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Flow analysis of an innovative compact heat exchanger channel geometry

机译:创新的紧凑型热交换器通道几何形状的流量分析

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In the framework of CEA R&D program to develop an industrial prototype of sodium-cooled fast reactor named ASTRID, the present work aims to propose an innovative compact heat exchanger technology to provide solid technological basis for the utilization of a Brayton gas-power conversion system, in order to avoid the energetic sodium-water interaction if a traditional Rankine cycle was used. The aim of the present work is to propose an innovative compact heat exchanger channel geometry to potentially enhance heat transfer in such components. Hence, before studying the innovative channel performance, a solid experimental and numerical database is necessary to perform a preliminary thermal-hydraulic analysis. To do that, two experimental test sections are used: a Laser Doppler Velocimetry (LDV) test section and a Particle Image Velocimetry (PIV) test section. The acquired experimental database is used to validate the Anisotropic Shear Stress Transport (ASST) turbulence model. Results show a good agreement between LDV, PIV and ASST data for the pure aerodynamic flow. Once validated the numerical model, the innovative channel flow analysis is performed. Principal and secondary flow has been analyzed, showing a high swirling flow in the bend region and demonstrating that mixing actually occurs in the mixing zone. This work has to be considered as a step forward the preposition of a reliable high-performance component for application to ASTRID reactor as well as to any other industrial power plant dealing needing compact heat exchangers. (C) 2015 Elsevier Inc. All rights reserved.
机译:在CEA研发计划的框架下,开发名为ASTRID的钠冷快堆的工业原型,目前的工作旨在提出一种创新的紧凑型换热器技术,为利用布雷顿(Brayton)气力转换系统提供坚实的技术基础,如果使用传统的兰金循环,以避免高能的钠水相互作用。本工作的目的是提出一种创新的紧凑型热交换器通道几何形状,以潜在地增强这种部件中的热传递。因此,在研究创新的通道性能之前,必须有一个可靠的实验和数值数据库来进行初步的热工水力分析。为此,使用了两个实验测试部分:激光多普勒测速(LDV)测试部分和粒子图像测速(PIV)测试部分。所获得的实验数据库用于验证各向异性剪应力传输(ASST)湍流模型。结果表明,LDV,PIV和ASST数据之间对于纯空气动力流有很好的一致性。一旦验证了数值模型,便会执行创新的通道流量分析。分析了一次和二次流动,显示出在弯曲区域有高涡旋流动,表明混合实际上发生在混合区中。这项工作必须被视为迈向为ASTRID反应堆以及需要紧凑型热交换器的任何其他工业发电厂应用可靠的高性能组件的前提的一步。 (C)2015 Elsevier Inc.保留所有权利。

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