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A numerical model for a dew-point counter-flow indirect evaporative cooler using a modified boundary condition and considering effects of entrance regions

机译:一种使用改进边界条件的露点反流间隔蒸发冷却器的数值模型及考虑入口区域的影响

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Highlights?A new numerical model was presented for dew-point coolers.?The model was developed using a modified boundary condition.?Effect of developing flows in channels was integrated into the model.?The model has superior accuracy compared to previous models.?Parametric analysis of the system was studied using the numerical model.AbstractA numerical model for dew-point counter-flow indirect evaporative coolers was presented. Unlike the conventional models, a more realistic boundary condition on separating wall was obtained by simultaneous solving of momentum, energy, and mass transfer equations of flows coupled. In addition, the model's accuracy was increased through considering 3D hydrodynamical and thermal developing flows. The model predicted the supply air temperature and the results were compared to experimental data as well as previous numerical models. It was shown that the maximum deviation of the supply air temperature was under ±3.53 %. It was found that these modifications on the numerical model reduced the computation error about 41.1 %. Moreover, it was found that the difference between maximum errors of 3D and 2D models was about 4.5 %; however, the 3D model consumes 14 times more CPU time. Finally, the sensitivity of the system's operation was studied using the developed model.]]>
机译:<![cdata [ 亮点 为露点冷却器提出了一种新的数值模型。 模型是使用修改的开发的模型边界条件。 在频道中开发流程的效果集成到模型中。 与以前的型号相比,该模型具有卓越的准确性。 使用数值模型研究了系统的参数分析。 抽象 呈现了露点计数器间接蒸发冷却器的数值模型。与传统模型不同,通过同时求解耦合的流动的动量,能量和质量传递方程,获得分离壁的更现实的边界条件。此外,通过考虑3D流体动力学和热显影流动,通过考虑模型的准确性。该模型预测供应空气温度,结果与实验数据以及先前数值模型进行比较。结果表明,供应空气温度的最大偏差在±3.53%下。发现这些修改在数值模型上降低了约41.1%的计算误差。此外,发现3D和2D模型的最大误差之间的差异约为4.5%;但是,3D模型消耗了更多CPU时间的14倍。最后,使用开发的模型研究了系统操作的灵敏度。 ]]>

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