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Thermal Optimization of a Circular-Sectored Finned Tube Using a Porous Medium Approach

机译:多孔介质翅片管的热优化

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The present work investigates the heat transfer characteristics of a laminar fully developed forced convection in a circular-sectored finned tube with axially uniform heat flux and peripherally uniform wall temperature. The tubes with circular-sectored fins are modeled as a fluid-saturated porous medium. Using the Brinkman-extended Darcy model for fluid flow and the two-equation model for heat transfer, the analytical solutions for both velocity and temperature distributions are obtained and compared with the exact solution for fluid flow and the numerical solutions for conjugate heat transfer in order to validate the porous medium approach. The agreement between the solutions based on the porous medium approach and the conventional method is close within 5.3 percent. Based on the analytical solutions, parameters of engineering importance are identified to be the angle of the circular sector a and the effective conductivity ratio C, and their effects on fluid flow and heat transfer are studied. Also, the total thermal resistance is derived from the analytical solutions and minimized in order to optimize the thermal performance of a tube with circular-sectored fins.
机译:本工作研究了在轴向扇形的翅片管中轴向完全一致的热通量和周向均匀壁温的层流完全展开的强制对流的传热特性。具有圆形扇形翅片的管建模为流体饱和的多孔介质。使用Brinkman扩展的Darcy流体流动模型和热传递的两方程模型,获得了速度和温度分布的解析解,并与流体流动的精确解和共轭传热的数值解进行了比较验证多孔介质方法。基于多孔介质方法的溶液与常规方法之间的一致性接近5.3%。基于解析解,确定了具有工程重要性的参数为圆形扇形的角度α和有效电导率C,并研究了它们对流体流动和传热的影响。同样,总热阻源自分析解决方案,并将其最小化,以优化具有圆形扇形翅片的管的热性能。

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