- 個人簡介
- 研究領域
- 教學課程
- 研究計畫
- 研究著作
學歷
明尼蘇達大學, 機械工程博士, 2024
臺灣大學, 機械工程碩士, 2016
臺灣大學, 機械工程學士, 2014
經歷
- 2025 - 迄今, 國立臺灣大學 機械工程學系 助理教授
- 2024, 美國明尼蘇達大學 機械工程學系 博士後研究員
- 2019 - 2024, 美國明尼蘇達大學 機械工程學系 研究助理
- 2016 - 2019, 國立臺灣大學 機械工程學系 教學助理
學術榮譽及獎項
- 2024 Charles C.S. Song Fellowship
- 2024 Graduate teaching fellowship
- 2022 SAFL Student Travel Fund Award
- 2019-2020 UMN Mechanical Engineering department fellowship
研究專長
流體力學 — 數學建模與實驗
液滴/顆粒與自由介面/低雷諾數流體動力學
實驗研究方向
流體介面力學實驗室旨在研究工程及自然界中涉及流體-流體介面以及流體-固體介面的問題。我們的研究興趣在於透過實驗與數學建模,發掘全新流體力學現象背後的基本物理機制及其工程應用。目前的研究方向包括:
1. 顆粒筏的形成與崩解:當顆粒懸浮於自由界面時,它們會通過毛細作用力、顆粒潤濕性、重力等因素產生複雜的相互作用。這些作用皆影響其自組裝行為與穩定性。透過進一步研究顆粒筏的行為,我們可以更好地理解其物理機制,並將其應用於材料加工及環境修復等領域。
2. 液滴的動態潤濕過程:動態潤濕指的是液滴在固體表面上擴展或收縮的過程,液滴的潤濕行為取決於流體的性質、固體表面的特性以及外部驅動力。這一現象在塗層、印刷、微流體、以及生物醫學 等領域中皆有重要的應用。

流體力學
流體介面力學導論
- 114年度,「顆粒筏受外部擾動下之機械性質:理論分析與實驗探討」(114-2222-E-002 -006-),主持人,計畫期間:2025/07/01 - 2028/05/31,委託單位:國科會。(三年期)
期刊論文 (Journal Papers):Corresponding Author(通訊作者)*
- Mukherjee, Mukherjee, Zih-Yin Chen, Xiang Cheng, and Sungyon Lee*, “Microscopic contact line dynamics dictate the emergent behaviors of particle rafts, ”Physical Review Fluids, 10(8), 084003, August 20, 2025
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Zih-Yin Chen, Anupam Pandey, Daisuke Takagi, Sunghwan Jung, and Sungyon. Lee*, “Inertial effects on free surface pumping with an undulating surface,” Journal of Fluid Mechanics, 998, A6, October 24, 2024
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Anupam Pandey, Zih-Yin Chen, Jisoo Yuk, Yuming Sun, Chris Roh, Daisuke Takagi, Sungyon Lee, and Sunghwan Jung*, “Optimal free-surface pumping by an undulating carpet,” Nature communications, 14(1), 7735, November 25, 2023
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Zih-Yin Chen, Alireza Hooshanginejad, Satish Kumar, and Sungyon Lee*, “Droplet dynamics under an impinging air jet,” Journal of Fluid Mechanics, 943, A32, June 14, 2022
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Ehsan Esmaili, Zih-Yin Chen, Anupam Pandey, Seungho Kim, Sungyon Lee, and Sunghwan Jung*, “Corona splashing triggered by a loose monolayer of particles,” Applied Physics Letters, 119(17), 174103, October 28, 2021
國際會議論文 (International Conference Papers)
- Ranit Mukherjee, Zih-Yin Chen, Xiang Cheng, and Sungyon Lee, “Can we predict the death of a granular raft?,” 77th APS Division of Fluid Dynamics Annual Meeting, Salt Lake City, UT, USA, November 2024
- Ranit Mukherjee, Zih-Yin Chen, Xiang Cheng, and Sungyon Lee, “Elastic or granular: How a continuum model explains the dual nature of granular rafts,” 77th APS Division of Fluid Dynamics Annual Meeting, Salt Lake City, UT, USA, November 2024
- Zih-Yin Chen, Ranit Mukherjee, Benjamin Druecke, Xiang Cheng, and Sungyon Lee, “Collapse of a granular raft: particle-scale features on a continuum model,” 2024 APS March Meeting, Minneapolis, MN, USA, March 2024
- Ranit Mukherjee, Zih-Yin Chen, Xiang Cheng, and Sungyon Lee, “Collapse of a granular raft: Experiments from the particle perspective,” 2024 APS March Meeting, Minneapolis, MN, USA, March 2024
- Sungyon Lee, Anupam Pandey, Zih-Yin Chen, Chris Roh, Daisuke Takagi, and Sunghwan Jung, “Free surface pumping via an undulating carpet,” 2024 APS March Meeting, Minneapolis, MN, USA, March 2024
- Zih-Yin Chen, Anupam Pandey, Daisuke Takagi, Sunghwan Jung, and Sungyon Lee, “Thin film flow with an undulating surface: The inertial effect,” 76th APS Division of Fluid Dynamics Annual Meeting, Washington, D.C., USA, November 2023
- Ranit Mukherjee, Zih-Yin Chen, Benjamin Druecke, Xiang Cheng, and Sungyon Lee, “Collapse of a granular raft: a single particle perspective,” 76th APS Division of Fluid Dynamics Annual Meeting, Washington, D.C., USA, November 2023
- Zih-Yin Chen, Anupam Pandey, Daisuke Takagi, Sunghwan Jung, and Sungyon Lee, “Snail feeding: Thin film flow with an undulating surface,” 75th APS Division of Fluid Dynamics Annual Meeting, Indianapolis, IN, USA, November 2022
- Zih-Yin Chen, Alireza Hooshanginejad, Satish Kumar, and Sungyon Lee, “Droplet dynamics under an airflow: splitting versus depinning,” 74th APS Division of Fluid Dynamics Annual Meeting, Phenix, AZ, USA (Virtual), November 2021
- Zih-Yin Chen, Alireza Hooshanginejad, Satish Kumar, and Sungyon Lee, “Droplet dynamics in a stagnation-point flow,” 73th APS Division of Fluid Dynamics Annual Meeting, Chicago, IL, USA (Virtual), November 2020