首页> 外文会议>Advancements in Nuclear Instrumentation Measurement Methods and their Applications (ANIMMA), 2011 2nd International Conference on >REMORA 3: The first instrumented fuel experiment with on-line gas composition measurement by acoustic sensor
【24h】

REMORA 3: The first instrumented fuel experiment with on-line gas composition measurement by acoustic sensor

机译:REMORA 3:第一个通过声学传感器在线测量气体成分的仪器化燃料实验

获取原文
获取原文并翻译 | 示例

摘要

With the aim to improve the knowledge of nuclear fuel behaviour, the development of advanced instrumentation used during in-pile experiments in Material Testing Reactor (MTR) is necessary. To obtain data on high Burn-Up MOX fuel performance under transient operating conditions, especially in order to differentiate between the kinetics of fission gas and helium releases and to acquire data on the degradation of the fuel conductivity, a highly instrumented in-pile experiment called REMORA 3 has been conducted by CEA and IES (Southern Electronic Institute - CNRS - Montpellier 2 University). A rodlet extracted from a fuel rod base irradiated for five cycles in a French EDF commercial PWR has been re-instrumented with a fuel centerline thermocouple, a pressure transducer and an advanced acoustic sensor. This latter, patented by CEA and IES, is1 used in addition to pressure measurement to determine the composition of the gases located in the free volume and the molar fractions of fission gas and helium. This instrumented fuel rodlet has been re-irradiated in a specific rig, GRIFFONOS, located in the periphery of the OSIRIS experimental reactor core at CEA Saclay. First of all, an important design stage and test phases have been performed before the irradiation in order to optimize the response and the accuracy of the sensors: - To control the influence of the temperature on the acoustic sensor behaviour, a thermal mock-up has been built. - To determine the temperature of the gas located in the acoustic cavity as a function of the coolant temperature, and the average temperature of the gases located in the rodlet free volume as a function of the linear heat rate, thermal calculations have been achieved. The former temperature is necessary to calculate the molar fractions of the gases and the latter is used to calculate the total amount of released gas from the internal rod pressure measurements. - At the end of the instrumented rod manufacturing, specific inter- al free volume and pressure measurements have been carried out. Preliminary calculations of the REMORA 3 experiments have been performed from these measurements, with the aim to determine free volume evolution as a function of linear heat rate history. - A tracer gas has been added to the filling gas in order to optimize the accuracy of the helium balance at the time of the post irradiation examination. The two phases of the REMORA 3 irradiation have been achieved at the end of 2010 in the OSIRIS reactor. Slight acoustic signal degradation, observed during the test under high neutron and gamma flux, has led to an efficiency optimization of the signal processing. The instrumentation ran smoothly and allowed to reach all the experimental objectives. After non destructive examination performed in the Osiris reactor pool, typically gamma spectrometry and neutron radiography, the instrumented rod and the device have been disassembled. Then the instrumented rod has been transported to the LECA facility in Cadarache Centre for post irradiation examination. The internal pressure and volume of the rodlet as well as precise gas composition measurements will be known after puncturing step performed in a hot cell of this facility. That will allow us to qualify the in-pile measurements and to finalize the data which will be used for the validation of the fuel behaviour computer codes.
机译:为了提高对核燃料行为的了解,有必要开发在材料测试反应堆(MTR)的堆内实验中使用的先进仪器。为了获得瞬态工况下高燃尽型MOX燃料性能的数据,特别是为了区分裂变气体动力学和氦气释放并获取燃料电导率降低的数据,一项高度仪器化的堆内实验称为REMORA 3由CEA和IES(南方电子学院-CNRS-蒙彼利埃2大学)进行。在法国EDF商用压水堆中,从辐照了五个燃料棒的燃料棒底座提取的小棒已经重新装配了燃料中心线热电偶,压力传感器和高级声学传感器。后者由CEA和IES授予专利,除了用于压力测量外,还用于确定自由体积中的气体组成以及裂变气体和氦气的摩尔分数。这种仪器化的燃料棒已经在位于CEA Saclay的OSIRIS实验反应堆堆芯外围的特定设备GRIFFONOS中进行了重新辐照。首先,在辐照之前已经进行了重要的设计阶段和测试阶段,以优化传感器的响应和精度:-为了控制温度对声传感器行为的影响,需要进行热模拟已建成。 -为了确定作为冷却剂温度的函数而位于声腔中的气体的温度,以及作为线性热速率的函数而位于小棒自由体积中的气体的平均温度,已经实现了热计算。前者的温度对于计算气体的摩尔分数是必不可少的,而后者则用于根据内部杆压力测量值计算释放的气体总量。 -在仪表杆制造结束时,已经进行了特定的内部自由体积和压力测量。根据这些测量结果,对REMORA 3实验进行​​了初步计算,目的是确定自由体积随线性热速率历史的变化。 -示踪气体已添加到填充气体中,以优化辐照后检查时氦气平衡的准确性。 REMORA 3辐射的两个阶段已于2010年底在OSIRIS反应堆中完成。在高中子和伽马通量下的测试过程中观察到轻微的声信号衰减,导致信号处理的效率优化。仪器运行平稳,可以达到所有实验目标。在Osiris反应堆池中进行了无损检查(通常是伽马能谱法和中子射线照相)后,已拆下仪器的测杆和装置。然后将已检测的棒材运输到Cadarache中心的LECA设施进行放射后检查。在该设备的热室中执行穿刺步骤后,将知道小棒的内部压力和体积以及精确的气体成分测量结果。这将使我们能够验证堆中的测量结果并最终确定将用于验证燃油行为计算机代码的数据。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号