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NUCLEATE POOL BOILING ON TUBES WITH SUBSURFACE MINI AND MICRO CHANNELS

机译:核心池煮沸,带有地下迷你和微通道

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Tubes with subsurface mini- and micro channels are widely used in boiling devices. Today, the design of these tubes is based on empirical investigations because reliable theoretical or numerical design methods are not available, and the heat transfer performance characteristics vary strongly e.g. for different fluids, system pressures and heat fluxes. The presented study approaches the subject of interest from 3 different paths: (i) macroscopic heat transfer performance measurements; (ii) optical measurements of the thermal and hydrodynamic phenomena inside the subsurface channels with very high spatial and temporal resolution; (iii) development of a computational model. While path (i) is a standard procedure in the scientific community, path (ii) is a completely new approach, and only the combination of (i) and (ii) is a solid basis for the physically based model development in path (iii). Tubes with different subsurface channels and micro pin-fins are used in combination with different fluids at different system pressures. The results are presented and discussed.
机译:具有地下迷你和微通道的管广泛用于沸腾装置。如今,这些管的设计基于经验研究,因为不可用的可靠理论或数值设计方法,传热性能特征如此强烈变化。对于不同的流体,系统压力和热通量。提出的研究方法从3种不同路径中接近兴趣的主题:(i)宏观传热性能测量; (ii)具有非常高空间和时间分辨率的地下通道内的热和流体动力现象的光学测量; (iii)开发计算模型。虽然路径(i)是科学界的标准程序,但路径(ii)是一种全新的方法,并且只有(i)和(ii)的组合是在路径中的物理上模型开发的坚实基础(III )。具有不同地下通道和微引脚翅片的管与不同系统压力的不同流体组合使用。提出和讨论了结果。

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