
70
Page 1
100MVA Design details.TXT HV 170 550 Installation Above Sea Level: Ambient Pollution : Tank Inner Shielding : Tank Inner Shield Type : ---------Core--------Core Sheet Type Core Press Form Core Form Sort of Core Pockets Core Channels Width Core Lamination Number of Core Cooling Channels Cooling Channels Position : :0.0 Core Temperature Rise to Oil : Part3 :0.0 Special Active Losses [W/KG]: R.Limb:0.00 Special Reactive Losses [VA/KG]: R.Limb:0.00 Core Induction [Tesla]: R.Limb:0.00 Core Losses [ KW ]: I0 [ % ]: And 0% over exciting ------------------Core Pockets Size
BX(1)= 740 SX(1)= 196 BX(2)= 720 SX(2)= 260 BX(3)= 700 SX(3)= 310 BX(4)= 680 SX(4)= 351 BX(5)= 660 SX(5)= 387 BX(6)= 640 SX(6)= 420 BX(7)= 620 SX(7)= 449 BX(8)= 600 SX(8)= 475 BX(9)= 560 SX(9)= 522 BX(10)= 520 SX(10)= 561 BX(11)= 480 SX(11)= 596 BX(12)= 440 SX(12)= 626 BX(13)= 400 SX(13)= 652 BX(14)= 360 SX(14)= 675 BX(15)= 320 SX(15)= 695 BX(16)= 280 SX(16)= 712 BX(17)= 220 SX(17)= 731 ---------------------------Base Constants--------------------------Base Temperature for Two , Tolw calculation :95 ['k] Base Temeprature for RI2 calculation :20 ['k] Base Temperature for PK calculation :75 ['k] Conductivity of Copper in 20'C :57.7 [Sm/mm^2] Special Weight of CU :8960 [kg/m^3] Page 2
100MVA Design details.TXT Special Weight of Core sheets :7650 [kg/m^3] Special Weight of Fe :8000 [kg/m^3] Cost of CU :3 [$/kg] Cost of Core Sheets :1.8 [$/kg] Cost of Paper :7 [$/kg] Cost of Press Board :5 [$/kg] Capitalize Cost of P0 :3000 [$/kw] Capitalize Cost of PK :1000 [$/kw] --------------------------------Dmax-------------------------------Voltage Transfer From HV to LV in Tap Position Lower :0.11 Voltage Transfer From HV to LV in Tap Position Middle :-0.18 Voltage Transfer From HV to LV in Tap Position Upper :-0.39 --------------------------------Turns-------------------------------Turn Of Step ( Wstep ) :7 Active Turn of Terminal HV In Tap Position Lower :467 Active Turn of Terminal HV In Tap Position Middle :551 Active Turn of Terminal HV In Tap Position Upper :635 Active Turn of Terminal LV In Tap Position Lower :120 Active Turn of Terminal LV In Tap Position Middle :120 Active Turn of Terminal LV In Tap Position Upper :120 Phisical Turn of Winding US :120 Phisical Turn of Winding OS :467 Phisical Turn of Winding GR :84 Phisical Turn of Winding FE :84 ----------------------------------------------------------------------------------------------------------------------VW DS QS Qj Qr BS BJ BR SS HF ES ESR AWF AWR Gcu Gfe TOC 161.658 765 4173 4173 0 740 740 0 731 1886 1561 0.0 40 0 16397 42879 580543
Details of Concenters---------------------------------------------------------------------------------------------------------Con. Wire US OS
Win. type Category Taped Rad-Cool AX-Cool Wire type Epoxy Dis.sor N.field max-Kgama max-Zmitte Layer Main NO Yes Yes Transposed Yes D 24 1.00 14.8 Disk Main NO Yes Yes Flat No BCB 24 1.62 23.4 GROB Layer Tap Yes No Yes Flat No D 16 1.00 3.4 FEIN IL Tap Yes No Yes Flat No D 24 1.00 3.4 ------------------------------------------------------------------------------------------------------------------------------Con. NSPDL NSPSL NPPDL NPPSL HSol HM DI BW AW Ibase Ib.Fac J F.F Turn AU AO Gcu US 1 1 1 1 1746 1716 809.0 108.5 22.0 1718.3 1.00 2.44 0.45 120.0 60.0 80.0 6554 Page 3
Details of Short Circuit Modes ---------------------------------------------------------------------------------------Network HV LV
UM 170 36
Short Circuit Power 10000 1000
Z0/Z1 2.00 2.00
Ter. Zn Base power HV 0 0 LV 0 0 -----------------------------------------------------------Z0/Z1 of Transfer from HV to LV :1.00 Z0/Z1 of Transfer from LV to HV :1.00 -----------------------------------------------------------Impedances Between All Terminals with Base 100 MVA The/Tap Lower Middle Upper HV-LV LV-HV
11.51 11.51
12.48 12.48
13.77 13.77
Maximum Production Tolerance for UK : 3 -----------------------------------------------------------Page 7
100MVA Design details.TXT Details of Short circuit Condition of Transformer Condition