2017
DOI: 10.1063/1.4999311
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The lightning striking probability for offshore wind turbine blade with salt fog contamination

Abstract: This version is available at https://strathprints.strath.ac.uk/61860/ Strathprints is designed to allow users to access the research output of the University of Strathclyde. Unless otherwise explicitly stated on the manuscript, Copyright © and Moral Rights for the papers on this site are retained by the individual authors and/or other copyright owners. Please check the manuscript for details of any other licences that may have been applied. You may not engage in further distribution of the material for any pro… Show more

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Cited by 7 publications
(5 citation statements)
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“…Simulation tests are another method of studying lightning characteristics. Many scholars have investigated the long‐gap discharge characteristics of scaled wind turbines under static conditions or with full‐sized blades by using simulation tests . However, the long‐gap discharge characteristics of a rotating wind turbine blade have rarely been studied.…”
Section: Introductionsupporting
confidence: 74%
“…Simulation tests are another method of studying lightning characteristics. Many scholars have investigated the long‐gap discharge characteristics of scaled wind turbines under static conditions or with full‐sized blades by using simulation tests . However, the long‐gap discharge characteristics of a rotating wind turbine blade have rarely been studied.…”
Section: Introductionsupporting
confidence: 74%
“…In the Ref. 5, the authors find that in the marine environment, when the salt fog is attached to the surface of the blade, the probability of being struck by lightning increases. The closer the salt fog is to the receptor, the greater the lightning strike probability is.…”
Section: Introductionmentioning
confidence: 99%
“…After the current density is obtained, the distribution of magnetic induction B can be obtained according to Biot-Savart's law shown as (4), and the electric field strength E is obtained according to Ohm's law as (5). where, μ0 is the magnetic permeability, dl is the line integral element, er2 is the unit direction vector between the current element and the point to be calculated, r2 is the distance between the point to be determined and the direction vector, σ is the conductivity, I'(t) is derivative of the current value versus time, c is the speed of light.…”
Section: Modeling Of Invasion Of Lightning Induced Arc By Coupling Th...mentioning
confidence: 99%