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Theory and methods for measuring the effective multiplication constant in ADS.

机译:测量ADS中有效乘法常数的理论和方法。

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In the thesis an absolute measurements technique for the subcriticality determination is presented. The ADS is a hybrid system where a subcritical system is fed by a proton accelerator. There are different proposals to define an ADS, one is to use plutonium and minor actinides from power plants waste as fuel to be transmuted into non radioactive isotopes (transmuter/burner, ATW). Another proposal is to use a Th232-U233 cycle (Energy Amplifier), being that thorium is an interesting and abundant fertile isotope.; The development of accelerator driven systems (ADS) requires the development of methods to monitor and control the subcriticality of this kind of system without interfering with its normal operation mode. With this finality, we have applied noise analysis techniques that allow us to characterise the system when it is operating. The method presented in this thesis is based on the stochastic neutron and photon transport theory that can be implemented by presently available neutron/photon transport codes. In this work, first we analyse the stochastic transport theory which has been applied to define a parameter to determine the subcritical reactivity monitoring measurements. Finally we give the main limitations and recommendations for these subcritical monitoring methodology.; As a result of the theoretical methodology, done in the first part of this thesis, a monitoring measurement technique has been developed and verified using two coupled Monte Carlo programs. The first one, LAHET, simulates the spallation collisions and the high energy transport and the other, MCNP-DSP, is used to estimate the counting statistics from a neutron/photon ray counter in a fissile system, as well as the transport for neutron with energies less than 20 MeV. From the coupling of both codes we developed the LAHET/MCNP-DSP code which, has the capability to simulate the total process in the ADS from the proton interaction to the signal detector processing. In these simulations, we compute the cross power spectral densities between pairs of detectors located inside the system which, is defined as the measured parameter. From the comparison of the theoretical predictions with the Monte Carlo simulations, we obtain some practical and simple methods to determine the system multiplication constant. (Abstract shortened by UMI.)
机译:本文提出了亚临界确定的绝对测量技术。 ADS是一种混合系统,其中亚临界系统由质子加速器供入。定义ADS有不同的建议,一种是使用power和电厂废料中的微量act系元素作为燃料,将其转变为非放射性同位素(转变器/燃烧器,ATW)。另一个建议是使用Th232-U233循环(能量放大器),因为or是一种有趣且丰富的可育同位素。加速器驱动系统(ADS)的开发要求开发监视和控制此类系统的亚临界状态而又不干扰其正常运行模式的方法。最终,我们应用了噪声分析技术,使我们能够在系统运行时对其进行表征。本文提出的方法基于随机中子和光子输运理论,该理论可以通过当前可用的中子/光子输运代码实现。在这项工作中,首先我们分析了随机输运理论,该理论已被用来定义一个参数,以确定亚临界反应性监测测量值。最后,我们给出了这些次临界监视方法的主要局限性和建议。作为本文第一部分所做的理论方法的结果,已经开发了一种监测测量技术,并使用两个耦合的蒙特卡洛程序进行了验证。第一个是LAHET,用于模拟散裂碰撞和高能输运,另一个是MCNP-DSP,用于估算裂变系统中的中子/光子射线计数器的计数统计数据,以及用于中子的输运。能量小于20 MeV。通过两个代码的耦合,我们开发了LAHET / MCNP-DSP代码,该代码能够模拟ADS中从质子相互作用到信号检测器处理的整个过程。在这些模拟中,我们计算位于系统内部的成对检测器之间的交叉功率谱密度,该密度定义为测量参数。通过将理论预测与蒙特卡洛模拟进行比较,我们获得了一些实用且简单的方法来确定系统乘法常数。 (摘要由UMI缩短。)

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