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On the Influence of Wire-Wrap Spacer in a Four Rod-Bundle cooled with Supercritical Water using CFD

机译:CFD研究超临界水冷却的四棒束中绕线式垫片的影响

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The High Performance Light Water Reactor (HPLWR) uses supercritical water (SCW) as coolant for the innovative three-pass reactor core. The reference design of the HPLWR includes wire-wrap as a spacer around the fuel rods in the fuel assembly. The thermophysical properties of SCW exhibit strong changes with temperature near the pseudocritical point at a given pressure. Literature reveals that such changes in thermo-physical properties result in special heat transfer behaviour, e.g. Enhanced or deteriorated heat transfer. Empirical correlations are not available for SC conditions and combined with the presence of a wire wrap as spacer. Therefore, CFD is used to predict the heat transfer coefficient and to investigate the effect of the wire wrap on the heat transfer rate. Numerical simulations have already demonstrated the feasibility of the Reynolds Averaged Navier-Stokes (RANS) based Computational Fluid Dynamics (CFD) approach in computing the heat transfer to supercritical fluids, such as SCW. In this paper, the influence of the selected HPLWR wire-wrap spacer on the heat transfer in a four rod-bundle is demonstrated using SCW. The flow in the considered four rodbundle is analyzed using a tested RANS approach at an operating pressure of 25 Mpa with a mass flux of 1332 kg/m2s and a inlet temperature of 310° C. Using hydraulically fully developed flow conditions, the heat transfer rate for the rod-bundle with and without wire-wrap spacer is analysed. The results demonstrate the enhanced cross flow and mixing in case of the bundle with wire wrap. This results in an improvement of the heat transfer rate and a more uniform distribution of the surface temperature of the rods.
机译:高性能轻水堆(HPLWR)使用超临界水(SCW)作为创新型三程反应堆堆芯的冷却剂。 HPLWR的参考设计包括绕线,作为燃料组件中燃料棒周围的垫片。在给定压力下,SCW的热物理性质随伪临界点附近的温度而发生强烈变化。文献表明,这种热物理性质的变化会导致特殊的传热行为,例如热导率。传热增强或恶化。经验相关性不适用于SC条件,并与绕线作为隔离物一起存在。因此,CFD用于预测传热系数并研究绕线对传热速率的影响。数值模拟已经证明了基于雷诺平均Navier-Stokes(RANS)的计算流体动力学(CFD)方法在计算超临界流体(如SCW)的热传递方面的可行性。在本文中,使用SCW证明了所选的HPLWR绕线垫片对四棒束中传热的影响。在25 Mpa的工作压力,1332 kg / m2s的质量通量和310°C的入口温度下,使用经过测试的RANS方法分析了所考虑的四个棒束中的流量。在充分利用水力开发的流量条件下,传热速率对带有和不带有绕线垫片的棒束进行了分析。结果表明,在捆扎金属丝的情况下,错流和混合得到增强。这导致了传热速率的改善和杆表面温度的更均匀分布。

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