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Conceptual design and verification of long-distance laser-probe system for Li target diagnostics of intense fusion neutron source

机译:强聚变中子源锂靶诊断的长距离激光探测系统的概念设计与验证

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We developed a diagnostics tool for a liquid lithium (Li) target intended for use in intense fusion neutron sources such as the International Fusion Materials Irradiation Facility (IFMIF). The current design of IFMIF requires that the thickness of the liquid-Li target be maintained to within ±1 mm while operating under normal conditions. This paper deals with two topics: a conceptual design of the Li target diagnostics and verification tests of a candidate diagnostics (long-distance LP system). The overall concept of the Li target diagnostics is described first, and then the system configuration of the long-distance LP method, which is to be installed 7 m in front the Li target to measure the Li target thickness accurately, is shown. In addition, we present the results of verification tests aiming to examine the applicability of the long-distance LP system. The precision error resulting from long-distance measurement was estimated using a stationary specular-reflection object and a water-model simulating the Li target. As a result, we verified that the LP system has a precision of 16–40 μm even at a sampling rate of 500 kHz measurement from a distance of 10 m.
机译:我们为液态锂(Li)目标开发了一种诊断工具,该目标旨在用于国际聚变材料辐照设施(IFMIF)等强聚变中子源。 IFMIF的当前设计要求在正常条件下运行时,液态锂靶的厚度应保持在±1 mm范围内。本文涉及两个主题:Li目标诊断的概念设计和候选诊断(远程LP系统)的验证测试。首先描述了锂靶诊断的总体概念,然后显示了长距离LP方法的系统配置,该方法将安装在锂靶的前面7μm以精确测量锂靶厚度。另外,我们提出了旨在检验长距离LP系统的适用性的验证测试结果。使用固定的镜面反射物体和模拟Li目标的水模型来估算长距离测量产生的精度误差。结果,我们验证了LP系统即使在10µm距离内以500µkHz的采样率测量时也具有16-40µm的精度。

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