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首页> 外文期刊>Bulletin of the Institute of Heat Engineering >CFD analysis of the safety related thermal hydraulic parameters describing a flow domain of an experimental medical installation (BNCT converter) inside of the Research Reactor MARIA
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CFD analysis of the safety related thermal hydraulic parameters describing a flow domain of an experimental medical installation (BNCT converter) inside of the Research Reactor MARIA

机译:安全相关热液压参数的CFD分析,描述了研究堆MARIA内实验医学装置(BNCT转换器)的流域

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摘要

The Boron-Neutron Capture Therapy (BNCT) is an experimental radiotherapy technique used to treat the most aggressive types of brain tumors that cannot be surgically removed from the human body. To date, clinical trials of BNCT have been initiated at only a handful of reactors around the world, but advanced studies on BNCT are still being carried out in numerous research centers where the suitable or convertible reactors are available. Construction of BNCT facilities is justified only at some existing reactors. Others can possibly be adapted for BNCT by using fission converters to modify the energy spectrum of the primary neutron beam, which makes it useful for treatment purposes. The BNCT converter, designed for use in the MARIA research reactor at the National Centre for Nuclear Research [W1] (NCBJ) in ?wierk near Warsaw, Poland, consists of 99 fuel rods (containing low-enriched uranium) inside of the aluminum box. Since its installation affects the core layout and possibly may affect the normal operating regime of the reactor, additional safety analyses must be performed to prove the existence of sufficient safety margins. In this study modern Computational Fluid Dynamics (CFD) techniques have been applied to assess the maximum temperature of the rod wall surfaces, the temperature difference between the inlet and outlet of the converter channel, as well as the maximum and average velocity of the fluid and to compare them with the results presented in the reference analytical study. According to [W1] http:/cbj.gov.pl/en
机译:硼中子捕获疗法(BNCT)是一种实验性放疗技术,用于治疗无法从人体上切除的最具侵略性的脑肿瘤。迄今为止,BNCT的临床试验仅在世界范围内的少数反应堆中启动,但是在拥有合适或可转换反应堆的许多研究中心中,仍在进行BNCT的高级研究。仅在某些现有反应堆上才有理由建设BNCT设施。通过使用裂变变流器来改变初级中子束的能谱,其他的可能适用于BNCT,这使其可用于治疗目的。 BNCT转换器设计用于波兰华沙附近wierk的国家核研究中心[W1](NCBJ)的MARIA研究反应堆中,由铝箱内的99个燃料棒(包含低浓缩铀)组成。由于其安装会影响堆芯布局,并可能影响反应堆的正常运行状态,因此必须进行额外的安全分析,以证明存在足够的安全裕度。在这项研究中,现代计算流体动力学(CFD)技术已用于评估杆壁表面的最高温度,转化器通道的入口和出口之间的温差以及流体的最大和平均速度。将它们与参考分析研究中提供的结果进行比较。根据[W1] http:/cbj.gov.pl/en

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