首页> 外文会议>ICONE18;International conference on nuclear engineering >FLOW DISTRIBUTION AND TURBULENT HEAT TRANSFER MEASUREMENTS IN A HEXAGONAL LBE ROD BUNDLE
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FLOW DISTRIBUTION AND TURBULENT HEAT TRANSFER MEASUREMENTS IN A HEXAGONAL LBE ROD BUNDLE

机译:六角形LBE杆束中的流量分布和湍流传热测量

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In the framework of accelerator driven sub-critical reactor systems (ADS), heavy liquid metals (HLM), in particular lead or lead bismuth eutectic (LBE), are considered as coolant for the reactor core and the spoliation target due to their efficient heat removal properties and high production rate of neutrons.LBE-flows are characterized by excellent heat conductivity and exhibit a low molecular Prandtl number of the order 10~ leading to distinct thermal and viscous boundary layers and scale separation in both the time and spatial domain. Since the analogy of turbulent heat and momentum transfer is employed in common turbulence models but is not valid in HLM flows, commercially available fluid dynamic code systems cannot predict heat transfer adequately for such flows.In order to provide validation data and heat transfer correlations, a series of three major experiments has been launched at the KArlsruhe Liquid metal LAboratory (KALLA) of the Karlsruhe Institute of Technology and will be presented in this overview.
机译:在加速器驱动的亚临界反应堆系统(ADS)的框架中,由于重热金属(HLM),特别是铅或铅铋共晶(LBE),由于其有效的热量,被视为反应堆堆芯和沉积目标的冷却剂去除性质和中子的高生产率。 LBE流动的特点是具有出色的导热性,并表现出10〜10左右的低分子Prandtl数,从而导致在时域和空间域中明显的热边界层和粘性边界层以及水垢分离。由于在常见的湍流模型中采用了湍流热和动量传递的类比,但在HLM流中无效,因此市售的流体动力代码系统无法充分预测此类流的热传递。 为了提供验证数据和传热相关性,已在卡尔斯鲁厄技术学院的卡尔斯鲁厄液态金属实验室(KALLA)进行了一系列三个主要实验,并将在此概述中进行介绍。

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