首页> 外文会议>ASME international mechanical engineering congress and exposition >3D COMPUTATIONAL ANALYSIS OF THERMALHYDRAULIC PERFORMANCE OF LOUVERED FIN HEAT EXCHANGER WITH VARIABLE LOUVER ANGLE AND LOUVER PITCH
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3D COMPUTATIONAL ANALYSIS OF THERMALHYDRAULIC PERFORMANCE OF LOUVERED FIN HEAT EXCHANGER WITH VARIABLE LOUVER ANGLE AND LOUVER PITCH

机译:可变百叶窗角和百叶窗间距的翅片式换热器热工和液压性能的3D计算分析

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In the present study, 3-D numerical simulations on heat and fluid flow characteristics of double-row multi-louvered fins heat exchanger are carried out. The heat transfer improvement and the corresponding pressure drop amounts were investigated depending on louver angles in the range of 20°≤Θ≤30°, louver pitches of Lp=2,7mm, 3,5mm and 3,8mm and frontal velocities of U_(in) between 1.22 m/s and 3 m/s. The results are reported in terms of Colburn j-factor, Fanning friction factor f and area goodness factor j/f based on louver angle, louver pitch and Reynolds number. To understand local behavior of flow around louvered fins and heat exchanger tubes, flow visualization results of velocity vectors and stream-lines with temperature counters are presented. It is investigated that increasing louver angle enhances convective heat transfer while hydraulic performance decreases due to increased pressure drop. The flow noticeably behaves louver directed for all louver angles The flow can easily travel between different fins. This case study has been done to design and manufacture an industrial louver fin heat exchanger.
机译:在本研究中,对双排多百叶板式翅片换热器的热和流体流动特性进行了3-D数值模拟。根据百叶窗角度在20°≤Θ≤30°范围内,百叶窗间距Lp = 2.7mm,3.5mm和3,8mm以及正面速度U_( in)在1.22 m / s和3 m / s之间。结果以百叶窗角度,百叶窗间距和雷诺数为基础,以科尔本j因子,范宁摩擦因子f和面积良性因子j / f表示。为了了解百叶窗式散热片和换热器管周围的局部流动特性,给出了带有温度计数器的速度矢量和流线的流动可视化结果。研究表明,百叶窗角的增加会增强对流换热,而水压性能会由于压降的增加而降低。气流在所有百叶窗角度下都表现出明显的百叶窗定向。气流可以轻松地在不同的散热片之间移动。该案例研究已经完成,以设计和制造工业百叶窗式翅片热交换器。

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