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Diffstat (limited to 'Working_Examples/2777/CH3/EX3.2')
-rwxr-xr-x | Working_Examples/2777/CH3/EX3.2/Ex3_2.sce | 37 |
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diff --git a/Working_Examples/2777/CH3/EX3.2/Ex3_2.sce b/Working_Examples/2777/CH3/EX3.2/Ex3_2.sce new file mode 100755 index 0000000..dbc0933 --- /dev/null +++ b/Working_Examples/2777/CH3/EX3.2/Ex3_2.sce @@ -0,0 +1,37 @@ +
+// ELECTRICAL MACHINES
+// R.K.Srivastava
+// First Impression 2011
+// CENGAGE LEARNING INDIA PVT. LTD
+
+// CHAPTER : 3 : TRANSFORMERS
+
+// EXAMPLE : 3.2
+
+clear ; clc ; close ; // Clear the work space and console
+
+
+// GIVEN DATA
+
+E1 = 6.6 * 10 ^ 3; // Primary voltage in Volts
+E2 = 220; // Secondary Voltage in volts
+f = 50; // Frequency in Hertz
+phi_m = 0.06; // Flux in Weber
+S = 50 * 10^6; // Rating of the single-phase transformer in VA
+
+// CALCULATIONS
+
+N1 = E1/(4.44*f*phi_m); // Number of turns in Primary
+vpn1 = E1/N1; // Voltage per turns in Primary in Volts/turn
+N2 = E2/(4.44*f*phi_m); // Number of turns in Secondary
+vpn2 = E2/N2; // Voltage per turns in Secondary in Volts/turn
+
+
+// DISPLAY RESULTS
+
+disp("EXAMPLE : 3.2 : SOLUTION :-") ;
+printf("\n (a.1) Number of turns in Primary , N1 = %.1f Turns nearly 496 Turns \n ",N1);
+printf("\n (a.2) Number of turns in Secondary , N2 = %.1f Turns nearly 16 Turns \n",N2);
+printf("\n (b.1) Voltage per turns in Primary , vpn1 = %.1f Volts/turns \n ",vpn1);
+printf("\n (b.2) Voltage per turns in Secondary , vpn2 = %.2f Volts/turns \n ",vpn2);
+
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