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SIMULATION OF MULTIPHASE HEAT TRANSFER IN PEBBLE BED MODULAR REACTOR

机译:卵石床模块化反应器中多相传热的模拟

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摘要

Computational Fluid Dynamics in conjunction with an Eulerian multiphase model of heat transfer in a Pebble Bed Modular Reactor (PBMR) was validated against experimental data obtained in a test rig. The cooling gas and packed fuel pebbles constituted two phases. The velocity of pebble phase was fixed to zero and a drag law accounting for a packed bed condition was used. The density of the gas phase varied with temperature. Volume averaged effective thermal conductivities accounting for radiation and packed spheres geometry were used for both phases. Model predictions compared favorably with the experiment for two gases - helium and nitrogen and two power levels. It was found that accounting for increased affective porosity close to walls results in more realistic velocity field prediction.
机译:结合在试验床中获得的实验数据验证了在卵石床模块化反应器(PBMR)中结合传热的欧拉多相模型的计算流体动力学。冷却气体和填充燃料小卵石构成两个阶段。卵石相的速度固定为零,并使用考虑填充床条件的阻力定律。气相密度随温度变化。两个阶段均使用考虑了辐射和填充球体几何形状的体积平均有效热导率。模型预测与两种气体-氦气和氮气和两种功率水平的实验相比具有优势。已发现,考虑到靠近壁的有效孔隙率的增加,将导致更实际的速度场预测。

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