OPTIMIZATION OF SHELL AND TUBE HEAT EXCHANGER DESIGN WITH INCLINED BAFFLES

Aulia Rahman, W. Winarto, Eko Siswanto
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Abstract

Shell and tube heat exchanger (STHeX) design development continues to be carried out to increase the effectiveness of a system. One way is to investigate the optimal baffle design. The new structure of STHeX with Inclined-Segmental Baffles is further investigated. The experiment was carried out using the numerical method Computing Fluid Dynamics (CFD) software with three-dimensional modeling. The results show that the heat change coefficient value is lower than conventional STHeX, However, the pressure drop value is reduced quite significantly. Therefore, it is necessary to know the overall heat transfer coefficient value per pressure loss (U/DeltaP). Hence, we get U/DeltaP values of 0.9 and 0.68 for STHeX with Inclined-Segmental Baffle and conventional STHeX, respectively. Thus, there is a significant increase ranging from 37-34%. It is concluded that STHeX with Inclined-Segmental baffles increases the U/DeltaP value significantly compared to conventional STHeX.
带倾斜挡板的管壳式换热器的优化设计
为了提高系统的效率,壳管式换热器(STHEX)的设计开发工作一直在进行。其中一种方法是研究最佳挡板设计。本文进一步研究了带有倾斜分段式挡板的新型 STHeX 结构。实验采用三维建模的数值方法计算流体动力学(CFD)软件进行。结果表明,热量变化系数值低于传统的 STHeX,但压降数值却明显降低。因此,有必要了解单位压力损失的总体传热系数值(U/DeltaP)。因此,带倾斜分段式挡板的 STHeX 和传统 STHeX 的 U/DeltaP 值分别为 0.9 和 0.68。因此,在 37% 至 34% 之间有明显的增加。由此得出结论,与传统 STHeX 相比,带倾斜分段式挡板的 STHeX 能显著增加 U/DeltaP 值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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