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首页> 外文期刊>Fusion technology >VELOCITY PROFILE MEASUREMENT OF LEAD-LITHIUM FLOWS BY HIGH-TEMPERATURE ULTRASONIC DOPPLER VELOCIMETRY
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VELOCITY PROFILE MEASUREMENT OF LEAD-LITHIUM FLOWS BY HIGH-TEMPERATURE ULTRASONIC DOPPLER VELOCIMETRY

机译:高温超声多普勒测速仪测定铅锂流的速度剖面

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摘要

This paper describes a high-temperature ultrasonic Doppler Velocimetry (HT-UDV) technique that has been successfully applied to measure velocity profiles of the lead-lithium eutectic alloy (PbLi) flows. The impact of tracer particles is investigated to determine requirements for HT-UDV measurement of PbLi flows. The HT-UDV system is tested on a PbLi flow driven by a rotating-disk in an inert atmosphere. We find that a sufficient amount of particles contained in the molten PbLi are required to successfully measure PbLi velocity profiles by HT-UDV. An X-ray diffraction analysis is performed to identify those particles in PbLi, and indicates that those particles were made of the lead mono-oxide (PbO). Since the specific densities of PbLi and PbO are close to each other, the PbO particles are expected to be well-dispersed in the bulk of molten PbLi. We conclude that the excellent dispersion of PbO particles enables the HT-UDV to obtain reliable velocity profiles for operation times of around 12 hours.
机译:本文介绍了一种高温超声多普勒测速技术(HT-UDV),该技术已成功应用于测量铅锂共晶合金(PbLi)流动的速度分布。研究示踪剂颗粒的影响,以确定对PBLi流量进行HT-UDV测量的要求。 HT-UDV系统在惰性气氛中在由转盘驱动的PbLi流动上进行了测试。我们发现,熔融的PbLi中包含的足够量的颗粒是通过HT-UDV成功测量PbLi速度分布所必需的。进行X射线衍射分析以鉴定PbLi中的那些颗粒,并表明那些颗粒由一氧化铅(PbO)制成。由于PbLi和PbO的比密度彼此接近,因此期望PbO颗粒良好地分散在大部分熔融的PbLi中。我们得出的结论是,PbO颗粒的出色分散性使HT-UDV可获得约12小时的运行时间可靠的速度曲线。

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  • 来源
    《Fusion technology 》 |2011年第2期| p.506-510| 共5页
  • 作者单位

    Kyoto University, Yoshida Hommachi, Sakyo, Kyoto, 606-8501, Japan;

    Japan Atomic Energy Agency, 4002 Narita, O-arai, Ibaraki, 311-1393, Japan;

    Kyoto University, Yoshida Hommachi, Sakyo, Kyoto, 606-8501, Japan;

    Japan Atomic Energy Agency, 4002 Narita, O-arai, Ibaraki, 311-1393, Japan;

    Japan Atomic Energy Agency, 4002 Narita, O-arai, Ibaraki, 311-1393, Japan;

    Japan Atomic Energy Agency, 4002 Narita, O-arai, Ibaraki, 311-1393, Japan;

    University of California at Los Angeles, 420 Westwood Plaza, 44-114 Engineering IV, Los Angeles, CA 90095, USA;

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