Evaluation of Gas Entrainment Flow Rate by Free Surface Vortex
Author:
Affiliation:
1. 京都大学大学院エネルギー科学研究科エネルギー基礎科学専攻
2. 京都大学複合原子力科学研究所
3. 日本原子力開発機構高速炉サイクル研究開発センター
Publisher
The Japanese Society for Multiphase Flow
Subject
General Medicine
Link
https://www.jstage.jst.go.jp/article/jjmf/36/1/36_2022.004/_pdf
Reference13 articles.
1. [1] Eguchi, Y., Yamamoto, K., Funada, T., Tanaka, N., Moriya, S., Tanimoto, K., Ogura, K., Suzuki, T. and Maekawa, I., Gas Entrainment in the IHX Vessel of Top-Entry Loop-Type LMFBR, Nucl. Eng. Des., Vol. 146, 373-381 (1994).
2. [2] Sakai, T., Eguchi, Y., Monji, H., Ito, K. and Ohshima, H., Proposal of Design Criteria for Gas Entrainment from Vortex Dimples Based on a Computational Fluid Dynamics Method, Heat Transf. Eng., Vol. 29, 731-739 (2008).
3. [3] Ezure, T., Ito, K., Tanaka, M., Ohshima, H. and Kameyama, Y., Experiments on Gas Entrainment Phenomena due to Free Surface Vortex Induced by Flow Passing beside Stagnation Region, Nucl. Eng. Des., Vol. 350(15), 90-97 (2019).
4. [4] Moriya, S., Estimation of Hydraulic Characteristics of Free Surface Vortices on the Basis of Extension Cortex Theory and Fine Model Test Measurements, CRIEPI Abiko Research Laboratory Report, U97072 (1998).
5. [5] Monji, H., Shinozaki, T., Kamide, H. and Sakai, T., Effect of Experimental Conditions on Gas Core Length and Downward Velocity of Free Surface Vortex in Cylindrical Vessel, J. Eng. Gas Turbine Power, Vol. 132, 012901-1-012901-8 (2010).
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