Published 1998 | Version v1
Book

Radiation physics of high power spallation targets. State of the art simulation methods and experiments, the 'European Spallation Source' (ESS)

  • 1. Forschungszentrum Juelich GmbH (Germany). Inst. fuer Kernphysik

Description

Particle transport and nuclear interactions of planned high power spallation targets with GeV proton beams can be simulated using widely developed Monte Carlo transport methods. This includes available high energy radiation transport codes and systems for low energy, earlier developed for reactor physics and fusion technology. Monte Carlo simulation codes and applied methods are discussed. The capabilities of the world-wide existing state-of-the-art computer code systems are demonstrated. Results of computational studies for the 'European Spallation Source' (ESS) mercury high power target station are given. The needs for spallation related data and planned experiments are shown. (author)

Part of:
Proceedings of the 3. Specialists meeting on shielding aspects of accelerators, targets and irradiation facilities

Additional details

Publishing Information

Publisher
OECD
Imprint Place
Paris (France)
ISBN
92-64-16071-X
Imprint Title
Proceedings of the 3. Specialists meeting on shielding aspects of accelerators, targets and irradiation facilities
Imprint Pagination
[368 p.]
Journal Page Range
p. 97-113

Conference

Title
Shielding aspects of accelerators, targets and irradiation facilities
Acronym
SATIF-3
Dates
12-13 May 1997
Place
Sendai (Japan)

INIS

Country of Publication
France
Country of Input or Organization
Nuclear Energy Agency of the OECD (NEA)
INIS RN
29067461
Subject category
S73: NUCLEAR PHYSICS AND RADIATION PHYSICS; S73: NUCLEAR PHYSICS AND RADIATION PHYSICS;
Resource subtype / Literary indicator
Conference
Descriptors DEI
COMPUTERIZED SIMULATION; MONTE CARLO METHOD; PROTON REACTIONS; RADIATION TRANSPORT; SPALLATION; TRANSPORT THEORY
Descriptors DEC
BARYON REACTIONS; CALCULATION METHODS; HADRON REACTIONS; NUCLEAR REACTIONS; NUCLEON REACTIONS; SIMULATION

Optional Information

Notes
55 refs.