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FLOW AND TEMPERATURE FIELDS MEASUREMENT INSIDE ROD BUNDLE BY THE COMBINED USE OF PIV AND LIF TECHNIQUE

机译:结合使用PIV和LIF技术测量杆束内的流场和温度场

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Thermal hydraulic research of reactor core is important in nuclear energy applications, the flow and heat transfer characteristics of coolant in reactor fuel assembly has a great influence on the performance and safety of nuclear power plants. Particle image velocimetry (PIV) and Laser induced fluorescence (LIF) are the instantaneous, non-intrusive, whole-field fluid mechanics measuring method. In this study, the simultaneous measurement of flow field and temperature field for a rod bundle was conducted using PIV and LIF technique. A facility system, utilizing the matching index of refraction approach, has been designed and constructed for the measurement of velocity and temperature in the rod bundle. In order for further study on complex heat and mass transfer characteristic of rod bundle, the single-phase experiments on the heating conditions are performed. One of unique characteristics of the velocity and temperature distribution downstream the spacer grid was obtained. The experimental results show that the combined use of PIV and LIF technique is applied to the measurement of multi-physical field in a rod bundle is feasible, the measuring characteristics of non-intrusive ensured accuracy of whole field data. The whole field experimental data obtained in rod bundle benefits the design of spacer grid geometry.
机译:反应堆堆芯的热工水力研究在核能应用中具有重要意义,反应堆燃料组件中冷却剂的流动和传热特性对核电厂的性能和安全性有很大影响。粒子图像测速(PIV)和激光诱导荧光(LIF)是瞬时,非侵入性的全场流体力学测量方法。在这项研究中,使用PIV和LIF技术同时测量了棒束的流场和温度场。已经设计并构造了一种利用匹配折射率方法的设施系统,用于测量棒束中的速度和温度。为了进一步研究棒束的复杂的传热传质特性,进行了加热条件的单相实验。获得了间隔栅下游的速度和温度分布的独特特征之一。实验结果表明,将PIV和LIF技术相结合用于杆束中多物理场的测量是可行的,非侵入性的测量特性保证了全场数据的准确性。在棒束中获得的整个现场实验数据有益于间隔格几何结构的设计。

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