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Oral presentation

ADS research program in Japan

Sasa, Toshinobu

no journal, , 

Japan Atomic Energy Agency proposes an accelerator-driven system (ADS) for the minor actinide (MA) transmutation using lead-bismuth eutectic alloy (LBE) as a spallation target and a coolant of subcritical core. An acceleration of nuclear transmutation research and developments is specified in the latest Strategic Energy Plan. The construction of Transmutation Experimental Facility is planned within the framework of the J-PARC project. The facility consists of an ADS target test facility, which installs 250 kW LBE spallation target for material irradiations, and a Transmutation Physics Experimental Facility, which set up a MA-fuelled fast subcritical assembly driven by low power proton beam. Various developments are performed and manufacturings of the experimental equipments are underway. The cooperative development of the techniques for subcriticality monitoring using Kyoto University Critical Assembly with 100 MeV proton accelerator is also performed.

Oral presentation

Operation status of the J-PARC linac

Ito, Takashi

no journal, , 

The beam operation of the J-PARC (Japan Proton Accelerator Research Complex) linac started in November 2006 and a beam has been delivered to the users since November 2008. During the operation, we have experienced many kinds of troubles, such as the discharge problem of Radio Frequency Quadrupole (RFQ), failure of High Voltage DC power supply (HVDC) for klystron and so on. To solve these troubles one by one, the beam power have been ramped up to 300 kW (beam energy: 181 MeV, peak beam current: 15-20 mA) from a 3 GeV Rapid Cycling Synchrotron (RCS), and we have made the linac operation more stable. The goal of the J-PARC project is to deliver a 1 MW beam from the RCS and a 0.75 MW beam from a 30 GeV Main Ring synchrotron (MR). To achieve the goal, the upgrade of the linac is required: the beam energy upgrade from 181 MeV to 400 MeV and the beam current upgrade from 30 mA to 50 mA. For the energy upgrade, a new accelerator structure, annular-ring coupled structure (ACS) linac, was installed in September 2013 and available for users in February 2014. A front-end, i.e. a new ion source, RFQ and some components between the RFQ and the Drift Tube Linac (DTL), was replaced to increase a peak beam current in August 2014. The user operation with the new front-end linac has started in November this year, and the linac operation is very stable so far.

Oral presentation

Reactor physics experiments using transmutation physics experimental facility for research and development of accelerator-driven system

Iwamoto, Hiroki; Nishihara, Kenji; Sugawara, Takanori; Tsujimoto, Kazufumi; Sasa, Toshinobu; Maekawa, Fujio

no journal, , 

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