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体素到 MCNP:用于为蒙特卡罗代码的辐射传输场景建模、模拟和评估的框架。

Voxel2MCNP: a framework for modeling, simulation and evaluation of radiation transport scenarios for Monte Carlo codes.

机构信息

Institute for Nuclear Waste Disposal, Karlsruhe Institute of Technology (KIT), Hermann-von-Helmholtz-Platz 1, D-76344 Eggenstein-Leopoldshafen, Germany.

出版信息

Phys Med Biol. 2013 Aug 21;58(16):5381-400. doi: 10.1088/0031-9155/58/16/5381. Epub 2013 Jul 23.

Abstract

The basic idea of Voxel2MCNP is to provide a framework supporting users in modeling radiation transport scenarios using voxel phantoms and other geometric models, generating corresponding input for the Monte Carlo code MCNPX, and evaluating simulation output. Applications at Karlsruhe Institute of Technology are primarily whole and partial body counter calibration and calculation of dose conversion coefficients. A new generic data model describing data related to radiation transport, including phantom and detector geometries and their properties, sources, tallies and materials, has been developed. It is modular and generally independent of the targeted Monte Carlo code. The data model has been implemented as an XML-based file format to facilitate data exchange, and integrated with Voxel2MCNP to provide a common interface for modeling, visualization, and evaluation of data. Also, extensions to allow compatibility with several file formats, such as ENSDF for nuclear structure properties and radioactive decay data, SimpleGeo for solid geometry modeling, ImageJ for voxel lattices, and MCNPX's MCTAL for simulation results have been added. The framework is presented and discussed in this paper and example workflows for body counter calibration and calculation of dose conversion coefficients is given to illustrate its application.

摘要

Voxel2MCNP 的基本思想是提供一个框架,支持用户使用体素模型和其他几何模型来建模辐射传输场景,为蒙特卡罗代码 MCNPX 生成相应的输入,并评估模拟输出。卡尔斯鲁厄理工学院的应用主要是全身和局部体计数器校准以及剂量转换系数的计算。已经开发了一种新的通用数据模型,用于描述与辐射传输相关的数据,包括体素和探测器的几何形状及其属性、源、计数和材料。它是模块化的,通常与目标蒙特卡罗代码无关。该数据模型已实现为基于 XML 的文件格式,以方便数据交换,并与 Voxel2MCNP 集成,为建模、可视化和数据评估提供通用接口。此外,还添加了允许与多种文件格式兼容的扩展,例如用于核结构特性和放射性衰变数据的 ENSDF、用于固体几何建模的 SimpleGeo、用于体素晶格的 ImageJ 以及用于模拟结果的 MCNPX 的 MCTAL。本文介绍并讨论了该框架,并给出了体计数器校准和剂量转换系数计算的示例工作流程,以说明其应用。

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