Published 2001 | Version v1
Book

Simulating variable source problems via post processing of individual particle tallies

  • 1. California Univ., Berkeley, CA (United States)
  • 2. Lawrence Berkeley National Lab., CA (United States)

Description

Monte Carlo is an extremely powerful method of simulating complex, three dimensional environments without excessive problem simplification. However, it is often time consuming to simulate models in which the source can be highly varied. Similarly difficult are optimization studies involving sources in which many input parameters are variable, such as particle energy, angle, and spatial distribution. Such studies are often approached using ''brute force'' methods or intelligent guesswork. One field in which these problems are often encountered is accelerator-driven boron neutron capture therapy (BNCT) for the treatment of cancers. Solving the reverse problem of determining the best neutron source for optimal BNCT treatment can be accomplished by separating the time-consuming particle-tracking process of a full Monte Carlo simulation from the calculation of the source weighting factors which is typically performed at the beginning of a Monte Carlo simulation. By post-processing these weighting factors on a recorded file of individual particle tally information, the effect of changing source variables can be realized in a matter of seconds, instead of requiring hours or days for additional complete simulations. By intelligent source biasing, any number of different source distributions can be calculated quickly from a single Monte Carlo simulation. The source description can be treated as variable and the effect of changing multiple interdependent source variables on the problem's solution can be determined. Though the focus of this study is on BNCT applications, this procedure may be applicable to any problem that involves a variable source. (orig.)

Part of:
Advanced Monte Carlo for radiation physics, particle transport simulation and applications. Proceedings

Additional details

Publishing Information

Publisher
Springer
Imprint Place
Berlin (Germany)
ISBN
3-540-41795-8
Imprint Title
Advanced Monte Carlo for radiation physics, particle transport simulation and applications. Proceedings
Imprint Pagination
1218 p.
Journal Page Range
p. 833-840

Conference

Title
International conference on advanced Monte Carlo for radiation physics, particle transport simulation and applications
Acronym
MC Monte Carlo 2000
Dates
23-26 Oct 2000
Place
Lisbon (Portugal)

Optional Information

Notes
Imprint:With CD-ROM