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Numerical Heat Transfer, Part A: Applications
An International Journal of Computation and Methodology
Volume 68, 2015 - Issue 6
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Original Articles

Fully-Developed Flow in a Furrowed Wavy Channel: Characterization of Unsteady Flow Regimes and Its Effect on Thermal-Hydraulic Performance

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Pages 638-662 | Received 08 Sep 2014, Accepted 01 Dec 2014, Published online: 23 Apr 2015

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (3)

Sankaravarrier Harikrishnan & Shaligram Tiwari. (2022) Effect of Top Wall Configuration on Unsteady Flow and Heat Transfer Characteristics of Sinusoidal Wavy Channels. Heat Transfer Engineering 43:3-5, pages 423-436.
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Mohammad Reza Habibi & Mohammad Reza Salimpour. (2019) Numerical Study of Nanofluid Convective Heat Transfer in Sinusoidal Tubes. Heat Transfer Engineering 40:15, pages 1259-1267.
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Yue-Tzu Yang, Hsiang-Wen Tang & Shih-Jie Jian. (2016) Numerical simulation and optimization of turbulent nanofluids in a three-dimensional wavy channel. Numerical Heat Transfer, Part A: Applications 69:10, pages 1169-1185.
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Articles from other publishers (3)

S. Harikrishnan, Prashant Kumar & Shaligram Tiwari. (2021) Flow transition in periodically fully developed wavy channels. Physics of Fluids 33:7.
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Richie Garg & Amit Agrawal. (2019) Influence of three-dimensional transverse micro-ridges on the Poiseuille number in a gaseous slip flow. SN Applied Sciences 1:9.
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S. Harikrishnan & Shaligram Tiwari. (2018) Effect of skewness on flow and heat transfer characteristics of a wavy channel. International Journal of Heat and Mass Transfer 120, pages 956-969.
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