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Performance of a transmutation advanced device for sustainable energy application

机译:用于可持续能源应用的advanced变高级设备的性能

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摘要

Preliminary studies have been performed to design a device for nuclear waste transmutation and hydrogen generation based on a gas-cooled pebble bed accelerator driven system, TADSEA (Transmutation Advanced Device for Sustainable Energy Application). In previous studies we have addressed the viability of an ADS Transmutation device that uses as fuel wastes from the existing LWR power plants, encapsulated in graphite in the form of pebble beds, cooled by helium which enables high temperatures (in the order of 1200 K), to generate hydrogen from water either by high temperature electrolysis or by thermochemical cycles. For designing this device several configurations were studied, including several reflectors thickness, to achieve the desired parameters, the transmutation of nuclear waste and the production of 100 MW of thermal power. In this paper new studies performed on deep burn in-core fuel management strategy for LWR waste are presented. The fuel cycle on TADSEA device has been analyzed based on both: driven and transmutation fuel that had been proposed by the General Atomic design of a gas turbine-modular helium reactor. The transmutation results of the three fuel management strategies, using driven, transmutation and standard LWR spent fuel were compared, and several parameters describing the neutron performance of TADSEA nuclear core as the fuel and moderator temperature reactivity coefficients and transmutation chain, are also presented
机译:已经进行了初步研究,以设计基于气冷卵石床加速器驱动系统TADSEA(可持续能源应用的先进转化装置)的核废料转化和产氢装置。在先前的研究中,我们已经解决了ADS转换装置的可行性,该装置将现有轻水堆发电厂的燃料废物用作燃料,并以卵石床的形式封装在石墨中,并通过氦气进行冷却(可实现1200 K的高温)通过高温电解或热化学循环从水中产生氢。为了设计该装置,研究了几种配置,包括几种反射器的厚度,以实现所需的参数,核废料的trans变和产生100兆瓦的热力。本文介绍了针对轻水堆废物的深度燃烧堆芯燃料管理策略进行的新研究。 TADSEA设备上的燃料循环已基于以下因素进行了分析:驱动和and变燃料,这是燃气轮机-模块化氦反应堆的通用原子设计提出的。比较了三种燃料管理策略的driven变结果,分别采用了驱动,trans变和标准轻水堆乏燃料,并给出了描述TADSEA核芯中子性能的几个参数,作为燃料和慢化剂的温度反应系数和trans变链。

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