Numerical Investigation on Double Shell-Pass Shell-and-Tube Heat Exchanger with Continuous Helical Baffles

Shui Ji, W. Du, Peng Wang, Lin Cheng
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引用次数: 17

Abstract

A double shell-pass shell-and-tube heat exchanger with continuous helical baffles (STHXCH) has been invented to improve the shell-side performance of STHXCH. At the same flow area, the double shell-pass STHXCH is compared with a single shell-pass STHXCH and a conventional shell-and-tube heat exchanger with segmental baffles (STHXSG) by means of numerical method. The numerical results show that the shell-side heat transfer coefficients of the novel heat exchanger are 12–17% and 14–25% higher than those of STHXSG and single shell-pass STHXCH, respectively; the shell-side pressure drop of the novel heat exchanger is slightly lower than that of STHXSG and 29–35% higher than that of single shell-pass STHXCH. Analyses of shell-side flow field show that, under the same flow rate, double shell-pass STHXCH has the largest shell-side volume average velocity and the most uniform velocity distribution of the three STHXs. The shell-side helical flow pattern of double shell-pass STHXCH is more similar to longitudinal flow than that of single shell-pass STHXCH. Its distribution of fluid mechanical energy dissipation is also uniform. The double shell-pass STHXCH might be used to replace the STHXSG in industrial applications to save energy, reduce cost, and prolong the service life.
带连续螺旋折流板的双壳通壳管换热器数值研究
为了提高连续螺旋挡板壳管换热器的壳侧性能,发明了一种双层壳通壳管换热器。在相同流面积下,采用数值方法对双壳通式换热器与单壳通式换热器和传统管壳式换热器进行了比较。数值计算结果表明,新型换热器壳侧换热系数分别比单壳通STHXSG和单壳通STHXCH高12-17%和14-25%;新型换热器壳侧压降略低于STHXSG,比单壳通STHXCH高29-35%。壳侧流场分析表明,在相同流量下,双壳通STHXCH的壳侧体积平均速度最大,且速度分布最均匀。双壳通STHXCH的壳侧螺旋流态比单壳通STHXCH更接近纵向流态。其流体机械能耗散分布也是均匀的。在工业应用中,可采用双壳通STHXCH代替STHXSG,以达到节能、降低成本、延长使用寿命的目的。
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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