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Investigation of Exergy Destruction Based on Avoidable and Unavoidable Concepts for Helical Coils

机译:基于可避免和不可避免概念的螺旋线圈火用破坏研究

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An inevitable problem challenges heat exchanger designers is that the heat transfer augmentation in a thermal system is always achieved at the expense of an increase in pressure loss. Thus, the optimal trade-off by choosing the most proper configuration and best flow condition has become the critical problem for design work. The brief survey on literature shows that optimal Reynolds number (i.e. the Reynolds number which corresponds to minimum entropy generation) of laminar forced convection in a helical tube, was specified based on minimum entropy generation. Therefore, the present study analyzes the thermodynamic potential of improvement for steady, laminar, fully developed, forced convection in a helical coiled tube subjected to uniform wall temperature based on the concept of avoidable and unavoidable exergy destruction. The influence of coil curvature ratio, dimensionless inlet temperature difference, dimensionless passage length of the coil, and fluid properties on avoidable exergy destruction have been investigated for water as working fluid. Results show considerable potential ofthermodynamic optimization of helical coil tubes.
机译:热交换器设计人员面临的一个不可避免的问题是,热系统中的传热增加总是以增加压力损失为代价的。因此,通过选择最合适的配置和最佳的流动条件来实现最佳折衷已成为设计工作的关键问题。对文献的简要调查显示,基于最小熵产生来指定螺旋管中的层流强制对流的最佳雷诺数(即,对应于最小熵产生的雷诺数)。因此,本研究基于可避免和不可避免的火用破坏概念,分析了在均匀壁温下螺旋盘管中稳定,层状,充分发展的强迫对流的改进的热力学潜力。对于水作为工作流体,已经研究了盘管曲率比,无因次入口温度差,无因次盘管通过长度以及流体性能对可避免的火用破坏的影响。结果显示出相当大的潜力 螺旋线圈管的热力学优化。

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