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  • 2019:12 Radiological risk assessment for the “Radon” type surface disposal facility in Chisinau, Moldova

    Abstract The long-term conditions and potential radiological consequences of the legacy radioactive waste stored in the RADON-type disposal facility outside Chisinau is of concern for the central government authorities of the Republic of Moldova. A radiological risk assessment of “zero alternative scenario” for the RADON-type of near-surface disposal facility has been conducted. The objective...

    Innehållstyp: Publikationer
  • 2019:09 General data in accordance with the requirements in Article 37 of the Euratom Treaty

    Decommissioning of the nuclear reactor Ågesta in Sweden.

    Innehållstyp: Publikationer
  • 2019:08 Recent Research on EMF and Health Risk, Thirteenth report from SSM’s Scientific Council on Electromagnetic Fields, 2018

    SSM perspective Background The Swedish Radiation Safety Authority’s (SSM) Scientific Council on Electromagnetic Fields monitors current research on potential health risks with a correlation to exposure to electromagnetic fields and provides the Authority with advice on assessing possible health risks. The Council gives guidance when the Authority must give an opinion on policy matters when...

    Innehållstyp: Publikationer
  • 2019:07 General data in accordance with the requirements in Article 37 of the Euratom Treaty

    Decommissioning of the Barsebäck nuclear power plant in Sweden.

    Innehållstyp: Publikationer
  • 2019:06 The Changing Landscape of Non-proliferation and the EU

    Background Maintaining competence and knowledge within the nuclear non-proliferation area is a necessity for Sweden to keep its international commitments of peaceful use of all nuclear material. As part of this work the Swedish Radiation Safety Authority (SSM) made a call for research proposals related to Non-Proliferation for projects focused on the interplay between national and...

    Innehållstyp: Publikationer
  • 2019:04 Dosimetry in environments surrounding a laser-plasma accelerator

    SSM perspective Background Modern laser technology makes it possible to generate ultrashort pulses with a very high peak power. At the Lund Laser Centre, a high-power laser facility in Lund, Sweden, laser pulses having a duration of approximately 30 femtoseconds are generated with a maximum peak power of up to 40 terawatts. When these pulses are focused, extreme light intensity is achieved.

    Innehållstyp: Publikationer
  • 2019:03 Evaluation of the hydrodynamic model in PARET/ANL

    Background The fuel rod analysis program SCANAIR has been developed by IRSN (Institut de Radioprotection et de Sûreté Nucléaire) for analysis of reactivity initiated accidents (RIA) in light water reactors. The Swedish Radiation Safety Authority (SSM) has access to SCANAIR in exchange for annual contributions for its further development. This ensures a possibility for SSM to do...

    Innehållstyp: Publikationer
  • 2019:02 Research within technical safeguard at Chalmers University of Technology during 2016-2017

    Summary The Division of Subatomic and Plasma Physics in Chalmers, formerly the Division of Nuclear Engineering, has performed research in nuclear safeguards and non-proliferation since 2004, with support from SSM and its predecessor, SKI. Due to various organizational and personnel changes in Chalmers, this research was pursued with limited resources and personnel during 2016-06-30 –...

    Innehållstyp: Publikationer
  • 2019:01 Research within technical safeguard at Uppsala university during 2016-20

    Summary Uppsala University has since January 2016 undertaken an extensive research programme in technical nuclear safeguards within the framework of contract SSM2016-661, including in total 3 PhD students and 7 senior researchers. This report marks the final reporting covered by this contract. The executed research covers the following projects; (1) Methodologies for safeguards assessment of...

    Innehållstyp: Publikationer
  • 2018:25 UO2 fuel oxidation and fission gas release

    Background The Swedish Radiation Safety Authority (SSM) follows the research on fuel performance closely. One aspect that has been the main question of several research projects is the fragmentation of fuel pellets during abnormal heat up. In this project the oxidation of UO2 is scrutinized and its effect on pellet fragmentation, fission gas release and damage of fuel rods has been...

    Innehållstyp: Publikationer