2010IEEE Transactions on Power DeliveryOpen access

A Wildfire Model for the Estimation of the Temperature Rise of an Overhead Line Conductor

Emmanuel I. Koufakis, Panagiotis Tsarabaris, John S. Katsanis, C.G. Karagiannopoulos, P.D. Bourkas

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Abstract

Fires in open land covered with grass, brush, or timber are often called wildfires. During a wildfire, the overhead conductors of a passing through distribution line suffer a thermal stress that deteriorates their mechanical properties. This paper presents a fire model that allows the estimation of the temperature rise of the conductors if we know some characteristics of the fire. The knowledge of the temperature rise is necessary for the study of the effects on the overhead line conductors.

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Fires in open land covered with grass, brush, or timber are often called wildfires. During a wildfire, the overhead conductors of a passing through distribution line suffer a thermal stress that deteriorates their mechanical properties. This paper presents a fire model that allows the estimation of the temperature rise of the conductors if we know some characteristics of the fire. The knowledge of the temperature rise is necessary for the study of the effects on the overhead line conductors.

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Available abstract

Fires in open land covered with grass, brush, or timber are often called wildfires. During a wildfire, the overhead conductors of a passing through distribution line suffer a thermal stress that deteriorates their mechanical properties. This paper presents a fire model that allows the estimation of the temperature rise of the conductors if we know some characteristics of the fire. The knowledge of the temperature rise is necessary for the study of the effects on the overhead line conductors.

Key concepts: Electrical conductor, Overhead (engineering), Overhead line, Conductor, Line (geometry), Environmental science, Electric power transmission, Engineering

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