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Experimental and computational investigation of flow of pebbles in a pebble bed nuclear reactor.

机译:卵石床核反应堆中卵石流的实验和计算研究。

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摘要

The Pebble Bed Reactor (PBR) is a 4th generation nuclear reactor which is conceptually similar to moving bed reactors used in the chemical and petrochemical industries. In a PBR core, nuclear fuel in the form of pebbles moves slowly under the influence of gravity. Due to the dynamic nature of the core, a thorough understanding about slow and dense granular flow of pebbles is required from both a reactor safety and performance evaluation point of view.;In this dissertation, a new integrated experimental and computational study of granular flow in a PBR has been performed. Continuous pebble re-circulation experimental set-up, mimicking flow of pebbles in a PBR, is designed and developed. Experimental investigation of the flow of pebbles in a mimicked test reactor was carried out for the first time using non-invasive radioactive particle tracking (RPT) and residence time distribution (RTD) techniques to measure the pebble trajectory, velocity, overall/zonal residence times, flow patterns etc. The tracer trajectory length and overall/zonal residence time is found to increase with change in pebble's initial seeding position from the center towards the wall of the test reactor. Overall and zonal average velocities of pebbles are found to decrease from the center towards the wall. Discrete element method (DEM) based simulations of test reactor geometry were also carried out using commercial code EDEM(TM) and simulation results were validated using the obtained benchmark experimental data. In addition, EDEM(TM) based parametric sensitivity study of interaction properties was carried out which suggests that static friction characteristics play an important role from a packed/pebble beds structural characterization point of view. To make the RPT technique viable for practical applications and to enhance its accuracy, a novel and dynamic technique for RPT calibration was designed and developed. Preliminary feasibility results suggest that it can be implemented as a non-invasive and dynamic calibration methodology for RPT technique which will enable its industrial applications.
机译:卵石床反应堆(PBR)是第四代核反应堆,在概念上类似于化学和石化行业中使用的移动床反应堆。在PBR堆芯中,卵石形式的核燃料在重力的作用下缓慢移动。由于堆芯的动态特性,从反应堆安全性和性能评价的角度出发,需要对卵石的缓慢而稠密的颗粒流有一个全面的了解。已执行PBR。设计并开发了模仿鹅卵石在PBR中流动的连续卵石再循环实验装置。首次使用无创放射性粒子跟踪(RPT)和停留时间分布(RTD)技术对模拟试验反应堆中的卵石流进行了实验研究,以测量卵石的轨迹,速度,总/区域停留时间发现,示踪剂轨迹长度和总/区域停留时间随卵石初始播种位置(从测试反应器的中心到壁)的变化而增加。发现卵石的整体和纬向平均速度从中心向墙壁减小。还使用商业代码EDEM(TM)进行了基于离散元方法(DEM)的测试反应堆几何形状仿真,并使用获得的基准实验数据验证了仿真结果。另外,还进行了基于EDEM(TM)的相互作用特性的参数敏感性研究,这表明从填充/卵石床结构表征的角度来看,静摩擦特性起着重要的作用。为了使RPT技术在实际应用中可行并提高其准确性,设计并开发了一种新颖且动态的RPT校准技术。初步的可行性结果表明,它可以作为RPT技术的非侵入性和动态校准方法来实施,这将使其工业应用成为可能。

著录项

  • 作者

    Khane, Vaibhav B.;

  • 作者单位

    Missouri University of Science and Technology.;

  • 授予单位 Missouri University of Science and Technology.;
  • 学科 Engineering General.;Engineering Nuclear.;Engineering Chemical.
  • 学位 Ph.D.
  • 年度 2014
  • 页码 303 p.
  • 总页数 303
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:54:08

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