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Transient heat exchanges under fast Reactivity-Initiated Accident

机译:快速反应性发生的瞬态热交换器

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摘要

Heat exchanges during fast transient are very complex phenomena. Many studies have been led in this field, trying to quantify the heat exchanges between a heating wall, under fast increasing power, and a coolant. This kind of situation is encountered for instance during RIA (Reactivity-Initiated Accidents) in nuclear reactors, whose characteristics times of wall heat flux excursion can be as low as orders of 1 ms. The CABRI reactor, an experimental pulse reactor funded by the french Institute for Radiological protection and Nuclear Safety (IRSN) and operated by CEA at the Cadarache nuclear center (France), was build in order to study and thus to better understand RIA effects on nuclear fuels. Heat exchanges characterization is definitely one of major points to tackle in the understanding and modeling of such transients, involving single and two phase flows.This paper broaches the question of single phase heat exchanges coefficients during fast transient power excursions in the CABRI reactor.The single phase pure convection is the overlap of two main mechanisms: the advection (wall axial supply in upstream cold water) and the turbulent mixing inside the boundary layer. This latter phenomenon is due to vortices in boundary layers inducing radial mixing through the velocity boundary layer. In most cases involving turbulent flows, the turbulent mixing phenomenon is preponderant. To these mechanisms is added a pure conduction heat exchange mechanism through the thermal boundary layer. Convection and conduction overlap defining a conducto-convective heat transfer coefficient, improperly only called "convection" coefficient. This paper suggests a way to model this coefficient during a CABRI-RIA transient by a non-linear superposition of transient pure conduction and convection mechanisms. Two distinct transient phases are considered; the first one presenting a wall heat flux of exponential shape followed by the second one during which the wall heat flux remains constant. The potency of this analytical model, which is implementable into computational system tools, is demonstrated.
机译:快速瞬态的热交换器是非常复杂的现象。在该领域中,许多研究已经推出,试图在快速增加功率和冷却​​剂时量化加热壁之间的热交换器。在核反应堆中的RIA(反应性发生的事故)期间遇到这种情况,其特性壁热通量偏移的特性可以低至1 ms的顺序。 CABRI反应堆是由法国放射线保护和核安全研究所(IRSN)资助的实验脉冲反应器,并在CADARACH核中心(法国)的CEA经营,以便研究,从而更好地了解RIA对核的影响燃料。热交换器表征绝对是在理解和建模这种瞬态的主要点之一,涉及单个和两个相流。这纸张在CABRI反应器中的快速瞬态电力偏移期间单相热交换系数的问题。单一阶段纯对流是两个主要机制的重叠:平流(上游冷水中的轴向供应)和边界层内部的湍流混合。后一种现象是由于边界层的涡流,诱导通过速度边界层的径向混合。在大多数涉及湍流的情况下,湍流混合现象是优势。对于这些机制,通过热边界层加入纯传导热交换机构。对流和传导重叠定义导线传热系数,仅称为“对流”系数不正确。本文通过瞬态纯传导和对流机构的非线性叠加,在CABRI-RIA瞬态期间提出了一种模拟该系数的方法。考虑了两个不同的瞬态阶段;第一个呈现指数形状的壁热通量,然后在其期间壁热通量保持恒定。该分析模型的效力,可用于计算系统工具。

著录项

  • 来源
    《Nuclear Engineering and Design》 |2021年第3期|110917.1-110917.13|共13页
  • 作者单位

    CEA DEN DER F-13108 St Paul Les Durance France;

    CEA DEN DER F-13108 St Paul Les Durance France;

    CEA DEN DER F-13108 St Paul Les Durance France;

    CNRS IN2P3 LPSC Grenoble INP UGA 53 Rue Martyrs F-38026 Grenoble France;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Transient heat exchange coefficient; RIA; Analytical;

    机译:瞬态热交换系数;RIA;分析;
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