Seamen working on vessels that go along tropical and subtropical routes are at risk to receive high doses of solar erythemal radiation. Due to small solar zenith angles and low ozone values, UV index and erythemal dose are much higher than at mid-and high latitudes. UV index values at tropical and subtropical Oceans can exceed UVI = 20, which is more than double of typical mid-latitude UV index values. Daily erythemal dose can exceed the 30-fold of typical midlatitude winter values. Measurements of erythemal exposure of different body parts on seamen have been performed along 4 routes of merchant vessels. The data base has been extended by two years of continuous solar irradiance measurements taken on the mast top of RV METEOR. Radiative transfer model calculations for clear sky along the ship routes have been performed that use satellite-based input for ozone and aerosols to provide maximum erythemal irradiance and dose. The whole data base is intended to be used to derive individual erythemal exposure of seamen during work-time.
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10 May 2013
RADIATION PROCESSES IN THE ATMOSPHERE AND OCEAN (IRS2012): Proceedings of the International Radiation Symposium (IRC/IAMAS)
6–10 August 2012
Dahlem Cube, Free University, Berlin
Research Article|
May 10 2013
Solar UV radiation exposure of seamen – Measurements, calibration and model calculations of erythemal irradiance along ship routes
Uwe Feister;
Uwe Feister
German Meteorological Service, Meteorological Observatory Lindenberg - Richard-Aßmann-Observatory, Am Observatorium 12, 15848 Lindenberg,
Germany
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Gabriele Meyer;
Gabriele Meyer
German Social Accident Insurance Institution for Transport and Traffic, Ottenser Hauptstraße 54, 22765 Hamburg,
Germany
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Ulrich Kirst
Ulrich Kirst
German Social Accident Insurance Institution for Transport and Traffic, Ottenser Hauptstraße 54, 22765 Hamburg,
Germany
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AIP Conf. Proc. 1531, 860–863 (2013)
Citation
Uwe Feister, Gabriele Meyer, Ulrich Kirst; Solar UV radiation exposure of seamen – Measurements, calibration and model calculations of erythemal irradiance along ship routes. AIP Conf. Proc. 10 May 2013; 1531 (1): 860–863. https://doi.org/10.1063/1.4804906
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