Literature DB >> 21186209

Use of energy deposition spectrometer Liulin for individual monitoring of aircrew.

O Ploc1, K Pachnerová Brabcová, F Spurny, A Malušek, T Dachev.   

Abstract

Silicon energy deposition spectrometer Liulin was primarily developed for cosmic radiation monitoring onboard spacecrafts. Nowadays, Liulin type detectors are also used to characterise radiation field on board aircraft, at alpine observatories and behind the shielding of heavy ion accelerators. In this work, experiments and calibrations performed in these radiation fields are presented and the method developed for calculation of ambient dose equivalent H*(10) on board aircraft is described. Since 2001, a simple method employing the energy deposition spectra had been used to determine H*(10) on board aircraft but, in 2004, it became clear that the resulting values were strongly biased at locations close to Earth's equator. An improved method for the determination of H*(10) on board aircraft using the Liulin detector was developed. It took into account the composition of the radiation field via the ratio of absorbed doses D(low) and D(neut) reflecting the contributions from low-LET particles and neutrons, respectively. It resulted in much better agreement with the EPCARD computer code for all aircraft locations; relative differences were within 11 % for low-LET and 20 % for neutron components of H*(10).

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Year:  2010        PMID: 21186209     DOI: 10.1093/rpd/ncq505

Source DB:  PubMed          Journal:  Radiat Prot Dosimetry        ISSN: 0144-8420            Impact factor:   0.972


  1 in total

1.  Analytical Representations for Characterizing the Global Aviation Radiation Environment Based on Model and Measurement Databases.

Authors:  W Kent Tobiska; Leonid Didkovsky; Kevin Judge; Seth Weiman; Dave Bouwer; Justin Bailey; Bill Atwell; Molly Maskrey; Chris Mertens; Yihua Zheng; Margaret Shea; Don Smart; Brad Gersey; Richard Wilkins; Duane Bell; Larry Gardner; Robert Fuschino
Journal:  Space Weather       Date:  2018-10-09       Impact factor: 4.456

  1 in total

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