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Investigation of hydrodynamic and heat transfer performances in grille-sphere composite pebble beds with DEM-CFD-Taguchi method

机译:用DEM-CFD-Taguchi方法研究格栅-球形复合卵石床的水动力和传热性能

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摘要

In the present paper, grille-sphere composite pebble bed (GSCPB) is developed to improve the hydrodynamic and heat transfer performances for high temperature gas cooled reactor with 10 MW (HTR-10). The fluid flow and heat transfer characteristics in typical GSCPB channels are numerically investigated, and the effects of typical parameters on the pressure drop and maximum pebble temperature inside are carefully analyzed with Taguchi method. Firstly, in the GSCPB bed, the grille can not only support the pebbles to achieve a structured packing quickly, but can also enhance convective heat transfer from pebbles to the fluid. With proper design of grille inside, the heat transfer rate would be improved and the pressure drop would be reduced in GSCPB channel when compared with traditional random pebble bed. Secondly, the effect of sub-channel width to pebble diameter ratio (N) on both the hydrodynamic and heat transfer performances in GSCPB channel is quite significant. The contribution ratios of N on the pressure drop and maximum pebble temperature in GSCPB channel are of 86.3% and 81.0%, respectively. Finally, with Taguchi method, the optimum design parameter combinations are obtained for the lowest pressure drop and lowest maximum pebble temperature in GSCPB channels, respectively. (C) 2018 Elsevier Ltd. All rights reserved.
机译:为了提高10 MW高温气冷堆(HTR-10)的流体力学和传热性能,本文开发了格栅球复合卵石床(GSCPB)。数值研究了典型GSCPB通道中的流体流动和传热特性,并用Taguchi方法仔细分析了典型参数对内部压降和最高卵石温度的影响。首先,在GSCPB床中,格栅不仅可以支撑鹅卵石以快速实现结构化填充,还可以增强从鹅卵石到流体的对流传热。与传统的随机卵石床相比,采用适当的格栅内部设计,可以提高GSCPB通道的传热速率,并减少压降。其次,子通道宽度与卵石直径之比(N)对GSCPB通道的水动力和传热性能都具有显着影响。 N对GSCPB通道压降和最高卵石温度的贡献率分别为86.3%和81.0%。最后,使用Taguchi方法,分别针对GSCPB通道中的最低压降和最低最大卵石温度获得了最佳设计参数组合。 (C)2018 Elsevier Ltd.保留所有权利。

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