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Please use this identifier to cite or link to this item: http://scholars.ntou.edu.tw/handle/123456789/26453
Title: Numerical analysis of flow configuration and channel design for thermoelectric OTEC systems
Authors: Wu, Chun-, I 
Tseng, Wei-Lun
Wang, Bo-Xiang
Keywords: Ocean thermal energy conversion (OTEC);Renewable marine energy systems;Thermoelectric power generation;Bi2Te3;Thermoelectric materials;Thermoelectric generators;Renewable energy;Energy efficiency;Finite element method
Issue Date: 2025
Publisher: NATURE PORTFOLIO
Journal Volume: 15
Journal Issue: 1
Source: SCIENTIFIC REPORTS
Abstract: 
This research examines the optimized integration of Bi2Te3-based thermoelectric generators (TEGs) in Ocean Thermal Energy Conversion (OTEC) systems, evaluating their performance via detailed numerical analysis. We conducted finite element simulations using COMSOL Multiphysics to analyze thermoelectric generators (TEGs) placed between a warm surface and cold deep seawater channels under different operational conditions. The research examined parallel and counter flow configurations at Reynolds numbers between 3987 and 73,800, with channel heights varying from 0.002 to 0.072 m. Results indicate that Reynolds numbers above 12,000 ensure stable heat supply to TEGs, resulting in a consistent output power of 3.01 W. The optimal net power of 1.45 W was attained at a channel height of 0.002 m, attributed to reduced pump power consumption. A comparative analysis of Bi2Te3-based material combinations demonstrated that improved electrical and decreased thermal conductivity notably enhanced system performance. This study offers essential insights for improving the design and implementation of TEG-OTEC systems, especially in offshore contexts where operational efficiency and system durability are critical, thereby contributing to the advancement of sustainable ocean energy technologies.
URI: http://scholars.ntou.edu.tw/handle/123456789/26453
ISSN: 2045-2322
DOI: 10.1038/s41598-025-06415-w
Appears in Collections:機械與機電工程學系
海洋文化研究所

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