In this third tutorial on Overhead Line Steady-State Operation, we analyze the behavior of a transmission line under a capacitive load condition and illustrate its phasor diagram. Understanding capacitive loads is crucial in high-voltage power systems, where long transmission lines exhibit inherent capacitance, impacting system stability and power flow.
By the end of this tutorial, you will learn:
🔧 What You’ll Learn:
✅ How capacitive loads affect transmission line performance
✅ The phasor relationships between voltage, current, and power
✅ Why long transmission lines behave like capacitive elements
✅ The role of shunt capacitance in reactive power generation
✅ How capacitance influences voltage rise and Ferranti effect
📌 Key Topics Covered:
🔹 Steady-state analysis of overhead transmission lines
🔹 Understanding capacitive loads in power systems
🔹 Phasor diagram representation of a capacitive load
🔹 Impact of line capacitance on power flow and stability
🔹 Ferranti Effect and its implications in long transmission lines
🔹 How reactive power compensation is affected by capacitance
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🔗 Related Videos:
📺 Overhead Line Steady-State Operation - Capacitive Load Phasor Diagram (Tutorial 3)
→
https://www.youtube.com/watch?v=-Ii-iASPLGo
📺 Overhead Line Steady-State Operation - Inductive Load Phasor Diagram (Tutorial 2)
→
https://www.youtube.com/watch?v=4fn7keBczVM
📺 Understanding Power Flow in Transmission Lines
📺 Short Circuit Analysis with DigSilent PowerFactory
→
https://www.youtube.com/watch?v=KlzBFqHWunA
🚀 Stay tuned for more in-depth power system tutorials!
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