Find the number of strands of ACSR conductor for 3 layer transmission line?
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- Which Transmission Line Parameter is neglected or ignored in most classifications of Transmission Line Equivalent Circuits? A. The Line Inductance B. The Line Resistance C. The Shunt Conductance D. The Shunt Capacitance-2. A 3-phase, 132 KV, 50 Hz, 100 Km, single circuit bundle conductor transmission line as shown in the figure below. If the diameter of each strand is 1 cm, and the conductors are regularly transposed . Determine , the capacitance to neutral per phase per Km. 6 m 5m 0.18 m 14(a) A three phase transposed transmission tower comprises of three-bundled conductor and double-circuit configured in vertical position as shown in Figure 2. Each sub-conductor in each circuit and each phase is an ACSR type, size 477,000 cmil and stranding 26/7. Given the GMR of each sub-conductor is 0.8809 cm and diameter is 2.1793 cm, analyze: i. Inductance in mH/km ii. Capacitance in µF/km 0.75m 7.5m b' 4m 4m 45cm Figure 2
- 1. The transmission system has two types; 2. For the extra high voltage transmission 3. ACSR stands for and and are usually used, 4. In case of the unsymmetrical spacing, the line is transposed in symmetrical spacing, the line is transposed in 5. Main components of a transmission line are ..... .. times, where in the times. ...... ..... and4/ Which parameter is neglected or ignored in Short Transmission Lines? A. SHUNT CAPACITANCE ONLY B. SERIES CONDUCTANCE AND SHUNT CAPACITANCE C. SHUNT CONDUCTANCE AND SHUNT CAPACITANCE D. SHUNT CONDUCTANCE ONLYThree conductors for a 3-phase 60 Hz transmission line are placed in a horizontal plane with a separation between two conductors is D meters. The conductor geometrical mean distance is 2.0 cm. The line reactance is 0.486 ohm/kilometer. Find the phase conductor separation D
- Explain (brief description) what will happen to the characteristic impedance when the spacing between the center of two conductor transmission line is equal to the diameter of one conductor.A three-phase, 50Hz transmission line with a length of "240" is given. It has values of “27” MVA, 0.8 reverse power coefficient and phase voltage “134” kV (phase-phase) for the end of line. Transmission line conductors are placed “3.2” meters apart. The conductors are known to have a resistance of 0.11ohm/km and a diameter of 1.6cm. Neglecting the leaks and using the π equivalent circuit; ( ε0=8.854*10^(-12) F/m, μ0=4*π*10^(-7) H/m) 1) Find the total impedance value of the line, the end of line current, the line voltage at the end of the line, the line head phase and the line beginning line voltage?A three-phase, 50Hz transmission line with a length of "240" is given. It has values of “27” MVA, 0.8 reverse power coefficient and phase voltage “134” kV (phase-phase) for the end of line. Transmission line conductors are placed “3.2” meters apart. The conductors are known to have a resistance of 0.11ohm/km and a diameter of 1.6cm. Neglecting the leaks and using the π equivalent circuit; ( ε0=8.854*10^(-12) F/m, μ0=4*π*10^(-7) H/m) Find the Inductance and Capacitance of the line for 1 km length? , Find the total ohmic resistance of the line, the total inductive reactance of the line.
- A three-phase transmission line is designed to deliver 190.5 MVA at 220 kV over a distance of 63 km. The total transmission line loss is not to exceed 2.5 percent of the rated line MVA. If the resistivity of the conductor material is 2.84 x 10-8 Q- m, determine the required conductor diameter and the conductor size in circular mils.A three-phase, 50Hz transmission line with a length of "240" is given. It has values of “27” MVA, 0.8 reverse power coefficient and phase voltage “134” kV (phase-phase) for the end of line. Transmission line conductors are placed “3.2” meters apart. The conductors are known to have a resistance of 0.11ohm/km and a diameter of 1.6cm. Neglecting the leaks and using the π equivalent circuit; ( ε0=8.854*10^(-12) F/m, μ0=4*π*10^(-7) H/m) a-) Find the Inductance and Capacitance of the line for 1 km length? b-) Total ohmic resistance of the line c-) The total inductive reactance value of the lineExplain the carrier current protection scheme for a long transmission line. What are the important elements/components of this type of protection scheme