Quantitative measurement of heat transfer fluctuation in a pipe flow around an orifice plate using high-speed infrared thermography

Author:

SHIIBARA Naoki1,NAKAMURA Hajime1,YAMADA Shunsuke1

Affiliation:

1. Department of Mechanical Engineering, National Defense Academy

Publisher

Japan Society of Mechanical Engineers

Subject

General Medicine

Reference28 articles.

1. Abe, H., Kawamura, H. and Matsu, Y., Surface heat-flux fluctuations in a turbulent channel flow up to Reτ = 1020 with Pr = 0.025 and 0.71, International Journal of Heat and Fluid Flow, Vol.25 (2004), pp.404-419.

2. Deotte, R. E., Morrison, G. L., Panak, D. L. and Nail, G. H., 3-D laser doppler anemometry measurements of the axisymmetric flow field near an orifice plate, Flow Measurement and Instrumentation, Vol.2 (1991), pp.115-123.

3. Fujii, T., Fujii, M., and Honda, T., Theoretical and experimental studies of the free convection around a long horizontal thin wire in air, Proceedings of the 7th International Heat Transfer Conference (IHTC-7) (1982), pp.311-316.

4. Gnielinski, V., New equations for heat and mass transfer in turbulent pipe and channel flow, International Chemical Engineering, Vol.16, No.2 (1976), pp.359-367.

5. Hetsroni, G. and Rozenblit, R., Heat transfer to a liquid-solid mixture in a flume, International Journal of Multiphase Flow Vol.20, No.4 (1994), pp. 671-689.

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1. Simultaneous infrared temperature and PIV measurements in turbulent thermo-fluids systems;Proceeding of 10th International Symposium on Turbulence, Heat and Mass Transfer, THMT-23, Rome, Italy, 11-15 September 2023;2023

2. Simultaneous infrared temperature and PIV measurements in turbulent thermo-fluids systems;Proceeding of 10th International Symposium on Turbulence, Heat and Mass Transfer, THMT-23, Rome, Italy, 11-15 September 2023;2023

3. Simultaneous infrared temperature and PIV measurements in turbulent thermo-fluids systems;Proceeding of 10th International Symposium on Turbulence, Heat and Mass Transfer, THMT-23, Rome, Italy, 11-15 September 2023;2023

4. Unsteady characteristics of turbulent heat transfer in a circular pipe upon sudden acceleration and deceleration of flow;International Journal of Heat and Mass Transfer;2017-10

5. Relation between the positions of flow reattachment and maximum heat transfer at downstream of an orifice in a pipe;Transactions of the JSME (in Japanese);2016

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