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Assessment of performing experimental investigation on a pebble bed modular reactor (PBMR) as a static packed bed approximation

机译:评估在卵石床模块化反应器(PBMR)上进行的静态填充床近似实验研究

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Moving bed reactors have a wide range of applications in the chemical, petrochemical, and alternative energy industries in a special situation where there is a need to either continuously recirculate or replace solid particles catalysts. They are also tinder consideration as one of the 4th generation nuclear reactors known as pebble bed modular reactor (PBMR). In this work a continuous cold flow pebble recirculation experimental set-up, mimicking the flow of pebbles in a PBMR, is designed, developed, and tested at Missouri S&T. A unique experimental work has been performed on assessment of the possibility of using pebble bed modular reactor (PBMR) as static packed bed approximation for the needed experimental investigation. For this purpose, a radioactive particle tracking (RPT) technique is implemented around the continuous pebble recirculation experimental set-up, to compare the packing characteristics of static and moving pebble beds. The photopeak counts during RPT calibration were collected by placing radioactive particle (tracer) at different positions in the test reactor under different operating conditions of moving and static conditions. The photopeak counts between moving and static conditions show that attenuation characteristics of the medium in between tracer and detectors are not changing significantly due to movement of pebbles. This confirms that PBMR could be well approximated by static packed beds for experimental investigation which simplify the needed experimentation to advance PBMR technology and commercialization. Obtained results are serving as a unique benchmark data for an evaluation of the contact force model that used in the discrete element method (DEM) based simulations. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在特殊情况下,需要连续循环或更换固体颗粒催化剂的情况下,移动床反应器在化学,石化和替代能源行业中具有广泛的应用。它们也被认为是卵石床模块化反应堆(PBMR)的第四代核反应堆之一。在这项工作中,密苏里州科技局设计,开发和测试了一种连续的冷流卵石再循环实验装置,以模拟PBMR中的卵石流动。在评估使用卵石床模块化反应器(PBMR)作为所需实验研究的静态填充床近似值的可能性方面,已经进行了一项独特的实验工作。为此,在连续卵石再循环实验装置周围实施了放射性粒子跟踪(RPT)技术,以比较静态卵石床和移动卵石床的填充特性。通过在活动和静态条件下的不同运行条件下,将放射性粒子(示踪剂)放置在测试反应器中的不同位置,来收集RPT校准过程中的光峰计数。在移动和静态条件之间的光电峰计数表明,由于卵石的移动,示踪剂和检测器之间的介质的衰减特性没有明显变化。这证实了用静态填充床可以很好地近似PBMR进行实验研究,这简化了推进PBMR技术和商业化所需的实验。获得的结果将用作评估基于离散元方法(DEM)的仿真中使用的接触力模型的唯一基准数据。 (C)2016 Elsevier Ltd.保留所有权利。

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