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    원심 펌프의 임펠러의 생체모방공학 기반 결절 형상 최적화 = OPTIMIZATION OF BIOMIMETIC TUBERCLE FOR IMPELLER IN A CENTRIFUGAL PUMP

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    https://www.riss.kr/link?id=A109266721

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    다국어 초록 (Multilingual Abstract) kakao i 다국어 번역

    In this study, a biomimetic tubercle shape was applied to the trailing edge of a centrifugal pump impeller in the purpose of increasing pump efficiency. Shape optimization was conducted to maximize composite pump efficiency, and the effect of flow control of the tubercle on performance improvement was analyzed. The shape optimization was carried out in two stages: sine wave shape of the tubercle was optimized, and based on the results, separate height of the tubercle was adjusted via the second optimization process. Application of the tubercle to the trailing edge increased the efficiency and reduced the turbulent kinetic energy compared to the original pump. Depending on the sinusoidal design parameters, the efficiency increased and TKE decreased as the height and number of tubercles increased. The optimization results of separate height tubercle showed that the specific tubercle has relatively larger effect on the efficiency.
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    In this study, a biomimetic tubercle shape was applied to the trailing edge of a centrifugal pump impeller in the purpose of increasing pump efficiency. Shape optimization was conducted to maximize composite pump efficiency, and the effect of flow con...

    In this study, a biomimetic tubercle shape was applied to the trailing edge of a centrifugal pump impeller in the purpose of increasing pump efficiency. Shape optimization was conducted to maximize composite pump efficiency, and the effect of flow control of the tubercle on performance improvement was analyzed. The shape optimization was carried out in two stages: sine wave shape of the tubercle was optimized, and based on the results, separate height of the tubercle was adjusted via the second optimization process. Application of the tubercle to the trailing edge increased the efficiency and reduced the turbulent kinetic energy compared to the original pump. Depending on the sinusoidal design parameters, the efficiency increased and TKE decreased as the height and number of tubercles increased. The optimization results of separate height tubercle showed that the specific tubercle has relatively larger effect on the efficiency.

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    참고문헌 (Reference)

    1 Fish, F. E., "The tubercles on humpback whales’ flippers : Application of bio-inspired technology" 51 (51): 203-213, 2011

    2 Li, B, "The role of blade sinusoidal tubercle trailing edge in a centrifugal pump with low specific speed" 7 (7): 625-, 2019

    3 Zhiwei, G., "Suppression of hump characteristic for a pump-turbine using leading-edge protuberance" 234 (234): 187-194, 2019

    4 Zhao, Y., "Suppression effect of bionic guide vanes with different parameters on the hump characteristics of pump-turbines based on entropy production theory" 283 : 128650-, 2023

    5 Lin, P., "Research on the rotor-stator interaction of centrifugal pump based on sinusoidal tubercle volute tongue" 14 (14): 589-600, 2020

    6 Pei, J, "Performance prediction based on effects of wrapping angle of a side channel pump" 12 (12): 139-, 2019

    7 Kholodov, P., "Optimization of trailing-edge serrations with and without slits for broadband noise reduction" 490 : 115736-, 2021

    8 Subroto, "Optimization of centrifugal pump performance with various blade number" 2114 (2114): 020016-, 2019

    9 Maleki, A., "Numerical study on the effect of viscosity on a multistage pump running in reverse mode" 150 : 234-254, 2020

    10 Ding, H., "Numerical study on the effect of blade trailing edge filing on performance and unsteady pressure pulsation in low specific speed centrifugal pump" 12 (12): 233-245, 2023

    1 Fish, F. E., "The tubercles on humpback whales’ flippers : Application of bio-inspired technology" 51 (51): 203-213, 2011

    2 Li, B, "The role of blade sinusoidal tubercle trailing edge in a centrifugal pump with low specific speed" 7 (7): 625-, 2019

    3 Zhiwei, G., "Suppression of hump characteristic for a pump-turbine using leading-edge protuberance" 234 (234): 187-194, 2019

    4 Zhao, Y., "Suppression effect of bionic guide vanes with different parameters on the hump characteristics of pump-turbines based on entropy production theory" 283 : 128650-, 2023

    5 Lin, P., "Research on the rotor-stator interaction of centrifugal pump based on sinusoidal tubercle volute tongue" 14 (14): 589-600, 2020

    6 Pei, J, "Performance prediction based on effects of wrapping angle of a side channel pump" 12 (12): 139-, 2019

    7 Kholodov, P., "Optimization of trailing-edge serrations with and without slits for broadband noise reduction" 490 : 115736-, 2021

    8 Subroto, "Optimization of centrifugal pump performance with various blade number" 2114 (2114): 020016-, 2019

    9 Maleki, A., "Numerical study on the effect of viscosity on a multistage pump running in reverse mode" 150 : 234-254, 2020

    10 Ding, H., "Numerical study on the effect of blade trailing edge filing on performance and unsteady pressure pulsation in low specific speed centrifugal pump" 12 (12): 233-245, 2023

    11 Tang, H., "Noise Reduction Mechanisms of an Airfoil with Trailing Edge Serrations at Low Mach Number" 9 (9): 3784-, 2019

    12 Miklosovic, D.S, "Leading-edge tubercles delay stall on humpback whale (Megaptera novaeangliae) flippers" 16 (16): L39-L42, 2004

    13 Song, Z, "Influence of the trailing edge shape of impeller blades on centrifugal pumps with unsteady characteristics" 12 (12): 508-, 2024

    14 Lu, Z., "Influence of the hydrofoil trailing-edge shape on the temporal-spatial features of vortex shedding" 246 : 110645-, 2022

    15 Gao, B., "Influence of the blade trailing edge profile on the performance and unsteady pressure pulsations in a low specific speed centrifugal pump" 138 (138): 051106-, 2016

    16 Ke, W., "Influence of leading-edge tubercles on the aerodynamic performance of a horizontal-axis wind turbine : A numerical study" 239 : 122186-, 2022

    17 Lin, Y., "Influence of impeller sinusoidal tubercle trailing-edge on pressure pulsation in a centrifugal pump at nominal flow rate" 143 (143): 091205-, 2021

    18 Cui, B, "Influence of cutting angle of blade trailing edge on unsteady flow in a centrifugal pump under off-design conditions" 10 (10): 580-, 2020

    19 Tan, L., "Influence of blade wrap angle on centrifugal pump performance by numerical and experimental study" 27 (27): 171-177, 2014

    20 Cui, B., "Influence of blade trailing edge profile on unsteady pressure pulsations in a multistage centrifugal pump" 11 (11): 1471-1483, 2023

    21 Yang, S. S., "Influence of blade number on the performance and pressure pulsations in a pump used as a turbine" 134 (134): 124503-, 2012

    22 Yu-qin, W., "Influence of blade number on flow-induced noise of centrifugal pump based on CFD/CA" 172 : 109058-, 2020

    23 Han, X., "Impeller optimized design of the centrifugal pump : A numerical and experimental investigation" 11 : 1444-, 2018

    24 Shi, W., "Hydrodynamic performance evaluation of a tidal turbine with leading-edge tubercles" 117 : 246-253, 2016

    25 Fish, F. E., "Hydrodynamic design of the humpback whale flipper" 225 (225): 51-60, 1995

    26 Miklosovic, D. S., "Experimental evaluation of sinusoidal leading edges" 44 (44): 1404-1408, 2007

    27 Zhang, N., "Effects of modifying the blade trailing edge profile on unsteady pressure pulsations and flow structures in a centrifugal pump" 75 : 227-238, 2019

    28 Sakran, H. K., "Effects of blade number on the centrifugal pump performance : A review" 47 (47): 7945-7961, 2022

    29 Li, D., "Effect of trailing-edge serrations on noise reduction in a coupled bionic aerofoil inspired by barn owls" 15 (15): 016009-, 2019

    30 Yoon, H. S., "Effect of the wavy leading edge on hydrodynamic characteristics for flow around low aspect ratio wing" 49 (49): 276-289, 2011

    31 Abo Elyamin, G. R. H., "Effect of impeller blades number on the performance of a centrifugal pump" 58 (58): 39-48, 2019

    32 Liu, M., "Design method of controllable blade angle and orthogonal optimization of pressure rise for a multiphase pump" 11 (11): 1048-, 2018

    33 Favier, J., "Control of the separated flow around an airfoil using a wavy leading edge inspired by humpback whale flippers" 340 (340): 107-114, 2011

    34 Singh, S. K., "Control of airfoil broadband noise through nonuniform sinusoidal trailingedge serrations" 35 (35): 025139-, 2023

    35 Mandhare, N. A., "Compendious review on"Internal flow physics and minimization of flow instabilities through design modifications in a centrifugal pump" 141 (141): 051601-, 2019

    36 Li, H, "CFD simulation of centrifugal pump with different impeller blade trailing edges" 11 (11): 402-, 2023

    37 Binama, M., "Blade trailing edge position influencing pump as turbine(PAT)pressure field under part-load conditions" 136 : 33-47, 2019

    38 Liu, Y., "Blade rotation angle on energy performance and tip leakage vortex in a mixed flow pump as turbine at pump mode" 206 : 118084-, 2020

    39 Liu Haoran ; Wang Xiaofang ; Lu Yeming ; Yan Yongqi ; Zhao Wei ; Wu Xiaocui ; Zhang Zhigang, "Application and optimal design of the bionic guide vane to improve the safety serve performances of the reactor coolant pump" 54 (54): 2491-2509, 2022

    40 Lin, P., "Analysis of the energy loss and performance characteristics in a centrifugal pump based on sinusoidal tubercle volute tongue" 25 (25): 545-, 2023

    41 Wei, Z., "An experimental study on flow separation control of hydrofoils with leading-edge tubercles at low Reynolds number" 108 : 336-349, 2015

    42 Lin, Y., "An energy consumption improvement method for centrifugal pump based on bionic optimization of blade trailing edge" 246 : 123323-, 2022

    43 Azarpeyvand, M., "An analytical investigation of trailing edge noise reduction using novel serrations" 2013

    44 Howe, M. S., "Aerodynamic noise of a serrated trailing edge" 5 (5): 33-45, 1991

    45 Arun Shankar, V. K., "A comprehensive review on energy efficiency enhancement initiatives in centrifugal pumping system" 181 : 495-513, 2016

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