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STRATEGY FOR INNOVATION IN HEAT EXCHANGER DESIGN: COMPUTATIONAL APPROACH COMBINED WITH EXPERIMENTAL TESTS LEADS TO PERFORMANCE IMPROVEMENT

机译:热交换器设计的创新策略:计算方法结合实验测试导致性能改进

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The paper describes the novel design strategy adopted by LU-VE Contardo (a major European manufacturer of air condenser, evaporators and liquid coolers) for the selection of the finned coil geometry, in both the development and the innovation processes of new products. The search of the optimal shape of the louvered fins used in modern, state-of-the-art heat exchangers requires an in-depth analysis of the flow regime crossing the fins and of the interactions between the velocity and the temperature field, nowadays possible by using Computational Fluid Dynamics. The numerical approach, when properly managed and integrated with the experimental activity for validating the results, provides an essential support for a rationale selection of the de-sign features of advanced heat exchangers. The presented results demonstrate how the adopted design strategy was successful in achieving a substantial enhancement of the heat transfer characteristics of the fins. Indeed, as demonstrated by the experimental campaign, when these novel, optimized fin shapes are applied to the design of the new series of industrial evaporators, they yield considerable results in terms of increase of the evaporator's capacity.
机译:本文介绍了Lu-Ve Contardo(一家大型欧洲空气冷凝器,蒸发器和液体冷却器)采用的新颖设计策略,用于选择翅片线圈几何形状,在开发和新产品的创新过程中。搜索现代,最先进的热交换器中使用的百叶窗翅片的最佳形状需要深入分析穿过翅片的流动状态和速度与温度场之间的相互作用,如今可能通过使用计算流体动力学。当与验证结果的实验​​活动进行适当管理和集成时,数值方法提供了对先进热交换​​器的解除符号特征的基本选择的基本支持。本结果表明,采用的设计策略如何成功地实现了翅片的传热特性的大量增强。实际上,正如实验活动所证明的那样,当这些新颖的优化翅片形状应用于新系列工业蒸发器的设计时,它们就蒸发器容量的增加而产生了相当大的结果。

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