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首页> 外文期刊>Fusion Science and Technology >A 6 MW/m~2 High Heat Flux Testing Facility of Irradiated Materials Using Infrared Plasma-Arc Lamps
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A 6 MW/m~2 High Heat Flux Testing Facility of Irradiated Materials Using Infrared Plasma-Arc Lamps

机译:使用红外等离子弧灯的辐照材料的6 MW / m〜2高热通量测试设施

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摘要

Assessing the effect of neutron irradiation of plasma-facing materials has been challenging due to both the technical and radiological challenges involved. In an effort to address the radiological challenges, a facility was developed to conduct high heat flux testing (HHFT) of inherently small samples of neutron-irradiated materials. A new line-focus reflector was designed and fabricated at Oak Ridge National Laboratory for a plasma-arc lamp (PAL) to attain a source heat flux of 12?MW/m(2). The new reflector was fabricated with two ports for monitoring specimen condition during HHFT. At the same operational conditions for PAL, the absorbed heat flux in tungsten was increased from 1.39?MW/m(2) with the uniform irradiance reflector to 5.12?MW/m(2) for the line-focus reflector. This fourfold increase in the heat flux, at the same PAL electrode lifetimes, enabled cost-effective facility operation for a high number of cyclic high heat flux tests. Specifically, the test section is confined to a hemispherical dome, and specimens are bolted directly to a water-cooled copper alloy rod. Temperature measurement in the PAL facility was a main challenge due to a limited line of sight. For the first time in a PAL facility operating at high heat fluxes, the specimen surface temperature was directly measured during HHFT with a pyrometer. The HHFT data, which were obtained in this upgraded PAL facility, demonstrated the facility readiness for irradiated materials.
机译:由于所涉及的技术和放射学挑战,评估面对等离子体的材料的中子辐照效果一直是一个挑战。为了解决放射学方面的挑战,开发了一种设备,可对中子辐照材料本来很小的样品进行高热通量测试(HHFT)。在Oak Ridge国家实验室设计并制造了一种新的线聚焦反射器,用于等离子弧灯(PAL),以实现12?MW / m(2)的源热通量。新的反射器带有两个端口,用于在HHFT期间监控样品状态。在PAL的相同操作条件下,钨的吸收热通量从均匀辐照反射器的1.39?MW / m(2)增加到线聚焦反射器的5.12?MW / m(2)。在相同的PAL电极寿命下,热通量增加了四倍,使设备能够以高成本效益的方式进行大量的循环高热通量测试。具体而言,将测试部分限制在半球形的圆顶上,并将样品直接螺栓连接到水冷的铜合金棒上。由于视线有限,PAL设施中的温度测量是一个主要挑战。在以高热通量运行的PAL设施中,这是第一次在HHFT期间使用高温计直接测量样品表面温度。在升级后的PAL设施中获得的HHFT数据表明该设施已准备好接受辐照材料。

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