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    A study of the flow characteristics of developing turbulent pulsating flows in a curved duct

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    https://www.riss.kr/link?id=A76274829

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    다국어 초록 (Multilingual Abstract) kakao i 다국어 번역

    Flow characteristics of turbulent pulsating flows in a square-sectional curved duct were experimentally investigated. Experimental studies for air flow were conducted to measure axial velocity profiles, secondary flow and pressure distributions in a square-sectional 180° curved duct by using an LDV system with a data acquisition and processing system which includes a Rotating Machinery Resolve (RMR) and PHASE software. Measurements were made at the seven cross-sections from the inlet (ø=0°) to the outlet (ø=180°) of the duct with 30° intervals. Pressure was measured by using a magnetic differential pressure gage. The experiment was conducted in nineteen sections from the inlet to the outlet of the duct at 10° intervals.
    Velocity profiles for turbulent pulsating flows were large at the outer wall for a bend angle of ø=30° because of the centrifugal force. The velocity profiles were similar to those of turbulent steady flows. The secondary flow of the turbulent pulsating flow had a positive value at a bend angle of 150° without regarding the phase. The dimensionless value of the secondary flow became gradually weak and approached to zero in the region of a bend angle of 180° regardless of the ratio of velocity amplitude. The pressure difference of turbulent pulsating flows was the largest near the region of a bend of angle of 90° in the case of the middle region and became small beyond 90.
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    Flow characteristics of turbulent pulsating flows in a square-sectional curved duct were experimentally investigated. Experimental studies for air flow were conducted to measure axial velocity profiles, secondary flow and pressure distributions in a s...

    Flow characteristics of turbulent pulsating flows in a square-sectional curved duct were experimentally investigated. Experimental studies for air flow were conducted to measure axial velocity profiles, secondary flow and pressure distributions in a square-sectional 180° curved duct by using an LDV system with a data acquisition and processing system which includes a Rotating Machinery Resolve (RMR) and PHASE software. Measurements were made at the seven cross-sections from the inlet (ø=0°) to the outlet (ø=180°) of the duct with 30° intervals. Pressure was measured by using a magnetic differential pressure gage. The experiment was conducted in nineteen sections from the inlet to the outlet of the duct at 10° intervals.
    Velocity profiles for turbulent pulsating flows were large at the outer wall for a bend angle of ø=30° because of the centrifugal force. The velocity profiles were similar to those of turbulent steady flows. The secondary flow of the turbulent pulsating flow had a positive value at a bend angle of 150° without regarding the phase. The dimensionless value of the secondary flow became gradually weak and approached to zero in the region of a bend angle of 180° regardless of the ratio of velocity amplitude. The pressure difference of turbulent pulsating flows was the largest near the region of a bend of angle of 90° in the case of the middle region and became small beyond 90.

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    목차 (Table of Contents)

    • Abstract
    • 1. Introduction
    • 2. Experiment
    • 3. Results and discussion
    • 4. Conclusions
    • Abstract
    • 1. Introduction
    • 2. Experiment
    • 3. Results and discussion
    • 4. Conclusions
    • Acknowledgment
    • Reference
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    참고문헌 (Reference)

    1 "Visualization of fluid flowing through curved pipes Journal of JSME B. 54" 297-301, 1988

    2 "Unsteady viscous flow in a curved pipe" 13-31, 1970

    3 "Turbulent flow in rectangular duct J. of the Hydraulics Division. 89" 1-18, 1963

    4 "Pulsating flow in curved pipes(5 report)" 61 (61): 2442-2449, 1995

    5 "Flow characteristics of a transitional oscillatory flow." 436-442, 1997

    6 "Entry flow in a curved pipe" 517-539, 1974

    7 "Collapsible phenomena in the flexible tubes due to the flow rate and transitional pressure changes" 377-384, 2000

    8 "Calculation of turbulent flows with pressure gradients using a κ-εModel Journal of JSME B. 59" 1043-1048, 1993

    9 "Axial velocity profiles and secondary flows of developing laminar flows in a straight connected exit region of a 180° curved duct" 29 (29): 1092-1100, 2005

    10 "An experimental study on flow characteristics of turbulent pulsating flow in a curved duct by using LDV" 25 (25): 1561-1568, 2001

    1 "Visualization of fluid flowing through curved pipes Journal of JSME B. 54" 297-301, 1988

    2 "Unsteady viscous flow in a curved pipe" 13-31, 1970

    3 "Turbulent flow in rectangular duct J. of the Hydraulics Division. 89" 1-18, 1963

    4 "Pulsating flow in curved pipes(5 report)" 61 (61): 2442-2449, 1995

    5 "Flow characteristics of a transitional oscillatory flow." 436-442, 1997

    6 "Entry flow in a curved pipe" 517-539, 1974

    7 "Collapsible phenomena in the flexible tubes due to the flow rate and transitional pressure changes" 377-384, 2000

    8 "Calculation of turbulent flows with pressure gradients using a κ-εModel Journal of JSME B. 59" 1043-1048, 1993

    9 "Axial velocity profiles and secondary flows of developing laminar flows in a straight connected exit region of a 180° curved duct" 29 (29): 1092-1100, 2005

    10 "An experimental study on flow characteristics of turbulent pulsating flow in a curved duct by using LDV" 25 (25): 1561-1568, 2001

    11 "A study on swirling flow heat transfer characteristics in a circular duct with 180° bend" 285-289, 1995

    12 "A study on characteristics of laminar oscillatory flow in square-sectional 180° Curved Duct" 22 (22): 139-152, 1998

    13 "A study on a view pulsating flow in a cerebral arterial Journal of JSME B. 57" 3018-3025, 1991

    14 "A study flow critical dean number, secondary flow and wall shear stress of developing transitional oscillatory flow in a square-sectional 180° curved duct by using LDV" 1 (1): 157-163, 1998

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