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Publishing Language: Chinese | Open Access

Comparative Study of Gravity-Driven and Pump-Driven CO2 Two-Phase Thermosyphon Loop

Yulong Song1,2Wencheng Wang1,2Zhen Tong1,2( )Zekun Han1,2Songtao Hu1,2
School of Environmental and Municipal Engineering, Qingdao University of Technology, Qingdao, 266520, China
Shandong Engineering Research Center of Healthy Environment and Low-Carbon Energy, Qingdao, 266520, China
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Abstract

Pump-driven two-phase thermosyphon loops (TPTLs) have garnered widespread attention to improve the performance and applicability of TPTLs under various conditions. This study compared the heat-transfer performance and operational states of a TPTL using two parallel downcomer branches to switch between gravity- and pump-driven TPTL operation modes. Significant differences were observed in the normal working load range of the TPTL when the working fluid flowed through downcomer branches 1 and 2 (pump off), or only through branch 2 (pump on). The presence of a liquid pump increased the resistance to the fluid flow within the loop. When the pump was turned off, the heat-transfer limit of the TPTL decreased, and it increased when the pump was on. During the oscillatory operational stage, the reservoir was unable to effectively separate the vapor and liquid. When the working fluid flowed through downcomer branch 2 (pump off), the TPTL exhibited a longer fluctuation cycle and greater amplitude compared to those during the flow through branch 1. In the stable operational stage, the reservoir provided better vapor-liquid separation.

CLC number: TB657.5; TK172.4 Document code: A Article ID: 0253-4339(2025)06-0090-08

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Journal of Refrigeration
Pages 90-97

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Cite this article:
Song Y, Wang W, Tong Z, et al. Comparative Study of Gravity-Driven and Pump-Driven CO2 Two-Phase Thermosyphon Loop. Journal of Refrigeration, 2025, 46(6): 90-97. https://doi.org/10.12465/j.issn.0253-4339.2025.06.090

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Received: 23 August 2024
Revised: 09 October 2024
Accepted: 04 November 2024
Published: 16 December 2025
© 2025 The Editorial Office of Journal of Refrigeration

This is an open access article under the terms of the Creative Commons Attribution 4.0 International License (CC BY 4.0, http://creativecommons.org/licenses/by/4.0/).