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PENGEOM-A general-purpose geometry package for Monte Carlo simulation of radiation transport in material systems defined by quadric surfaces

机译:PENGEOM-通用几何软件包,用于对由二次曲面定义的材料系统中的辐射传输进行蒙特卡洛模拟

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摘要

The Fortran subroutine package PENGEOM provides a complete set of tools to handle quadric geometries in Monte Carlo simulations of radiation transport. The material structure where radiation propagates is assumed to consist of homogeneous bodies limited by quadric surfaces. The PENGEOM subroutines (a subset of the PENELOPE code) track particles through the material structure, independently of the details of the physics models adopted to describe the interactions. Although these subroutines are designed for detailed simulations of photon and electron transport, where all individual interactions are simulated sequentially, they can also be used in mixed (class II) schemes for simulating the transport of high-energy charged particles, where the effect of soft interactions is described by the random-hinge method. The definition of the geometry and the details of the tracking algorithm are tailored to optimize simulation speed. The use of fuzzy quadric surfaces minimizes the impact of round-off errors. The provided software includes a Java graphical user interface for editing and debugging the geometry definition file and for visualizing the material structure. Images of the structure are generated by using the tracking subroutines and, hence, they describe the geometry actually passed to the simulation code.
机译:Fortran子程序包PENGEOM提供了一套完整的工具来处理辐射传输的蒙特卡洛模拟中的二次几何。假设辐射在其中传播的材料结构由受二次曲面限制的均匀物体组成。 PENGEOM子例程(PENELOPE代码的子集)通过材料结构跟踪粒子,而与描述相互作用的物理模型的细节无关。尽管这些子例程是专为光子和电子传输的详细模拟而设计的,其中依次逐个模拟所有单个的相互作用,但它们也可以用于混合(II类)方案中,以模拟高能带电粒子的传输,其中软效应相互作用通过随机铰链方法进行描述。定制几何形状的定义和跟踪算法的细节以优化仿真速度。模糊二次曲面的使用将舍入误差的影响最小化。所提供的软件包括Java图形用户界面,用于编辑和调试几何定义文件并可视化材料结构。结构的图像是使用跟踪子例程生成的,因此,它们描述了实际传递给仿真代码的几何形状。

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