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THE GERMAN DOSE RATE MONITORING NETWORK AND IMPLEMENTED DATA HARMONIZATION TECHNIQUES

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Date 2018 Oct 2
PMID 30272224
Citations 1
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Abstract

Environmental radiation monitoring networks have been established in Europe and world-wide for the purpose of protecting population and environment against ionizing radiation. Some of these networks had been established during the cold war period and were improved after the Chernobyl accident in 1986. Today, the German Federal Office for Radiation Protection (BfS) operates an early warning network with roughly 1800 ambient dose equivalent rate (ADER) stations equally distributed over the German territory. The hardware and software of all network components are developed in-house allowing the continuous optimization of all relevant components. A probe characterization and quality assurance and control program are in place. Operational and technical aspects of the network and data harmonization techniques are described. The latter allows for calculating of the terrestrial and net ADER combined with uncertainties mainly from site specific effects. Harmonized data are finally used as input to the German emergency management system and the European radiological data exchange platform.

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References
1.
Gering F, Gerich B, Wirth E, Kirchner G . Potential consequences of the Fukushima accident for off-site nuclear emergency management: a case study for Germany. Radiat Prot Dosimetry. 2013; 155(2):146-54. DOI: 10.1093/rpd/ncs323. View

2.
Wissmann F, Dangendorf V, Schrewe U . Radiation exposure at ground level by secondary cosmic radiation. Radiat Meas. 2005; 39(1):95-104. DOI: 10.1016/j.radmeas.2004.03.025. View

3.
Bleher M, Doll H, Harms W, Stohlker U . INTERCAL: long-term inter-comparison experiment for dose rate and spectrometric probes. Radiat Prot Dosimetry. 2014; 160(4):306-10. DOI: 10.1093/rpd/ncu039. View

4.
Bossew P, Cinelli G, Hernandez-Ceballos M, Cernohlawek N, Gruber V, Dehandschutter B . Estimating the terrestrial gamma dose rate by decomposition of the ambient dose equivalent rate. J Environ Radioact. 2016; 166(Pt 2):296-308. DOI: 10.1016/j.jenvrad.2016.02.013. View

5.
Saito K, Ishigure N, Petoussi-Henss N, Schlattl H . Effective dose conversion coefficients for radionuclides exponentially distributed in the ground. Radiat Environ Biophys. 2012; 51(4):411-23. PMC: 3478507. DOI: 10.1007/s00411-012-0432-y. View