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首页> 外文期刊>Journal of thermal analysis and calorimetry >Energy and exergy analysis and optimization of helically grooved shell and tube heat exchangers by using Taguchi experimental design
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Energy and exergy analysis and optimization of helically grooved shell and tube heat exchangers by using Taguchi experimental design

机译:用TAGUCHI实验设计,能源和螺旋槽壳和管热交换器优化及优化

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摘要

In this paper, for improvement of the performance of shell and tube heat exchanger, the effect of adding circular grooves on the shell of heat exchanger is considered numerically. The grooves are created in different heights but with the same pitch of the coil. The obtained results consist of both qualitative and quantitative data affected by geometrical parameters. According to the numerical results, the groove increases the heat transfer rate up to 5% and does not affect the pressure drop dramatically. By use of Taguchi experimental design and exergy analysis, the performance of the heat exchanger is examined in different working conditions, such as different level of cold inlet temperature, cold fluid flow rate, and groove height (roughness value). The results of this consideration revealed that the heat exchanger thermal efficiency varies from 23 to 49% in various conditions and also both the flow rate and the inlet temperature have the same effect on the exergy losses. The optimum groove height is presented equally to 10 mm.
机译:在本文中,改善的管壳式换热器的性能,在热交换器的壳加入圆形槽的效果进行了数值考虑。这些槽在不同的高度,但与线圈的相同的间距产生。将所得到的结果由受几何参数的定性和定量的数据。根据计算结果,槽增大了热传输率高达5%,并且不显着影响压降。通过使用田口实验设计和有效能分析的,热交换器的性能在不同的工作条件,如不同水平的冷入口温度,冷流体流率,以及槽的高度(粗糙度值)进行检测。这种考虑的结果显示,该热交换器的热效率从在各种条件下23〜49%,并且还既流速和入口温度对有效能损失相同的效果而变化。最佳槽高度相等地呈现至10mm。

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