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ISSN 打印: 1064-2285

ISSN 在线: 2162-6561

The Impact Factor measures the average number of citations received in a particular year by papers published in the journal during the two preceding years. 2017 Journal Citation Reports (Clarivate Analytics, 2018) IF: 1.7 To calculate the five year Impact Factor, citations are counted in 2017 to the previous five years and divided by the source items published in the previous five years. 2017 Journal Citation Reports (Clarivate Analytics, 2018) 5-Year IF: 1.4 The Immediacy Index is the average number of times an article is cited in the year it is published. The journal Immediacy Index indicates how quickly articles in a journal are cited. Immediacy Index: 0.6 The Eigenfactor score, developed by Jevin West and Carl Bergstrom at the University of Washington, is a rating of the total importance of a scientific journal. Journals are rated according to the number of incoming citations, with citations from highly ranked journals weighted to make a larger contribution to the eigenfactor than those from poorly ranked journals. Eigenfactor: 0.00072 The Journal Citation Indicator (JCI) is a single measurement of the field-normalized citation impact of journals in the Web of Science Core Collection across disciplines. The key words here are that the metric is normalized and cross-disciplinary. JCI: 0.43 SJR: 0.318 SNIP: 0.568 CiteScore™:: 3.5 H-Index: 28

Indexed in

NUMERICAL SIMULATION AND OPTIMIZATION OF CONVECTIVE HEAT TRANSFER AND PRESSURE DROP IN CORRUGATED TUBES

卷 43, 册 6, 2012, pp. 527-544
DOI: 10.1615/HeatTransRes.2012005454
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摘要

The fluid flow and heat transfer inside corrugated tubes have been studied numerically using the JL (Jones and Lauder, 1973) low-Re k−ε turbulence model. The simulated results agree well with the experimental results. Numerical calculation results widen the Reynolds number range of the fluid flow and heat transfer correlation for corrugated tubes. It is found that the tendency of the friction coefficient to variation with the Reynolds number for the corrugated tubes follows the exponential law in a wider Reynolds number range. Effects of different ripple heights and ripple spacings on fluid flow and heat transfer are investigated, and comprehensive evaluation is made for the performance of the model parameters. The results show that the effects of ripple height on flow and heat transfer inside corrugated tubes are more significant than those of ripple spacing. The optimized calculation and analysis are performed; it is found that the enhancement of heat transfer in corrugated tubes could be realized only at high Reynolds numbers, there exists an optimal Reynolds number range (10,000 < Re < 12,000) where the heat transfer factors of η reach the peak, hence, the heat transfer and fluid flow in corrugated tubes are optimal.

对本文的引用
  1. Kareem Zaid S., Abdullah Shahrir, Lazim Tholudin M., Mohd Jaafar M.N., Abdul Wahid Ammar F., Heat transfer enhancement in three-start spirally corrugated tube: Experimental and numerical study, Chemical Engineering Science, 134, 2015. Crossref

  2. Kareem Zaid S., Mohd Jaafar M.N., Lazim Tholudin M., Abdullah Shahrir, Abdulwahid Ammar F., Passive heat transfer enhancement review in corrugation, Experimental Thermal and Fluid Science, 68, 2015. Crossref

  3. Promthaisong P., Jedsadaratanachai W., Eiamsa-ard S., 3D Numerical study on the flow topology and heat transfer characteristics of turbulent forced convection in spirally corrugated tube, Numerical Heat Transfer, Part A: Applications, 69, 6, 2016. Crossref

  4. Balla Hyder H., Enhancement of heat transfer in six-start spirally corrugated tubes, Case Studies in Thermal Engineering, 9, 2017. Crossref

  5. Yu Jiawen, Chen Jie, Mi Xiaoguang, Jiang Yiqiang, Fan Xiaozhou, Zhu Zuchao, Study on flow and heat transfer characteristics for propane in twisted oval and the two-start twisted helically wound tube, Advances in Mechanical Engineering, 13, 12, 2021. Crossref

  6. Al‐Obaidi Ahmed Ramadhan, Alhamid Jassim, Saleh Qasim, Analysis on flow structure and improvement of heat transfer in 3D circular tube with varying axial groove turbulator configurations, Heat Transfer, 50, 7, 2021. Crossref

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