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首页> 外文期刊>International Journal of Thermophysics >Improving High-Temperature Measurements in Nuclear Reactors with Mo/Nb Thermocouples
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Improving High-Temperature Measurements in Nuclear Reactors with Mo/Nb Thermocouples

机译:Mo / Nb热电偶改善核反应堆中的高温测量

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摘要

Many irradiation experiments performed in research reactors are used to assess the effects of nuclear radiations on material or fuel sample properties, and are therefore a crucial stage in most qualification and innovation studies regarding nuclear technologies. However, monitoring these experiments requires accurate and reliable instrumentation. Among all measurement systems implemented in irradiation devices, temperature-and more particularly high-temperature (above 1000℃)-is a major parameter for future experiments related, for example, to the Generation IV International Forum (GIF) Program or the International Thermonuclear Experimental Reactor (ITER) Project. In this context, the French Commissariat a l'Energie Atomi-que (CEA) develops and qualifies innovative in-pile instrumentation for its irradiation experiments in current and future research reactors. Logically, a significant part of these research and development programs concerns the improvement of in-pile high-temperature measurements. This article describes the development and qualification of innovative high-temperature thermocouples specifically designed for in-pile applications. This key study has been achieved with technical contributions from the Thermo-coax Company. This new kind of thermocouple is based on molybdenum and niobium thermoelements, which remain nearly unchanged by thermal neutron flux even under harsh nuclear environments, whereas typical high-temperature thermocouples such as Type C or Type S are altered by significant drifts caused by material transmutations under the same conditions. This improvement has a significant impact on the temperature measurement capabilities for future irradiation experiments. Details of the successive stages of this development are given, including the results of prototype qualification tests and the manufacturing process.
机译:在研究反应堆中进行的许多辐照实验都用于评估核辐射对材料或燃料样品特性的影响,因此是大多数有关核技术的鉴定和创新研究的关键阶段。但是,监视这些实验需要准确而可靠的仪器。在辐照设备中实施的所有测量系统中,温度(尤其是高温(1000℃以上))是未来实验的主要参数,例如,与第四代国际论坛(GIF)计划或国际热核实验相关反应堆(ITER)项目。在这种情况下,法国能源原子能委员会(CEA)为当前和将来的研究堆中的辐照实验开发并验证了创新的桩内仪器。从逻辑上讲,这些研究和开发计划的很大一部分涉及堆内高温测量的改进。本文介绍了专为桩内应用而设计的创新型高温热电偶的开发和鉴定。这项重要的研究是通过Thermo-coax Company的技术贡献实现的。这种新型的热电偶基于钼和铌的热电偶,即使在严酷的核环境下,热中子通量也几乎保持不变,而典型的高温热电偶(如C型或S型)会因材料在高温下发生trans变而发生明显漂移而发生变化。相同的条件。这项改进对将来的辐照实验的温度测量能力具有重大影响。给出了此开发过程的后续阶段的详细信息,包括原型资格测试和制造过程的结果。

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