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Calculation of photon pulse height distribution using deterministic and Monte Carlo methods

机译:使用确定性和蒙特卡洛方法计算光子脉冲高度分布

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Radiation transport techniques which are used in radiation detection systems comprise one of two categories namely probabilistic and deterministic. However, probabilistic methods are typically used in pulse height distribution simulation by recreating the behavior of each individual particle, the deterministic approach, which approximates the macroscopic behavior of particles by solution of Boltzmann transport equation, is being developed because of its potential advantages in computational efficiency for complex radiation detection problems. In current work linear transport equation is solved using two methods including collided components of the scalar flux algorithm which is applied by iterating on the scattering source and ANISN deterministic computer code. This approach is presented in one dimension with anisotropic scattering orders up to P8 and angular quadrature orders up to S16. Also, multi-group gamma cross-section library required for this numerical transport simulation is generated in a discrete appropriate form. Finally, photon pulse height distributions are indirectly calculated by deterministic methods that approvingly compare with those from Monte Carlo based codes namely MCNPX and FLUKA. (C) 2015 Elsevier Ltd. All rights reserved.
机译:辐射检测系统中使用的辐射传输技术包括两类之一,即概率性和确定性。然而,概率方法通常通过重新创建每个粒子的行为而用于脉冲高度分布模拟中,由于其在计算效率方面的潜在优势,正在开发确定性方法,该方法通过解决玻耳兹曼输运方程来近似粒子的宏观行为。用于复杂的辐射检测问题。在当前工作中,使用两种方法求解线性传输方程,包括标量通量算法的碰撞分量,该方法通过迭代散射源和ANISN确​​定性计算机代码来应用。这种方法以一维的形式呈现,各向异性散射阶次高达P8,角正交阶次高达S16。同样,此数值传输模拟所需的多组γ横截面库以离散的适当形式生成。最后,通过确定性方法间接地计算了光子脉冲高度分布,该确定性方法与基于蒙特卡洛的代码即MCNPX和FLUKA的确定性方法进行了比较。 (C)2015 Elsevier Ltd.保留所有权利。

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