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Extended performance evaluation criteria for enhanced heat transfer surfaces: heat transfer through ducts with constant wall temperature

机译:增强的传热表面的扩展性能评估标准:壁温恒定时通过管道的传热

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Extended performance evaluation criteria equations for enhanced heat transfer surfaces based on the entropy production theorem have been developed to include the effect of fluid temperature variation along the length of a tubular heat exchanger with constant wall temperature as a boundary condition. The equations originate from various design constraints and generalize the performance evaluation criteria (PEC) for enhanced heat transfer techniques obtained by means of first-law analysis. The general evaluation criteria add new information to Bejan's entropy generation minimization (EGM) method assessing two objectives simultaneously. The application of this more comprehensive treatment of PEC compared to previous references is illustrated by the analysis of heat transfer and fluid friction characteristics of l0 spirally corrugated tubes assessing the benefit of these tubes as an augmentation technique. The results for different design constraints show that the optimum rib-height-to diameter ratio (e/D ) for these tubes is about 0.04.
机译:已经开发了基于熵产生定理的增强传热表面的扩展性能评估标准方程,以包括流体温度沿管状换热器的长度变化的影响,且壁温恒定作为边界条件。这些方程式源自各种设计约束,并概括了通过第一定律分析获得的增强传热技术的性能评估标准(PEC)。通用评估标准为同时评估两个目标的Bejan熵生成最小化(EGM)方法添加了新信息。通过对10根螺旋波纹管的传热和流体摩擦特性进行分析,评估了这些管作为增强技术的优势,从而说明了与以前的参考文献相比,这种更全面的PEC处理的应用。不同设计约束的结果表明,这些管的最佳肋骨高度与直径之比(e / D)约为0.04。

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