2010•Unpublished venueRequires access

Full human body exposure assessment in low frequency electromagnetic fields

Xinhao Chen, Stefan Benkler, N. Chavannes, Niels Kuster

Open publisher page 3 citations

Abstract

This paper investigates the electric field and current density induced in a human body when exposed to low frequency electromagnetic fields. A numerical technique based on the Finite Element Method and electromagnetic quasistatic approximations is developed to compute both the fields generated by low frequency sources and the fields induced inside a human body due to direct or indirect exposure scenarios. A case study is conducted to investigate exposure situations pertaining to the safety of human beings in the vicinity of high intensity low frequency electromagnetic fields.

About this research paper

What this paper is about

This paper investigates the electric field and current density induced in a human body when exposed to low frequency electromagnetic fields. A numerical technique based on the Finite Element Method and electromagnetic quasistatic approximations is developed to compute both the fields generated by low frequency sources and the fields induced inside a human body due to direct or indirect exposure scenarios. A case study is conducted to investigate exposure situations pertaining to the safety of human beings in the vicinity of high intensity low frequency electromagnetic fields.

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OpenAlex reports 3 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

This paper investigates the electric field and current density induced in a human body when exposed to low frequency electromagnetic fields. A numerical technique based on the Finite Element Method and electromagnetic quasistatic approximations is developed to compute both the fields generated by low frequency sources and the fields induced inside a human body due to direct or indirect exposure scenarios. A case study is conducted to investigate exposure situations pertaining to the safety of human beings in the vicinity of high intensity low frequency electromagnetic fields.

Key concepts: Electromagnetic field, Extremely low frequency, Low frequency, Electric field, Finite element method, Electromagnetic radiation, Physics, Acoustics

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