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首页> 外文期刊>International Journal of Heat and Mass Transfer >Heat transfer enhancement of plate heat exchangers with symmetrically distributed capsules to generate counter-rotating vortices
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Heat transfer enhancement of plate heat exchangers with symmetrically distributed capsules to generate counter-rotating vortices

机译:具有对称分布胶囊的板式热交换器的传热增强,产生反向旋转涡旋

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摘要

Capsule-type plate heat exchanger takes advantages of low flow resistance and high overall performance. To obtain greater energy efficiency, a new type named symmetrical capsule plate heat exchanger (SCPHE) is constructed based on the idea of counter-rotating vortices. For SCPHEs, the adjacent capsules distribute symmetrically at the same-side of the plate, and the capsules keep an angle of 45° with the main flow direction. The heat transfer enhancement and the influences of capsule geometries were studied numerically. Counter-rotating vortices generating in the channels promote the swirl flow and disturb the boundary layer. Both fluid impinging and the vortices dominate the heat transfer enhancement, which become much stronger under smaller capsule, resulting in higher heat transfer coefficient. The correlations of Nu and / considering the effects of the capsule geometries are developed. SCPHEs show higher energy efficiency than capsule-type plate heat exchangers and chevron-type plate heat exchangers in the view of PEC and EEI
机译:胶囊式换热器热交换器具有低流动性和高整体性能的优点。为了获得更高的能量效率,基于反向旋转涡流的思想构建了一种新型的对称胶囊板热交换器(SCPHE)。对于SCPHE,相邻的胶囊在板的相同侧对称地分布,并且胶囊与主流量方向保持45°的角度。在数值上研究了热传递增强和胶囊几何的影响。在通道中产生的反向旋转涡流促进旋流并干扰边界层。撞击的液体和涡流都占据了传热增强,在较小的胶囊下变得更强烈,导致传热系数较高。开发了nu和/考虑胶囊几何效果的相关性。 SCHE在PEC和EEI的视图中显示比胶囊式换热器和雪佛龙型换热器更高的能量效率

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