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Thermodynamic analysis of optimal curvature ratio for fully developed laminar forced convection in a helical coiled tube with uniform heat flux

机译:具有均匀热通量的螺旋盘管中完全展开的层流强迫对流的最佳曲率比的热力学分析

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摘要

In the present paper, the optimal curvature ratio for steady, laminar, fully developed forced convection in a helical coiled tube with constant wall heat flux was analyzed by thermodynamic second law based on minimal entropy generation principle. Two working fluids, including air and water, are considered. The entropy generation analysis covers a Reynolds number (Re) range of 100 to 10000, a coil curvature ratio (δ) range of 0.01 to 0.3, and two dimensionless duty parameters related with fluid properties, wall heat flux and mass flow rate, η{sub}1 range of 0.1 to 3.0, and η{sub}2/10{sup}20 range of 0.01 to 1.0. The optimal δ for cases with various combinations of the design parameters is given in the present paper. In addition, a correlation equation for the optimal δ as a function of Re, η{sub}1 and η{sub}2 is proposed through a least-square-error analysis. For a thermal system composed of helical coiled tubes with fixed Re, wall heat flux and mass flow rate, the optimal δ should be selected so that the system could have the best exergy utilization and least irreversibility.
机译:本文基于热力学第二定律,基于最小熵产生原理,对壁流恒定的螺旋盘管中稳定,层状,充分展开的强制对流的最佳曲率比进行了分析。考虑了两种工作流体,包括空气和水。熵产生分析涵盖100到10000的雷诺数(Re)范围,0.01到0.3的线圈曲率比(δ)范围以及与流体特性,壁热通量和质量流率η{ sub} 1范围为0.1到3.0,η{sub} 2/10 {sup} 20范围为0.01到1.0。本文给出了设计参数不同组合情况下的最佳δ值。此外,通过最小二乘误差分析,提出了最佳δ作为Re,η{sub} 1和η{sub} 2的函数的相关方程。对于由固定Re,壁热通量和质量流量固定的螺旋形盘管组成的热力系统,应选择最佳δ,以使系统具有最佳的火用利用率和最小的不可逆性。

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