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Mathematical Modeling Problems Connected with Pulsed Neutron-Gamma Logging

机译:与脉冲中子伽马测井有关的数学建模问题

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The work is devoted to direct and inverse problems of the transport equation in the context of a nuclear geophysical technology based on pulsed neutron-gamma logging of inelastic scattering (PNGL-IS). In the first part of the paper we analyze the distribution of fast neutrons from a pulsed source of 14.1 MeV and study distributions of gamma-quanta of inelastic scattering. The particle distributions are computed by the Monte Carlo methods. In the second part of the paper we consider the problem of evaluating the elemental composition of the rock from the PNGL-IS measurement data. In its solution we use the method of successive approximations-over characteristic interactions, which can be classified as a simple iteration; at each iteration step we solve the corresponding direct problem for the system of neutron and gamma-quantum transport equations. The main aspects of the employed method and the results of the numerical experiments that prove the convergence to the exact solution are presented.
机译:这项工作致力于在基于非弹性散射脉冲中子伽马测井(PNGL-IS)的核地球物理技术的背景下,求解输运方程的正向和逆向问题。在本文的第一部分中,我们分析了14.1 MeV脉冲源中快中子的分布,并研究了非弹性散射的伽马量子分布。粒子分布是通过蒙特卡洛方法计算的。在本文的第二部分中,我们考虑了根据PNGL-IS测量数据评估岩石元素组成的问题。在其解决方案中,我们使用逐次逼近特征相互作用的方法,可以将其归类为简单迭代;在每个迭代步骤中,我们为中子和伽马量子传输方程组求解相应的直接问题。给出了所采用方法的主要方面以及数值实验的结果,这些结果证明了精确解的收敛性。

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