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首页> 外文期刊>International Journal of Thermal Sciences >Non-local entropy evolution in heat exchangers with elliptical and circular tube geometries
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Non-local entropy evolution in heat exchangers with elliptical and circular tube geometries

机译:具有椭圆形和圆形管几何形状的热交换器中的非局部熵演变

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摘要

Numerical simulations of the entropy transportation process inside a plate and tube heat exchanger are presented. Entropy levels around tubes with circular and elliptical cross sections are analyzed and compared. The purpose of the comparison is to determine how the entropy flux contributes to increase, or decrease, the value of the entropy in certain regions of the flow field. This is accomplished by numerically integrating the Reynolds averaged transport equations for the mass, momentum, energy and entropy, in a three dimensional domain. A k-epsilon-2L model is used to account for the fluctuations appearing in the laminar-to-turbulent transitional regime of the flow. The importance of entropy convection, relative to the generation of entropy, is underlined by means of a direct comparison through a series of visualization maps. This approach allows some useful insights about the evolution of the entropy field in complex geometries. For example, in this case certain troublesome regions where the entropy field reaches high values can be identified and, therefore, design recommendations can be stated in order to increase the thermal efficiencies of the devices under consideration.
机译:提出了板材和管热交换器内熵运输过程的数值模拟。分析和椭圆形横截面周围的熵水平并进行比较。比较的目的是确定熵磁通如何有助于增加或减少流场的某些区域中熵的值。这是通过在三维域中的质量,动量,能量和熵,在三维域中的雷诺平均传输方程数值整合来实现的。用于k-epsilon-2l模型用于考虑流动的层流动过渡方案中出现的波动。相对于熵的产生,熵对流的重要性通过通过一系列可视化地图直接比较强调。这种方法允许关于复杂几何形状中熵场的演变的一些有用的见解。例如,在这种情况下,可以识别熵场达到高值的某些麻烦区域,因此,可以说明设计建议,以增加所考虑的器件的热效。

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