Experimental Study and Conjugate Heat Transfer Simulation of Turbulent Flow in a 90° Curved Square Pipe

Guo, Guanming and Kamigaki, Masaya and Zhang, Qiwei and Inoue, Yuuya and Nishida, Keiya and Hongou, Hitoshi and Koutoku, Masanobu and Yamamoto, Ryo and Yokohata, Hieaki and Sumi, Shinji and Ogata, Yoichi (2020) Experimental Study and Conjugate Heat Transfer Simulation of Turbulent Flow in a 90° Curved Square Pipe. Energies, 14 (1). p. 94. ISSN 1996-1073

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Abstract

This paper discusses the turbulent flow and heat transfer from a uniform air flow with high temperature to the outside through a 90° curved square pipe. Both conjugate heat transfer (CHT) simulation and experiments of temperature field measurements at cross sections of the pipe are performed. A straight pipe is investigated and compared with the 90° curved pipe. The temperature of the air flow at the inlet of the pipe is set at 402 K, and the corresponding Reynolds number is approximately 6 × 104. To obtain the spatial average temperature at each cross section, the temperature fields are measured along the streamwise of the pipes and in the circumferential direction using thermocouples at each cross section from the inlet to the outlet of both the straight and curved pipes. Furthermore, the simulation is performed for turbulent flow and heat transfer inside the pipe wall using the Re-normalization group (RNG) k-ε turbulence model and CHT method. Both the experimental and numerical results show that the curvature of the pipe result in a deviation and impingement in the high-temperature core and a separation between the wall and air, resulting in a secondary flow pattern of the temperature distribution.

Item Type: Article
Subjects: Opene Prints > Energy
Depositing User: Managing Editor
Date Deposited: 03 Mar 2023 06:52
Last Modified: 01 Jan 2024 12:46
URI: http://geographical.go2journals.com/id/eprint/625

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