Acknowledgement
이 연구는 한국수력원자력(주)에서 재원을 부담하여 국립강릉원주대학교에서 수행한 연구결과입니다(22-개념-신재-15).
References
- Burley, R.R., and Harrington, D.E. (1987). Experimental evaluation of honeycomb/screen configurations and short contraction section for NASA Lewis Research Center's altitude wind tunnel. NASA Technical Paper 2692, NASA Lewis Research Center, Cleveland, OH, U.S.
- Cho, Y.-M. (2005). "Improvement of rectangle sedimentation basin using the moving baffle." Journal of Korean Society of Environmental Engineers, Vol. 27, No. 7, pp. 726-731.
- Damiola, L., Siddiqui, M.F., Runacres, M.C., and De Troyer, T. (2023). "Influence of free-stream turbulence intensity on static and dynamic stall of a NACA 0018 aerofoil." Journal of Wind Engineering & Industrial Aerodynamics, Vol. 232, 105270. doi: 10.1016/j.jweia.2022.105270.
- Godlieb, W., Gorter, S., Deen, N.G., Kuipers, J.A.M. (2011). "Experimental study of large scale fluidized beds at elevated pressure." Industrial & Engineering Chemistry Research, Vol. 51, No. 4, pp. 1962-1969.
- Howes, D.J., Burt, C.M., and Snaders, B.F. (2009). "Flow conditioner design for improving open channel flow measurement accuracy from a Sontek-Argonaut-SW." Proceedings of the 5th International Conference on Irrigation and Drainage, US Committee on Irrigation and Drainage, Salt Lake City, UT, U.S., pp. 117-126.
- Hussein, H.J., and Martinuzzi, R.J. (1996). "Energy balance for turbulent flow around a surface mounted cube placed in a channel." Physics of Fluids, Vol. 8, pp. 764-780.
- Liu, R., and Ting, D.S.-K. (2007). "Turbulent flow downstream of a perforated plate: Sharp-edged orifice versus finite-thickness holes." Journal of Fluid Engineering, Vol. 129, No. 9, pp. 1164-1171.
- Mendelson, H.D. (1967). "The prediction of bubble terminal velocity from wave theory." AlChE Journal, Vol. 13, No. 2, pp. 250-253.
- Nakagawa, H., and Nezu, I. (1987). "Experimental investigation on turbulent structure of backward-facing step flow in an open channel." Journal of Hydraulic Research, Vol. 25, No. 1. pp. 67-88.
- Nezu, I. (2005). "Open-channel flow turbulence and its research prospect in the 21st century." Journal of Hydraulic Engineering, Vol. 131, No. 4, pp. 229-246.
- Nino, Y., Lopez, F., and Garcia, M. (2003). "Threshold for particle entrainment into suspension." Sedimentology, Vol. 50. pp. 247-263.
- Ouazzane, K., and Benhadj, R. (2007). "An experimental investigation and design of flow-conditioning devices for orifice metering." Proceeding of the Institution of Mechanical Engineers, Part C: Journal of Mechanical Engineering Science, Vol. 221, No. 3, pp. 281-291. doi: 10.1243/0954406JMES382.
- Park, S.W., and Lee S.W. (2000). "An experimental study on the flow stabilization in the downstream region of a butterfly-type valve." Transactions of the Korea Society of Mechanical Engineering B, Vol. 24, No.11, pp. 1417-1427.
- Seo, Y. (2013). "Effect of hydraulic diameter of flow straighteners on turbulence intensity in square wind tunnel." HVAC&R Research, Vol. 19, No. 2, pp. 141-147.
- Song, J., Liu, D. Ma, J., and Chen, X. (2018). "Effect of elevated pressure on bubble properties in a two-dimensional gas-solid fluidized bed." Chemical Engineering Research and Design, Vol. 138, pp. 21-31.
- Spearman, E.P., Sattary, J.A., and Reader-Harris, M.J. (1996). "Comparison of velocity and turbulence profiles downstream of perforated plate flow conditioners." Flow Measurement and Instrumentation, Vol. 7, No. 3-4, pp. 181-199.
- Street, R.L., Watters, G.Z., and Vennard, J.K. (1998). Elementary fluid mechanics. 7th Edition, John Wiley & Sons, Inc., New York, NY, U.S., pp. 380-381.
- Wallis, G.B. (1974). "The terminal speed of single drops or bubbles in an infinite medium." International Journal of Multiphase Flow, Vol. 1, pp. 491-511.
- Xiang, Q.-J., Xue, L., Kim, K.-Y., and Shi, Z.-F. (2019). "Multi-objective optimization of a flow straightener in a large capacity firefighting water cannon." Journal of Hydrodynamics, Vol. 31, No. 1, pp. 137-144.
- Xiong, W., Kalkuhler, K., and Merzkirch, W. (2003). "Velocity and turbulence measurements downstream of flow conditioners." Flow Measurement and Instrumentation, Vol. 14, No. 6. pp. 249-260.