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郭修伯 教授(副系主任、產學合作總中心主任) / Hsiu-Po Kuo Professor

粉體與流體操作實驗室 Particle and Fluid Processing Lab 一館 粉粒體技術流體化工程多相流暨粒子流模擬技術 Particle TechnologyFluidization EngineeringMultiphase and Granular Flow Simulations (02)3366-3066 BLDG.Ⅰ (02)3366-9643 hsiupokuo@ntu.edu.tw 工221 郭修伯 Hsiu-Po Kuo 化工一館 CheE BLDG. I 教授 Professor 209
    • 學歷

            英國伯明翰大學 化學工程博士      2001
           國立臺灣大學 化學工程學系學士   1995

    • 經歷

             國立臺灣大學 研究發展處副研發長         2024-迄今
           國立臺灣大學 產學合作總中心主任         2023-迄今
           國立臺灣大學 化學工程學系副系主任      2022-迄今
           Executive Editor, Advanced Powder Technology (SCI, Elsevier)    2018-迄今
           臺灣生質能技術發展協會 常務理事         2023-迄今
           台灣過濾與分離學會 監事                       2015-迄今

           長庚大學 工學院副院長                           2018-2020
           長庚大學 綠色科技中心主任、創新育成中心主任            2019-2020、2005-2010
           長庚大學 化工與材料工程學系系主任     2016-2019
           長庚大學 化工與材料工程學系助理教授、副教授、教授  2002-2020

           台灣化學工程學會 副秘書長                    2019-2020

    • 研究主題

            粉粒體技術:此研究主要著重於粉粒體物理特性分析,並結合工業程序上各種單元操作特徵,開發合適於不同操作特性單元之粉體。

           流體化床工程:此研究主要探討流體化床中之流體/固體相互作用機制與其工業應用。目前研究題目包含生質物流體化床熱裂解操作、孔板設計及氣體汙染物於流體化床之物理化學處理。

           多相流暨粒子流模擬技術:此主題之研究利用離散元素法及計算流體力學探討顆粒體在粒子流或多相流中的運動行為與其他相的相互作用機制,並進一步將模擬結果應用於工業製程節能與提高效能之改善。

    • 最新研究     

    計畫名稱

    補助單位

    期間(MM/DD/YYYY)

    以操作溫度控制旋風分離器之顆粒精密分級

    國科會

    08/01/2022-07/31/2025

    結晶粉體製程優化研究計畫

    聚和國際

    11/01/2022-04/30/2024

    氣固反應與操作單元整合模擬/二氧化碳烷烯烴化程序整合與填充床反應器之開發/二氧化碳甲烷化程序整合與填充床反應器之開發

    工研院

    04/01/2021-11/30/2024

    多階雙向流式流體化床應用國產活性碳球連續吸附模組開發/

    虛實整合燃氣混氫發電製程特性分析及其空氣排放預測

    環保署/環境部

    01/01/2023-11/30/2024

    以X光成像技術建立三維地質結構與應用於地下水輸送特性之分析-以顆粒床堆積與X光影像建立虛擬地質三維結構

    科技部/原能會

    01/01/2023-12/31/2023

    石墨塊材針孔狀缺陷成因解析與改善研究

    中鋼

    04/01/2022-01/31/2023

    顆粒碰撞軟球模型修正與最密堆積設計之應用

    科技部

    08/01/2021-12/31/2022

    碳纖氧化爐/HDPE粉旋風分離器/LLDPE反應器/EDC熱交換器/氯丙烯反應器/碳纖紡絲/PVC噴霧乾燥機/VCM填充床壓力降/粉煤鍋爐/VCM排熱管/SAP粉體磨耗與儲槽

    台塑

    01/01/2016-迄今

    脫硫用石灰石

    台朔重工

    02/01/2016-01/31/2017

    CFB鍋爐操作/副產石灰轉化二水石膏基本設計

    台塑石化

    04/01/2010-08/31/2016

    玻纖儲槽/絕緣金屬粉/金屬射出成型銅粉/光擴散片

    南亞塑膠、中鋼、艾姆勒車電、伸昌光電

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    1. 109學年度「陳芳燦講座」講座學者 (2020)
    2. Execute Editor, Advanced Powder Technology, the Society of Powder Technology, Japan (2018/01/01- now)
    3. Organizing Committee, the 7th International Conference on the Characterization and Control of Interfaces for High Quality Advanced Materials (ICCCI2022), 5-8 July, 2022 Fujiyoshida, Japan.
    4. Scientific Committee, the 10th International Symposium on Mixing in Industrial Processes (ISMIP10), 29 June-2 July, 2020, Kobe, Japan.
    5. Organizing Committee, the 6thInternational Conference on the Characterization and Control of Interfaces for High Quality Advanced Materials (ICCCI 2018) and the 54th Summer Symposium on Powder Technology, 9-12 July, 2018, Kurashiki, Japan.
    6. Chair, 7thAsian Particle Technology Symposium, 30 July-3 August, 2017, Taoyuan, Taiwan.
    7. 長庚大學2016, 2019優良教師獎
    8. 指導學生林琦昀同學,獲得2019年台灣化學工程學會66週年年會壁報論文競賽-佳作
    9. 指導學生王煦宸同學,獲得2019年台灣化學工程學會66週年年會壁報論文競賽-佳作
    10. 指導學生王煦宸同學,獲得2019 年台灣化學工程學會66 週年年會英語口頭報告競賽優勝
    11. 指導學生王煦宸同學,獲得2019年第十七屆台塑關係企業應用技術研討會壁報論文競賽-佳作
    12. 指導學生王萱同學,獲2018 年台灣化學工程學會65週年年會壁報論文競賽-佳作
    13. 指導學生鄭東欣同學,獲2017 年台灣化學工程學會64週年年會壁報論文競賽-傑出論文獎
    1. Fukasawa, T.,Toda, H., Huang, S.-Y., Hiraiwa, R., Huang, A.N., Kuo, H.P., Fukui, K., “Component Separation in a Vibrating Fluidized Bed Based on Differences in Agglomeration Properties of Particles.”Journal of Chemical Engineering of Japan, 2018. 51(7): p. 576-583.
    2. Hsu, W.Y., A.N. Huang, and H.P. Kuo*, “Analysis of Interparticle Forces and Particle-Wall Interactions by Powder Bed Pressure Drops at Incipient Fluidization.”Powder Technology, 2018. 325: p. 64-68.
    3. Huang, A. N., Hsu, C. P., Hou, B. R., Kuo, H.P.*, “Production and Separation of Rice Husk Pyrolysis Bio-oils from a Fractional Distillation Column Connected Fluidized Bed Reactor.”Powder Technology, 2018. 323: p. 588-593.
    4. Huang, A. N., Ito, K.; Fukasawa, T., Fukui, K., Kuo, H.P.*, “Effects of Particle Mass Loading on the Hydrodynamics and Separation Efficiency of a Cyclone Separator.”Journal of the Taiwan Institute of Chemical Engineers, 2018. 90: p. 61-67.
    5. Huang, A.N., Ito, K., Fukasawa, T., Yoshida, H., Kuo, H.P.*, Fukui, K., “Classification Performance Analysis of a Novel Cyclone with a Slit on the Conical Part by CFD Simulation.”Separation and Purification Technology, 2018. 190: p. 25-32.
    6. Huang, A.N. and Kuo, H.P.*, “CFD Simulation of Particle Segregation in a Rotating Drum. Part II: Effects of Specularity Coefficient.”Advanced Powder Technology, 2018. 29(12): p. 3368-3374.
    7. Kuo, H.P.*, Yang, Y.N., and Huang, A.N., “A Kinetic Study of CFB Boiler Separated Bottom Ashes During the Steam Hydration Reaction.”Journal of the Taiwan Institute of Chemical Engineers, 2019. 94: p. 124-128.
    8. Lin, C.Y., Wang, H.C., Hsu, W.Y., Huang, A.N. and Kuo, H.P.*, “Stage-wise Characterization of the High Shear Granulation Process by Impeller Torque Changing Rate.”Advanced Powder Technology, 2019. 30(8): p. 1513-1521.
    9. Hsu, W.Y., Huang, A.N., and Kuo, H.P.*, “Approach the powder contact force, voidage, tensile stress, wall frictional stress and state diagram of powder bed by simple pressure drop monitoring.” Advanced Powder Technology, 2020. 31(1): p. 433-438.
    10. Huang, A.N., Cheng, T.H. and Kuo, H.P.*, “A study of the axial and radial competition segregation in a rotating drum with internal diameter changing.” AIChE Journal, 2020. 66(5):e16921..
    11. Huang, A.N., Cheng, H.H., Hsu, W.Y., Huang, C.C. and Kuo, H.P.*, “Transition from binder to matrix-forming: the effect of hydroxypropylmethylcellulose concentration on the properties of starch/hydroxypropylmethylcellulose granules prepared in a high shear granulator.” Journal of the Taiwan Institute of Chemical Engineers, 2020. 113: p. 46-55.
    12. Huang, A.N., Cheng, T.H., Hsu, W.Y., Huang, C.C. and Kuo, H.P.*, “DEM study of particle segregation in a rotating drum with internal diameter variations.” Powder Technology, 2021. 378(A): p. 430-440.
    13. Furumoto, K., Narita, T., Fukasawa, T., Ishigami, T., Kuo, H.P. *, Huang, A.N. and Fukui. K., “Influence of pulse-jet cleaning interval on performance of compact dust collector with pleated filter”, Separation and Purification Technology, 2021. 279: p. 119688.
    14. Huang, A.N., Wang, X., Hsu, W.Y. and Kuo, H.P. *, “Particle segregation in a rotating drum with inner segmentation ring pair”, Powder Technology, 2021. 394: p. 891–900.
    15. 陳晴語、楊令琇、黃安婗、郭修伯*,“高效氣固旋風分離器的發展與應用”,2021。工程,94(4)期,12月號,p. 81–92。
    16. C.C. Lai†, A.N. Huang†, (†Co-first authors, contributed equally to this work), C.Y. Chen, W.Y. Hsu, J.P.K. Seville and H.P. Kuo*, 2022, “Modification of the spherical particle spring-damping contact model from contact velocity dependent restitution coefficients”, Powder Technology, 401, 117294.
    17. K. Furumoto, T. Fukasawa, T. Ishigami, M.I.F. Rozy, H.P. Kuo, A.N. Huang and K. Fukui, 2022, “Influence of pulse-jet cleaning pressure on performance of compact dust collector with pleated filter operated in clean-on-time mode”, Advanced Powder Technology, 33, 103602.
    18. A.N. Huang†, W.C. Chen†, C.L. Wu†, (†Co-first authors, contributed equally to this work), T. J. Lee, C.C. Huang and H.P. Kuo*, 2022, “Characterization of nasal aerodynamics and air conditioning ability using CFD and its application to improve the empty nose syndrome (ENS) submucosal floor implant surgery - Part I Methodology”, Journal of the Taiwan Institute of Chemical Engineers, 138, 104481.
    19. L.H. Yang†, C.Y. Chen†, (†Co-first authors, contributed equally to this work), W.Y. Hsu, K. Fukui, T. Fukasawa, A.N. Huang and H.P. Kuo*, 2022, “Effect of the operation temperature on the hydrodynamics and performances of a cyclone separator”, Advanced Powder Technology, 33, 103791.
    20. A.N. Huang, WY Hsu, T. Fukasawa, T. Ishigami, K. Fukui and H.P. Kuo*, 2023 “Performance Characterization of a Novel Compact Dust Collector with Pleated Filter Cartridges”, Separation and Purification Technology, 305, 122468.