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Unlocking the Physics of High-Voltage Transmission: A Technical Deep Dive
This specialized book offers an in-depth analytical exploration of corona discharge on high-voltage overhead transmission lines. Using Maxwell's equations and transport theory, the author derives the integro-differential equations governing the corona phenomenon. The work presents an analytical methodology for calculating the characteristics of general, point, and local corona on AC transmission line conductors.
The derived formulas enable engineers to calculate the motion, density, and magnitude of the space charge during corona discharge on both single conductors and conductor bundles. The text also provides methods for determining the dimensions of the corona-emitting surfaces on conductors within a bundle, among other critical parameters.
Designed for engineers and researchers involved in the design, operation, and investigation of extra-high-voltage (EHV) transmission lines, this book bridges theoretical physics with practical power engineering applications. It serves as a rigorous reference for understanding and mitigating corona effects in high-voltage power systems.