The surge impedance of 500 miles long line is 4000. For a 100 miles length it will be:
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- Please solve. The bases of the system are 66 kV and 20 MVA, the transformers will be treated as impedances in series. The entire system must be on the same bases. Find the impedance PU of the 8.18-mile section of line L2. a. 0.101 b. 0.02754 c. 0.07346Conductor spacings, types, and sizes do have an impact on the series impedance and shunt admittance. True FalseIn a three-phase line, in order to avoid unequal phase inductances due to unbalanced flux linkages, what technique is used?
- Q2. Figure Q2 shows the single-line diagram. The scheduled loads at buses 2 and 3 are as marked on the diagram. Line impedances are marked in per unit on 100 MVA base and the line charging susceptances are neglected. a) Using Gauss-Seidel Method, determine the phasor values of the voltage at load bus 2 and 3 according to second iteration results. b) Find slack bus real and reactive power according to second iteration results. c) Determine line flows and line losses according to second iteration results. d) Construct a power flow according to second iteration results. Slack Bus = 1.04.20° 0.025+j0.045 0.015+j0.035 0.012+j0,03 3 |2 134.8 MW 251.9 MW 42.5 MVAR 108.6 MVARIn the single line diagram shown below, generators G₁ and G₂ have a leakage reactance of 0.26 per unit on a 66.5MVA rating at 11kV, and transformers T₁ and T₂ have a voltage ratio of 11/145kV and a leakage reactance of 0.125 per unit on a 75MVA rating. Choosing 100MVA and 132kV (at the lines side) as base quantities, find the reactance of G₁, G₂, T₁ and T2 in per unit to the new base quantities. 66.5MVA 11kV 0.26pu 66.5MVA 11kV 0.26pu (G1 G2 75MVA 11/145kV 0.125pu T1 T2 75MVA 11/145KV 0.125pu 132kV Linesplease solve for nodal stress method. (if it is possible to apply supernodes)
- A Three phase transposed line is composed of one conductor per phase with flat horizontal spacing of D as shown in the below figure. If GMD is 15.119 meters, then D will be a b D 2D Select one: Oa 12 meters Ob. None of these Oc15367 meters Od 14 metersThe one-line diagram of a three-phase power system is as shown in Figure. Impedance are marked in per-unit on a 100-MVA, 400-kV base. The load at bus 2 is S-15.93 MW-j33.4 Mvar, and at bus 3 is S3-77 MW+j14 Mvar. It is required to hold the voltage at bus 3 at...L0 kV. Working in per-unit, determine the voltage at buses 2 and 1. (Please determine the voltage magnitude within the specified limits: 410-450 V. By considering the voltage magnitude value you determined yourself, solve the question.) V₁ j0.5 pu V₂ j0.4 pu $₂ Figure V3Paragraph Styles The power factor must be close to in the transmission lines will be reduced To insure that losses D(Ctrl) -